2019-06-13 23:56:59 +02:00
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use proc_macro2::TokenStream as TokenStream2;
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use quote::quote;
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2020-06-11 19:18:29 +02:00
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use rtic_syntax::{ast::App, Context};
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2019-06-13 23:56:59 +02:00
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2020-10-05 21:57:44 +02:00
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use crate::{analyze::Analysis, check::Extra, codegen::util};
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pub fn codegen(
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ctxt: Context,
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resources_tick: bool,
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app: &App,
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analysis: &Analysis,
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extra: &Extra,
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) -> TokenStream2 {
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2019-06-13 23:56:59 +02:00
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let mut items = vec![];
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let mut fields = vec![];
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let mut values = vec![];
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2020-10-16 10:20:43 +02:00
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// Used to copy task cfgs to the whole module
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let mut task_cfgs = vec![];
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2019-06-13 23:56:59 +02:00
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let name = ctxt.ident(app);
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2020-12-12 23:24:54 +01:00
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let app_name = &app.name;
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let app_path = quote! {crate::#app_name};
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2019-06-13 23:56:59 +02:00
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let mut lt = None;
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match ctxt {
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2020-08-27 13:21:56 +02:00
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Context::Init => {
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2020-12-10 20:33:13 +01:00
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fields.push(quote!(
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/// Core (Cortex-M) peripherals
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pub core: rtic::export::Peripherals
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));
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2019-06-13 23:56:59 +02:00
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2020-08-27 13:21:56 +02:00
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if extra.peripherals {
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2020-10-23 10:35:56 +02:00
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let device = &extra.device;
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2019-06-13 23:56:59 +02:00
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fields.push(quote!(
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/// Device peripherals
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pub device: #device::Peripherals
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));
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values.push(quote!(device: #device::Peripherals::steal()));
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}
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2020-10-01 20:01:25 +02:00
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lt = Some(quote!('a));
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fields.push(quote!(
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/// Critical section token for init
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pub cs: rtic::export::CriticalSection<#lt>
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));
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values.push(quote!(cs: rtic::export::CriticalSection::new()));
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2019-06-13 23:56:59 +02:00
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values.push(quote!(core));
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}
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2020-08-27 13:21:56 +02:00
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Context::Idle => {}
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2019-06-13 23:56:59 +02:00
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Context::HardwareTask(..) => {
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2020-12-10 20:33:13 +01:00
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// None for now.
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2019-06-13 23:56:59 +02:00
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}
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Context::SoftwareTask(..) => {
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2020-12-10 20:33:13 +01:00
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// None for now.
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2019-06-13 23:56:59 +02:00
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}
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}
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if ctxt.has_locals(app) {
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let ident = util::locals_ident(ctxt, app);
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items.push(quote!(
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#[doc(inline)]
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pub use super::#ident as Locals;
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));
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}
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if ctxt.has_resources(app) {
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let ident = util::resources_ident(ctxt, app);
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let lt = if resources_tick {
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lt = Some(quote!('a));
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Some(quote!('a))
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} else {
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None
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};
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items.push(quote!(
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#[doc(inline)]
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pub use super::#ident as Resources;
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));
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fields.push(quote!(
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/// Resources this task has access to
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pub resources: Resources<#lt>
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));
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let priority = if ctxt.is_init() {
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None
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} else {
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Some(quote!(priority))
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};
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values.push(quote!(resources: Resources::new(#priority)));
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}
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2020-08-27 13:21:56 +02:00
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if let Context::Init = ctxt {
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2020-12-10 20:33:13 +01:00
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let late_fields = analysis
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.late_resources
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.iter()
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.flat_map(|resources| {
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resources.iter().map(|name| {
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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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quote!(
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#(#cfgs)*
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pub #name: #ty
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)
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})
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})
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.collect::<Vec<_>>();
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2019-06-13 23:56:59 +02:00
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2020-10-01 19:38:49 +02:00
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items.push(quote!(
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2020-12-10 20:33:13 +01:00
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/// Resources initialized at runtime
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#[allow(non_snake_case)]
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pub struct LateResources {
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#(#late_fields),*
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}
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2020-10-01 19:38:49 +02:00
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));
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2020-12-03 21:04:06 +01:00
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2020-12-10 20:33:13 +01:00
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let monotonic_types: Vec<_> = app
