2018-11-03 17:02:41 +01:00
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//! Check code generation of resources
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#![no_main]
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#![no_std]
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extern crate lm3s6965;
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extern crate panic_halt;
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extern crate rtfm;
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2018-11-04 19:46:49 +01:00
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use rtfm::{app, Exclusive};
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2018-11-03 17:02:41 +01:00
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#[app(device = lm3s6965)]
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const APP: () = {
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static mut O1: u32 = 0; // init
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static mut O2: u32 = 0; // idle
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static mut O3: u32 = 0; // EXTI0
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static O4: u32 = 0; // idle
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static O5: u32 = 0; // EXTI1
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static O6: u32 = 0; // init
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static mut S1: u32 = 0; // idle & EXTI0
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static mut S2: u32 = 0; // EXTI0 & EXTI1
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static S3: u32 = 0;
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#[init(resources = [O1, O4, O5, O6, S3])]
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fn init() {
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// owned by `init` == `&'static mut`
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let _: &'static mut u32 = resources.O1;
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// owned by `init` == `&'static` if read-only
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let _: &'static u32 = resources.O6;
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// `init` has exclusive access to all resources
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let _: &mut u32 = resources.O4;
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let _: &mut u32 = resources.O5;
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let _: &mut u32 = resources.S3;
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}
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#[idle(resources = [O2, O4, S1, S3])]
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fn idle() -> ! {
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// owned by `idle` == `&'static mut`
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let _: &'static mut u32 = resources.O2;
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// owned by `idle` == `&'static` if read-only
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let _: &'static u32 = resources.O4;
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// shared with `idle` == `Mutex`
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resources.S1.lock(|_| {});
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// `&` if read-only
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let _: &u32 = resources.S3;
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loop {}
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}
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#[interrupt(resources = [O3, S1, S2, S3])]
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fn UART0() {
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// owned by interrupt == `&mut`
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let _: &mut u32 = resources.O3;
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2018-11-04 19:46:49 +01:00
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// no `Mutex` proxy when access from highest priority task
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let _: Exclusive<u32> = resources.S1;
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2018-11-03 17:02:41 +01:00
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2018-11-04 19:46:49 +01:00
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// no `Mutex` proxy when co-owned by cooperative (same priority) tasks
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let _: Exclusive<u32> = resources.S2;
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2018-11-03 17:02:41 +01:00
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// `&` if read-only
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let _: &u32 = resources.S3;
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}
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#[interrupt(resources = [S2, O5])]
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fn UART1() {
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// owned by interrupt == `&` if read-only
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let _: &u32 = resources.O5;
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2018-11-04 19:46:49 +01:00
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// no `Mutex` proxy when co-owned by cooperative (same priority) tasks
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let _: Exclusive<u32> = resources.S2;
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2018-11-03 17:02:41 +01:00
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}
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};
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