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use std::path::Path;
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use crate::{
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errors::HgError,
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exit_codes,
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filepatterns::parse_pattern_file_contents,
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matchers::{
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AlwaysMatcher, DifferenceMatcher, IncludeMatcher, Matcher,
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NeverMatcher,
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},
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repo::Repo,
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requirements::NARROW_REQUIREMENT,
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sparse::{self, SparseConfigError, SparseWarning},
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};
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/// The file in .hg/store/ that indicates which paths exit in the store
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const FILENAME: &str = "narrowspec";
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/// The file in .hg/ that indicates which paths exit in the dirstate
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const DIRSTATE_FILENAME: &str = "narrowspec.dirstate";
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/// Pattern prefixes that are allowed in narrow patterns. This list MUST
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/// only contain patterns that are fast and safe to evaluate. Keep in mind
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/// that patterns are supplied by clients and executed on remote servers
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/// as part of wire protocol commands. That means that changes to this
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/// data structure influence the wire protocol and should not be taken
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/// lightly - especially removals.
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pub const VALID_PREFIXES: [&str; 2] = ["path:", "rootfilesin:"];
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/// Return the matcher for the current narrow spec, and all configuration
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/// warnings to display.
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pub fn matcher(
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repo: &Repo,
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) -> Result<(Box<dyn Matcher + Sync>, Vec<SparseWarning>), SparseConfigError> {
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let mut warnings = vec![];
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if !repo.requirements().contains(NARROW_REQUIREMENT) {
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return Ok((Box::new(AlwaysMatcher), warnings));
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}
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// Treat "narrowspec does not exist" the same as "narrowspec file exists
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// and is empty".
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let store_spec = repo.store_vfs().try_read(FILENAME)?.unwrap_or_default();
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let working_copy_spec = repo
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.hg_vfs()
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.try_read(DIRSTATE_FILENAME)?
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.unwrap_or_default();
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if store_spec != working_copy_spec {
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return Err(HgError::abort(
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"abort: working copy's narrowspec is stale",
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exit_codes::STATE_ERROR,
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Some("run 'hg tracked --update-working-copy'".into()),
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)
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.into());
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}
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let config = sparse::parse_config(
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&store_spec,
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sparse::SparseConfigContext::Narrow,
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)?;
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warnings.extend(config.warnings);
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if !config.profiles.is_empty() {
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// TODO (from Python impl) maybe do something with profiles?
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return Err(SparseConfigError::IncludesInNarrow);
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}
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validate_patterns(&config.includes)?;
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validate_patterns(&config.excludes)?;
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if config.includes.is_empty() {
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return Ok((Box::new(NeverMatcher), warnings));
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}
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let (patterns, subwarnings) = parse_pattern_file_contents(
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&config.includes,
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Path::new(""),
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None,
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false,
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true,
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)?;
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warnings.extend(subwarnings.into_iter().map(From::from));
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let mut m: Box<dyn Matcher + Sync> =
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Box::new(IncludeMatcher::new(patterns)?);
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let (patterns, subwarnings) = parse_pattern_file_contents(
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&config.excludes,
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Path::new(""),
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None,
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false,
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true,
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)?;
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if !patterns.is_empty() {
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warnings.extend(subwarnings.into_iter().map(From::from));
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let exclude_matcher = Box::new(IncludeMatcher::new(patterns)?);
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m = Box::new(DifferenceMatcher::new(m, exclude_matcher));
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}
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Ok((m, warnings))
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}
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fn validate_patterns(patterns: &[u8]) -> Result<(), SparseConfigError> {
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for pattern in patterns.split(|c| *c == b'\n') {
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if pattern.is_empty() {
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continue;
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}
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for prefix in VALID_PREFIXES.iter() {
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if pattern.starts_with(prefix.as_bytes()) {
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return Ok(());
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}
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}
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return Err(SparseConfigError::InvalidNarrowPrefix(
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pattern.to_owned(),
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));
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}
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Ok(())
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}
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