Merge branch 'master' into master

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Román Cárdenas 2023-03-29 21:07:36 +02:00 committed by GitHub
commit ce508a1882
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17 changed files with 55 additions and 17 deletions

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@ -7,7 +7,7 @@ All examples in this part of the book are accessible at the
The examples are runnable on QEMU (emulating a Cortex M3 target),
thus no special hardware required to follow along.
[repoexamples]: https://github.com/rtic-rs/rtic/tree/master/examples
[repoexamples]: https://github.com/rtic-rs/rtic/tree/master/rtic/examples
## Running an example

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@ -11,6 +11,7 @@ use syn::Ident;
pub struct Analysis {
parent: analyze::Analysis,
pub interrupts: BTreeMap<Priority, (Ident, Dispatcher)>,
pub max_async_prio: Option<u8>,
}
impl ops::Deref for Analysis {
@ -42,8 +43,16 @@ pub fn app(analysis: analyze::Analysis, app: &App) -> Analysis {
.map(|p| (p, available_interrupt.pop().expect("UNREACHABLE")))
.collect();
let max_async_prio = app
.hardware_tasks
.iter()
.map(|(_, task)| task.args.priority)
.min()
.map(|v| v - 1); // One less than the smallest HW task
Analysis {
parent: analysis,
interrupts,
max_async_prio,
}
}

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@ -45,6 +45,7 @@ pub fn app(app: &App, analysis: &Analysis) -> TokenStream2 {
let device = &app.args.device;
let rt_err = util::rt_err_ident();
let async_limit = bindings::async_prio_limit(app, analysis);
quote!(
/// The RTIC application module
@ -52,6 +53,8 @@ pub fn app(app: &App, analysis: &Analysis) -> TokenStream2 {
/// Always include the device crate which contains the vector table
use #device as #rt_err;
#(#async_limit)*
#(#user_imports)*
#(#user_code)*

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@ -322,3 +322,19 @@ pub fn interrupt_entry(_app: &App, _analysis: &CodegenAnalysis) -> Vec<TokenStre
pub fn interrupt_exit(_app: &App, _analysis: &CodegenAnalysis) -> Vec<TokenStream2> {
vec![]
}
pub fn async_prio_limit(app: &App, analysis: &CodegenAnalysis) -> Vec<TokenStream2> {
let max = if let Some(max) = analysis.max_async_prio {
quote!(#max)
} else {
// No limit
let device = &app.args.device;
quote!(1 << #device::NVIC_PRIO_BITS)
};
vec![quote!(
/// Holds the maximum priority level for use by async HAL drivers.
#[no_mangle]
static RTIC_ASYNC_MAX_LOGICAL_PRIO: u8 = #max;
)]
}

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@ -42,3 +42,7 @@ pub fn interrupt_entry(_app: &App, _analysis: &CodegenAnalysis) -> Vec<TokenStre
pub fn interrupt_exit(_app: &App, _analysis: &CodegenAnalysis) -> Vec<TokenStream2> {
vec![]
}
pub fn async_prio_limit(app: &App, _analysis: &CodegenAnalysis) -> Vec<TokenStream2> {
vec![]
}

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@ -289,11 +289,13 @@ fn task_args(tokens: TokenStream2) -> parse::Result<Either<HardwareTaskArgs, Sof
// Handle comma: ,
let _: Token![,] = content.parse()?;
}
let priority = priority.unwrap_or(1);
let shared_resources = shared_resources.unwrap_or_default();
let local_resources = local_resources.unwrap_or_default();
Ok(if let Some(binds) = binds {
// Hardware tasks can't run at anything lower than 1
let priority = priority.unwrap_or(1);
if priority == 0 {
return Err(parse::Error::new(
prio_span.unwrap(),
@ -308,6 +310,9 @@ fn task_args(tokens: TokenStream2) -> parse::Result<Either<HardwareTaskArgs, Sof
local_resources,
})
} else {
// Software tasks start at idle priority
let priority = priority.unwrap_or(0);
Either::Right(SoftwareTaskArgs {
priority,
shared_resources,

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@ -138,7 +138,7 @@ impl embedded_hal_async::delay::DelayUs for Timer {
/// Register the Timer interrupt for the monotonic.
#[macro_export]
macro_rules! make_rp2040_monotonic_handler {
macro_rules! create_rp2040_monotonic_token {
() => {{
#[no_mangle]
#[allow(non_snake_case)]