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.monotonics
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.iter()
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.map(|(_, monotonic)| {
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2021-02-18 19:30:59 +01:00
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let mono = util::mangle_monotonic_type(&monotonic.ident.to_string());
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2020-12-12 23:24:54 +01:00
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quote! {#app_path::#mono}
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2020-12-10 20:33:13 +01:00
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})
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.collect();
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2020-12-03 21:04:06 +01:00
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items.push(quote!(
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2020-12-10 20:33:13 +01:00
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/// Monotonics used by the system
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#[allow(non_snake_case)]
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pub struct Monotonics(
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2021-02-04 20:22:02 +01:00
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#(pub #monotonic_types),*
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2020-12-10 20:33:13 +01:00
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);
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2020-12-03 21:04:06 +01:00
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));
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2019-06-13 23:56:59 +02:00
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}
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let doc = match ctxt {
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2020-08-27 13:21:56 +02:00
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Context::Idle => "Idle loop",
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Context::Init => "Initialization function",
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2019-06-13 23:56:59 +02:00
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Context::HardwareTask(_) => "Hardware task",
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Context::SoftwareTask(_) => "Software task",
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};
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let core = if ctxt.is_init() {
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2020-12-08 20:49:13 +01:00
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Some(quote!(core: rtic::export::Peripherals,))
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2019-06-13 23:56:59 +02:00
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} else {
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None
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};
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let priority = if ctxt.is_init() {
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None
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} else {
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2020-06-11 19:18:29 +02:00
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Some(quote!(priority: &#lt rtic::export::Priority))
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2019-06-13 23:56:59 +02:00
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};
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items.push(quote!(
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/// Execution context
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pub struct Context<#lt> {
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#(#fields,)*
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}
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impl<#lt> Context<#lt> {
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#[inline(always)]
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2020-12-10 20:33:13 +01:00
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pub unsafe fn new(#core #priority) -> Self {
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2019-06-13 23:56:59 +02:00
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Context {
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#(#values,)*
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}
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}
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}
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));
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2020-10-05 21:57:44 +02:00
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// not sure if this is the right way, maybe its backwards,
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// that spawn_module should put in in root
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if let Context::SoftwareTask(..) = ctxt {
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let spawnee = &app.software_tasks[name];
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let priority = spawnee.args.priority;
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let t = util::spawn_t_ident(priority);
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let cfgs = &spawnee.cfgs;
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2020-10-16 10:20:43 +02:00
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// Store a copy of the task cfgs
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task_cfgs = cfgs.clone();
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2020-12-10 20:33:13 +01:00
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let (args, tupled, untupled, ty) = util::regroup_inputs(&spawnee.inputs);
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2020-10-05 21:57:44 +02:00
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let args = &args;
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let tupled = &tupled;
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let fq = util::fq_ident(name);
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let rq = util::rq_ident(priority);
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let inputs = util::inputs_ident(name);
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2020-10-23 10:35:56 +02:00
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let device = &extra.device;
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2020-10-05 21:57:44 +02:00
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let enum_ = util::interrupt_ident();
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2020-10-23 10:35:56 +02:00
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let interrupt = &analysis
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.interrupts
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.get(&priority)
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.expect("RTIC-ICE: interrupt identifer not found")
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.0;
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2020-10-05 21:57:44 +02:00
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2020-10-11 18:38:38 +02:00
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// Spawn caller
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2020-10-05 21:57:44 +02:00
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items.push(quote!(
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#(#cfgs)*
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pub fn spawn(#(#args,)*) -> Result<(), #ty> {
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let input = #tupled;
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2020-10-08 17:33:16 +02:00
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2020-10-11 18:38:38 +02:00
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unsafe {
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if let Some(index) = rtic::export::interrupt::free(|_| #app_path::#fq.dequeue()) {
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2020-10-05 21:57:44 +02:00
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#app_path::#inputs
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.get_unchecked_mut(usize::from(index))
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.as_mut_ptr()
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.write(input);
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2020-10-11 18:38:38 +02:00
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rtic::export::interrupt::free(|_| {
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#app_path::#rq.enqueue_unchecked((#app_path::#t::#name, index));
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});
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2020-10-05 21:57:44 +02:00
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2020-10-11 18:38:38 +02:00
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rtic::pend(#device::#enum_::#interrupt);
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2020-10-05 21:57:44 +02:00
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2020-10-11 18:38:38 +02:00
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Ok(())
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} else {
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Err(input)
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}
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2020-10-05 21:57:44 +02:00
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}
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2020-10-08 17:33:16 +02:00
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2020-10-05 21:57:44 +02:00
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}));
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2020-10-11 18:38:38 +02:00
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2020-12-10 20:33:13 +01:00
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// Schedule caller
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for (_, monotonic) in &app.monotonics {
