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https://github.com/rtic-rs/rtic.git
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first attemtp to support Exclusive
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4 changed files with 252 additions and 0 deletions
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@ -56,6 +56,8 @@ version = '0.5.3'
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[lib]
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name = 'rtic'
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# path = "../rtic-core"
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[patch.crates-io.rtic-core]
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git = 'https://github.com/rtic-rs/rtic-core.git'
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branch = 'immutable_resource_proxies'
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83
examples/lock5.rs
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83
examples/lock5.rs
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@ -0,0 +1,83 @@
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//! examples/lock.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 cortex_m_semihosting::{debug, hprintln};
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use lm3s6965::Interrupt;
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use panic_semihosting as _;
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use rtic::Mutex;
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use rtic_core::Exclusive;
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#[rtic::app(device = lm3s6965)]
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const APP: () = {
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struct Resources {
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#[init(0)]
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shared: u32,
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}
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#[init]
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fn init(_: init::Context) {
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rtic::pend(Interrupt::GPIOA);
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}
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// when omitted priority is assumed to be `1`
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#[task(binds = GPIOA, resources = [shared])]
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fn gpioa(c: gpioa::Context) {
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hprintln!("A").unwrap();
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// the lower priority task requires a critical section to access the data
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c.resources.shared.lock(|shared| {
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// data can only be modified within this critical section (closure)
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*shared += 1;
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// GPIOB will *not* run right now due to the critical section
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rtic::pend(Interrupt::GPIOB);
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hprintln!("B - shared = {}", *shared).unwrap();
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// GPIOC does not contend for `shared` so it's allowed to run now
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rtic::pend(Interrupt::GPIOC);
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});
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// critical section is over: GPIOB can now start
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hprintln!("E").unwrap();
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debug::exit(debug::EXIT_SUCCESS);
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}
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#[task(binds = GPIOB, priority = 2, resources = [shared])]
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fn gpiob(c: gpiob::Context) {
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c.resources.shared.lock(|shared| {
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*shared += 1;
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hprintln!("D - shared = {}", shared).unwrap();
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});
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}
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#[task(binds = GPIOC, priority = 3, resources = [shared])]
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fn gpioc(c: gpioc::Context) {
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static mut STATE: u32 = 0;
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hprintln!("GPIOC(STATE = {})", *STATE).unwrap();
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*c.resources.shared += 2;
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let ex_shared = Exclusive(c.resources.shared);
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advance(STATE, ex_shared); // try swap order of (1)
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*c.resources.shared += 3; // and (2), will fail
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hprintln!("GPIOC(STATE = {})", *STATE).unwrap();
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}
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};
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// the second parameter is generic: it can be any type that implements the `Mutex` trait
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fn advance(state: &mut u32, shared: impl Mutex<T = u32>) {
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*state += 1;
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let (old, new) = shared.lock(|shared: &mut u32| {
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let old = *shared;
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*shared += *state;
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(old, *shared)
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});
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hprintln!("shared: {} -> {}", old, new).unwrap();
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}
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85
examples/lock6.rs
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85
examples/lock6.rs
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@ -0,0 +1,85 @@
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//! examples/lock.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 cortex_m_semihosting::{debug, hprintln};
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use lm3s6965::Interrupt;
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use panic_semihosting as _;
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use rtic::Mutex;
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use rtic_core::Exclusive;
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#[rtic::app(device = lm3s6965)]
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const APP: () = {
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struct Resources {
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#[init(0)]
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shared: u32,
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}
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#[init]
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fn init(_: init::Context) {
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rtic::pend(Interrupt::GPIOA);
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}
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// when omitted priority is assumed to be `1`
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#[task(binds = GPIOA, resources = [shared])]
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fn gpioa(c: gpioa::Context) {
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hprintln!("A").unwrap();
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// the lower priority task requires a critical section to access the data
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c.resources.shared.lock(|shared| {
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// data can only be modified within this critical section (closure)
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*shared += 1;
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// GPIOB will *not* run right now due to the critical section
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rtic::pend(Interrupt::GPIOB);
