fix(solc): fix cache and allowed paths bug (#998)
* fix: don't emit on error * fix: allowed-paths condition * fix(solc): cache and allowed paths bug
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cc96245b1d
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0c42c23746
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@ -581,7 +581,7 @@ impl<'a, T: ArtifactOutput> ArtifactsCacheInner<'a, T> {
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}
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}
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/// inserts the filtered source with the fiven version
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/// inserts the filtered source with the given version
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fn insert_filtered_source(&mut self, file: PathBuf, source: Source, version: Version) {
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match self.filtered.entry(file) {
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hash_map::Entry::Occupied(mut entry) => {
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@ -593,35 +593,62 @@ impl<'a, T: ArtifactOutput> ArtifactsCacheInner<'a, T> {
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}
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}
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/// Returns only those sources that
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/// Returns only dirty sources that:
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/// - are new
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/// - were changed
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/// - their imports were changed
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/// - their artifact is missing
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/// This also includes their respective imports
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fn filter(&mut self, sources: Sources, version: &Version) -> Sources {
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self.fill_hashes(&sources);
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sources
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let mut imports_of_dirty = HashSet::new();
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// separates all source files that fit the criteria (dirty) from those that don't (clean)
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let (mut dirty_sources, clean_sources) = sources
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.into_iter()
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.filter_map(|(file, source)| self.requires_solc(file, source, version))
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.collect()
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.map(|(file, source)| self.filter_source(file, source, version))
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.fold(
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(Sources::default(), Vec::new()),
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|(mut dirty_sources, mut clean_sources), source| {
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if source.dirty {
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// mark all files that are imported by a dirty file
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imports_of_dirty.extend(self.edges.all_imported_nodes(source.idx));
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dirty_sources.insert(source.file, source.source);
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} else {
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clean_sources.push(source);
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}
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/// Returns `Some` if the file _needs_ to be compiled and `None` if the artifact can be reu-used
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fn requires_solc(
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&mut self,
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file: PathBuf,
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source: Source,
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version: &Version,
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) -> Option<(PathBuf, Source)> {
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(dirty_sources, clean_sources)
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},
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);
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for clean_source in clean_sources {
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let FilteredSource { file, source, idx, .. } = clean_source;
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if imports_of_dirty.contains(&idx) {
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// file is imported by a dirty file
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dirty_sources.insert(file, source);
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} else {
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self.insert_filtered_source(file, source, version.clone());
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}
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}
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// track dirty sources internally
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for (file, source) in dirty_sources.iter() {
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self.insert_new_cache_entry(file, source, version.clone());
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}
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dirty_sources
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}
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/// Returns the state of the given source file.
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fn filter_source(&self, file: PathBuf, source: Source, version: &Version) -> FilteredSource {
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let idx = self.edges.node_id(&file);
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if !self.is_dirty(&file, version) &&
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self.edges.imports(&file).iter().all(|file| !self.is_dirty(file, version))
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{
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self.insert_filtered_source(file, source, version.clone());
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None
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FilteredSource { file, source, idx, dirty: false }
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} else {
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self.insert_new_cache_entry(&file, &source, version.clone());
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Some((file, source))
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FilteredSource { file, source, idx, dirty: true }
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}
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}
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@ -674,6 +701,14 @@ impl<'a, T: ArtifactOutput> ArtifactsCacheInner<'a, T> {
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}
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}
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/// Helper type to represent the state of a source file
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struct FilteredSource {
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file: PathBuf,
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source: Source,
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idx: usize,
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dirty: bool,
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}
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/// Abstraction over configured caching which can be either non-existent or an already loaded cache
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#[allow(clippy::large_enum_variant)]
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#[derive(Debug)]
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@ -179,7 +179,7 @@ impl<'a, T: ArtifactOutput> ProjectCompiler<'a, T> {
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let Self { edges, project, mut sources } = self;
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let mut cache = ArtifactsCache::new(project, edges)?;
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// retain and compile only dirty sources
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// retain and compile only dirty sources and all their imports
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sources = sources.filtered(&mut cache);
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Ok(PreprocessedState { sources, cache })
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@ -216,18 +216,22 @@ struct CompiledState<'a, T: ArtifactOutput> {
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impl<'a, T: ArtifactOutput> CompiledState<'a, T> {
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/// advance to the next state by handling all artifacts
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///
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/// Writes all output contracts to disk if enabled in the `Project`
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/// Writes all output contracts to disk if enabled in the `Project` and if the build was
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/// successful
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fn write_artifacts(self) -> Result<ArtifactsState<'a, T>> {
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let CompiledState { output, cache } = self;
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// write all artifacts
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let compiled_artifacts = if !cache.project().no_artifacts {
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// write all artifacts via the handler but only if the build succeeded
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let compiled_artifacts = if cache.project().no_artifacts {
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cache.project().artifacts_handler().output_to_artifacts(&output.contracts)
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} else if output.has_error() {
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tracing::trace!("skip writing cache file due to solc errors: {:?}", output.errors);
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cache.project().artifacts_handler().output_to_artifacts(&output.contracts)
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} else {
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cache
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.project()
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.artifacts_handler()
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.on_output(&output.contracts, &cache.project().paths)?
