268 lines
9.0 KiB
Python
268 lines
9.0 KiB
Python
from pathlib import Path
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import toml
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import os
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import stat
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import sys
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from click.testing import CliRunner
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from ctf.utils import load_config, active_categories
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from ctf.forensics import forensics_group, inspect
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# Define the persistent test environment path
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TEST_ENV = Path("tests/env")
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# =====================================================================
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# 1. Test Strategy Summary
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# =====================================================================
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# Core scenarios tested:
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#
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# A. Happy Path:
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# - Verifying metadata attributes (permissions, ownership, size,
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# hard links, inode, device) map exactly to filesystem ground truth.
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#
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# B. Boundary Conditions:
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# - Testing empty files (0 bytes) for correct apparent size and allocation.
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# - Testing file permissions changes (e.g. read-only, executable) and
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# making sure the parsed octal/symbolic codes match.
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# - Testing multiple hard links (count > 1).
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#
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# C. Edge Cases & OS Portability:
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# - Extended attributes (xattr) support, handling platforms where xattr
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# is not present or supported on the active file system.
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# - Graceful system identity fallbacks for UID/GID names when passwd/group
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# databases are unavailable or running on non-Unix systems.
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#
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# D. Error Handling:
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# - Accessing non-existent paths (CLI validation errors).
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# =====================================================================
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# =====================================================================
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# 2. Mocking/Setup Requirements
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# =====================================================================
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# - Filesystem sandbox: Uses `tests/env/` to dynamically create files
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# with specific mode bits, content, and links.
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# - No external network/API mocking is required.
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# - OS-specific conditional blocks handle platforms (e.g., Windows)
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# where POSIX ownership resolution or xattr is not native.
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# =====================================================================
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def test_load_config_static():
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"""Verifies load_config using the persistent test file."""
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config_file = TEST_ENV / "config.toml"
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test_data = {
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"Competition": {"name": "PersistentComp"},
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"Enviroment": {"data_dir": str(TEST_ENV.absolute())}
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}
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config_file.parent.mkdir(parents=True, exist_ok=True)
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with open(config_file, "w") as f:
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toml.dump(test_data, f)
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loaded_data = load_config(str(config_file))
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assert loaded_data["Competition"]["name"] == "PersistentComp"
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def test_active_categories_static():
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"""Verifies active_categories using the pre-created 'comp1' folder."""
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comp_dir = TEST_ENV / "comp1"
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comp_dir.mkdir(parents=True, exist_ok=True)
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(comp_dir / "web").mkdir(exist_ok=True)
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(comp_dir / "pwn").mkdir(exist_ok=True)
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cats = active_categories(comp_dir)
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cat_names = [c.name for c in cats]
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assert "web" in cat_names
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assert "pwn" in cat_names
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# --- Task-Specific Universal Metadata Tests ---
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def test_inspect_permissions():
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"""
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Task 1: POSIX Permissions.
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Verifies that the parsed octal and symbolic representation of permissions
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matches Python's native os.stat mode decoding.
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"""
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test_file = TEST_ENV / "perm_test.bin"
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with open(test_file, "wb") as f:
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f.write(b"data")
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# Set permissions explicitly to 0o755 (rwxr-xr-x)
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test_file.chmod(0o755)
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meta = inspect.callback(str(test_file))
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# Assert correct octal format
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assert meta.permissions_octal == "0o755"
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# Assert correct symbolic format (standard file type prefix '-')
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assert meta.permissions_symbolic == "-rwxr-xr-x"
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# Change permissions to 0o644 (rw-r--r--)
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test_file.chmod(0o644)
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meta_new = inspect.callback(str(test_file))
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assert meta_new.permissions_octal == "0o644"
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assert meta_new.permissions_symbolic == "-rw-r--r--"
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def test_inspect_ownership():
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"""
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Task 2: Ownership Identity.
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Verifies that numeric UID/GID and resolved username/groupname match.
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"""
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test_file = TEST_ENV / "owner_test.bin"
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with open(test_file, "wb") as f:
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f.write(b"data")
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stat_info = test_file.stat()
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meta = inspect.callback(str(test_file))
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assert meta.owner_uid == stat_info.st_uid
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assert meta.owner_gid == stat_info.st_gid
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# On Unix, verify that user and group strings are resolved
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if sys.platform != "win32":
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import pwd
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import grp
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expected_user = pwd.getpwuid(stat_info.st_uid).pw_name
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expected_group = grp.getgrgid(stat_info.st_gid).gr_name
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assert meta.owner_username == expected_user
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assert meta.owner_groupname == expected_group
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else:
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# Fallback for Windows
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assert isinstance(meta.owner_username, str)
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assert isinstance(meta.owner_groupname, str)
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def test_inspect_allocation():
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"""
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Task 3: Allocation Metrics.
