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// Copyright 2019 Raphaël Gomès <rgomes@octobus.net>
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//
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// This software may be used and distributed according to the terms of the
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// GNU General Public License version 2 or any later version.
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use crate::{
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CopyVec, CopyVecEntry, DirstateEntry, DirstatePackError, DirstateParents,
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DirstateParseError, DirstateVec,
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};
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use byteorder::{BigEndian, ReadBytesExt, WriteBytesExt};
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use std::collections::HashMap;
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use std::io::Cursor;
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/// Parents are stored in the dirstate as byte hashes.
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const PARENT_SIZE: usize = 20;
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/// Dirstate entries have a static part of 8 + 32 + 32 + 32 + 32 bits.
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const MIN_ENTRY_SIZE: usize = 17;
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pub fn parse_dirstate(
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contents: &[u8],
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) -> Result<(DirstateParents, DirstateVec, CopyVec), DirstateParseError> {
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if contents.len() < PARENT_SIZE * 2 {
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return Err(DirstateParseError::TooLittleData);
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}
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let mut dirstate_vec = vec![];
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let mut copies = vec![];
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let mut curr_pos = PARENT_SIZE * 2;
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let parents = DirstateParents {
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p1: &contents[..PARENT_SIZE],
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p2: &contents[PARENT_SIZE..curr_pos],
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};
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while curr_pos < contents.len() {
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if curr_pos + MIN_ENTRY_SIZE > contents.len() {
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return Err(DirstateParseError::Overflow);
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}
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let entry_bytes = &contents[curr_pos..];
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let mut cursor = Cursor::new(entry_bytes);
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let state = cursor.read_i8()?;
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let mode = cursor.read_i32::<BigEndian>()?;
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let size = cursor.read_i32::<BigEndian>()?;
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let mtime = cursor.read_i32::<BigEndian>()?;
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let path_len = cursor.read_i32::<BigEndian>()? as usize;
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if path_len > contents.len() - curr_pos {
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return Err(DirstateParseError::Overflow);
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}
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// Slice instead of allocating a Vec needed for `read_exact`
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let path = &entry_bytes[MIN_ENTRY_SIZE..MIN_ENTRY_SIZE + (path_len)];
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let (path, copy) = match memchr::memchr(0, path) {
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None => (path, None),
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Some(i) => (&path[..i], Some(&path[(i + 1)..])),
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};
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if let Some(copy_path) = copy {
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copies.push(CopyVecEntry { path, copy_path });
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};
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dirstate_vec.push((
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path.to_owned(),
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DirstateEntry {
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state,
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mode,
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size,
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mtime,
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},
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));
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curr_pos = curr_pos + MIN_ENTRY_SIZE + (path_len);
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}
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Ok((parents, dirstate_vec, copies))
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}
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pub fn pack_dirstate(
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dirstate_vec: &DirstateVec,
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copymap: &HashMap<Vec<u8>, Vec<u8>>,
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parents: DirstateParents,
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now: i32,
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) -> Result<(Vec<u8>, DirstateVec), DirstatePackError> {
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if parents.p1.len() != PARENT_SIZE || parents.p2.len() != PARENT_SIZE {
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return Err(DirstatePackError::CorruptedParent);
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}
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let expected_size: usize = dirstate_vec
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.iter()
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.map(|(ref filename, _)| {
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let mut length = MIN_ENTRY_SIZE + filename.len();
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if let Some(ref copy) = copymap.get(filename) {
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length += copy.len() + 1;
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}
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length
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})
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.sum();
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let expected_size = expected_size + PARENT_SIZE * 2;
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let mut packed = Vec::with_capacity(expected_size);
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let mut new_dirstate_vec = vec![];
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packed.extend(parents.p1);
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packed.extend(parents.p2);
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for (ref filename, entry) in dirstate_vec {
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let mut new_filename: Vec<u8> = filename.to_owned();
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let mut new_mtime: i32 = entry.mtime;
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if entry.state == 'n' as i8 && entry.mtime == now.into() {
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// The file was last modified "simultaneously" with the current
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// write to dirstate (i.e. within the same second for file-
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// systems with a granularity of 1 sec). This commonly happens
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// for at least a couple of files on 'update'.