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} else {
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cache.project().artifacts_handler().output_to_artifacts(&output.contracts)
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};
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Ok(ArtifactsState { output, cache, compiled_artifacts })
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@ -125,9 +125,11 @@ impl<T: ArtifactOutput> Project<T> {
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&self.artifacts
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}
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/// Applies the configured settings to the given `Solc`
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/// Applies the configured arguments to the given `Solc`
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///
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/// This will set the `--allow-paths` to the paths configured for the `Project`, if any.
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fn configure_solc(&self, mut solc: Solc) -> Solc {
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if self.allowed_lib_paths.0.is_empty() {
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if solc.args.is_empty() && !self.allowed_lib_paths.0.is_empty() {
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solc = solc.arg("--allow-paths").arg(self.allowed_lib_paths.to_string());
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}
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solc
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@ -91,6 +91,11 @@ impl GraphEdges {
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&self.edges[from]
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}
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/// Returns an iterator that yields all imports of a node and all their imports
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pub fn all_imported_nodes(&self, from: usize) -> impl Iterator<Item = usize> + '_ {
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NodesIter::new(from, self).skip(1)
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}
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/// Returns all files imported by the given file
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pub fn imports(&self, file: impl AsRef<Path>) -> HashSet<&PathBuf> {
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if let Some(start) = self.indices.get(file.as_ref()).copied() {
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@ -100,6 +105,11 @@ impl GraphEdges {
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}
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}
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/// Returns the id of the given file
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pub fn node_id(&self, file: impl AsRef<Path>) -> usize {
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self.indices[file.as_ref()]
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}
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/// Returns true if the `file` was originally included when the graph was first created and not
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/// added when all `imports` were resolved
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pub fn is_input_file(&self, file: impl AsRef<Path>) -> bool {
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@ -613,3 +613,43 @@ contract LinkTest {
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let s = serde_json::to_string(&bytecode).unwrap();
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assert_eq!(bytecode.clone(), serde_json::from_str(&s).unwrap());
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}
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#[test]
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fn can_recompile_with_changes() {
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let mut tmp = TempProject::dapptools().unwrap();
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tmp.project_mut().allowed_lib_paths = vec![tmp.root().join("modules")].into();
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let content = r#"
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pragma solidity ^0.8.10;
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import "../modules/B.sol";
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contract A {}
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"#;
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tmp.add_source("A", content).unwrap();
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tmp.add_contract(
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"modules/B",
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r#"
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pragma solidity ^0.8.10;
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contract B {}
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"#,
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)
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.unwrap();
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let compiled = tmp.compile().unwrap();
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assert!(!compiled.has_compiler_errors());
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assert!(compiled.find("A").is_some());
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assert!(compiled.find("B").is_some());
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let compiled = tmp.compile().unwrap();
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assert!(compiled.find("A").is_some());
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assert!(compiled.find("B").is_some());
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assert!(compiled.is_unchanged());
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// modify A.sol
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tmp.add_source("A", format!("{}\n", content)).unwrap();
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let compiled = tmp.compile().unwrap();
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assert!(!compiled.has_compiler_errors());
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assert!(!compiled.is_unchanged());
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assert!(compiled.find("A").is_some());
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assert!(compiled.find("B").is_some());
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}
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