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hprintln!("B - shared = {}", *shared).unwrap();
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// GPIOC does not contend for `shared` so it's allowed to run now
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rtic::pend(Interrupt::GPIOC);
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});
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// critical section is over: GPIOB can now start
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hprintln!("E").unwrap();
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debug::exit(debug::EXIT_SUCCESS);
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}
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#[task(binds = GPIOB, priority = 2, resources = [shared])]
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fn gpiob(c: gpiob::Context) {
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c.resources.shared.lock(|shared| {
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*shared += 1;
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hprintln!("D - shared = {}", shared).unwrap();
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});
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}
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#[task(binds = GPIOC, priority = 3, resources = [shared])]
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fn gpioc(c: gpioc::Context) {
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static mut STATE: u32 = 0;
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hprintln!("GPIOC(STATE = {})", *STATE).unwrap();
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*c.resources.shared += 2;
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let mut ex_shared = Exclusive(c.resources.shared);
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// a mutable exclusive is still possible to DerefMut
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*ex_shared += 1;
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advance(STATE, ex_shared); // try swap order of (1)
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*c.resources.shared += 3; // and (2), will fail
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hprintln!("GPIOC(STATE = {})", *STATE).unwrap();
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}
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};
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// the second parameter is generic: it can be any type that implements the `Mutex` trait
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fn advance(state: &mut u32, shared: impl Mutex<T = u32>) {
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*state += 1;
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let (old, new) = shared.lock(|shared: &mut u32| {
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let old = *shared;
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*shared += *state;
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(old, *shared)
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});
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hprintln!("shared: {} -> {}", old, new).unwrap();
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}
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82
examples/lock7.rs
Normal file
82
examples/lock7.rs
Normal file
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@ -0,0 +1,82 @@
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//! examples/lock.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 cortex_m_semihosting::{debug, hprintln};
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use lm3s6965::Interrupt;
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use panic_semihosting as _;
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use rtic::Mutex;
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use rtic_core::Exclusive;
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#[rtic::app(device = lm3s6965)]
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const APP: () = {
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struct Resources {
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#[init(0)]
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shared: u32,
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}
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#[init]
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fn init(_: init::Context) {
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rtic::pend(Interrupt::GPIOA);
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}
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// when omitted priority is assumed to be `1`
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#[task(binds = GPIOA, resources = [shared])]
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fn gpioa(c: gpioa::Context) {
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hprintln!("A").unwrap();
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// the lower priority task requires a critical section to access the data
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c.resources.shared.lock(|shared| {
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// data can only be modified within this critical section (closure)
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*shared += 1;
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// GPIOB will *not* run right now due to the critical section
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rtic::pend(Interrupt::GPIOB);
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hprintln!("B - shared = {}", *shared).unwrap();
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// GPIOC does not contend for `shared` so it's allowed to run now
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rtic::pend(Interrupt::GPIOC);
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});
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// critical section is over: GPIOB can now start
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hprintln!("E").unwrap();
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debug::exit(debug::EXIT_SUCCESS);
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}
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#[task(binds = GPIOB, priority = 2, resources = [shared])]
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fn gpiob(c: gpiob::Context) {
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c.resources.shared.lock(|shared| {
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*shared += 1;
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hprintln!("D - shared = {}", shared).unwrap();
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});
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}
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#[task(binds = GPIOC, priority = 3, resources = [shared])]
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fn gpioc(c: gpioc::Context) {
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static mut STATE: u32 = 0;
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hprintln!("GPIOC(STATE = {})", *STATE).unwrap();
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*c.resources.shared += 2;
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advance(STATE, *c.resources.shared); // try swap order of (1)
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*c.resources.shared += 3; // and (2), will fail
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hprintln!("GPIOC(STATE = {})", *STATE).unwrap();
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}
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};
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// the second parameter is generic: it can be any type that implements the `Mutex` trait
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fn advance(state: &mut u32, shared: impl Mutex<T = u32>) {
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*state += 1;
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let (old, new) = shared.lock(|shared: &mut u32| {
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let old = *shared;
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*shared += *state;
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(old, *shared)
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});
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hprintln!("shared: {} -> {}", old, new).unwrap();
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}
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