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task_local and lock_free analysis (take 1)
This commit is contained in:
parent
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commit
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7 changed files with 444 additions and 1 deletions
79
examples/local.rs
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79
examples/local.rs
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@ -0,0 +1,79 @@
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//! examples/local.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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#[rtfm::app(device = lm3s6965)]
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const APP: () = {
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struct Resources {
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// An early resource
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#[init(0)]
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shared: u32,
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// A local (move), early resource
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#[task_local]
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#[init(1)]
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l1: u32,
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// An exclusive, early resource
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#[lock_free]
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#[init(1)]
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e1: u32,
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// A local (move), late resource
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#[task_local]
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l2: u32,
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// An exclusive, late resource
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#[lock_free]
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e2: u32,
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}
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#[init]
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fn init(_: init::Context) -> init::LateResources {
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rtfm::pend(Interrupt::UART0);
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rtfm::pend(Interrupt::UART1);
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init::LateResources { e2: 2, l2: 2 }
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}
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// `shared` cannot be accessed from this context
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// l1 ok (task_local)
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// e2 ok (lock_free)
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#[idle(resources =[l1, e2])]
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fn idle(cx: idle::Context) -> ! {
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hprintln!("IDLE:l1 = {}", cx.resources.l1).unwrap();
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hprintln!("IDLE:e2 = {}", cx.resources.e2).unwrap();
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debug::exit(debug::EXIT_SUCCESS);
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loop {}
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}
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// `shared` can be accessed from this context
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// l2 ok (task_local)
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// e1 ok (lock_free)
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#[task(priority = 1, binds = UART0, resources = [shared, l2, e1])]
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fn uart0(cx: uart0::Context) {
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let shared: &mut u32 = cx.resources.shared;
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*shared += 1;
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*cx.resources.e1 += 10;
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hprintln!("UART0: shared = {}", shared).unwrap();
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hprintln!("UART0:l2 = {}", cx.resources.l2).unwrap();
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hprintln!("UART0:e1 = {}", cx.resources.e1).unwrap();
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}
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// `shared` can be accessed from this context
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// e1 ok (lock_free)
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#[task(priority = 1, binds = UART1, resources = [shared, e1])]
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fn uart1(cx: uart1::Context) {
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let shared: &mut u32 = cx.resources.shared;
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*shared += 1;
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hprintln!("UART1: shared = {}", shared).unwrap();
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hprintln!("UART1:e1 = {}", cx.resources.e1).unwrap();
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}
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};
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82
examples/local_err.rs
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82
examples/local_err.rs
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@ -0,0 +1,82 @@
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//! examples/local_err.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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// errors here, since we cannot bail compilation or generate stubs
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// run cargo expand, then you see the root of the problem...
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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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#[rtfm::app(device = lm3s6965)]
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const APP: () = {
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struct Resources {
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// An early resource
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#[init(0)]
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shared: u32,
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// A local (move), early resource
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#[task_local]
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#[init(1)]
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l1: u32,
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// An exclusive, early resource
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#[lock_free]
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#[init(1)]
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e1: u32,
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// A local (move), late resource
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#[task_local]
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l2: u32,
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// An exclusive, late resource
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#[lock_free]
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e2: u32,
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}
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#[init]
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fn init(_: init::Context) -> init::LateResources {
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rtfm::pend(Interrupt::UART0);
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rtfm::pend(Interrupt::UART1);
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init::LateResources { e2: 2, l2: 2 }
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}
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// `shared` cannot be accessed from this context
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// l1 ok
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// l2 rejeceted (not task_local)
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// e2 ok
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#[idle(resources =[l1, l2, e2])]
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fn idle(cx: idle::Context) -> ! {
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hprintln!("IDLE:l1 = {}", cx.resources.l1).unwrap();
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hprintln!("IDLE:e2 = {}", cx.resources.e2).unwrap();
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debug::exit(debug::EXIT_SUCCESS);
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loop {}
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}
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// `shared` can be accessed from this context
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// l2 rejected (not task_local)
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// e1 rejected (not lock_free)
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#[task(priority = 1, binds = UART0, resources = [shared, l2, e1])]
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fn uart0(cx: uart0::Context) {
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let shared: &mut u32 = cx.resources.shared;
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*shared += 1;
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*cx.resources.e1 += 10;
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hprintln!("UART0: shared = {}", shared).unwrap();
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hprintln!("UART0:l2 = {}", cx.resources.l2).unwrap();
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hprintln!("UART0:e1 = {}", cx.resources.e1).unwrap();
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}
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// l2 rejected (not task_local)
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#[task(priority = 2, binds = UART1, resources = [shared, l2, e1])]
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fn uart1(cx: uart1::Context) {
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let shared: &mut u32 = cx.resources.shared;
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*shared += 1;
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hprintln!("UART1: shared = {}", shared).unwrap();
