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Merge #562
562: Replace default WFI with simpler NOP r=korken89 a=AfoHT As noted by #561 there are multiple issues with various hardware implementations and debugging together with sleep modes. As RTIC strives to be a generic framework (even though this is an implementation targeting cortex-m) the decision having `WFI` as the default `idle` task causes issues in some hardware, raising the barrier to entry. This changes the default behaviour to do a simple `NOP` instead, adding documentation how to provide a custom `idle` task achieving the old default behaviour. Also removes the automatic setting of SLEEPONEXIT bit when no `idle` was provided, delegating this to the user. This was discussed on the weekly meeting 2021-12-14 and this was the favoured solution. Fixes #561 Co-authored-by: Henrik Tjäder <henrik@grepit.se>
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37facfb5bf
8 changed files with 81 additions and 18 deletions
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@ -5,6 +5,10 @@ This project adheres to [Semantic Versioning](http://semver.org/).
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## [Unreleased]
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### Changed
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- Change default `idle` behaviour to be `NOP` instead of `WFI`
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## [v0.6.0-rc.4] - 2021-11-09
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- Updated to use the new generic `Monotonic` trait
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@ -8,11 +8,6 @@ When present, the runtime will execute the `idle` task after `init`. Unlike
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`init`, `idle` will run *with interrupts enabled* and it's not allowed to return
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so it must run forever.
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When no `idle` function is declared, the runtime sets the [SLEEPONEXIT] bit and
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then sends the microcontroller to sleep after running `init`.
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[SLEEPONEXIT]: https://developer.arm.com/docs/100737/0100/power-management/sleep-mode/sleep-on-exit-bit
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Like in `init`, locally declared resources will have `'static` lifetimes that are safe to access.
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The example below shows that `idle` runs after `init`.
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@ -25,3 +20,29 @@ The example below shows that `idle` runs after `init`.
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$ cargo run --target thumbv7m-none-eabi --example idle
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{{#include ../../../../ci/expected/idle.run}}
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```
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By default the RTIC `idle` task does not try to optimise for any specific targets.
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A common useful optimisation is to enable the [SLEEPONEXIT] and allow the MCU
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to enter sleep when reaching `idle`.
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>**Caution** some hardware unless configured disables the debug unit during sleep mode.
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>
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>Consult your hardware specific documentation as this is outside the scope of RTIC.
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The following example shows how to enable sleep by setting the
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[`SLEEPONEXIT`][SLEEPONEXIT] and providing a custom `idle` task replacing the
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default [`nop()`][NOP] with [`wfi()`][WFI].
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[SLEEPONEXIT]: https://developer.arm.com/docs/100737/0100/power-management/sleep-mode/sleep-on-exit-bit
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[WFI]: https://developer.arm.com/documentation/dui0662/b/The-Cortex-M0--Instruction-Set/Miscellaneous-instructions/WFI
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[NOP]: https://developer.arm.com/documentation/dui0662/b/The-Cortex-M0--Instruction-Set/Miscellaneous-instructions/NOP
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``` rust
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{{#include ../../../../examples/idle-wfi.rs}}
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```
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``` console
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$ cargo run --target thumbv7m-none-eabi --example idle-wfi
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{{#include ../../../../ci/expected/idle-wfi.run}}
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```
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@ -70,11 +70,6 @@ $ cargo run --example init
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`init`, `idle` будет запущена *с включенными прерываниями* и она не может вернуть результат,
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а значит должна работать вечно.
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Если функция `idle` не определена, среда вполнения устанавливает бит [SLEEPONEXIT], а затем
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отправляет микроконтроллер в сон после запуска `init`.
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[SLEEPONEXIT]: https://developer.arm.com/docs/100737/0100/Power-management/Sleep-mode/Sleep-on-exit-bit
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Как и в `init`, `static mut` переменные будут трансформированы в `&'static mut` ссылки,
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безопасные для доступа. Обратите внимание, данная возможность может
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быть удалена в следующем релизе, см. `task_local` ресурсы.
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2
ci/expected/idle-wfi.run
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2
ci/expected/idle-wfi.run
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@ -0,0 +1,2 @@
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init
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idle
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47
examples/idle-wfi.rs
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47
examples/idle-wfi.rs
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//! examples/idle-wfi.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)]
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mod app {
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use cortex_m_semihosting::{debug, hprintln};
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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(mut cx: init::Context) -> (Shared, Local, init::Monotonics) {
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hprintln!("init").unwrap();
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// Set the ARM SLEEPONEXIT bit to go to sleep after handling interrupts
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// See https://developer.arm.com/docs/100737/0100/power-management/sleep-mode/sleep-on-exit-bit
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cx.core.SCB.set_sleepdeep();
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(Shared {}, Local {}, init::Monotonics())
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}
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#[idle(local = [x: u32 = 0])]
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fn idle(cx: idle::Context) -> ! {
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// Locals in idle have lifetime 'static
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let _x: &'static mut u32 = cx.local.x;
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hprintln!("idle").unwrap();
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debug::exit(debug::EXIT_SUCCESS); // Exit QEMU simulator
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loop {
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// Now Wait For Interrupt is used instead of a busy-wait loop
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// to allow MCU to sleep between interrupts
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// https://developer.arm.com/documentation/ddi0406/c/Application-Level-Architecture/Instruction-Details/Alphabetical-list-of-instructions/WFI
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rtic::export::wfi()
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}
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}
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}
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@ -85,7 +85,7 @@ pub fn codegen(
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vec![],
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None,
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quote!(loop {
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rtic::export::wfi()
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rtic::export::nop()
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}),
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)
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}
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@ -122,12 +122,5 @@ pub fn codegen(app: &App, analysis: &Analysis, extra: &Extra) -> Vec<TokenStream
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));
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}
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}
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// If there's no user `#[idle]` then optimize returning from interrupt handlers
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if app.idle.is_none() {
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// Set SLEEPONEXIT bit to enter sleep mode when returning from ISR
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stmts.push(quote!(core.SCB.scr.modify(|r| r | 1 << 1);));
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}
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stmts
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}
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@ -6,6 +6,7 @@ use core::{
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pub use crate::tq::{NotReady, TimerQueue};
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pub use bare_metal::CriticalSection;
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pub use cortex_m::{
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asm::nop,
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asm::wfi,
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interrupt,
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peripheral::{scb::SystemHandler, DWT, NVIC, SCB, SYST},
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