add homogeneous multi-core support

This commit is contained in:
Jorge Aparicio 2019-06-18 10:31:31 +02:00
parent 81275bfa4f
commit 9897728709
33 changed files with 385 additions and 53 deletions

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@ -74,6 +74,7 @@ compiletest_rs = "0.3.22"
[features]
heterogeneous = ["cortex-m-rtfm-macros/heterogeneous", "microamp"]
homogeneous = ["cortex-m-rtfm-macros/homogeneous", "microamp"]
# used for testing this crate; do not use in applications
__v7 =[]
@ -83,6 +84,7 @@ lto = true
[workspace]
members = [
"heterogeneous",
"homogeneous",
"macros",
"mc",
]

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@ -43,7 +43,7 @@ main() {
cargo test --test multi --features heterogeneous --target $T
# multi-core compile-pass tests
pushd mc
pushd heterogeneous
local exs=(
smallest
x-init-2
@ -91,6 +91,8 @@ main() {
cargo check --target $T --examples --features __v7
fi
cargo check -p homogeneous --target $T --examples
# run-pass tests
case $T in
thumbv6m-none-eabi | thumbv7m-none-eabi)

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@ -1,13 +1,13 @@
[package]
authors = ["Jorge Aparicio <jorge@japaric.io>"]
edition = "2018"
name = "mc"
name = "heterogeneous"
# this crate is only used for testing
publish = false
version = "0.0.0-alpha.0"
[dependencies]
cortex-m = "0.6.0"
bare-metal = "0.2.4"
[dependencies.cortex-m-rtfm]
path = ".."

1
heterogeneous/README.md Normal file
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@ -0,0 +1 @@
This directory contains *heterogeneous* multi-core compile pass tests.

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@ -0,0 +1,7 @@
#![no_main]
#![no_std]
use panic_halt as _;
#[rtfm::app(cores = 2, device = heterogeneous)]
const APP: () = {};

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@ -0,0 +1,39 @@
//! [compile-pass] Cross initialization of late resources
#![deny(unsafe_code)]
#![deny(warnings)]
#![no_main]
#![no_std]
use panic_halt as _;
#[rtfm::app(cores = 2, device = heterogeneous)]
const APP: () = {
extern "C" {
// owned by core #1 but initialized by core #0
static mut X: u32;
// owned by core #0 but initialized by core #1
static mut Y: u32;
}
#[init(core = 0, late = [X])]
fn a(_: a::Context) -> a::LateResources {
a::LateResources { X: 0 }
}
#[idle(core = 0, resources = [Y])]
fn b(_: b::Context) -> ! {
loop {}
}
#[init(core = 1)]
fn c(_: c::Context) -> c::LateResources {
c::LateResources { Y: 0 }
}
#[idle(core = 1, resources = [X])]
fn d(_: d::Context) -> ! {
loop {}
}
};

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@ -0,0 +1,26 @@
//! [compile-pass] Split initialization of late resources
#![deny(unsafe_code)]
#![deny(warnings)]
#![no_main]
#![no_std]
use panic_halt as _;
#[rtfm::app(cores = 2, device = heterogeneous)]
const APP: () = {
extern "C" {
static mut X: u32;
static mut Y: u32;
}
#[init(core = 0, late = [X])]
fn a(_: a::Context) -> a::LateResources {
a::LateResources { X: 0 }
}
#[init(core = 1)]
fn b(_: b::Context) -> b::LateResources {
b::LateResources { Y: 0 }
}
};

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@ -0,0 +1,36 @@
#![no_main]
#![no_std]
use panic_halt as _;
#[rtfm::app(cores = 2, device = heterogeneous, monotonic = heterogeneous::MT)]
const APP: () = {
#[init(core = 0, spawn = [ping])]
fn init(c: init::Context) {
c.spawn.ping().ok();
}
#[task(core = 0, schedule = [ping])]
fn pong(c: pong::Context) {
c.schedule.ping(c.scheduled + 1_000_000).ok();
}
#[task(core = 1, schedule = [pong])]
fn ping(c: ping::Context) {
c.schedule.pong(c.scheduled + 1_000_000).ok();
}
extern "C" {
#[core = 0]
fn I0();
#[core = 0]
fn I1();
#[core = 1]
fn I0();
#[core = 1]
fn I1();
}
};

