Merge pull request #23 from kitling/update-examples

Update examples
This commit is contained in:
Jorge Aparicio
2018-02-26 21:48:47 +01:00
committed by GitHub
8 changed files with 84 additions and 69 deletions

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@@ -9,12 +9,22 @@ repository = "https://github.com/japaric/cortex-m-quickstart"
version = "0.2.4" version = "0.2.4"
[dependencies] [dependencies]
cortex-m = "0.3.0" cortex-m = "0.4.0"
cortex-m-semihosting = "0.2.0" cortex-m-semihosting = "0.2.0"
# alloc-cortex-m release doesn't use linked_list_allocator v0.5.0 yet.
# Uncomment for the allocator example.
#alloc-cortex-m = { git = "https://github.com/japaric/alloc-cortex-m.git" }
[dependencies.cortex-m-rt] [dependencies.cortex-m-rt]
features = ["abort-on-panic"]
version = "0.3.12" version = "0.3.12"
# Comment for the panic example.
features = ["abort-on-panic"]
# Uncomment for the device example.
# [dependencies.stm32f103xx]
# features = ["rt"]
# version = "0.8.0"
# disable both incremental compilation and parallel codegen to reduce the chances of running into # disable both incremental compilation and parallel codegen to reduce the chances of running into
# rust-lang/rust#47074 # rust-lang/rust#47074

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@@ -1,6 +1,9 @@
[dependencies.core] [dependencies.core]
stage = 0 stage = 0
# [dependencies.alloc] # Uncomment for the alloc example.
# stage = 0
[dependencies.compiler_builtins] [dependencies.compiler_builtins]
features = ["mem"] features = ["mem"]
stage = 1 stage = 1

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@@ -1,6 +1,6 @@
//! How to use the heap and a dynamic memory allocator //! How to use the heap and a dynamic memory allocator
//! //!
//! To compile this example you'll need to build the collections crate as part //! To compile this example you'll need to build the alloc crate as part
//! of the Xargo sysroot. To do that change the Xargo.toml file to look like //! of the Xargo sysroot. To do that change the Xargo.toml file to look like
//! this: //! this:
//! //!
@@ -8,7 +8,7 @@
//! [dependencies.core] //! [dependencies.core]
//! stage = 0 //! stage = 0
//! //!
//! [dependencies.collections] # NEW //! [dependencies.alloc] # NEW
//! stage = 0 //! stage = 0
//! //!
//! [dependencies.compiler_builtins] //! [dependencies.compiler_builtins]
@@ -25,15 +25,16 @@
//! //!
//! --- //! ---
#[allow(deprecated)] #![feature(alloc)]
#![feature(collections)]
#![feature(used)] #![feature(used)]
#![feature(global_allocator)]
#![no_std] #![no_std]
#[allow(deprecated)]
// This is the allocator crate; you can use a different one // This is the allocator crate; you can use a different one
extern crate alloc_cortex_m; extern crate alloc_cortex_m;
#[macro_use] #[macro_use]
extern crate collections; extern crate alloc;
extern crate cortex_m; extern crate cortex_m;
extern crate cortex_m_rt; extern crate cortex_m_rt;
extern crate cortex_m_semihosting; extern crate cortex_m_semihosting;
@@ -42,25 +43,21 @@ use core::fmt::Write;
use cortex_m::asm; use cortex_m::asm;
use cortex_m_semihosting::hio; use cortex_m_semihosting::hio;
use alloc_cortex_m::CortexMHeap;
#[global_allocator]
static ALLOCATOR: CortexMHeap = CortexMHeap::empty();
extern "C" {
static mut _sheap: u32;
static mut _eheap: u32;
}
fn main() { fn main() {
// Initialize the allocator // Initialize the allocator
unsafe { let start = unsafe { &mut _sheap as *mut u32 as usize };
extern "C" { let end = unsafe { &mut _sheap as *mut u32 as usize };
// Start of the heap unsafe { ALLOCATOR.init(start, end - start) }
static mut _sheap: usize;
}
// Size of the heap in words (1 word = 4 bytes)
// NOTE The bigger the heap the greater the chance to run into a stack
// overflow (collision between the stack and the heap)
const SIZE: isize = 256;
// End of the heap
let _eheap = (&mut _sheap as *mut _).offset(SIZE);
alloc_cortex_m::init(&mut _sheap, _eheap);
}
// Growable array allocated on the heap // Growable array allocated on the heap
let xs = vec![0, 1, 2]; let xs = vec![0, 1, 2];

