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https://github.com/rtic-rs/rtic.git
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Cargo fmt
This commit is contained in:
parent
fea6d2facf
commit
f151d5871c
11 changed files with 53 additions and 99 deletions
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@ -28,15 +28,12 @@ pub fn app(analysis: P<analyze::Analysis>, app: &App) -> P<Analysis> {
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let priorities = app
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let priorities = app
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.software_tasks
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.software_tasks
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.values()
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.values()
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.filter_map(|task| {
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.filter_map(|task| Some(task.args.priority))
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Some(task.args.priority)
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})
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.chain(analysis.timer_queues.first().map(|tq| tq.priority))
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.chain(analysis.timer_queues.first().map(|tq| tq.priority))
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.collect::<BTreeSet<_>>();
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.collect::<BTreeSet<_>>();
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if !priorities.is_empty() {
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if !priorities.is_empty() {
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interrupts =
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interrupts = priorities
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priorities
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.iter()
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.iter()
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.cloned()
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.cloned()
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.rev()
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.rev()
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@ -4,7 +4,6 @@ use proc_macro2::Span;
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use rtic_syntax::{
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use rtic_syntax::{
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analyze::Analysis,
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analyze::Analysis,
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ast::{App, CustomArg},
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ast::{App, CustomArg},
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};
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};
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use syn::{parse, Path};
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use syn::{parse, Path};
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@ -51,9 +50,7 @@ pub fn app<'a>(app: &'a App, analysis: &Analysis) -> parse::Result<Extra<'a>> {
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// check that external (device-specific) interrupts are not named after known (Cortex-M)
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// check that external (device-specific) interrupts are not named after known (Cortex-M)
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// exceptions
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// exceptions
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for name in app
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for name in app.extern_interrupts.keys() {
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.extern_interrupts.keys()
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{
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let name_s = name.to_string();
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let name_s = name.to_string();
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match &*name_s {
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match &*name_s {
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@ -83,8 +80,7 @@ pub fn app<'a>(app: &'a App, analysis: &Analysis) -> parse::Result<Extra<'a>> {
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.collect::<HashSet<_>>();
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.collect::<HashSet<_>>();
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let need = priorities.len();
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let need = priorities.len();
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let given = app
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let given = app.extern_interrupts.len();
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.extern_interrupts.len();
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if need > given {
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if need > given {
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let s = {
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let s = {
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format!(
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format!(
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@ -131,9 +127,7 @@ pub fn app<'a>(app: &'a App, analysis: &Analysis) -> parse::Result<Extra<'a>> {
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},
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},
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"peripherals" => match v {
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"peripherals" => match v {
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CustomArg::Bool(x) => {
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CustomArg::Bool(x) => peripherals = if *x { true } else { false },
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peripherals = if *x { true } else { false }
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}
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/*
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/*
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CustomArg::UInt(s) if app.args.cores != 1 => {
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CustomArg::UInt(s) if app.args.cores != 1 => {
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@ -152,7 +146,6 @@ pub fn app<'a>(app: &'a App, analysis: &Analysis) -> parse::Result<Extra<'a>> {
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}
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}
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}
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}
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*/
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*/
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_ => {
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_ => {
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return Err(parse::Error::new(
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return Err(parse::Error::new(
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k.span(),
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k.span(),
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@ -35,14 +35,11 @@ pub fn app(app: &App, analysis: &Analysis, extra: &Extra) -> TokenStream2 {
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let pre_init_stmts = pre_init::codegen(&app, analysis, extra);
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let pre_init_stmts = pre_init::codegen(&app, analysis, extra);
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let (const_app_init, root_init, user_init, call_init) =
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let (const_app_init, root_init, user_init, call_init) = init::codegen(app, analysis, extra);
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init::codegen(app, analysis, extra);
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let (const_app_post_init, post_init_stmts) =
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let (const_app_post_init, post_init_stmts) = post_init::codegen(&app, analysis);
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post_init::codegen(&app, analysis);
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let (const_app_idle, root_idle, user_idle, call_idle) =
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let (const_app_idle, root_idle, user_idle, call_idle) = idle::codegen(app, analysis, extra);
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idle::codegen(app, analysis, extra);
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user.push(quote!(
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user.push(quote!(
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#user_init
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#user_init