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hprintln!("UART1:l2 = {}", cx.resources.l2).unwrap();
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hprintln!("UART1:e1 = {}", cx.resources.e1).unwrap();
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}
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};
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30
examples/local_minimal.rs
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30
examples/local_minimal.rs
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@ -0,0 +1,30 @@
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//! examples/local_minimal.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 panic_semihosting as _;
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#[rtfm::app(device = lm3s6965)]
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const APP: () = {
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struct Resources {
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// A local (move), late resource
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#[task_local]
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l: u32,
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}
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#[init]
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fn init(_: init::Context) -> init::LateResources {
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init::LateResources { l: 42 }
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}
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// l is task_local
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#[idle(resources =[l])]
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fn idle(cx: idle::Context) -> ! {
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hprintln!("IDLE:l = {}", cx.resources.l).unwrap();
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debug::exit(debug::EXIT_SUCCESS);
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loop {}
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}
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};
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54
examples/static.rs
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54
examples/static.rs
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//! examples/late.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 heapless::{
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consts::*,
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i,
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spsc::{Consumer, Producer, Queue},
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};
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use lm3s6965::Interrupt;
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use panic_semihosting as _;
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#[rtfm::app(device = lm3s6965)]
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const APP: () = {
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// Late resources
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struct Resources {
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p: Producer<'static, u32, U4>,
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c: Consumer<'static, u32, U4>,
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}
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#[init]
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fn init(_: init::Context) -> init::LateResources {
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static mut Q: Queue<u32, U4> = Queue(i::Queue::new());
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let (p, c) = Q.split();
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// Initialization of late resources
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init::LateResources { p, c }
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}
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#[idle(resources = [c])]
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fn idle(c: idle::Context) -> ! {
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loop {
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if let Some(byte) = c.resources.c.dequeue() {
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hprintln!("received message: {}", byte).unwrap();
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debug::exit(debug::EXIT_SUCCESS);
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} else {
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rtfm::pend(Interrupt::UART0);
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}
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}
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}
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#[task(binds = UART0, resources = [p])]
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fn uart0(c: uart0::Context) {
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static mut KALLE: u32 = 0;
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*KALLE += 1;
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c.resources.p.enqueue(42).unwrap();
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}
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};
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@ -21,5 +21,10 @@ proc-macro = true
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proc-macro2 = "1"
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quote = "1"
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syn = "1"
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rtic-syntax = { git = "https://github.com/rtic-rs/rtic-syntax", branch = "master", version = "0.4.0" }
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#rtic-syntax = { git = "https://github.com/rtic-rs/rtic-syntax", branch = "master", version = "0.4.0" }
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[dependencies.rtic-syntax]
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git = "https://github.com/rtic-rs/rtic-syntax.git"
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branch = "task_local_experiment"
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version = "0.4.1"
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178
macros/src/custom_local.rs
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178
macros/src/custom_local.rs
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use syn::parse;
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//use syn::Ident;
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//use proc_macro2::{Ident, Span};
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use proc_macro2::Ident;
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use rtfm_syntax::{
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analyze::{Analysis, Ownership},
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ast::App,
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};
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use syn::Error;
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// ast::{App, CustomArg},
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type Idents<'a> = Vec<&'a Ident>;
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// Assign an `extern` interrupt to each priority level
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pub fn app(app: &App, _analysis: &Analysis) -> parse::Result<()> {
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// collect task local resources
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let task_local: Idents = app
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.resources
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.iter()
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.filter(|(_, r)| r.properties.task_local)
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.map(|(i, _)| i)
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.chain(
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app.late_resources
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.iter()
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.filter(|(_, r)| r.properties.task_local)
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.map(|(i, _)| i),
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)
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.collect();
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let lock_free: Idents = app
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.resources
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.iter()
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.filter(|(_, r)| r.properties.lock_free)
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.map(|(i, _)| i)
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.chain(
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app.late_resources
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.iter()
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.filter(|(_, r)| r.properties.lock_free)
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.map(|(i, _)| i),
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)
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.collect();
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// collect all tasks into a vector
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type Task = String;
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let all_tasks: Vec<(Task, Idents)> = app
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.idles
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.iter()
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.map(|(core, ht)| {
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(
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format!("Idle (core {})", core),
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ht.args.resources.iter().map(|(v, _)| v).collect::<Vec<_>>(),
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)
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})
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.chain(app.software_tasks.iter().map(|(name, ht)| {
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(
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name.to_string(),
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ht.args.resources.iter().map(|(v, _)| v).collect::<Vec<_>>(),
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)
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}))
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.chain(app.hardware_tasks.iter().map(|(name, ht)| {