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@ -0,0 +1,20 @@
#![no_main]
#![no_std]
use panic_halt as _;
#[rtfm::app(cores = 2, device = heterogeneous)]
const APP: () = {
#[init(core = 0, spawn = [foo])]
fn init(c: init::Context) {
c.spawn.foo().ok();
}
#[task(core = 1)]
fn foo(_: foo::Context) {}
extern "C" {
#[core = 1]
fn I0();
}
};

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@ -7,14 +7,15 @@ use core::{
ops::{Add, Sub},
};
use cortex_m::interrupt::Nr;
use bare_metal::Nr;
use rtfm::Monotonic;
// both cores have the exact same interrupts
pub use Interrupt_0 as Interrupt_1;
// Fake priority bits
pub const NVIC_PRIO_BITS: u8 = 3;
pub struct CrossPend;
pub fn xpend(_core: u8, _interrupt: impl Nr) {}
/// Fake monotonic timer
@ -72,28 +73,22 @@ impl PartialOrd for Instant {
}
// Fake interrupts
pub enum Interrupt {
I0,
I1,
I2,
I3,
I4,
I5,
I6,
I7,
#[allow(non_camel_case_types)]
#[derive(Clone, Copy)]
#[repr(u8)]
pub enum Interrupt_0 {
I0 = 0,
I1 = 1,
I2 = 2,
I3 = 3,
I4 = 4,
I5 = 5,
I6 = 6,
I7 = 7,
}
unsafe impl Nr for Interrupt {
unsafe impl Nr for Interrupt_0 {
fn nr(&self) -> u8 {
match self {
Interrupt::I0 => 0,
Interrupt::I1 => 1,
Interrupt::I2 => 2,
Interrupt::I3 => 3,
Interrupt::I4 => 4,
Interrupt::I5 => 5,
Interrupt::I6 => 6,
Interrupt::I7 => 7,
}
*self as u8
}
}

17
homogeneous/Cargo.toml Normal file
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@ -0,0 +1,17 @@
[package]
authors = ["Jorge Aparicio <jorge@japaric.io>"]
edition = "2018"
name = "homogeneous"
# this crate is only used for testing
publish = false
version = "0.0.0-alpha.0"
[dependencies]
bare-metal = "0.2.4"
[dependencies.cortex-m-rtfm]
path = ".."
features = ["homogeneous"]
[dev-dependencies]
panic-halt = "0.2.0"

1
homogeneous/README.md Normal file
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@ -0,0 +1 @@
This directory contains *homogeneous* multi-core compile pass tests.

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@ -3,5 +3,5 @@
use panic_halt as _;
#[rtfm::app(cores = 2, device = mc)]
#[rtfm::app(cores = 2, device = homogeneous)]
const APP: () = {};

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@ -7,7 +7,7 @@
use panic_halt as _;
#[rtfm::app(cores = 2, device = mc)]
#[rtfm::app(cores = 2, device = homogeneous)]
const APP: () = {
extern "C" {
// owned by core #1 but initialized by core #0

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@ -7,7 +7,7 @@
use panic_halt as _;
#[rtfm::app(cores = 2, device = mc)]
#[rtfm::app(cores = 2, device = homogeneous)]
const APP: () = {
extern "C" {
static mut X: u32;

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@ -3,7 +3,7 @@
use panic_halt as _;
#[rtfm::app(cores = 2, device = mc, monotonic = mc::MT)]
#[rtfm::app(cores = 2, device = homogeneous, monotonic = homogeneous::MT)]
const APP: () = {
#[init(core = 0, spawn = [ping])]
fn init(c: init::Context) {

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@ -3,7 +3,7 @@
use panic_halt as _;
#[rtfm::app(cores = 2, device = mc)]
#[rtfm::app(cores = 2, device = homogeneous)]
const APP: () = {
#[init(core = 0, spawn = [foo])]
fn init(c: init::Context) {

