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Merge #116
116: v0.4.0 r=japaric a=japaric Co-authored-by: Jorge Aparicio <jorge@japaric.io>
This commit is contained in:
commit
3511e915b5
14 changed files with 125 additions and 38 deletions
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@ -12,15 +12,15 @@ matrix:
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if: (branch = staging OR branch = trying) OR (type = pull_request AND branch = master)
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- env: TARGET=x86_64-unknown-linux-gnu
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rust: nightly-2018-12-06
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rust: nightly
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if: (branch = staging OR branch = trying) OR (type = pull_request AND branch = master)
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- env: TARGET=thumbv6m-none-eabi
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rust: nightly-2018-12-06
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rust: nightly
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if: (branch = staging OR branch = trying) OR (type = pull_request AND branch = master)
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- env: TARGET=thumbv7m-none-eabi
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rust: nightly-2018-12-06
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rust: nightly
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if: (branch = staging OR branch = trying) OR (type = pull_request AND branch = master)
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before_install: set -e
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@ -9,8 +9,7 @@ This project adheres to [Semantic Versioning](http://semver.org/).
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### Changed
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- This crate now compiles on 1.31-beta and will compile on the stable 1.31
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release.
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- This crate now compiles on stable 1.31.
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- [breaking-change] The `app!` macro has been transformed into an attribute. See
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the documentation for details.
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@ -12,7 +12,7 @@ license = "MIT OR Apache-2.0"
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name = "cortex-m-rtfm"
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readme = "README.md"
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repository = "https://github.com/japaric/cortex-m-rtfm"
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version = "0.4.0-beta.3"
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version = "0.4.0"
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[lib]
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name = "rtfm"
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@ -36,7 +36,7 @@ required-features = ["timer-queue"]
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[dependencies]
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cortex-m = "0.5.8"
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cortex-m-rt = "0.6.7"
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cortex-m-rtfm-macros = { path = "macros", version = "0.4.0-beta.3" }
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cortex-m-rtfm-macros = { path = "macros", version = "0.4.0" }
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heapless = "0.4.1"
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owned-singleton = "0.1.0"
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13
README.md
13
README.md
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@ -2,15 +2,6 @@
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A concurrency framework for building real time systems.
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**IMPORTANT** This crate is currently in pre-release (beta) state . We reserve
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the right to make breaking changes in the syntax or to patch memory safety holes
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before the v0.4.0 release, which is planned for 2018-12-07. When v0.4.0 is
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released *all the pre-releases will be yanked*. If you run into a panic message
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or an unhelpful error message (e.g. misleading span), or if something doesn't
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behave the way you expect please open [an issue]!
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[an issue]: https://github.com/japaric/cortex-m-rtfm/issues
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## Features
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- **Tasks** as the unit of concurrency [^1]. Tasks can be *event triggered*
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@ -40,7 +31,9 @@ behave the way you expect please open [an issue]!
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- **Highly efficient memory usage**: All the tasks share a single call stack and
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there's no hard dependency on a dynamic memory allocator.
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- **All Cortex-M devices are fully supported**.
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- **All Cortex-M devices are supported**. The core features of RTFM are
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supported on all Cortex-M devices. The timer queue is currently only supported
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on ARMv7-M devices.
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- This task model is amenable to known WCET (Worst Case Execution Time) analysis
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and scheduling analysis techniques. (Though we haven't yet developed Rust
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@ -9,9 +9,9 @@ This is the smallest possible RTFM application:
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All RTFM applications use the [`app`] attribute (`#[app(..)]`). This attribute
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must be applied to a `const` item that contains items. The `app` attribute has
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a mandatory `device` argument that takes a *path* as a value. This path must
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point to a *device* crate generated using [`svd2rust`] **v0.14.x**. The `app`
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attribute will expand into a suitable entry point so it's not required to use
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the [`cortex_m_rt::entry`] attribute.
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point to a *peripheral access crate* (PAC) generated using [`svd2rust`]
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**v0.14.x**. The `app` attribute will expand into a suitable entry point so it's
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not required to use the [`cortex_m_rt::entry`] attribute.
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[`app`]: ../../api/cortex_m_rtfm_macros/attr.app.html
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[`svd2rust`]: https://crates.io/crates/svd2rust
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@ -16,9 +16,9 @@ $ cargo generate \
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$ # follow the rest of the instructions
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```
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2. Add a device crate that was generated using [`svd2rust`] **v0.14.x**, or a
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board support crate that depends on one such device crate as a dependency.
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Make sure that the `rt` feature of the crate is enabled.
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2. Add a peripheral access crate (PAC) that was generated using [`svd2rust`]
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**v0.14.x**, or a board support crate that depends on one such PAC as a
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dependency. Make sure that the `rt` feature of the crate is enabled.
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[`svd2rust`]: https://crates.io/crates/svd2rust
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`timer-queue` feature.
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``` console
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$ cargo add cortex-m-rtfm --allow-prerelease --upgrade=none
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$ cargo add cortex-m-rtfm
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```
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4. Write your RTFM application.
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@ -49,7 +49,7 @@ Here I'll use the `init` example from the `cortex-m-rtfm` crate.
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``` console
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$ curl \
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-L https://github.com/japaric/cortex-m-rtfm/raw/v0.4.0-beta.1/examples/init.rs \
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-L https://github.com/japaric/cortex-m-rtfm/raw/v0.4.0/examples/init.rs \
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> src/main.rs
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```
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@ -1,8 +1,16 @@
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# Timer queue
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When the `timer-queue` feature is enabled the RTFM framework includes a *global
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timer queue* that applications can use to *schedule* software tasks to run some
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time in the future.