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2020-12-12 23:24:54 +01:00
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let instants = util::monotonic_instants_ident(name, &monotonic.ident);
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2021-02-22 20:59:03 +01:00
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let monotonic_name = monotonic.ident.to_string();
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2020-12-10 20:33:13 +01:00
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let tq = util::tq_ident(&monotonic.ident.to_string());
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let t = util::schedule_t_ident();
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let m = &monotonic.ident;
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2021-02-22 20:59:03 +01:00
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let m_mangled = util::mangle_monotonic_type(&monotonic_name);
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let m_ident = util::monotonic_ident(&monotonic_name);
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2020-12-12 23:24:54 +01:00
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let m_isr = &monotonic.args.binds;
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let enum_ = util::interrupt_ident();
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2020-12-10 20:33:13 +01:00
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if monotonic.args.default {
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items.push(quote!(pub use #m::spawn_after;));
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items.push(quote!(pub use #m::spawn_at;));
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}
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2021-02-18 19:30:59 +01:00
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let (enable_interrupt, pend) = if &*m_isr.to_string() == "SysTick" {
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2020-12-13 14:52:16 +01:00
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(
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2021-02-18 19:30:59 +01:00
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quote!(core::mem::transmute::<_, cortex_m::peripheral::SYST>(())
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.enable_interrupt()),
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2020-12-13 14:52:16 +01:00
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quote!(cortex_m::peripheral::SCB::set_pendst()),
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)
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} else {
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let rt_err = util::rt_err_ident();
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(
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quote!(rtic::export::NVIC::unmask(#app_path::#rt_err::#enum_::#m_isr)),
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quote!(rtic::pend(#app_path::#rt_err::#enum_::#m_isr)),
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)
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};
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2020-12-10 20:33:13 +01:00
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items.push(quote!(
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pub mod #m {
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#(#cfgs)*
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2021-02-04 20:22:02 +01:00
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pub fn spawn_after<D>(
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duration: D,
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2020-12-10 20:33:13 +01:00
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#(,#args)*
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2021-02-04 20:22:02 +01:00
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) -> Result<(), #ty>
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where D: rtic::time::duration::Duration + rtic::time::fixed_point::FixedPoint,
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2021-02-18 19:30:59 +01:00
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D::T: Into<<#app_path::#m_mangled as rtic::time::Clock>::T>,
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2021-02-04 20:22:02 +01:00
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{
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2021-02-18 19:30:59 +01:00
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let instant = #app_path::#m::now();
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2020-12-10 20:33:13 +01:00
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spawn_at(instant + duration, #(,#untupled)*)
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}
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#(#cfgs)*
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pub fn spawn_at(
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2021-02-18 19:30:59 +01:00
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instant: rtic::time::Instant<#app_path::#m_mangled>
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2020-12-10 20:33:13 +01:00
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#(,#args)*
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) -> Result<(), #ty> {
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unsafe {
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let input = #tupled;
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if let Some(index) = rtic::export::interrupt::free(|_| #app_path::#fq.dequeue()) {
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#app_path::#inputs
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.get_unchecked_mut(usize::from(index))
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.as_mut_ptr()
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.write(input);
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#app_path::#instants
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.get_unchecked_mut(usize::from(index))
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.as_mut_ptr()
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.write(instant);
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let nr = rtic::export::NotReady {
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instant,
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index,
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task: #app_path::#t::#name,
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};
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2021-02-22 20:59:03 +01:00
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rtic::export::interrupt::free(|_|
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if let Some(mono) = #app_path::#m_ident.as_mut() {
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#app_path::#tq.enqueue_unchecked(
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nr,
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|| #enable_interrupt,
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|| #pend,
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mono)
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} else {
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// We can only use the timer queue if `init` has returned, and it
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// writes the `Some(monotonic)` we are accessing here.
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core::hint::unreachable_unchecked()
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});
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2020-12-10 20:33:13 +01:00
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Ok(())
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} else {
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Err(input)
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}
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}
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}
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}));
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}
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2020-10-05 21:57:44 +02:00
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}
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2019-06-13 23:56:59 +02:00
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if !items.is_empty() {
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2020-10-11 19:41:57 +02:00
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let user_imports = &app.user_imports;
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|
|
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|
2019-06-13 23:56:59 +02:00
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quote!(
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#[allow(non_snake_case)]
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2020-10-16 10:20:43 +02:00
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#(#task_cfgs)*
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2019-06-13 23:56:59 +02:00
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#[doc = #doc]
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|
pub mod #name {
|
2020-10-11 19:41:57 +02:00
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#(
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#[allow(unused_imports)]
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|
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#user_imports
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)*
|
2019-06-13 23:56:59 +02:00
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#(#items)*
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}
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)
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} else {
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quote!()
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}
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}
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