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Drift free timing examples
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@ -8,6 +8,8 @@ This project adheres to [Semantic Versioning](http://semver.org/).
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### Added
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### Added
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- CI changelog entry enforcer
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- CI changelog entry enforcer
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- `examples/periodic-at.rs`, an example of a periodic timer without accumulated drift.
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- `examples/periodic-at2.rs`, an example of a periodic process with two tasks, with offset timing. Here we depict two alternative usages of the timer type, explicit and trait based.
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## [v1.0.0] - 2021-12-25
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## [v1.0.0] - 2021-12-25
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4
ci/expected/periodic-at.run
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4
ci/expected/periodic-at.run
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@ -0,0 +1,4 @@
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foo Instant { ticks: 0 }
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foo Instant { ticks: 100 }
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foo Instant { ticks: 200 }
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foo Instant { ticks: 300 }
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7
ci/expected/periodic-at2.run
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7
ci/expected/periodic-at2.run
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foo Instant { ticks: 0 }
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bar Instant { ticks: 10 }
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foo Instant { ticks: 110 }
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bar Instant { ticks: 120 }
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foo Instant { ticks: 220 }
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bar Instant { ticks: 230 }
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foo Instant { ticks: 330 }
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49
examples/periodic-at.rs
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examples/periodic-at.rs
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//! examples/periodic-at.rs
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#![deny(unsafe_code)]
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#![deny(warnings)]
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#![no_main]
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#![no_std]
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use panic_semihosting as _;
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#[rtic::app(device = lm3s6965, dispatchers = [SSI0])]
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mod app {
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use cortex_m_semihosting::{debug, hprintln};
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use systick_monotonic::*;
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#[monotonic(binds = SysTick, default = true)]
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type MyMono = Systick<100>; // 100 Hz / 10 ms granularity
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#[shared]
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struct Shared {}
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#[local]
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struct Local {}
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#[init]
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fn init(cx: init::Context) -> (Shared, Local, init::Monotonics) {
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let systick = cx.core.SYST;
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// Initialize the monotonic (SysTick rate in QEMU is 12 MHz)
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let mut mono = Systick::new(systick, 12_000_000);
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foo::spawn_after(1.secs(), mono.now()).unwrap();
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(Shared {}, Local {}, init::Monotonics(mono))
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}
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#[task(local = [cnt: u32 = 0])]
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fn foo(cx: foo::Context, instant: fugit::TimerInstantU64<100>) {
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hprintln!("foo {:?}", instant).ok();
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*cx.local.cnt += 1;
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if *cx.local.cnt == 4 {
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debug::exit(debug::EXIT_SUCCESS); // Exit QEMU simulator
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}
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// Periodic ever 1 seconds
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let next_instant = instant + 1.secs();
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foo::spawn_at(next_instant, next_instant).unwrap();
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}
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}
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61
examples/periodic-at2.rs
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examples/periodic-at2.rs
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//! examples/periodic-at2.rs
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#![deny(unsafe_code)]
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#![deny(warnings)]
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#![no_main]
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#![no_std]
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use panic_semihosting as _;
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#[rtic::app(device = lm3s6965, dispatchers = [SSI0])]
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mod app {
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use cortex_m_semihosting::{debug, hprintln};
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use systick_monotonic::*;
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#[monotonic(binds = SysTick, default = true)]
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type MyMono = Systick<100>; // 100 Hz / 10 ms granularity
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#[shared]
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struct Shared {}
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#[local]
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struct Local {}
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#[init]
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fn init(cx: init::Context) -> (Shared, Local, init::Monotonics) {
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let systick = cx.core.SYST;
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// Initialize the monotonic (SysTick rate in QEMU is 12 MHz)
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let mut mono = Systick::new(systick, 12_000_000);
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foo::spawn_after(1.secs(), mono.now()).unwrap();
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(Shared {}, Local {}, init::Monotonics(mono))
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}
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// Using the explicit type of the timer implementation
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#[task(local = [cnt: u32 = 0])]
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fn foo(cx: foo::Context, instant: fugit::TimerInstantU64<100>) {
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hprintln!("foo {:?}", instant).ok();
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*cx.local.cnt += 1;
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if *cx.local.cnt == 4 {
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debug::exit(debug::EXIT_SUCCESS); // Exit QEMU simulator
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}
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// Spawn a new message with 100 ms offset to spawned time
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let next_instant = instant + 100.millis();
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bar::spawn_at(next_instant, next_instant).unwrap();
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}
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// Using the Instant from the Monotonic trait
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// This remains agnostic to the timer implementation
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#[task(local = [cnt: u32 = 0])]
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fn bar(_cx: bar::Context, instant: <MyMono as rtic_monotonic::Monotonic>::Instant) {
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hprintln!("bar {:?}", instant).ok();
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// Spawn a new message with 1s offset to spawned time
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let next_instant = instant + 1.secs();
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foo::spawn_at(next_instant, next_instant).unwrap();
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}
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}
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