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timer queue* that applications can use to *schedule* software tasks to run at
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some time in the future.
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> **NOTE**: The timer-queue feature can't be enabled when the target is
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> `thumbv6m-none-eabi` because there's no timer queue support for ARMv6-M. This
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> may change in the future.
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> **NOTE**: When the `timer-queue` feature is enabled you will *not* be able to
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> use the `SysTick` exception as a hardware task because the runtime uses it to
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> implement the global timer queue.
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To be able to schedule a software task the name of the task must appear in the
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`schedule` argument of the context attribute. When scheduling a task the
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@ -20,6 +20,20 @@ rewrite code. If you consistently use `lock`s to access the data behind shared
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resources then your code will continue to compile when you change the priority
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of tasks.
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## Conditional compilation
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You can use conditional compilation (`#[cfg]`) on resources (`static [mut]`
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items) and tasks (`fn` items). The effect of using `#[cfg]` attributes is that
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the resource / task will *not* be injected into the prelude of tasks that use
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them (see `resources`, `spawn` and `schedule`) if the condition doesn't hold.
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The example below logs a message whenever the `foo` task is spawned, but only if
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the program has been compiled using the `dev` profile.
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``` rust
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{{#include ../../../examples/cfg.rs}}
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```
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## Running tasks from RAM
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The main goal of moving the specification of RTFM applications to attributes in
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@ -7,6 +7,6 @@
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This book contains user level documentation for the Real Time For the Masses
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(RTFM) framework. The API reference can be found [here](../api/rtfm/index.html).
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{{#include ../../README.md:5:53}}
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{{#include ../../README.md:5:46}}
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{{#include ../../README.md:59:}}
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{{#include ../../README.md:52:}}
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4
build.rs
4
build.rs
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fn main() {
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let target = env::var("TARGET").unwrap();
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if target.starts_with("thumbv6m") {
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println!("cargo:rustc-cfg=armv6m")
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}
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if target.starts_with("thumbv7m") | target.starts_with("thumbv7em") {
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println!("cargo:rustc-cfg=armv7m")
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}
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26
ci/script.sh
26
ci/script.sh
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esac
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cargo check --target $T
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cargo check --features timer-queue --target $T
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if [ $TARGET != thumbv6m-none-eabi ]; then
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cargo check --features timer-queue --target $T
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fi
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if [ $TRAVIS_RUST_VERSION = beta ]; then
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if [ $TRAVIS_RUST_VERSION != nightly ]; then
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rm -f .cargo/config
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cargo doc --features timer-queue
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if [ $TARGET != thumbv6m-none-eabi ]; then
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cargo doc --features timer-queue
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else
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cargo doc
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fi
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( cd book && mdbook build )
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local td=$(mktemp -d)
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fi
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cargo check --target $T --examples
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cargo check --features timer-queue --target $T --examples
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if [ $TARGET != thumbv6m-none-eabi ]; then
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cargo check --features timer-queue --target $T --examples
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fi
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# run-pass tests
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case $T in
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diff -u ci/expected/$ex.run -
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fi
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cargo run --features timer-queue --example $ex --target $T | \
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diff -u ci/expected/$ex.run -
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if [ $TARGET != thumbv6m-none-eabi ]; then
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cargo run --features timer-queue --example $ex --target $T | \
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diff -u ci/expected/$ex.run -
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cargo run --features timer-queue --example $ex --target $T --release | \
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diff -u ci/expected/$ex.run -
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cargo run --features timer-queue --example $ex --target $T --release | \
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diff -u ci/expected/$ex.run -
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fi
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done
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esac
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}
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54
examples/cfg.rs
Normal file
54
examples/cfg.rs
Normal file
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//! examples/cfg.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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extern crate panic_semihosting;
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#[cfg(debug_assertions)]
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use cortex_m_semihosting::hprintln;
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use rtfm::app;
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#[app(device = lm3s6965)]
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const APP: () = {
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#[cfg(debug_assertions)] // <- `true` when using the `dev` profile
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static mut COUNT: u32 = 0;
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#[init]
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fn init() {
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// ..
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}
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#[task(priority = 3, resources = [COUNT], spawn = [log])]
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fn foo() {
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#[cfg(debug_assertions)]
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{
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*resources.COUNT += 1;
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spawn.log(*resources.COUNT).ok();
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}
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// this wouldn't compile in `release` mode
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// *resources.COUNT += 1;
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// ..
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}
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#[cfg(debug_assertions)]
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#[task]
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fn log(n: u32) {
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hprintln!(
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"foo has been called {} time{}",
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n,
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if n == 1 { "" } else { "s" }
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)
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.ok();
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}
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extern "C" {
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fn UART0();
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fn UART1();
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}
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};
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@ -9,7 +9,7 @@ license = "MIT OR Apache-2.0"
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name = "cortex-m-rtfm-macros"
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readme = "../README.md"
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repository = "https://github.com/japaric/cortex-m-rtfm"
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version = "0.4.0-beta.3"
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version = "0.4.0"
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[lib]
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proc-macro = true
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@ -44,6 +44,11 @@ pub mod export;
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#[cfg(feature = "timer-queue")]
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mod tq;
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#[cfg(all(feature = "timer-queue", armv6m))]
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compile_error!(
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"The `timer-queue` feature is currently not supported on ARMv6-M (`thumbv6m-none-eabi`)"
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);
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/// Core peripherals
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///
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/// This is `cortex_m::Peripherals` minus the peripherals that the RTFM runtime uses
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