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openttd-client/main.py
kovagoadi 2eea541158
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Add scheduled dispatch support (edit + authoritative view)
Editing (game port, OpenTTDClient): a core of JGRPP's scheduled dispatch
DoCommands — set_scheduled_dispatch (enable/disable), add/remove schedule,
add/remove/clear slots, and set duration/start date. Adds the command IDs
to protocol.py.

Viewing (admin, OpenTTDAdminClient.get_dispatch): the GameScript API has no
dispatch support, so a new server patch (docker/patches/0002-*) adds
read-only GSOrder.GetScheduledDispatch* / IsScheduledDispatchEnabled
getters, an AdminBridge GameScript get_dispatch handler exposes them, and
get_dispatch() returns the live schedules and slots (mirrors get_timetable).

Note: set_dispatch_start_date values are normalised by the engine relative
to current game time, so they read back offset from the requested value.

Includes unit + e2e tests, a demo in main.py, and protocol/timetable docs.
The AdminBridge GameScript and the patched OpenTTD-patches clone live
outside this repo; the 0002 patch file is the durable source for the latter.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-24 22:56:37 +02:00

186 lines
8.2 KiB
Python

import asyncio
import logging
import sys
import os
# Add the lib directory to sys.path so we can import the openttd package
sys.path.append(os.path.join(os.path.dirname(__file__), 'lib'))
from openttd import OpenTTDClient
from openttd.protocol import ModifyTimetableFlags
# Configuration
SERVER_HOST = "127.0.0.1"
SERVER_PORT = 3979
SERVER_PASSWORD = "asd"
# Company configuration
COMPANY_ID = 0 # "Én transport"
COMPANY_PASSWORD = "asd123"
# A vehicle owned by COMPANY_ID, used to demonstrate timetable get/set below. Set to a real
# vehicle id to see it in action; leave as None to skip the demonstration.
DEMO_VEHICLE_ID = 7
# A station DEMO_VEHICLE_ID can legally serve, used to demonstrate add_order/remove_order.
DEMO_STATION_ID = 6
async def demo_timetable_workflow(client, vehicle_id):
"""A deliberately thorough walk-through of the timetable API: every ModifyTimetableFlags
variant, clear_field, autofill, timetable start, and lateness reset, on a vehicle assumed
to have at least two orders (positions 0 and 1)."""
ORDER_A, ORDER_B = 0, 1
def show(label):
print(f" -> [{label}] {client.get_vehicle_timetable(vehicle_id)}")
print(f"=== Timetable demo starting for vehicle {vehicle_id} ===")
# 1. Wait/travel times, in game ticks.
print("--- Step 1: set wait/travel times ---")
await client.change_timetable(vehicle_id, ORDER_A, ModifyTimetableFlags.WaitTime, 90)
await client.change_timetable(vehicle_id, ORDER_A, ModifyTimetableFlags.TravelTime, 240)
await client.change_timetable(vehicle_id, ORDER_B, ModifyTimetableFlags.WaitTime, 45)
await asyncio.sleep(0.5)
show("wait/travel times set")
# 2. Lock order A's wait time so autofill won't overwrite it later.
print("--- Step 2: fix order A's wait time ---")
await client.change_timetable(vehicle_id, ORDER_A, ModifyTimetableFlags.SetWaitFixed, 1)
await asyncio.sleep(0.5)
show("order A wait time fixed")
# 3. Cap order B's speed, then remove the cap again (0 = uncapped).
print("--- Step 3: cap and uncap order B's speed ---")
await client.change_timetable(vehicle_id, ORDER_B, ModifyTimetableFlags.TravelSpeed, 80)
await asyncio.sleep(0.5)
show("order B speed capped at 80")
await client.change_timetable(vehicle_id, ORDER_B, ModifyTimetableFlags.TravelSpeed, 0)
await asyncio.sleep(0.5)
show("order B speed cap removed")
# 4. Let the vehicle leave order B early once any cargo is fully loaded.
print("--- Step 4: change order B's leave type ---")
await client.change_timetable(vehicle_id, ORDER_B, ModifyTimetableFlags.SetLeaveType, 2)
await asyncio.sleep(0.5)
show("order B leave type: leave early if any cargo full")
# 5. Assign order A to scheduled-dispatch schedule 0, then unassign it again.
print("--- Step 5: assign and unassign a dispatch schedule ---")
await client.change_timetable(vehicle_id, ORDER_A, ModifyTimetableFlags.AssignSchedule, 0)
await asyncio.sleep(0.5)
show("order A assigned to dispatch schedule 0")
await client.change_timetable(vehicle_id, ORDER_A, ModifyTimetableFlags.AssignSchedule, 0xFFFFFFFF)
await asyncio.sleep(0.5)
show("order A unassigned from dispatch schedule")
# 6. Clear order B's wait time entirely (distinct from setting it to 0).
print("--- Step 6: clear order B's wait time ---")
