Michael Stangl 9de80d2f2a Web-M1-Ausbau: JSON-Gaesteliste, GA-Verlauf, Python-Serversteuerung, tische.ini-Upload
- bestellung.xml -> bestellung.json: neuer JSONConfig (loest XMLConfig ab),
  alle work-Beispiele konvertiert, Doku (CLAUDE/README/dateiformate) umgestellt
- ga.py: Beobachtungsobjekt Entwicklung zeichnet den Loesungsverlauf auf,
  neuer Schalter --show-development erzeugt Entwicklung.svg (beste/mittlere/
  schlechteste Wertigkeit ueber die Zyklus-Aktionen)
- web/main.py: neuer Endpunkt /tische-datei (tische.ini-Upload, ast.literal_eval),
  Frontend kann jetzt eine tische.ini laden
- libs/webserver.py: plattformunabhaengige start/stop/status-Steuerung der
  Web-Testinstanz (ersetzt run_web_helper.ps1), raeumt auch verwaiste
  --reload-Prozessbaeume zuverlaessig auf
- Sicherheit/Modernisierung: eval() -> ast.literal_eval in Tische/Strafliste,
  sicherer Mini-Auswerter fuer die String-Ausdruecke in zyklus.cfg,
  defaultdict(set) in Plaetze
- SVG: Tischnummer fett zentriert im Tischkreis statt "Tisch x" darueber
- Tests: JSONConfig, Entwicklung und der Zyklus-Auswerter abgedeckt (9 Tests)

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-11 12:49:42 +02:00

platz

A genetic-algorithm-based solver that assigns people to tables ("Tische") for an event, given group memberships, table sizes/neighbor relationships, and a configurable penalty scheme. It reads a guest list (XML) and a table layout (INI), searches for a good seating using a small custom GA framework, and writes the result to text/CSV output files.

This is Python 3 code (migrated from an original Python 2 implementation). There are no third-party dependencies (standard library only), so requirements.txt is empty — it exists only so bin/install_py has something to install.

Project structure

platz/
├── bin/           # environment + launcher scripts (.bat + .sh pairs)
├── cfg/           # GA cycle definition and penalty scheme
├── libs/          # the two Python modules (ga.py, Strukturdaten.py, platz.py)
├── tests/         # unittest suite for Strukturdaten.py
└── work/          # per-run input (table layout, guest list) and output
    ├── test1/
    └── test2/
  • libs/platz.py — entry point; wires together config, input data, and the GA run.
  • libs/ga.py — generic genetic-algorithm scaffolding (Loesung, Zyklus, Farm, Entwicklung).
  • libs/Strukturdaten.py — domain model for the seating problem (Person, Gruppe, Tisch, Strafliste, Sitzplatzverteilung, JSONConfig).

Running the tests

python -m unittest discover -s tests -p "test_*.py" -v

If a stray global PYTHONPATH entry shadows the standard-library tests package name (unrelated to this project), clear it for the command, e.g. PYTHONPATH= python -m unittest discover -s tests -p "test_*.py" -v.

Setup

  1. Install a Python interpreter (py on Windows / python3 on Linux/macOS must be on PATH).

  2. Run the installer for your platform to create a .venv and install requirements.txt:

    :: Windows
    bin\install_py.bat
    
    # Linux/macOS
    bin/install_py.sh
    

All bin/ scripts derive PLATZ automatically from their own location (no path editing required) by calling setenv.bat/setenv.sh first.

Running

:: Windows
bin\activate_venv.bat
bin\platz.bat --indir work\test1
# Linux/macOS
source bin/activate_venv.sh
bin/platz.sh --indir work/test1

bin/platz.bat / bin/platz.sh call setenv to set PLATZ, PLATZ_CFG, PLATZ_LIBS, PLATZ_WORK, PLATZ_IN, PLATZ_OUT, add PLATZ_LIBS to PYTHONPATH, and then run libs/platz.py, forwarding any extra arguments (like --indir) to it.

Other helper scripts (bin/setenv.*, bin/get_cmd.*) follow the same environment convention:

  • setenv — sets all PLATZ_* environment variables and creates missing folders; sourced by every other script, not normally called directly.
  • activate_venv — activates the .venv created by install_py.
  • get_cmd — opens a new shell with the PLATZ_* environment already set.

Configuring a run

--indir <dir> is required and points at a directory containing the input files and receiving the output files for one run — e.g. work/test1/ or work/test2/:

  • tische.ini — one section per table: Nummer, Hof (venue/court), Plaetze (seat count), Nachbarliste (neighboring table ids), Koordinaten.
  • bestellung.json{ "gruppen": [ ... ] }, each group with a "personen" list (vorname/nachname/optional titel), an optional "anzahl" (how many bookings to expand each person into), an optional "name" (display label) and an optional "tisch" (pins the group as a VIP group to that table instead of placing it via the GA).

To run against a different dataset, create a new folder with a tische.ini and bestellung.json following the same layout and pass it via --indir.

cfg/platz.cfg still selects the GA cycle/penalty config (independent of --indir):

[Config]
Zyklusdatei=$PLATZ_CFG/zyklus.cfg
Zyklusart=Easy
Strafendatei=$PLATZ_CFG/strafen.cfg

cfg/zyklus.cfg defines the GA run schedule ("Zyklus") as an Abfolge (sequence of actions) and matching Anzahl (counts): e create, s select best, S select randomly, m mutate, j keep parents, z advance generation.

cfg/strafen.cfg defines the penalty scheme: cost of splitting a group across tables (by group size and number of splits), cost of a person sitting alone or without a group-mate at a neighboring table, and per-table seat-utilization penalties.

Output

A run writes two files into the --indir directory:

  • TischePersonen.txt — table → seated people, with venue/table/seat numbers.
  • PersonenTische.csv — person → table, sorted alphabetically by name.

Pass --tosvg to additionally write Sitzplatzverteilung.svg into the --indir directory: tables are drawn as white circles, people as colored circles inside their table's circle (color = group). See doc/docu_tests.md for example renderings.

Further details

See CLAUDE.md for a deeper architectural walkthrough of the GA framework and domain model, intended for AI coding assistants but equally useful for human contributors.

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Platzverwaltung (converted from SVN)
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