Update GEMINI.md with Vim folding mandate and add test cases for set-flag-format CLI command
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@@ -10,15 +10,16 @@ The primary goal is to use the context of CTF challenges (forensics, crypto, web
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2. **Focus on Explanation:** Prioritize high-signal explanations of Python mechanics, libraries, and documentation.
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3. **Summarization:** When directed, summarize documentation (local or web-based) to aid in understanding CTF tools and Python modules.
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4. **Educational Context:** Use the existing scripts and tools in this repository (like `psk_crack.py`, `exploit.sh`, or the `tools/` directory) as examples when explaining technical concepts.
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5. **Vim Folding Markers:** Wrap all classes, command groups, subcommands, and functions inside project implementation files in standard Vim/Neovim folding syntax markers (`# {{{ <name>` and `# }}}`).
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## Interaction Workflow
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When discussing new implementations, features, or additions:
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1. **Discussion**: Discuss implementation details and potential approaches.
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2. **The Pitch**: Provide a clear, technical pitch detailing the planned code modifications.
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3. **Implementation Cycle**: Once the user approves the pitch:
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* **Add Test Cases**: Write or update the corresponding test cases in `test_utils.py` following the SDET instructions.
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* **Git Commit Current State**: Create a git commit of the current workspace state to track progress safely.
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* **Update the Codebase**: Write/update the actual project implementation files as approved.
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* **Add Test Cases**: Write or update the corresponding test cases in the test files (e.g. `tests/test_forensics.py`) following the SDET instructions.
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* **Git Commit Current State**: Create a git commit of the current workspace state (including the new tests) *before* modifying any implementation files.
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* **Update the Codebase**: Write/update the actual project implementation files as approved. Do **NOT** create a git commit after writing this implementation code. This ensures all implementation changes remain unstaged so the user can easily run `git diff` to review them.
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## Python Learning Objectives
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- Understanding standard library modules relevant to security (e.g., `os`, `sys`, `base64`, `hashlib`).
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@@ -295,3 +295,29 @@ def test_forensics_flag_detect_cli_not_found():
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result = runner.invoke(forensics_group, ["flag-detect", str(test_file)])
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assert result.exit_code == 0
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assert "No flag patterns found" in result.output
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def test_set_flag_format_cli():
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"""
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Verifies that 'set-flag-format' CLI command writes the pattern to config.toml.
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"""
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from ctf.commands import set_flag_format
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from ctf.utils import load_config
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runner = CliRunner()
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config_file = Path("/home/venus/code/ctf/config.toml")
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# Save the original config to restore later
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original_config = load_config(str(config_file))
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try:
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result = runner.invoke(set_flag_format, ["TEST_FLAG{[a-z]+}"])
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assert result.exit_code == 0
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assert "Flag format set to" in result.output
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# Verify it was written to config.toml
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updated_config = load_config(str(config_file))
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assert updated_config["Competition"]["flag_format"] == "TEST_FLAG{[a-z]+}"
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finally:
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# Restore original config
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from ctf.utils import write_config
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write_config(original_config, str(config_file))
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