94
homogeneous/src/lib.rs Normal file
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@ -0,0 +1,94 @@
//! Fake multi-core PAC
#![no_std]
use core::{
cmp::Ordering,
ops::{Add, Sub},
};
use bare_metal::Nr;
use rtfm::Monotonic;
// both cores have the exact same interrupts
pub use Interrupt_0 as Interrupt_1;
// Fake priority bits
pub const NVIC_PRIO_BITS: u8 = 3;
pub fn xpend(_core: u8, _interrupt: impl Nr) {}
/// Fake monotonic timer
pub struct MT;
unsafe impl Monotonic for MT {
type Instant = Instant;
fn ratio() -> u32 {
1
}
unsafe fn reset() {
(0xE0001004 as *mut u32).write_volatile(0)
}
fn now() -> Instant {
unsafe { Instant((0xE0001004 as *const u32).read_volatile() as i32) }
}
fn zero() -> Instant {
Instant(0)
}
}
#[derive(Clone, Copy, Eq, PartialEq)]
pub struct Instant(i32);
impl Add<u32> for Instant {
type Output = Instant;
fn add(self, rhs: u32) -> Self {
Instant(self.0.wrapping_add(rhs as i32))
}
}
impl Sub for Instant {
type Output = u32;
fn sub(self, rhs: Self) -> u32 {
self.0.checked_sub(rhs.0).unwrap() as u32
}
}
impl Ord for Instant {
fn cmp(&self, rhs: &Self) -> Ordering {
self.0.wrapping_sub(rhs.0).cmp(&0)
}
}
impl PartialOrd for Instant {
fn partial_cmp(&self, rhs: &Self) -> Option<Ordering> {
Some(self.cmp(rhs))
}
}
// Fake interrupts
#[allow(non_camel_case_types)]
#[derive(Clone, Copy)]
#[repr(u8)]
pub enum Interrupt_0 {
I0 = 0,
I1 = 1,
I2 = 2,
I3 = 3,
I4 = 4,
I5 = 5,
I6 = 6,
I7 = 7,
}
unsafe impl Nr for Interrupt_0 {
fn nr(&self) -> u8 {
*self as u8
}
}

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@ -24,3 +24,4 @@ git = "https://github.com/japaric/rtfm-syntax"
[features]
heterogeneous = []
homogeneous = []

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@ -20,6 +20,28 @@ impl<'a> Extra<'a> {
}
pub fn app<'a>(app: &'a App, analysis: &Analysis) -> parse::Result<Extra<'a>> {
if cfg!(feature = "homogeneous") {
// this RTFM mode uses the same namespace for all cores so we need to check that the
// identifiers used for each core `#[init]` and `#[idle]` functions don't collide
let mut seen = HashSet::new();
for name in app
.inits
.values()
.map(|init| &init.name)
.chain(app.idles.values().map(|idle| &idle.name))
{
if seen.contains(name) {
return Err(parse::Error::new(
name.span(),
"this identifier is already being used by another core",
));
} else {
seen.insert(name);
}
}
}
// check that all exceptions are valid; only exceptions with configurable priorities are
// accepted
for (name, task) in app

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@ -67,10 +67,11 @@ pub fn app(app: &App, analysis: &Analysis, extra: &Extra) -> TokenStream2 {
));
let cfg_core = util::cfg_core(core, app.args.cores);
let main = util::suffixed("main", core);
mains.push(quote!(
#[no_mangle]
#cfg_core
unsafe fn main() -> ! {
unsafe extern "C" fn #main() -> ! {
#(#assertion_stmts)*
#(#pre_init_stmts)*

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@ -55,8 +55,14 @@ pub fn codegen(app: &App, analysis: &Analysis, extra: &Extra) -> Vec<TokenStream
})),
)
} else {
let shared = if cfg!(feature = "heterogeneous") {
Some(quote!(#[rtfm::export::shared]))
} else {
None
};
(
Some(quote!(#[rtfm::export::shared])),
shared,
quote!(rtfm::export::MCRQ<#t, #n>),
quote!(rtfm::export::Queue(rtfm::export::iQueue::u8())),
)
@ -156,7 +162,7 @@ pub fn codegen(app: &App, analysis: &Analysis, extra: &Extra) -> Vec<TokenStream
receiver, level
);
let cfg_receiver = util::cfg_core(receiver, app.args.cores);
let interrupt = &interrupts[&level];
let interrupt = util::suffixed(&interrupts[&level].to_string(), receiver);
items.push(quote!(
#[allow(non_snake_case)]
#[doc = #doc]