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@@ -19,7 +19,7 @@
//! $ edit Cargo.toml && cat $_ //! $ edit Cargo.toml && cat $_
//! [dependencies.stm32f103xx] //! [dependencies.stm32f103xx]
//! features = ["rt"] //! features = ["rt"]
//! version = "0.7.0" //! version = "0.8.0"
//! ``` //! ```
//! //!
//! --- //! ---
@@ -37,24 +37,29 @@ use core::cell::RefCell;
use core::fmt::Write; use core::fmt::Write;
use cortex_m::interrupt::{self, Mutex}; use cortex_m::interrupt::{self, Mutex};
use cortex_m::peripheral::SystClkSource; use cortex_m::peripheral::syst::SystClkSource;
use cortex_m_semihosting::hio::{self, HStdout}; use cortex_m_semihosting::hio::{self, HStdout};
use stm32f103xx::Interrupt; use stm32f103xx::Interrupt;
static HSTDOUT: Mutex<RefCell<Option<HStdout>>> = static HSTDOUT: Mutex<RefCell<Option<HStdout>>> =
Mutex::new(RefCell::new(None)); Mutex::new(RefCell::new(None));
static NVIC: Mutex<RefCell<Option<cortex_m::peripheral::NVIC>>> =
Mutex::new(RefCell::new(None));
fn main() { fn main() {
let global_p = cortex_m::Peripherals::take().unwrap();
interrupt::free(|cs| { interrupt::free(|cs| {
let hstdout = HSTDOUT.borrow(cs); let hstdout = HSTDOUT.borrow(cs);
if let Ok(fd) = hio::hstdout() { if let Ok(fd) = hio::hstdout() {
*hstdout.borrow_mut() = Some(fd); *hstdout.borrow_mut() = Some(fd);
} }
let nvic = stm32f103xx::NVIC.borrow(cs); let mut nvic = global_p.NVIC;
nvic.enable(Interrupt::TIM2); nvic.enable(Interrupt::TIM2);
*NVIC.borrow(cs).borrow_mut() = Some(nvic);
let syst = stm32f103xx::SYST.borrow(cs); let mut syst = global_p.SYST;
syst.set_clock_source(SystClkSource::Core); syst.set_clock_source(SystClkSource::Core);
syst.set_reload(8_000_000); // 1s syst.set_reload(8_000_000); // 1s
syst.enable_counter(); syst.enable_counter();
@@ -71,9 +76,9 @@ fn tick() {
writeln!(*hstdout, "Tick").ok(); writeln!(*hstdout, "Tick").ok();
} }
let nvic = stm32f103xx::NVIC.borrow(cs); if let Some(nvic) = NVIC.borrow(cs).borrow_mut().as_mut() {
nvic.set_pending(Interrupt::TIM2);
nvic.set_pending(Interrupt::TIM2); }
}); });
} }

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@@ -20,14 +20,13 @@
extern crate cortex_m; extern crate cortex_m;
extern crate cortex_m_rt; extern crate cortex_m_rt;
use cortex_m::{asm, interrupt, peripheral}; use cortex_m::{asm, Peripherals};
fn main() { fn main() {
interrupt::free(|cs| { let p = Peripherals::take().unwrap();
let itm = peripheral::ITM.borrow(&cs); let mut itm = p.ITM;
iprintln!(&itm.stim[0], "Hello, world!"); iprintln!(&mut itm.stim[0], "Hello, world!");
});
} }
// As we are not using interrupts, we just register a dummy catch all handler // As we are not using interrupts, we just register a dummy catch all handler

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@@ -22,14 +22,13 @@
//! extern crate cortex_m; //! extern crate cortex_m;
//! extern crate cortex_m_rt; //! extern crate cortex_m_rt;
//! //!
//! use cortex_m::{asm, interrupt, peripheral}; //! use cortex_m::{asm, Peripherals};
//! //!
//! fn main() { //! fn main() {
//! interrupt::free(|cs| { //! let p = Peripherals::take().unwrap();
//! let itm = peripheral::ITM.borrow(&cs); //! let mut itm = p.ITM;
//! //!
//! iprintln!(&itm.stim[0], "Hello, world!"); //! iprintln!(&mut itm.stim[0], "Hello, world!");
//! });
//! } //! }
//! //!
//! // As we are not using interrupts, we just register a dummy catch all handler //! // As we are not using interrupts, we just register a dummy catch all handler

