Embedded test via qemu
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@ -57,3 +57,24 @@ jobs:
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override: true
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- name: Create Doc
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run: cargo doc
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Embedded:
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runs-on: ubuntu-latest
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steps:
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- name: Checkout
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uses: actions/checkout@v2
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- name: Set up QEMU
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run: sudo apt update && sudo apt install qemu-system-arm gcc-arm-none-eabi
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- name: Checkout Toolchain
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uses: actions-rs/toolchain@v1
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with:
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profile: minimal
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toolchain: nightly
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override: true
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components: rust-src
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target: thumbv7m-none-eabi
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- name: Run
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env:
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RUSTFLAGS: "-C link-arg=-Tlink.x"
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CARGO_TARGET_THUMBV7M_NONE_EABI_RUNNER: "qemu-system-arm -cpu cortex-m3 -machine mps2-an385 -m 1G -nographic -semihosting-config enable=on,target=native -kernel"
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run: cd embedded && cargo run --target thumbv7m-none-eabi
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@ -0,0 +1,24 @@
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[package]
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authors = ["Riccardo Casatta <riccardo@casatta.it>", "Dev Random <c1.devrandom@niftybox.net>"]
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edition = "2018"
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readme = "README.md"
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name = "embedded"
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version = "0.1.0"
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[dependencies]
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cortex-m = "0.6.0"
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cortex-m-rt = "0.6.10"
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cortex-m-semihosting = "0.3.3"
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panic-halt = "0.2.0"
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alloc-cortex-m = "0.4.1"
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bitcoin = { path="../", default-features = false, features = ["no-std", "secp-lowmemory"] }
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[[bin]]
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name = "embedded"
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test = false
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bench = false
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[profile.release]
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codegen-units = 1 # better optimizations
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debug = true # symbols are nice and they don't increase the size on Flash
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lto = true # better optimizations
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@ -0,0 +1,25 @@
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# Running
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To run the embedded test, first prepare your environment:
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```shell
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sudo ./scripts/install-deps
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rustup target add thumbv7m-none-eabi
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```
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Then:
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```shell
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source ./scripts/env.sh && cargo run --target thumbv7m-none-eabi
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```
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Output should be something like:
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```text
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heap size 524288
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secp buf size 66240
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Seed WIF: L1HKVVLHXiUhecWnwFYF6L3shkf1E12HUmuZTESvBXUdx3yqVP1D
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Address: bc1qpx9t9pzzl4qsydmhyt6ctrxxjd4ep549np9993
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```
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Note that this heap size is required because of the amount of stack used by libsecp256k1 when initializing a context.
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@ -0,0 +1,5 @@
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MEMORY
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{
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FLASH : ORIGIN = 0x00000000, LENGTH = 512K
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RAM : ORIGIN = 0x20000000, LENGTH = 512K
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}
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@ -0,0 +1,2 @@
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export RUSTFLAGS="-C link-arg=-Tlink.x"
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export CARGO_TARGET_THUMBV7M_NONE_EABI_RUNNER="qemu-system-arm -cpu cortex-m3 -machine mps2-an385 -m 1G -nographic -semihosting-config enable=on,target=native -kernel"
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@ -0,0 +1,3 @@
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#!/bin/sh
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apt install gcc-arm-none-eabi qemu-system-arm gdb-multiarch
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@ -0,0 +1,76 @@
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#![feature(alloc_error_handler)]
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#![feature(panic_info_message)]
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#![no_std]
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#![no_main]
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extern crate alloc;
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extern crate bitcoin;
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use alloc::string::ToString;
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use alloc::vec;
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use core::alloc::Layout;
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use core::panic::PanicInfo;
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use alloc_cortex_m::CortexMHeap;
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// use panic_halt as _;
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use bitcoin::{Address, Network, PrivateKey};
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use bitcoin::secp256k1::ffi::types::AlignedType;
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use bitcoin::secp256k1::Secp256k1;
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use cortex_m::asm;
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use cortex_m_rt::entry;
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use cortex_m_semihosting::{debug, hprintln};
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// this is the allocator the application will use
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#[global_allocator]
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static ALLOCATOR: CortexMHeap = CortexMHeap::empty();
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const HEAP_SIZE: usize = 1024 * 512; // 512 KB
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#[entry]
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fn main() -> ! {
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hprintln!("heap size {}", HEAP_SIZE).unwrap();
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unsafe { ALLOCATOR.init(cortex_m_rt::heap_start() as usize, HEAP_SIZE) }
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let size = Secp256k1::preallocate_size();
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hprintln!("secp buf size {}", size*16).unwrap();
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// Load a private key
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let raw = "L1HKVVLHXiUhecWnwFYF6L3shkf1E12HUmuZTESvBXUdx3yqVP1D";
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let pk = PrivateKey::from_wif(raw).unwrap();
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hprintln!("Seed WIF: {}", pk).unwrap();
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let mut buf_ful = vec![AlignedType::zeroed(); size];
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let secp = Secp256k1::preallocated_new(&mut buf_ful).unwrap();
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// Derive address
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let pubkey = pk.public_key(&secp);
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let address = Address::p2wpkh(&pubkey, Network::Bitcoin).unwrap();
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hprintln!("Address: {}", address).unwrap();
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assert_eq!(address.to_string(), "bc1qpx9t9pzzl4qsydmhyt6ctrxxjd4ep549np9993".to_string());
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// exit QEMU
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// NOTE do not run this on hardware; it can corrupt OpenOCD state
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debug::exit(debug::EXIT_SUCCESS);
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loop {}
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}
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// define what happens in an Out Of Memory (OOM) condition
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#[alloc_error_handler]
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fn alloc_error(_layout: Layout) -> ! {
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hprintln!("alloc error").unwrap();
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debug::exit(debug::EXIT_FAILURE);
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asm::bkpt();
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loop {}
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}
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#[inline(never)]
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#[panic_handler]
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fn panic(info: &PanicInfo) -> ! {
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hprintln!("panic {:?}", info.message()).unwrap();
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debug::exit(debug::EXIT_FAILURE);
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loop {}
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}
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