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@ -49,7 +49,11 @@ pub fn codegen(
quote!(#name::Locals::new(),)
};
let symbol = task.args.binds(name);
let symbol = if cfg!(feature = "homogeneous") {
util::suffixed(&task.args.binds(name).to_string(), core)
} else {
task.args.binds(name).clone()
};
let priority = task.args.priority;
const_app.push(quote!(

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@ -27,9 +27,16 @@ pub fn codegen(
// initialized
if analysis.initialization_barriers.contains_key(&core) {
let ib = util::init_barrier(core);
let shared = if cfg!(feature = "heterogeneous") {
Some(quote!(
#[rtfm::export::shared]
))
} else {
None
};
const_app.push(quote!(
#[rtfm::export::shared]
#shared
static #ib: rtfm::export::Barrier = rtfm::export::Barrier::new();
));
@ -84,9 +91,16 @@ pub fn codegen(
if core == FIRST {
for &i in analysis.timer_queues.keys() {
let rv = util::rendezvous_ident(i);
let shared = if cfg!(feature = "heterogeneous") {
Some(quote!(
#[rtfm::export::shared]
))
} else {
None
};
const_app.push(quote!(
#[rtfm::export::shared]
#shared
static #rv: rtfm::export::Barrier = rtfm::export::Barrier::new();
));

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@ -39,7 +39,8 @@ pub fn codegen(
}
stmts.push(quote!(
let mut core = rtfm::export::Peripherals::steal();
// NOTE(transmute) to avoid debug_assertion in multi-core mode
let mut core: rtfm::export::Peripherals = core::mem::transmute(());
));
let device = extra.device;
@ -64,25 +65,33 @@ pub fn codegen(
stmts.push(quote!(let _ = [(); ((1 << #nvic_prio_bits) - #priority as usize)];));
// NOTE this also checks that the interrupt exists in the `Interrupt` enumeration
let interrupt = util::interrupt_ident(core, app.args.cores);
stmts.push(quote!(
core.NVIC.set_priority(
#device::Interrupt::#name,
#device::#interrupt::#name,
rtfm::export::logical2hw(#priority, #nvic_prio_bits),
);
));
// NOTE unmask the interrupt *after* setting its priority: changing the priority of a pended
// interrupt is implementation defined
stmts.push(quote!(core.NVIC.enable(#device::Interrupt::#name);));
stmts.push(quote!(core.NVIC.enable(#device::#interrupt::#name);));
}
// cross-spawn barriers: now that priorities have been set and the interrupts have been unmasked
// we are ready to receive messages from *other* cores
if analysis.spawn_barriers.contains_key(&core) {
let sb = util::spawn_barrier(core);
let shared = if cfg!(feature = "heterogeneous") {
Some(quote!(
#[rtfm::export::shared]
))
} else {
None
};
const_app.push(quote!(
#[rtfm::export::shared]
#shared
static #sb: rtfm::export::Barrier = rtfm::export::Barrier::new();
));

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@ -33,7 +33,13 @@ pub fn codegen(
} => util::cfg_core(*core, app.args.cores),
// shared `static`s and cross-initialized resources need to be in `.shared` memory
_ => Some(quote!(#[rtfm::export::shared])),
_ => {
if cfg!(feature = "heterogeneous") {
Some(quote!(#[rtfm::export::shared]))
} else {
None
}
}
};
let (ty, expr) = if let Some(expr) = expr {

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@ -52,8 +52,14 @@ pub fn codegen(
})),
)
} else {
let shared = if cfg!(feature = "heterogeneous") {
Some(quote!(#[rtfm::export::shared]))
} else {
None
};
(
Some(quote!(#[rtfm::export::shared])),
shared,
quote!(rtfm::export::MCFQ<#cap_ty>),
quote!(rtfm::export::Queue(rtfm::export::iQueue::u8())),
)