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@ -156,7 +156,7 @@ impl embedded_hal_async::delay::DelayUs for Systick {
/// Register the Systick interrupt for the monotonic.
#[macro_export]
macro_rules! make_systick_handler {
macro_rules! create_systick_token {
() => {{
#[no_mangle]
#[allow(non_snake_case)]

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@ -15,6 +15,7 @@ For each category, *Added*, *Changed*, *Fixed* add new entries at the top!
- `cortex-m` set as an optional dependency
- Moved `cortex-m`-related utilities from `rtic/lib.rs` to `rtic/export.rs`
- Make async task priorities start at 0, instead of 1, to always start at the lowest priority
## [v1.1.4] - 2023-02-26

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@ -24,7 +24,7 @@ mod app {
fn init(cx: init::Context) -> (Shared, Local) {
hprintln!("init");
let systick_token = rtic_monotonics::make_systick_handler!();
let systick_token = rtic_monotonics::create_systick_token!();
Systick::start(cx.core.SYST, 12_000_000, systick_token);
foo::spawn().ok();

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@ -53,13 +53,13 @@ mod app {
hprintln!("hello from hw");
}
#[task(shared = [a])]
#[task(shared = [a], priority = 1)]
async fn async_task(cx: async_task::Context) {
let async_task::SharedResources { a: _, .. } = cx.shared;
hprintln!("hello from async");
}
#[task]
#[task(priority = 1)]
async fn async_task_args(_cx: async_task_args::Context, a: u32, b: i32) {
hprintln!("hello from async with args a: {}, b: {}", a, b);
}

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@ -27,7 +27,7 @@ mod app {
fn init(cx: init::Context) -> (Shared, Local) {
hprintln!("init");
let systick_token = rtic_monotonics::make_systick_handler!();
let systick_token = rtic_monotonics::create_systick_token!();
Systick::start(cx.core.SYST, 12_000_000, systick_token);
foo::spawn().ok();

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@ -62,7 +62,7 @@ mod app {
}
// `local_to_foo` can only be accessed from this context
#[task(local = [local_to_foo])]
#[task(local = [local_to_foo], priority = 1)]
async fn foo(cx: foo::Context) {
let local_to_foo = cx.local.local_to_foo;
*local_to_foo += 1;
@ -74,7 +74,7 @@ mod app {
}
// `local_to_bar` can only be accessed from this context
#[task(local = [local_to_bar])]
#[task(local = [local_to_bar], priority = 1)]
async fn bar(cx: bar::Context) {
let local_to_bar = cx.local.local_to_bar;
*local_to_bar += 1;

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@ -38,7 +38,7 @@ mod app {
}
// Direct destructure
#[task(shared = [&a, &b, &c])]
#[task(shared = [&a, &b, &c], priority = 1)]
async fn foo(cx: foo::Context) {
let a = cx.shared.a;
let b = cx.shared.b;
@ -48,7 +48,7 @@ mod app {
}
// De-structure-ing syntax
#[task(shared = [&a, &b, &c])]
#[task(shared = [&a, &b, &c], priority = 1)]
async fn bar(cx: bar::Context) {
let bar::SharedResources { a, b, c, .. } = cx.shared;

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@ -62,7 +62,7 @@ mod app {
}
// `local_to_foo` can only be accessed from this context
#[task(local = [local_to_foo])]
#[task(local = [local_to_foo], priority = 1)]
async fn foo(cx: foo::Context) {
let local_to_foo = cx.local.local_to_foo;
*local_to_foo += 1;
@ -74,7 +74,7 @@ mod app {
}
// `local_to_bar` can only be accessed from this context
#[task(local = [local_to_bar])]
#[task(local = [local_to_bar], priority = 1)]
async fn bar(cx: bar::Context) {
let local_to_bar = cx.local.local_to_bar;
*local_to_bar += 1;

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@ -54,13 +54,13 @@ mod app {
loop {}
}
#[task(shared = [&shared])]
#[task(shared = [&shared], priority = 1)]
async fn foo(c: foo::Context) {
let shared: &NotSync = c.shared.shared;
hprintln!("foo a {}", shared.data);
}
#[task(shared = [&shared])]
#[task(shared = [&shared], priority = 1)]
async fn bar(c: bar::Context) {
let shared: &NotSync = c.shared.shared;
hprintln!("bar a {}", shared.data);

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@ -51,7 +51,7 @@ mod app {
}
}
#[task(local = [p, state: u32 = 0])]
#[task(local = [p, state: u32 = 0], priority = 1)]
async fn foo(c: foo::Context) {
*c.local.state += 1;