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276 lines
9.4 KiB
Rust
276 lines
9.4 KiB
Rust
// Copyright 2015 The Rust Project Developers. See the COPYRIGHT
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// file at the top-level directory of this distribution and at
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// http://rust-lang.org/COPYRIGHT.
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//
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// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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extern crate rustfmt;
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extern crate diff;
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extern crate regex;
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extern crate term;
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use std::collections::HashMap;
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use std::fs;
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use std::io::{self, Read, BufRead, BufReader};
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use std::path::Path;
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use rustfmt::*;
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use rustfmt::config::{Config, ReportTactic};
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use rustfmt::rustfmt_diff::*;
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static DIFF_CONTEXT_SIZE: usize = 3;
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fn get_path_string(dir_entry: io::Result<fs::DirEntry>) -> String {
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let path = dir_entry.ok().expect("Couldn't get DirEntry.").path();
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path.to_str().expect("Couldn't stringify path.").to_owned()
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}
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// Integration tests. The files in the tests/source are formatted and compared
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// to their equivalent in tests/target. The target file and config can be
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// overriden by annotations in the source file. The input and output must match
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// exactly.
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// FIXME(#28) would be good to check for error messages and fail on them, or at
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// least report.
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#[test]
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fn system_tests() {
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// Get all files in the tests/source directory.
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let files = fs::read_dir("tests/source").ok().expect("Couldn't read source dir.");
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// Turn a DirEntry into a String that represents the relative path to the
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// file.
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let files = files.map(get_path_string);
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let (_reports, count, fails) = check_files(files, WriteMode::Return);
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// Display results.
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println!("Ran {} system tests.", count);
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assert!(fails == 0, "{} system tests failed", fails);
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}
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// Do the same for tests/coverage-source directory
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// the only difference is the coverage mode
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#[test]
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fn coverage_tests() {
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let files = fs::read_dir("tests/coverage-source").ok().expect("Couldn't read source dir.");
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let files = files.map(get_path_string);
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let (_reports, count, fails) = check_files(files, WriteMode::Coverage);
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println!("Ran {} tests in coverage mode.", count);
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assert!(fails == 0, "{} tests failed", fails);
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}
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// Idempotence tests. Files in tests/target are checked to be unaltered by
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// rustfmt.
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#[test]
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fn idempotence_tests() {
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// Get all files in the tests/target directory.
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let files = fs::read_dir("tests/target")
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.ok()
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.expect("Couldn't read target dir.")
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.map(get_path_string);
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let (_reports, count, fails) = check_files(files, WriteMode::Return);
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// Display results.
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println!("Ran {} idempotent tests.", count);
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assert!(fails == 0, "{} idempotent tests failed", fails);
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}
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// Run rustfmt on itself. This operation must be idempotent. We also check that
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// no warnings are emitted.
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#[test]
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fn self_tests() {
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let files = fs::read_dir("src/bin")
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.ok()
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.expect("Couldn't read src dir.")
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.chain(fs::read_dir("tests").ok().expect("Couldn't read tests dir."))
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.map(get_path_string);
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// Hack because there's no `IntoIterator` impl for `[T; N]`.
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let files = files.chain(Some("src/lib.rs".to_owned()).into_iter());
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let (reports, count, fails) = check_files(files, WriteMode::Return);
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let mut warnings = 0;
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// Display results.
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println!("Ran {} self tests.", count);
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assert!(fails == 0, "{} self tests failed", fails);
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for format_report in reports {
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println!("{}", format_report);
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warnings += format_report.warning_count();
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}
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assert!(warnings == 0,
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"Rustfmt's code generated {} warnings",
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warnings);
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}
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// For each file, run rustfmt and collect the output.
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// Returns the number of files checked and the number of failures.
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fn check_files<I>(files: I, write_mode: WriteMode) -> (Vec<FormatReport>, u32, u32)
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where I: Iterator<Item = String>
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{
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let mut count = 0;
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let mut fails = 0;
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let mut reports = vec![];
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for file_name in files.filter(|f| f.ends_with(".rs")) {
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println!("Testing '{}'...", file_name);
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match idempotent_check(file_name, write_mode) {
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Ok(report) => reports.push(report),
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Err(msg) => {
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print_mismatches(msg);
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fails += 1;
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}
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}
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count += 1;
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}
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(reports, count, fails)
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}
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fn print_mismatches(result: HashMap<String, Vec<Mismatch>>) {
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let mut t = term::stdout().unwrap();
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for (file_name, diff) in result {
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print_diff(diff,
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|line_num| format!("\nMismatch at {}:{}:", file_name, line_num));
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}
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assert!(t.reset().unwrap());
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}
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pub fn idempotent_check(filename: String,
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write_mode: WriteMode)
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-> Result<FormatReport, HashMap<String, Vec<Mismatch>>> {
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let sig_comments = read_significant_comments(&filename);
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let mut config = get_config(sig_comments.get("config").map(|x| &(*x)[..]));
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for (key, val) in &sig_comments {
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if key != "target" && key != "config" {
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config.override_value(key, val);
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}
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}
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// Don't generate warnings for to-do items.