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(
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name.to_string(),
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ht.args.resources.iter().map(|(v, _)| v).collect::<Vec<_>>(),
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)
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}))
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.collect();
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// check that task_local resources is only used once
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let mut error = vec![];
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for task_local_id in task_local.iter() {
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let mut used = vec![];
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for (task, tr) in all_tasks.iter() {
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for r in tr {
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if task_local_id == r {
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used.push((task, r));
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}
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}
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}
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if used.len() > 1 {
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error.push(Error::new(
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task_local_id.span(),
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format!(
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"task local resource {:?} is used by multiple tasks",
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task_local_id.to_string()
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),
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));
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used.iter().for_each(|(task, resource)| {
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error.push(Error::new(
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resource.span(),
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format!(
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"task local resource {:?} is used by task {:?}",
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resource.to_string(),
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task
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),
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))
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});
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}
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}
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// filter out contended resources
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let contended: Vec<(&Ident, &Ownership)> = _analysis
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.ownerships
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.iter()
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.filter(|(_id, own)| match own {
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Ownership::Contended { .. } => true,
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_ => false,
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})
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.collect();
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// filter out lock_free contended resources
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let lock_free_violation: Vec<&(&Ident, &Ownership)> = contended
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.iter()
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.filter(|(cont_id, _)| lock_free.iter().any(|lf_id| cont_id == lf_id))
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.collect();
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// report contention error
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lock_free_violation.iter().for_each(|(lf_err_id, _)| {
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error.push(Error::new(
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lf_err_id.span(),
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format!(
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"lock_free resource {:?} is contended by higher priority task",
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lf_err_id.to_string()
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),
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))
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});
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// collect errors
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if error.is_empty() {
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Ok(())
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} else {
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let mut err = error.iter().next().unwrap().clone();
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error.iter().for_each(|e| err.combine(e.clone()));
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Err(err)
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}
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// for tl in task_local {
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// println!("tl {:?}", tl);
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// // let mut first_use = None;
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// for i in _analysis.ownerships.iter() {
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// println!("\nown: {:?}", i);
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// }
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// // println!("analysis {:?}", _analysis.locations);
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// for i in _analysis.locations.iter() {
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// println!("\nloc: {:?}", i);
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// }
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// ErrorMessage {
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// // Span is implemented as an index into a thread-local interner to keep the
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// // size small. It is not safe to access from a different thread. We want
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// // errors to be Send and Sync to play nicely with the Failure crate, so pin
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// // the span we're given to its original thread and assume it is
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// // Span::call_site if accessed from any other thread.
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// start_span: ThreadBound<Span>,
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// end_span: ThreadBound<Span>,
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// message: String,
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// }
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// (app.name, "here");
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// let span = app.name.span();
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// let start = span.start();
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// Err(vec![ErrorMessage { start_span: app.name.}]);
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// let mut task_locals = Vec::new();
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// println!("-- app:late_resources");
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// println!(
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// "task_locals {:?}",
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// app.late_resources.filter(|r| r.task_local)
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// );
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// println!("-- resources");
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// for i in app.resources.iter() {
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// println!("res: {:?}", i);
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// }
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}
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@ -10,6 +10,7 @@ use rtic_syntax::Settings;
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mod analyze;
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mod check;
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mod codegen;
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mod custom_local;
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#[cfg(test)]
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mod tests;
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|
@ -214,13 +215,27 @@ pub fn app(args: TokenStream, input: TokenStream) -> TokenStream {
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Ok(x) => x,
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};
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match custom_local::app(&app, &analysis) {
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Err(e) => return e.to_compile_error().into(),
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Ok(_) => {}
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}
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let extra = match check::app(&app, &analysis) {
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Err(e) => return e.to_compile_error().into(),
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Ok(x) => x,
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};
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// println!("extra {:?}", extra);
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let analysis = analyze::app(analysis, &app);
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// println!("after analysis, extra {:?}", extra);
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// match custom_local::app(&app, &analysis) {
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// Err(e) => return e.to_compile_error().into(),
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// Ok(_) => {}
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// }
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let ts = codegen::app(&app, &analysis, &extra);
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// Try to write the expanded code to disk
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|
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