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@ -84,7 +81,6 @@ pub fn app(app: &App, analysis: &Analysis, extra: &Extra) -> TokenStream2 {
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}
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}
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));
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));
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let (const_app_resources, mod_resources) = resources::codegen(app, analysis, extra);
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let (const_app_resources, mod_resources) = resources::codegen(app, analysis, extra);
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let (const_app_hardware_tasks, root_hardware_tasks, user_hardware_tasks) =
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let (const_app_hardware_tasks, root_hardware_tasks, user_hardware_tasks) =
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@ -29,7 +29,6 @@ pub fn codegen(
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let mut user_tasks = vec![];
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let mut user_tasks = vec![];
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for (name, task) in &app.hardware_tasks {
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for (name, task) in &app.hardware_tasks {
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let (let_instant, instant) = if app.uses_schedule() {
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let (let_instant, instant) = if app.uses_schedule() {
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let m = extra.monotonic();
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let m = extra.monotonic();
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@ -96,8 +95,7 @@ pub fn codegen(
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// `${task}Locals`
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// `${task}Locals`
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let mut locals_pat = None;
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let mut locals_pat = None;
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if !task.locals.is_empty() {
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if !task.locals.is_empty() {
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let (struct_, pat) =
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let (struct_, pat) = locals::codegen(Context::HardwareTask(name), &task.locals, app);
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locals::codegen(Context::HardwareTask(name), &task.locals, app);
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root.push(struct_);
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root.push(struct_);
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locals_pat = Some(pat);
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locals_pat = Some(pat);
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@ -40,9 +40,7 @@ pub fn codegen(
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.late_resources
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.late_resources
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.iter()
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.iter()
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.flat_map(|resources| {
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.flat_map(|resources| {
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resources
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resources.iter().map(|name| {
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.iter()
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.map(|name| {
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let ty = &app.late_resources[name].ty;
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let ty = &app.late_resources[name].ty;
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let cfgs = &app.late_resources[name].cfgs;
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let cfgs = &app.late_resources[name].cfgs;
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@ -5,10 +5,7 @@ use rtic_syntax::ast::App;
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use crate::analyze::Analysis;
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use crate::analyze::Analysis;
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/// Generates code that runs after `#[init]` returns
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/// Generates code that runs after `#[init]` returns
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pub fn codegen(
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pub fn codegen(app: &App, analysis: &Analysis) -> (Vec<TokenStream2>, Vec<TokenStream2>) {
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app: &App,
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analysis: &Analysis,
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) -> (Vec<TokenStream2>, Vec<TokenStream2>) {
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//#TODO remove
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//#TODO remove
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let const_app = vec![];
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let const_app = vec![];
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let mut stmts = vec![];
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let mut stmts = vec![];
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@ -5,14 +5,7 @@ use rtic_syntax::ast::App;
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use crate::{analyze::Analysis, check::Extra, codegen::util};
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use crate::{analyze::Analysis, check::Extra, codegen::util};
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/// Generates code that runs before `#[init]`
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/// Generates code that runs before `#[init]`
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pub fn codegen(
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pub fn codegen(app: &App, analysis: &Analysis, extra: &Extra) -> Vec<TokenStream2> {
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app: &App,
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analysis: &Analysis,
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extra: &Extra,
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) ->
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// `pre_init_stmts`
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Vec<TokenStream2>
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{
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let mut stmts = vec![];
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let mut stmts = vec![];
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// disable interrupts -- `init` must run with interrupts disabled
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// disable interrupts -- `init` must run with interrupts disabled
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@ -1,9 +1,6 @@
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use proc_macro2::TokenStream as TokenStream2;
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use proc_macro2::TokenStream as TokenStream2;
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use quote::quote;
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use quote::quote;
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use rtic_syntax::{
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use rtic_syntax::{analyze::Ownership, ast::App};
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analyze::Ownership,
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ast::App,
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};
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use crate::{analyze::Analysis, check::Extra, codegen::util};
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use crate::{analyze::Analysis, check::Extra, codegen::util};
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@ -66,7 +63,6 @@ pub fn codegen(
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}
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}
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if let Some(Ownership::Contended { ceiling }) = analysis.ownerships.get(name) {
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if let Some(Ownership::Contended { ceiling }) = analysis.ownerships.get(name) {
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mod_resources.push(quote!(
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mod_resources.push(quote!(
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#[allow(non_camel_case_types)]
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#[allow(non_camel_case_types)]
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#(#cfgs)*
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#(#cfgs)*
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@ -45,7 +45,8 @@ pub fn codegen(