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Verifies apparent file size matches size_bytes, and allocated_size
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corresponds to st_blocks * 512 bytes.
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"""
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test_file = TEST_ENV / "alloc_test.bin"
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with open(test_file, "wb") as f:
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f.write(b"A" * 1234)
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stat_info = test_file.stat()
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meta = inspect.callback(str(test_file))
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assert meta.size == 1234
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# st_blocks is Unix-specific. On other platforms, fallback to size on disk
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if hasattr(stat_info, "st_blocks"):
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expected_blocks_size = stat_info.st_blocks * 512
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assert meta.allocated_size == expected_blocks_size
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else:
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assert meta.allocated_size >= 1234
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def test_inspect_hard_links():
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"""
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Task 4: Hard Link Count.
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Verifies that the hard link count changes when files are linked.
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"""
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test_file = TEST_ENV / "link_test.bin"
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with open(test_file, "wb") as f:
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f.write(b"link")
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meta_single = inspect.callback(str(test_file))
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assert meta_single.hard_links == 1
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# Create a hard link
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link_file = TEST_ENV / "link_test_hard.bin"
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if link_file.exists():
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link_file.unlink()
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try:
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os.link(str(test_file), str(link_file))
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meta_linked = inspect.callback(str(test_file))
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assert meta_linked.hard_links == 2
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finally:
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if link_file.exists():
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link_file.unlink()
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def test_inspect_inode_device():
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"""
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Task 5: Inode & Device Identifiers.
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Verifies that the unique Inode number and Device ID match os.stat results.
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"""
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test_file = TEST_ENV / "inode_test.bin"
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with open(test_file, "wb") as f:
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f.write(b"data")
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stat_info = test_file.stat()
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meta = inspect.callback(str(test_file))
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assert meta.inode == stat_info.st_ino
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assert meta.device == stat_info.st_dev
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def test_inspect_extended_attributes():
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"""
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Task 6: Extended Attributes (xattr).
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Checks that user-defined extended attributes can be retrieved if supported
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by the platform and filesystem.
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"""
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test_file = TEST_ENV / "xattr_test.bin"
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with open(test_file, "wb") as f:
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f.write(b"data")
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# Attempt to set an extended attribute (Linux/macOS specific)
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has_xattr_support = False
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if sys.platform in ("linux", "darwin"):
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try:
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import xattr
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# Use user namespace for custom attribute
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os.setxattr(str(test_file), "user.ctf_flag", b"FLAG{filesystem_metadata_ftw}")
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has_xattr_support = True
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except (ImportError, OSError, AttributeError):
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pass
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meta = inspect.callback(str(test_file))
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if has_xattr_support:
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assert "user.ctf_flag" in meta.extended_attributes
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assert meta.extended_attributes["user.ctf_flag"] == "FLAG{filesystem_metadata_ftw}"
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else:
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# Should gracefully return an empty dict if not supported or none defined
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assert isinstance(meta.extended_attributes, dict)
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# --- CLI Validation Tests ---
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def test_forensics_inspect_cli_success():
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"""
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Verifies that 'forensics inspect' successfully runs via the CLI and prints
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the metadata in a formatted table.
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"""
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runner = CliRunner()
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test_file = TEST_ENV / "test_file.png"
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with open(test_file, "wb") as f:
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f.write(b"\x89PNG\r\n\x1a\n")
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result = runner.invoke(forensics_group, ["inspect", str(test_file)])
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assert result.exit_code == 0
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assert "Metadata: test_file.png" in result.output
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assert "Size" in result.output
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assert "89504E47" in result.output
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def test_forensics_inspect_cli_missing_file():
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"""
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Verifies that the CLI fails gracefully when a non-existent file path is specified.
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"""
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runner = CliRunner()
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result = runner.invoke(forensics_group, ["inspect", "non_existent_file.png"])
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assert result.exit_code != 0
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assert "does not exist" in result.output
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def test_forensics_signatures_cli():
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"""
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Verifies that 'forensics signatures' runs successfully and displays
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the list of supported file signatures.
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"""
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runner = CliRunner()
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result = runner.invoke(forensics_group, ["signatures"])
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assert result.exit_code == 0
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assert "Supported Magic Signatures" in result.output
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assert "PNG Image" in result.output
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assert "89504E47" in result.output
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