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// The user could change the file without changing its size
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// within the same second. Invalidate the file's mtime in
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// dirstate, forcing future 'status' calls to compare the
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// contents of the file if the size is the same. This prevents
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// mistakenly treating such files as clean.
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new_mtime = -1;
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new_dirstate_vec.push((
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filename.to_owned(),
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DirstateEntry {
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mtime: new_mtime,
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..*entry
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},
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));
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}
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if let Some(copy) = copymap.get(filename) {
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new_filename.push('\0' as u8);
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new_filename.extend(copy);
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}
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packed.write_i8(entry.state)?;
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packed.write_i32::<BigEndian>(entry.mode)?;
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packed.write_i32::<BigEndian>(entry.size)?;
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packed.write_i32::<BigEndian>(new_mtime)?;
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packed.write_i32::<BigEndian>(new_filename.len() as i32)?;
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packed.extend(new_filename)
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}
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if packed.len() != expected_size {
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return Err(DirstatePackError::BadSize(expected_size, packed.len()));
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}
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Ok((packed, new_dirstate_vec))
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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#[test]
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fn test_pack_dirstate_empty() {
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let dirstate_vec: DirstateVec = vec![];
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let copymap = HashMap::new();
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let parents = DirstateParents {
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p1: b"12345678910111213141",
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p2: b"00000000000000000000",
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};
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let now: i32 = 15000000;
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let expected =
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(b"1234567891011121314100000000000000000000".to_vec(), vec![]);
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assert_eq!(
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expected,
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pack_dirstate(&dirstate_vec, ©map, parents, now).unwrap()
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);
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}
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#[test]
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fn test_pack_dirstate_one_entry() {
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let dirstate_vec: DirstateVec = vec![(
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vec!['f' as u8, '1' as u8],
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DirstateEntry {
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state: 'n' as i8,
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mode: 0o644,
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size: 0,
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mtime: 791231220,
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},
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)];
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let copymap = HashMap::new();
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let parents = DirstateParents {
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p1: b"12345678910111213141",
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p2: b"00000000000000000000",
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};
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let now: i32 = 15000000;
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let expected = (
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[
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49, 50, 51, 52, 53, 54, 55, 56, 57, 49, 48, 49, 49, 49, 50,
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49, 51, 49, 52, 49, 48, 48, 48, 48, 48, 48, 48, 48, 48, 48,
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48, 48, 48, 48, 48, 48, 48, 48, 48, 48, 110, 0, 0, 1, 164, 0,
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0, 0, 0, 47, 41, 58, 244, 0, 0, 0, 2, 102, 49,
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]
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.to_vec(),
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vec![],
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);
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assert_eq!(
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expected,
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pack_dirstate(&dirstate_vec, ©map, parents, now).unwrap()
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);
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}
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#[test]
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fn test_pack_dirstate_one_entry_with_copy() {
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let dirstate_vec: DirstateVec = vec![(
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b"f1".to_vec(),
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DirstateEntry {
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state: 'n' as i8,
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mode: 0o644,
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size: 0,
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mtime: 791231220,
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},
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)];
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let mut copymap = HashMap::new();
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copymap.insert(b"f1".to_vec(), b"copyname".to_vec());
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let parents = DirstateParents {
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p1: b"12345678910111213141",
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p2: b"00000000000000000000",
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};
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let now: i32 = 15000000;
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let expected = (
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[
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49, 50, 51, 52, 53, 54, 55, 56, 57, 49, 48, 49, 49, 49, 50,
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49, 51, 49, 52, 49, 48, 48, 48, 48, 48, 48, 48, 48, 48, 48,
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48, 48, 48, 48, 48, 48, 48, 48, 48, 48, 110, 0, 0, 1, 164, 0,
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0, 0, 0, 47, 41, 58, 244, 0, 0, 0, 11, 102, 49, 0, 99, 111,
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112, 121, 110, 97, 109, 101,
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]
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.to_vec(),
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vec![],
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);
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assert_eq!(
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expected,
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pack_dirstate(&dirstate_vec, ©map, parents, now).unwrap()
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);
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}
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#[test]
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fn test_parse_pack_one_entry_with_copy() {
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let dirstate_vec: DirstateVec = vec![(
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b"f1".to_vec(),
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DirstateEntry {
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state: 'n' as i8,
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mode: 0o644,
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size: 0,
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mtime: 791231220,
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},
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)];