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config.report_todo = ReportTactic::Never;
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let mut file_map = format(Path::new(&filename), &config, write_mode);
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let format_report = fmt_lines(&mut file_map, &config);
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// Won't panic, as we're not doing any IO.
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let write_result = filemap::write_all_files(&file_map, WriteMode::Return, &config).unwrap();
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let target = sig_comments.get("target").map(|x| &(*x)[..]);
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handle_result(write_result, target, write_mode).map(|_| format_report)
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}
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// Reads test config file from comments and reads its contents.
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fn get_config(config_file: Option<&str>) -> Config {
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let config_file_name = match config_file {
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None => return Default::default(),
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Some(file_name) => {
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let mut full_path = "tests/config/".to_owned();
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full_path.push_str(&file_name);
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full_path
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}
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};
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let mut def_config_file = fs::File::open(config_file_name)
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.ok()
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.expect("Couldn't open config.");
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let mut def_config = String::new();
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def_config_file.read_to_string(&mut def_config).ok().expect("Couldn't read config.");
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Config::from_toml(&def_config)
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}
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// Reads significant comments of the form: // rustfmt-key: value
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// into a hash map.
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fn read_significant_comments(file_name: &str) -> HashMap<String, String> {
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let file = fs::File::open(file_name)
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.ok()
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.expect(&format!("Couldn't read file {}.", file_name));
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let reader = BufReader::new(file);
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let pattern = r"^\s*//\s*rustfmt-([^:]+):\s*(\S+)";
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let regex = regex::Regex::new(&pattern).ok().expect("Failed creating pattern 1.");
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// Matches lines containing significant comments or whitespace.
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let line_regex = regex::Regex::new(r"(^\s*$)|(^\s*//\s*rustfmt-[^:]+:\s*\S+)")
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.ok()
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.expect("Failed creating pattern 2.");
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reader.lines()
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.map(|line| line.ok().expect("Failed getting line."))
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.take_while(|line| line_regex.is_match(&line))
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.filter_map(|line| {
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regex.captures_iter(&line).next().map(|capture| {
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(capture.at(1).expect("Couldn't unwrap capture.").to_owned(),
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capture.at(2).expect("Couldn't unwrap capture.").to_owned())
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})
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})
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.collect()
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}
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// Compare output to input.
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// TODO: needs a better name, more explanation.
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fn handle_result(result: HashMap<String, String>,
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target: Option<&str>,
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write_mode: WriteMode)
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-> Result<(), HashMap<String, Vec<Mismatch>>> {
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let mut failures = HashMap::new();
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for (file_name, fmt_text) in result {
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// If file is in tests/source, compare to file with same name in tests/target.
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let target = get_target(&file_name, target, write_mode);
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let mut f = fs::File::open(&target).ok().expect("Couldn't open target.");
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let mut text = String::new();
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f.read_to_string(&mut text).ok().expect("Failed reading target.");
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if fmt_text != text {
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let diff = make_diff(&text, &fmt_text, DIFF_CONTEXT_SIZE);
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failures.insert(file_name, diff);
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}
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}
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if failures.is_empty() {
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Ok(())
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} else {
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Err(failures)
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}
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}
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// Map source file paths to their target paths.
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fn get_target(file_name: &str, target: Option<&str>, write_mode: WriteMode) -> String {
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let file_path = Path::new(file_name);
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let (source_path_prefix, target_path_prefix) = match write_mode {
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WriteMode::Coverage => {
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(Path::new("tests/coverage-source/"),
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"tests/coverage-target/")
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}
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_ => (Path::new("tests/source/"), "tests/target/"),
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};
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if file_path.starts_with(source_path_prefix) {
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let mut components = file_path.components();
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// Can't skip(2) as the resulting iterator can't as_path()
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components.next();
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components.next();
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let new_target = match components.as_path().to_str() {
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Some(string) => string,
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None => file_name,
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};
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let base = target.unwrap_or(new_target);
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format!("{}{}", target_path_prefix, base)
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} else {
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file_name.to_owned()
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}
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}
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