131 lines
5.4 KiB
Rust
131 lines
5.4 KiB
Rust
use crate::error::{TranslateError, TranslateErrorKind};
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use crate::snippet::Style;
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use crate::{DiagnosticArg, DiagnosticMessage, FluentBundle};
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use rustc_data_structures::sync::Lrc;
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use rustc_error_messages::FluentArgs;
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use std::borrow::Cow;
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use std::env;
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use std::error::Report;
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/// Convert diagnostic arguments (a rustc internal type that exists to implement
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/// `Encodable`/`Decodable`) into `FluentArgs` which is necessary to perform translation.
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///
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/// Typically performed once for each diagnostic at the start of `emit_diagnostic` and then
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/// passed around as a reference thereafter.
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pub fn to_fluent_args<'iter, 'arg: 'iter>(
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iter: impl Iterator<Item = DiagnosticArg<'iter, 'arg>>,
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) -> FluentArgs<'arg> {
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let mut args = if let Some(size) = iter.size_hint().1 {
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FluentArgs::with_capacity(size)
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} else {
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FluentArgs::new()
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};
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for (k, v) in iter {
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args.set(k.clone(), v.clone());
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}
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args
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}
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pub trait Translate {
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/// Return `FluentBundle` with localized diagnostics for the locale requested by the user. If no
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/// language was requested by the user then this will be `None` and `fallback_fluent_bundle`
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/// should be used.
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fn fluent_bundle(&self) -> Option<&Lrc<FluentBundle>>;
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/// Return `FluentBundle` with localized diagnostics for the default locale of the compiler.
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/// Used when the user has not requested a specific language or when a localized diagnostic is
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/// unavailable for the requested locale.
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fn fallback_fluent_bundle(&self) -> &FluentBundle;
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/// Convert `DiagnosticMessage`s to a string, performing translation if necessary.
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fn translate_messages(
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&self,
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messages: &[(DiagnosticMessage, Style)],
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args: &FluentArgs<'_>,
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) -> Cow<'_, str> {
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Cow::Owned(
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messages
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.iter()
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.map(|(m, _)| self.translate_message(m, args).map_err(Report::new).unwrap())
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.collect::<String>(),
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)
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}
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/// Convert a `DiagnosticMessage` to a string, performing translation if necessary.
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fn translate_message<'a>(
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&'a self,
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message: &'a DiagnosticMessage,
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args: &'a FluentArgs<'_>,
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) -> Result<Cow<'_, str>, TranslateError<'_>> {
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trace!(?message, ?args);
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let (identifier, attr) = match message {
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DiagnosticMessage::Str(msg) | DiagnosticMessage::Eager(msg) => {
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return Ok(Cow::Borrowed(msg));
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}
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DiagnosticMessage::FluentIdentifier(identifier, attr) => (identifier, attr),
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};
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let translate_with_bundle =
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|bundle: &'a FluentBundle| -> Result<Cow<'_, str>, TranslateError<'_>> {
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let message = bundle
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.get_message(identifier)
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.ok_or(TranslateError::message(identifier, args))?;
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let value = match attr {
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Some(attr) => message
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.get_attribute(attr)
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.ok_or(TranslateError::attribute(identifier, args, attr))?
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.value(),
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None => message.value().ok_or(TranslateError::value(identifier, args))?,
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};
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debug!(?message, ?value);
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let mut errs = vec![];
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let translated = bundle.format_pattern(value, Some(args), &mut errs);
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debug!(?translated, ?errs);
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if errs.is_empty() {
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Ok(translated)
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} else {
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Err(TranslateError::fluent(identifier, args, errs))
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}
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};
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try {
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match self.fluent_bundle().map(|b| translate_with_bundle(b)) {
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// The primary bundle was present and translation succeeded
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Some(Ok(t)) => t,
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// If `translate_with_bundle` returns `Err` with the primary bundle, this is likely
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// just that the primary bundle doesn't contain the message being translated, so
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// proceed to the fallback bundle.
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Some(Err(
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primary @ TranslateError::One {
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kind: TranslateErrorKind::MessageMissing, ..
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},
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)) => translate_with_bundle(self.fallback_fluent_bundle())
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.map_err(|fallback| primary.and(fallback))?,
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// Always yeet out for errors on debug (unless
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// `RUSTC_TRANSLATION_NO_DEBUG_ASSERT` is set in the environment - this allows
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// local runs of the test suites, of builds with debug assertions, to test the
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// behaviour in a normal build).
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Some(Err(primary))
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if cfg!(debug_assertions)
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&& env::var("RUSTC_TRANSLATION_NO_DEBUG_ASSERT").is_err() =>
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{
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do yeet primary
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}
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// ..otherwise, for end users, an error about this wouldn't be useful or actionable, so
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// just hide it and try with the fallback bundle.
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Some(Err(primary)) => translate_with_bundle(self.fallback_fluent_bundle())
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.map_err(|fallback| primary.and(fallback))?,
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// The primary bundle is missing, proceed to the fallback bundle
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None => translate_with_bundle(self.fallback_fluent_bundle())
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.map_err(|fallback| TranslateError::primary(identifier, args).and(fallback))?,
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}
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}
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}
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}
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