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@@ -19,7 +19,7 @@
//! $ edit Cargo.toml && cat $_ //! $ edit Cargo.toml && cat $_
//! [dependencies.stm32f103xx] //! [dependencies.stm32f103xx]
//! features = ["rt"] //! features = ["rt"]
//! version = "0.7.0" //! version = "0.8.0"
//! ``` //! ```
//! //!
//! --- //! ---
@@ -39,24 +39,29 @@
//! use core::fmt::Write; //! use core::fmt::Write;
//! //!
//! use cortex_m::interrupt::{self, Mutex}; //! use cortex_m::interrupt::{self, Mutex};
//! use cortex_m::peripheral::SystClkSource; //! use cortex_m::peripheral::syst::SystClkSource;
//! use cortex_m_semihosting::hio::{self, HStdout}; //! use cortex_m_semihosting::hio::{self, HStdout};
//! use stm32f103xx::Interrupt; //! use stm32f103xx::Interrupt;
//! //!
//! static HSTDOUT: Mutex<RefCell<Option<HStdout>>> = //! static HSTDOUT: Mutex<RefCell<Option<HStdout>>> =
//! Mutex::new(RefCell::new(None)); //! Mutex::new(RefCell::new(None));
//! //!
//! static NVIC: Mutex<RefCell<Option<cortex_m::peripheral::NVIC>>> =
//! Mutex::new(RefCell::new(None));
//!
//! fn main() { //! fn main() {
//! let global_p = cortex_m::Peripherals::take().unwrap();
//! interrupt::free(|cs| { //! interrupt::free(|cs| {
//! let hstdout = HSTDOUT.borrow(cs); //! let hstdout = HSTDOUT.borrow(cs);
//! if let Ok(fd) = hio::hstdout() { //! if let Ok(fd) = hio::hstdout() {
//! *hstdout.borrow_mut() = Some(fd); //! *hstdout.borrow_mut() = Some(fd);
//! } //! }
//! //!
//! let nvic = stm32f103xx::NVIC.borrow(cs); //! let mut nvic = global_p.NVIC;
//! nvic.enable(Interrupt::TIM2); //! nvic.enable(Interrupt::TIM2);
//! *NVIC.borrow(cs).borrow_mut() = Some(nvic);
//! //!
//! let syst = stm32f103xx::SYST.borrow(cs); //! let mut syst = global_p.SYST;
//! syst.set_clock_source(SystClkSource::Core); //! syst.set_clock_source(SystClkSource::Core);
//! syst.set_reload(8_000_000); // 1s //! syst.set_reload(8_000_000); // 1s
//! syst.enable_counter(); //! syst.enable_counter();
@@ -73,9 +78,9 @@
//! writeln!(*hstdout, "Tick").ok(); //! writeln!(*hstdout, "Tick").ok();
//! } //! }
//! //!
//! let nvic = stm32f103xx::NVIC.borrow(cs); //! if let Some(nvic) = NVIC.borrow(cs).borrow_mut().as_mut() {
//! //! nvic.set_pending(Interrupt::TIM2);
//! nvic.set_pending(Interrupt::TIM2); //! }
//! }); //! });
//! } //! }
//! //!

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@@ -1,6 +1,6 @@
//! How to use the heap and a dynamic memory allocator //! How to use the heap and a dynamic memory allocator
//! //!
//! To compile this example you'll need to build the collections crate as part //! To compile this example you'll need to build the alloc crate as part
//! of the Xargo sysroot. To do that change the Xargo.toml file to look like //! of the Xargo sysroot. To do that change the Xargo.toml file to look like
//! this: //! this:
//! //!
@@ -8,7 +8,7 @@
//! [dependencies.core] //! [dependencies.core]
//! stage = 0 //! stage = 0
//! //!
//! [dependencies.collections] # NEW //! [dependencies.alloc] # NEW
//! stage = 0 //! stage = 0
//! //!
//! [dependencies.compiler_builtins] //! [dependencies.compiler_builtins]
@@ -27,15 +27,16 @@
//! //!
//! ``` //! ```
//! //!
//! #[allow(deprecated)] //! #![feature(alloc)]
//! #![feature(collections)]
//! #![feature(used)] //! #![feature(used)]
//! #![feature(global_allocator)]
//! #![no_std] //! #![no_std]
//! #[allow(deprecated)]
//! //!
//! // This is the allocator crate; you can use a different one //! // This is the allocator crate; you can use a different one
//! extern crate alloc_cortex_m; //! extern crate alloc_cortex_m;
//! #[macro_use] //! #[macro_use]
//! extern crate collections; //! extern crate alloc;
//! extern crate cortex_m; //! extern crate cortex_m;
//! extern crate cortex_m_rt; //! extern crate cortex_m_rt;
//! extern crate cortex_m_semihosting; //! extern crate cortex_m_semihosting;
@@ -44,25 +45,21 @@
//! //!
//! use cortex_m::asm; //! use cortex_m::asm;
//! use cortex_m_semihosting::hio; //! use cortex_m_semihosting::hio;
//! use alloc_cortex_m::CortexMHeap;
//!
//! #[global_allocator]
//! static ALLOCATOR: CortexMHeap = CortexMHeap::empty();
//!
//! extern "C" {
//! static mut _sheap: u32;
//! static mut _eheap: u32;
//! }
//! //!
//! fn main() { //! fn main() {
//! // Initialize the allocator //! // Initialize the allocator
//! unsafe { //! let start = unsafe { &mut _sheap as *mut u32 as usize };
//! extern "C" { //! let end = unsafe { &mut _sheap as *mut u32 as usize };
//! // Start of the heap //! unsafe { ALLOCATOR.init(start, end - start) }
//! static mut _sheap: usize;
//! }
//!
//! // Size of the heap in words (1 word = 4 bytes)
//! // NOTE The bigger the heap the greater the chance to run into a stack
//! // overflow (collision between the stack and the heap)
//! const SIZE: isize = 256;
//!
//! // End of the heap
//! let _eheap = (&mut _sheap as *mut _).offset(SIZE);
//!
//! alloc_cortex_m::init(&mut _sheap, _eheap);
//! }
//! //!
//! // Growable array allocated on the heap //! // Growable array allocated on the heap
//! let xs = vec![0, 1, 2]; //! let xs = vec![0, 1, 2];