Files
ortools-clone/examples/python/maze_escape_sat.py
Florian OMNES e179c8b847 Feature/xpress only (#115)
* remove python script

* remove RTE actions

* fix test_xpress_interface.cc

* remove callback_xpress.py

* revert writing colnames and rownames

* accept suggestion from Mizux

* clean

* change cmake/README.md

* try fix build bazel

* try fix build bazel add MPSWriteError.h

* xpress tests gracefully exit if Xpress not found

* add integer and linear programming test for dotnet python and java

* remove MPSWriteError

* try fix Window build

* remove useless line from CMakeLists.txt

* try fix test under windows

* reformat

* use XPRESS_LP instead of XPRESS for linear programming examples

* tools: add --platform arg when possible

make script more resilient/cross-platform

* [CP-SAT] convert to PEP8 convention

* use XPRSmipoptimize and XPRSlpoptimize instead of XPRSminim and XPRSmaxim (#114)

* use XPRSmipoptimize and XPRSlpoptimize instead of XPRSminim and XPRSmaxim

* clean xpress/environment files

* accept changes: empty char* parameter for XPRS*optimize

* Add test on number iterations with LP basis

* fix gtests flags

* refactor

* suggestions by @flomnes

* remove unwanted files

---------

Co-authored-by: Andrea Sgattoni <andrea.sgattoni@rte-france.com>
Co-authored-by: Laurent Perron <lperron@google.com>
Co-authored-by: Corentin Le Molgat <corentinl@google.com>
Co-authored-by: Andrea Sgattoni <andrea.sgattoni@gmail.com>
2023-11-20 12:43:41 +01:00

161 lines
5.4 KiB
Python

#!/usr/bin/env python3
# Copyright 2010-2022 Google LLC
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
# http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
"""Excape the maze while collecting treasures in order.
The path must begin at the 'start' position, finish at the 'end' position,
visit all boxes in order, and walk on each block in a 4x4x4 map exactly once.
Admissible moves are one step in one of the 6 directions:
x+, x-, y+, y-, z+(up), z-(down)
"""
from typing import Sequence
from absl import app
from absl import flags
from google.protobuf import text_format
from ortools.sat.python import cp_model
_OUTPUT_PROTO = flags.DEFINE_string(
"output_proto", "", "Output file to write the cp_model proto to."
)
_PARAMS = flags.DEFINE_string(
"params", "num_search_workers:8,log_search_progress:true", "Sat solver parameters."
)
def add_neighbor(size, x, y, z, dx, dy, dz, model, index_map, position_to_rank, arcs):
"""Checks if the neighbor is valid, and adds it to the model."""
if (
x + dx < 0
or x + dx >= size
or y + dy < 0
or y + dy >= size
or z + dz < 0
or z + dz >= size
):
return
before_index = index_map[(x, y, z)]
before_rank = position_to_rank[(x, y, z)]
after_index = index_map[(x + dx, y + dy, z + dz)]
after_rank = position_to_rank[(x + dx, y + dy, z + dz)]
move_literal = model.new_bool_var("")
model.add(after_rank == before_rank + 1).only_enforce_if(move_literal)
arcs.append((before_index, after_index, move_literal))
def escape_the_maze(params, output_proto):
"""Escapes the maze."""
size = 4
boxes = [(0, 1, 0), (2, 0, 1), (1, 3, 1), (3, 1, 3)]
start = (3, 3, 0)
end = (1, 0, 0)
# Builds a map between each position in the grid and a unique integer between
# 0 and size^3 - 1.
index_map = {}
reverse_map = []
counter = 0
for x in range(size):
for y in range(size):
for z in range(size):
index_map[(x, y, z)] = counter
reverse_map.append((x, y, z))
counter += 1
# Starts building the model.
model = cp_model.CpModel()
position_to_rank = {}
for coord in reverse_map:
position_to_rank[coord] = model.new_int_var(0, counter - 1, f"rank_{coord}")
# Path constraints.
model.add(position_to_rank[start] == 0)
model.add(position_to_rank[end] == counter - 1)
for i in range(len(boxes) - 1):
model.add(position_to_rank[boxes[i]] < position_to_rank[boxes[i + 1]])
# Circuit constraint: visit all blocks exactly once, and maintains the rank
# of each block.
arcs = []
for x in range(size):
for y in range(size):
for z in range(size):
add_neighbor(
size, x, y, z, -1, 0, 0, model, index_map, position_to_rank, arcs
)
add_neighbor(
size, x, y, z, 1, 0, 0, model, index_map, position_to_rank, arcs
)
add_neighbor(
size, x, y, z, 0, -1, 0, model, index_map, position_to_rank, arcs
)
add_neighbor(
size, x, y, z, 0, 1, 0, model, index_map, position_to_rank, arcs
)
add_neighbor(
size, x, y, z, 0, 0, -1, model, index_map, position_to_rank, arcs
)
add_neighbor(
size, x, y, z, 0, 0, 1, model, index_map, position_to_rank, arcs
)
# Closes the loop as the constraint expects a circuit, not a path.
arcs.append((index_map[end], index_map[start], True))
# Adds the circuit (hamiltonian path) constraint.
model.add_circuit(arcs)
# Exports the model if required.
if output_proto:
model.export_to_file(output_proto)
# Solve model.
solver = cp_model.CpSolver()
if params:
text_format.Parse(params, solver.parameters)
solver.parameters.log_search_progress = True
result = solver.solve(model)
# Prints solution.
if result == cp_model.OPTIMAL:
path = [""] * counter
for x in range(size):
for y in range(size):
for z in range(size):
position = (x, y, z)
rank = solver.value(position_to_rank[position])
msg = f"({x}, {y}, {z})"
if position == start:
msg += " [start]"
elif position == end:
msg += " [end]"
else:
for b in range(len(boxes)):
if position == boxes[b]:
msg += f" [boxes {b}]"
path[rank] = msg
print(path)
def main(argv: Sequence[str]) -> None:
if len(argv) > 1:
raise app.UsageError("Too many command-line arguments.")
escape_the_maze(_PARAMS.value, _OUTPUT_PROTO.value)
if __name__ == "__main__":
app.run(main)