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let device = extra.device;
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let device = extra.device;
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let enum_ = util::interrupt_ident();
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let enum_ = util::interrupt_ident();
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let interrupt = &analysis.interrupts.get(&priority);
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let interrupt = &analysis.interrupts.get(&priority);
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let pend = {quote!(
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let pend = {
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quote!(
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rtic::pend(#device::#enum_::#interrupt);
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rtic::pend(#device::#enum_::#interrupt);
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)
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)
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};
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};
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@ -44,10 +44,7 @@ pub fn cfg_core(core: Core, cores: u8) -> Option<TokenStream2> {
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/// There may be more than one free queue per task because we need one for each sender core so we
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/// There may be more than one free queue per task because we need one for each sender core so we
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/// include the sender (e.g. `S0`) in the name
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/// include the sender (e.g. `S0`) in the name
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pub fn fq_ident(task: &Ident) -> Ident {
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pub fn fq_ident(task: &Ident) -> Ident {
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Ident::new(
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Ident::new(&format!("{}_FQ", task.to_string()), Span::call_site())
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&format!("{}_FQ", task.to_string()),
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Span::call_site(),
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)
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}
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}
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/// Generates a `Mutex` implementation
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/// Generates a `Mutex` implementation
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@ -253,10 +250,7 @@ pub fn resources_ident(ctxt: Context, app: &App) -> Ident {
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/// in turn may use more than one ready queue because the queues are SPSC queues so one is needed
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/// in turn may use more than one ready queue because the queues are SPSC queues so one is needed
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/// per sender core.
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/// per sender core.
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pub fn rq_ident(priority: u8) -> Ident {
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pub fn rq_ident(priority: u8) -> Ident {
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Ident::new(
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Ident::new(&format!("P{}_RQ", priority), Span::call_site())
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&format!("P{}_RQ", priority),
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Span::call_site(),
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)
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}
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}
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/// Generates an identifier for a "schedule" function
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/// Generates an identifier for a "schedule" function
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@ -264,10 +258,7 @@ pub fn rq_ident(priority: u8) -> Ident {
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/// The methods of the `Schedule` structs invoke these functions. As one task may be `schedule`-ed
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/// The methods of the `Schedule` structs invoke these functions. As one task may be `schedule`-ed
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/// by different cores we need one "schedule" function per possible task-sender pair
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/// by different cores we need one "schedule" function per possible task-sender pair
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pub fn schedule_ident(name: &Ident) -> Ident {
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pub fn schedule_ident(name: &Ident) -> Ident {
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Ident::new(
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Ident::new(&format!("schedule_{}", name.to_string()), Span::call_site())
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&format!("schedule_{}", name.to_string()),
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Span::call_site(),
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)
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}
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}
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/// Generates an identifier for the `enum` of `schedule`-able tasks
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/// Generates an identifier for the `enum` of `schedule`-able tasks
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@ -287,10 +278,7 @@ pub fn spawn_barrier() -> Ident {
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/// The methods of the `Spawn` structs invoke these functions. As one task may be `spawn`-ed by
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/// The methods of the `Spawn` structs invoke these functions. As one task may be `spawn`-ed by
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/// different cores we need one "spawn" function per possible task-sender pair
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/// different cores we need one "spawn" function per possible task-sender pair
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pub fn spawn_ident(name: &Ident) -> Ident {
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pub fn spawn_ident(name: &Ident) -> Ident {
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Ident::new(
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Ident::new(&format!("spawn_{}", name.to_string()), Span::call_site())
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&format!("spawn_{}", name.to_string()),
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Span::call_site(),
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)
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}
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}
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/// Generates an identifier for the `enum` of `spawn`-able tasks
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/// Generates an identifier for the `enum` of `spawn`-able tasks
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@ -298,10 +286,7 @@ pub fn spawn_ident(name: &Ident) -> Ident {
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/// This identifier needs the same structure as the `RQ` identifier because there's one ready queue
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/// This identifier needs the same structure as the `RQ` identifier because there's one ready queue
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/// for each of these `T` enums
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/// for each of these `T` enums
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pub fn spawn_t_ident(priority: u8) -> Ident {
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pub fn spawn_t_ident(priority: u8) -> Ident {
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Ident::new(
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Ident::new(&format!("P{}_T", priority), Span::call_site())
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&format!("P{}_T", priority),
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Span::call_site(),
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)
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}
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}
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pub fn suffixed(name: &str) -> Ident {
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pub fn suffixed(name: &str) -> Ident {
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