await client.change_timetable(vehicle_id, ORDER_B, ModifyTimetableFlags.WaitTime, 0, clear_field=True)
await asyncio.sleep(0.5)
show("order B wait time cleared")
# 7. Autofill: start it preserving existing (fixed) wait times, then turn it off again.
print("--- Step 7: toggle autofill ---")
await client.autofill_timetable(vehicle_id, autofill=True, preserve_wait_time=True)
await asyncio.sleep(0.5)
show("autofill enabled (preserving wait times)")
await client.autofill_timetable(vehicle_id, autofill=False)
await asyncio.sleep(0.5)
show("autofill disabled")
# 8. Start the timetable for this vehicle only, then restart it for the whole group.
print("--- Step 8: set timetable start ---")
await client.set_timetable_start(vehicle_id, timetable_all=False, start_date=1_000_000)
await asyncio.sleep(0.5)
show("timetable started (this vehicle only)")
await client.set_timetable_start(vehicle_id, timetable_all=True, start_date=1_500_000)
await asyncio.sleep(0.5)
show("timetable restarted (whole group)")
# 9. Reset lateness for this vehicle, then for the whole group sharing its orders.
print("--- Step 9: reset lateness ---")
await client.set_vehicle_on_time(vehicle_id, apply_to_group=False)
await asyncio.sleep(0.5)
show("lateness reset (this vehicle only)")
await client.set_vehicle_on_time(vehicle_id, apply_to_group=True)
await asyncio.sleep(0.5)
show("lateness reset (whole group)")
# 10. Add an order to the front of the list, then remove it again (net-zero, so the
# vehicle's route is left unchanged). Inserting before position 0 and deleting
# position 0 needs no knowledge of the existing order count.
print(f"--- Step 10: add then remove a 'go to station {DEMO_STATION_ID}' order ---")
await client.add_order(vehicle_id, DEMO_STATION_ID, before_position=0)
await asyncio.sleep(0.5)
print(" -> inserted a goto-station order at position 0")
await client.remove_order(vehicle_id, 0)
await asyncio.sleep(0.5)
print(" -> removed it again (route restored)")
# 11. Scheduled dispatch: create a schedule with two departure slots, enable it, then tear it
# all down again so the vehicle is left as it started. Read it back with
# OpenTTDAdminClient.get_dispatch() (see main_admin.py); the game port has no dispatch read.
print("--- Step 11: scheduled dispatch create/enable, then clean up ---")
await client.add_dispatch_schedule(vehicle_id, start_tick=0, duration=3000)
await client.add_dispatch_slot(vehicle_id, 0, 500)
await client.add_dispatch_slot(vehicle_id, 0, 1500)
await client.set_scheduled_dispatch(vehicle_id, True)
await asyncio.sleep(0.5)
print(" -> created schedule 0 with 2 slots and enabled scheduled dispatch")
await client.set_scheduled_dispatch(vehicle_id, False)
await client.remove_dispatch_schedule(vehicle_id, 0)
await asyncio.sleep(0.5)
print(" -> disabled and removed the schedule (restored)")
print(f"=== Timetable demo finished. Final state for vehicle {vehicle_id}: ===")
print(f" {client.get_vehicle_timetable(vehicle_id)}")
async def run_client():
# 1. Initialize high-level client
username = sys.argv[1] if len(sys.argv) > 1 else "Modular_Joiner"
client = OpenTTDClient(host=SERVER_HOST, port=SERVER_PORT, username=username)
# 2. Setup chat callback (optional)
def chat_logger(cid, msg):
print(f">>> [CHAT] <{cid}> {msg}")
client.on_chat = chat_logger
try:
# 3. Connect and initiate handshake
# The client will handle PAKE auth and encryption automatically
await client.connect(server_password=SERVER_PASSWORD)
# 4. Configure company join
# This will happen automatically once the handshake is done
await client.join_company(company_id=COMPANY_ID, company_password=COMPANY_PASSWORD)
# 5. Wait for the client to be fully synced (map downloaded, states progressed)
print(f"--- Joining as {username}... ---")
await client.joined.wait()
print(f"--- Successfully joined! Client ID: {client.client_id} ---")
# 6. Timetable demonstration (requires DEMO_VEHICLE_ID to be owned by COMPANY_ID)
if DEMO_VEHICLE_ID is not None:
await demo_timetable_workflow(client, DEMO_VEHICLE_ID)
# 7. Lifecycle management
# We wait for either a manual shutdown signal or a 10s timeout
try:
await asyncio.wait_for(client.shutdown_event.wait(), timeout=10.0)
except asyncio.TimeoutError:
print("--- Finished 10s stay, exiting gracefully ---")
await client.quit()
except Exception as e:
print(f"!!! Error: {e}")
if __name__ == "__main__":
# Setup global logging
logging.basicConfig(level=logging.INFO, format='%(levelname)s:%(name)s:%(message)s')
# Run the async loop
try:
asyncio.run(run_client())
except KeyboardInterrupt:
pass