- test_roundtrip_directory: full directory tree with permissions verification - test_roundtrip_mixed_files_and_dirs: mixed file + directory pack/unpack - test_inspect_shows_directory_info: inspect output contains dir/file types and permissions Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
328 lines
10 KiB
Rust
328 lines
10 KiB
Rust
//! CLI round-trip integration tests.
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//!
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//! Each test runs the actual `encrypted_archive` binary via `assert_cmd`,
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//! packs files into an archive, unpacks them, and verifies byte-identical output.
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//! All tests use `tempdir()` for isolation (auto-cleanup, parallel-safe).
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use assert_cmd::Command;
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use predicates::prelude::*;
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use std::fs;
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use std::os::unix::fs::PermissionsExt;
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use tempfile::tempdir;
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/// Helper: get a Command for the encrypted_archive binary.
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fn cmd() -> Command {
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Command::new(assert_cmd::cargo::cargo_bin!("encrypted_archive"))
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}
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/// Single text file: pack "Hello", unpack, verify byte-identical.
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#[test]
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fn test_roundtrip_single_text_file() {
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let dir = tempdir().unwrap();
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let input_file = dir.path().join("hello.txt");
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let archive = dir.path().join("archive.bin");
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let output_dir = dir.path().join("output");
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fs::write(&input_file, b"Hello").unwrap();
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cmd()
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.args(["pack", input_file.to_str().unwrap(), "-o", archive.to_str().unwrap()])
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.assert()
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.success();
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cmd()
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.args(["unpack", archive.to_str().unwrap(), "-o", output_dir.to_str().unwrap()])
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.assert()
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.success();
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let extracted = fs::read(output_dir.join("hello.txt")).unwrap();
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assert_eq!(extracted, b"Hello");
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}
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/// Multiple files: pack two files, unpack, verify both byte-identical.
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#[test]
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fn test_roundtrip_multiple_files() {
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let dir = tempdir().unwrap();
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let text_file = dir.path().join("text.txt");
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let binary_file = dir.path().join("binary.dat");
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let archive = dir.path().join("archive.bin");
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let output_dir = dir.path().join("output");
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fs::write(&text_file, b"Some text content").unwrap();
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fs::write(&binary_file, &[0x42u8; 256]).unwrap();
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cmd()
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.args([
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"pack",
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text_file.to_str().unwrap(),
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binary_file.to_str().unwrap(),
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"-o",
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archive.to_str().unwrap(),
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])
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.assert()
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.success();
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cmd()
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.args(["unpack", archive.to_str().unwrap(), "-o", output_dir.to_str().unwrap()])
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.assert()
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.success();
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assert_eq!(
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fs::read(output_dir.join("text.txt")).unwrap(),
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b"Some text content"
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);
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assert_eq!(
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fs::read(output_dir.join("binary.dat")).unwrap(),
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vec![0x42u8; 256]
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);
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}
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/// Empty file: pack 0-byte file, unpack, verify extracted file is exactly 0 bytes.
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/// This tests PKCS7 full-block padding on 0-byte input (encrypted_size = 16).
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#[test]
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fn test_roundtrip_empty_file() {
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let dir = tempdir().unwrap();
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let input_file = dir.path().join("empty.txt");
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let archive = dir.path().join("archive.bin");
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let output_dir = dir.path().join("output");
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fs::write(&input_file, b"").unwrap();
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cmd()
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.args(["pack", input_file.to_str().unwrap(), "-o", archive.to_str().unwrap()])
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.assert()
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.success();
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cmd()
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.args(["unpack", archive.to_str().unwrap(), "-o", output_dir.to_str().unwrap()])
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.assert()
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.success();
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let extracted = fs::read(output_dir.join("empty.txt")).unwrap();
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assert!(extracted.is_empty(), "Empty file should extract as 0 bytes");
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}
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/// Cyrillic filename: pack file with UTF-8 non-ASCII name, unpack, verify content.