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@ -45,14 +45,15 @@ pub fn codegen(
};
let device = extra.device;
let enum_ = util::interrupt_ident(receiver, app.args.cores);
let interrupt = &analysis.interrupts[&receiver][&priority];
let pend = if sender != receiver {
quote!(
#device::xpend(#receiver, #device::Interrupt::#interrupt);
#device::xpend(#receiver, #device::#enum_::#interrupt);
)
} else {
quote!(
rtfm::pend(#device::Interrupt::#interrupt);
rtfm::pend(#device::#enum_::#interrupt);
)
};

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@ -89,15 +89,16 @@ pub fn codegen(app: &App, analysis: &Analysis, extra: &Extra) -> Vec<TokenStream
let receiver = task.args.core;
let rq = util::rq_ident(receiver, priority, sender);
let rqt = util::spawn_t_ident(receiver, priority, sender);
let enum_ = util::interrupt_ident(receiver, app.args.cores);
let interrupt = &analysis.interrupts[&receiver][&priority];
let pend = if sender != receiver {
quote!(
#device::xpend(#receiver, #device::Interrupt::#interrupt);
#device::xpend(#receiver, #device::#enum_::#interrupt);
)
} else {
quote!(
rtfm::pend(#device::Interrupt::#interrupt);
rtfm::pend(#device::#enum_::#interrupt);
)
};
@ -115,10 +116,11 @@ pub fn codegen(app: &App, analysis: &Analysis, extra: &Extra) -> Vec<TokenStream
.collect::<Vec<_>>();
let priority = timer_queue.priority;
let sys_tick = util::suffixed("SysTick", sender);
items.push(quote!(
#cfg_sender
#[no_mangle]
unsafe fn SysTick() {
unsafe fn #sys_tick() {
use rtfm::Mutex as _;
/// The priority of this handler

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@ -27,9 +27,11 @@ pub fn capacity_typenum(capacity: u8, round_up_to_power_of_two: bool) -> TokenSt
pub fn cfg_core(core: Core, cores: u8) -> Option<TokenStream2> {
if cores == 1 {
None
} else {
} else if cfg!(feature = "heterogeneous") {
let core = core.to_string();
Some(quote!(#[cfg(core = #core)]))
} else {
None
}
}
@ -102,6 +104,15 @@ pub fn instants_ident(task: &Ident, sender: Core) -> Ident {
Ident::new(&format!("{}_S{}_INSTANTS", task, sender), Span::call_site())
}
pub fn interrupt_ident(core: Core, cores: u8) -> Ident {
let span = Span::call_site();
if cores == 1 {
Ident::new("Interrupt", span)
} else {
Ident::new(&format!("Interrupt_{}", core), span)
}
}
/// Generates a pre-reexport identifier for the "late resources" struct
pub fn late_resources_ident(init: &Ident) -> Ident {
Ident::new(
@ -245,6 +256,16 @@ pub fn spawn_t_ident(receiver: Core, priority: u8, sender: Core) -> Ident {
)
}
pub fn suffixed(name: &str, core: u8) -> Ident {
let span = Span::call_site();
if cfg!(feature = "homogeneous") {
Ident::new(&format!("{}_{}", name, core), span)
} else {
Ident::new(name, span)
}
}
/// Generates an identifier for a timer queue
///
/// At most there's one timer queue per core

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@ -20,7 +20,7 @@ pub fn app(args: TokenStream, input: TokenStream) -> TokenStream {
args,
input,
Settings {
parse_cores: cfg!(feature = "heterogeneous"),
parse_cores: cfg!(feature = "heterogeneous") || cfg!(feature = "homogeneous"),
parse_exception: true,
parse_extern_interrupt: true,
parse_interrupt: true,

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@ -1 +0,0 @@
This directory contains multi-core compile pass tests.

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@ -47,7 +47,7 @@ use cortex_m::{
interrupt::Nr,
peripheral::{CBP, CPUID, DCB, DWT, FPB, FPU, ITM, MPU, NVIC, SCB, TPIU},
};
#[cfg(not(feature = "heterogeneous"))]
#[cfg(all(not(feature = "heterogeneous"), not(feature = "homogeneous")))]
use cortex_m_rt as _; // vector table
pub use cortex_m_rtfm_macros::app;
pub use rtfm_core::{Exclusive, Mutex};