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let mut copymap = HashMap::new();
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copymap.insert(b"f1".to_vec(), b"copyname".to_vec());
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let parents = DirstateParents {
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p1: b"12345678910111213141",
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p2: b"00000000000000000000",
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};
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let now: i32 = 15000000;
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let result =
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pack_dirstate(&dirstate_vec, ©map, parents, now).unwrap();
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assert_eq!(
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(
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parents,
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dirstate_vec,
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copymap
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.iter()
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.map(|(k, v)| CopyVecEntry {
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path: k.as_slice(),
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copy_path: v.as_slice()
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})
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.collect()
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),
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parse_dirstate(result.0.as_slice()).unwrap()
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)
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}
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#[test]
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fn test_parse_pack_multiple_entries_with_copy() {
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let dirstate_vec: DirstateVec = vec![
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(
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b"f1".to_vec(),
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DirstateEntry {
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state: 'n' as i8,
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mode: 0o644,
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size: 0,
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mtime: 791231220,
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},
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),
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(
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b"f2".to_vec(),
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DirstateEntry {
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state: 'm' as i8,
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mode: 0o777,
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size: 1000,
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mtime: 791231220,
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},
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),
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(
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b"f3".to_vec(),
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DirstateEntry {
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state: 'r' as i8,
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mode: 0o644,
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size: 234553,
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mtime: 791231220,
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},
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),
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(
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b"f4\xF6".to_vec(),
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DirstateEntry {
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state: 'a' as i8,
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mode: 0o644,
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size: -1,
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mtime: -1,
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},
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),
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];
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let mut copymap = HashMap::new();
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copymap.insert(b"f1".to_vec(), b"copyname".to_vec());
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copymap.insert(b"f4\xF6".to_vec(), b"copyname2".to_vec());
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let parents = DirstateParents {
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p1: b"12345678910111213141",
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p2: b"00000000000000000000",
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};
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let now: i32 = 15000000;
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let result =
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pack_dirstate(&dirstate_vec, ©map, parents, now).unwrap();
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assert_eq!(
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(parents, dirstate_vec, copymap),
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parse_dirstate(result.0.as_slice())
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.and_then(|(p, dvec, cvec)| Ok((
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p,
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dvec,
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cvec.iter()
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.map(|entry| (
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entry.path.to_vec(),
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entry.copy_path.to_vec()
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))
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.collect()
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)))
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.unwrap()
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)
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}
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#[test]
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/// https://www.mercurial-scm.org/repo/hg/rev/af3f26b6bba4
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fn test_parse_pack_one_entry_with_copy_and_time_conflict() {
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let dirstate_vec: DirstateVec = vec![(
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b"f1".to_vec(),
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DirstateEntry {
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state: 'n' as i8,
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mode: 0o644,
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size: 0,
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mtime: 15000000,
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},
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)];
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let mut copymap = HashMap::new();
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copymap.insert(b"f1".to_vec(), b"copyname".to_vec());
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let parents = DirstateParents {
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p1: b"12345678910111213141",
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p2: b"00000000000000000000",
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};
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let now: i32 = 15000000;
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let result =
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pack_dirstate(&dirstate_vec, ©map, parents, now).unwrap();
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assert_eq!(
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(
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parents,
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vec![(
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b"f1".to_vec(),
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DirstateEntry {
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state: 'n' as i8,
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mode: 0o644,
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size: 0,
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mtime: -1
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}
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)],
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copymap
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.iter()
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.map(|(k, v)| CopyVecEntry {
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path: k.as_slice(),
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copy_path: v.as_slice()
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})
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.collect()
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),
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parse_dirstate(result.0.as_slice()).unwrap()
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)
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}
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}
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