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/// This tests non-ASCII (UTF-8) filename handling in TOC entries.
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#[test]
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fn test_roundtrip_cyrillic_filename() {
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let dir = tempdir().unwrap();
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let input_file = dir.path().join("файл.txt");
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let archive = dir.path().join("archive.bin");
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let output_dir = dir.path().join("output");
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let content = "Содержимое".as_bytes();
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fs::write(&input_file, content).unwrap();
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cmd()
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.args(["pack", input_file.to_str().unwrap(), "-o", archive.to_str().unwrap()])
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.assert()
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.success();
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cmd()
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.args(["unpack", archive.to_str().unwrap(), "-o", output_dir.to_str().unwrap()])
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.assert()
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.success();
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let extracted = fs::read(output_dir.join("файл.txt")).unwrap();
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assert_eq!(extracted, content);
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}
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/// Large file (11MB): pack, unpack, verify byte-identical.
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/// Tests large file handling (>10MB) per Phase 3 success criteria.
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#[test]
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fn test_roundtrip_large_file() {
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let dir = tempdir().unwrap();
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let input_file = dir.path().join("large.bin");
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let archive = dir.path().join("archive.bin");
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let output_dir = dir.path().join("output");
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// Generate 11MB of deterministic pseudo-random data
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let data: Vec<u8> = (0..11_000_000u32)
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.map(|i| i.wrapping_mul(2654435761) as u8)
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.collect();
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fs::write(&input_file, &data).unwrap();
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// Pack with --no-compress bin (skip compression for binary extension)
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cmd()
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.args([
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"pack",
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input_file.to_str().unwrap(),
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"-o",
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archive.to_str().unwrap(),
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"--no-compress",
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"bin",
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])
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.assert()
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.success();
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cmd()
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.args(["unpack", archive.to_str().unwrap(), "-o", output_dir.to_str().unwrap()])
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.assert()
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.success();
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let extracted = fs::read(output_dir.join("large.bin")).unwrap();
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assert_eq!(extracted.len(), data.len(), "Extracted file size must match original");
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assert_eq!(extracted, data, "Extracted file content must be byte-identical");
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}
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/// No-compress flag: pack APK file (auto-detected as no-compress), unpack, verify.
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/// APK extension is in the known compressed extensions list, so compression_flag=0.
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#[test]
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fn test_roundtrip_no_compress_flag() {
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let dir = tempdir().unwrap();
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let input_file = dir.path().join("data.apk");
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let archive = dir.path().join("archive.bin");
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let output_dir = dir.path().join("output");
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// 100 bytes of pattern data
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let data: Vec<u8> = (0..100u8).collect();
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fs::write(&input_file, &data).unwrap();
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cmd()
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.args(["pack", input_file.to_str().unwrap(), "-o", archive.to_str().unwrap()])
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.assert()
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.success();
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cmd()
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.args(["unpack", archive.to_str().unwrap(), "-o", output_dir.to_str().unwrap()])
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.assert()
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.success();
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let extracted = fs::read(output_dir.join("data.apk")).unwrap();
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assert_eq!(extracted, data);
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}
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/// Directory round-trip: pack a directory tree, unpack, verify files, empty dirs, and permissions.
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#[test]
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fn test_roundtrip_directory() {
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let dir = tempdir().unwrap();
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let testdir = dir.path().join("testdir");
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let subdir = testdir.join("subdir");
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let emptydir = testdir.join("empty");
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let archive = dir.path().join("archive.bin");
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let output_dir = dir.path().join("output");
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// Create directory structure
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fs::create_dir_all(&subdir).unwrap();
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fs::create_dir_all(&emptydir).unwrap();
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fs::write(testdir.join("hello.txt"), b"Hello from dir").unwrap();
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fs::write(subdir.join("nested.txt"), b"Nested file").unwrap();
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// Set specific permissions
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fs::set_permissions(&testdir, fs::Permissions::from_mode(0o755)).unwrap();
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fs::set_permissions(testdir.join("hello.txt"), fs::Permissions::from_mode(0o644)).unwrap();
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fs::set_permissions(&subdir, fs::Permissions::from_mode(0o755)).unwrap();
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fs::set_permissions(subdir.join("nested.txt"), fs::Permissions::from_mode(0o755)).unwrap();
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fs::set_permissions(&emptydir, fs::Permissions::from_mode(0o700)).unwrap();
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// Pack directory
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cmd()
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.args(["pack", testdir.to_str().unwrap(), "-o", archive.to_str().unwrap()])
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.assert()
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.success();
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// Unpack
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cmd()
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.args(["unpack", archive.to_str().unwrap(), "-o", output_dir.to_str().unwrap()])
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.assert()
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.success();
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// Verify file contents
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let hello = fs::read(output_dir.join("testdir/hello.txt")).unwrap();
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assert_eq!(hello, b"Hello from dir");
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let nested = fs::read(output_dir.join("testdir/subdir/nested.txt")).unwrap();
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assert_eq!(nested, b"Nested file");
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// Verify empty directory exists
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assert!(
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output_dir.join("testdir/empty").is_dir(),
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"Empty directory should be recreated"
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);
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// Verify permissions
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let nested_mode = fs::metadata(output_dir.join("testdir/subdir/nested.txt"))
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.unwrap()
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.permissions()
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.mode()
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& 0o7777;
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assert_eq!(nested_mode, 0o755, "nested.txt should have mode 0755");
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let empty_mode = fs::metadata(output_dir.join("testdir/empty"))
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.unwrap()
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.permissions()
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.mode()
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& 0o7777;
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assert_eq!(empty_mode, 0o700, "empty dir should have mode 0700");
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}
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/// Mixed files and directories: pack both a standalone file and a directory, verify round-trip.
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#[test]
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fn test_roundtrip_mixed_files_and_dirs() {
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let dir = tempdir().unwrap();
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let standalone = dir.path().join("standalone.txt");
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let mydir = dir.path().join("mydir");
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let archive = dir.path().join("archive.bin");
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let output_dir = dir.path().join("output");
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fs::write(&standalone, b"Standalone").unwrap();
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fs::create_dir_all(&mydir).unwrap();
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fs::write(mydir.join("inner.txt"), b"Inner").unwrap();
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// Pack both file and directory
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cmd()
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.args([
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"pack",
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standalone.to_str().unwrap(),
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mydir.to_str().unwrap(),
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"-o",
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archive.to_str().unwrap(),
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])
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.assert()
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.success();
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// Unpack
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cmd()
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.args(["unpack", archive.to_str().unwrap(), "-o", output_dir.to_str().unwrap()])
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.assert()
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.success();
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// Verify both entries
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assert_eq!(
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fs::read(output_dir.join("standalone.txt")).unwrap(),
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b"Standalone"
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);
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assert_eq!(
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fs::read(output_dir.join("mydir/inner.txt")).unwrap(),
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b"Inner"
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);
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}
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/// Inspect shows directory info: entry type and permissions for directory entries.
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#[test]
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fn test_inspect_shows_directory_info() {
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let dir = tempdir().unwrap();
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let testdir = dir.path().join("testdir");
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let archive = dir.path().join("archive.bin");
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fs::create_dir_all(&testdir).unwrap();
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fs::write(testdir.join("file.txt"), b"content").unwrap();
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cmd()
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.args(["pack", testdir.to_str().unwrap(), "-o", archive.to_str().unwrap()])
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.assert()
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.success();
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// Inspect and check output contains directory info
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cmd()
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.args(["inspect", archive.to_str().unwrap()])
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.assert()
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.success()
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.stdout(predicate::str::contains("dir"))
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.stdout(predicate::str::contains("file"))
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.stdout(predicate::str::contains("0755").or(predicate::str::contains("0775")))
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.stdout(predicate::str::contains("Permissions:"));
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}
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