|
12 | 12 | from ax.adapter.adapter_utils import ( |
13 | 13 | _get_adapter_training_data, |
14 | 14 | arm_to_np_array, |
| 15 | + can_map_to_binary, |
15 | 16 | extract_search_space_digest, |
16 | 17 | feasible_hypervolume, |
| 18 | + is_unordered_choice, |
17 | 19 | process_contextual_datasets, |
18 | 20 | transform_search_space, |
19 | 21 | validate_and_apply_final_transform, |
@@ -414,3 +416,106 @@ def test_validate_and_apply_final_transform_none_target_point(self) -> None: |
414 | 416 |
|
415 | 417 | # Assert: confirm target point remains None |
416 | 418 | self.assertIsNone(target_p) |
| 419 | + |
| 420 | + def test_is_unordered_choice(self) -> None: |
| 421 | + # Test cases where is_unordered_choice should return True |
| 422 | + # (with min_choices=3, max_choices=5) |
| 423 | + for p in [ |
| 424 | + ChoiceParameter("p", ParameterType.INT, values=[0, 1, 2], is_ordered=False), |
| 425 | + ChoiceParameter( |
| 426 | + "p", ParameterType.INT, values=[0, 1, 2, 4, 5], is_ordered=False |
| 427 | + ), |
| 428 | + ChoiceParameter( |
| 429 | + "p", ParameterType.STRING, values=["a", "b", "c", "d"], is_ordered=False |
| 430 | + ), |
| 431 | + ]: |
| 432 | + with self.subTest(p=p): |
| 433 | + self.assertTrue(is_unordered_choice(p, min_choices=3, max_choices=5)) |
| 434 | + |
| 435 | + # Test cases where is_unordered_choice should return False |
| 436 | + # (with min_choices=3, max_choices=5) |
| 437 | + for p in [ |
| 438 | + # Too few choices |
| 439 | + ChoiceParameter("p", ParameterType.INT, values=[0, 1], is_ordered=False), |
| 440 | + # Ordered choice (INT) |
| 441 | + ChoiceParameter( |
| 442 | + "p", ParameterType.INT, values=[0, 1, 2, 4], is_ordered=True |
| 443 | + ), |
| 444 | + # Range parameter (not a choice) |
| 445 | + RangeParameter("p", parameter_type=ParameterType.INT, lower=0, upper=3), |
| 446 | + # Ordered choice (STRING) |
| 447 | + ChoiceParameter( |
| 448 | + "p", ParameterType.STRING, values=["0", "1", "2"], is_ordered=True |
| 449 | + ), |
| 450 | + ]: |
| 451 | + with self.subTest(p=p): |
| 452 | + self.assertFalse(is_unordered_choice(p, min_choices=3, max_choices=5)) |
| 453 | + |
| 454 | + # Test error cases |
| 455 | + p = ChoiceParameter("p", ParameterType.INT, values=[0, 1, 2], is_ordered=False) |
| 456 | + with self.assertRaisesRegex( |
| 457 | + UserInputError, "`min_choices` must be a non-negative integer." |
| 458 | + ): |
| 459 | + is_unordered_choice(p, min_choices=-3) |
| 460 | + with self.assertRaisesRegex( |
| 461 | + UserInputError, "`max_choices` must be a non-negative integer." |
| 462 | + ): |
| 463 | + is_unordered_choice(p, max_choices=-1) |
| 464 | + with self.assertRaisesRegex( |
| 465 | + UserInputError, "`min_choices` cannot be larger than than `max_choices`." |
| 466 | + ): |
| 467 | + is_unordered_choice(p, min_choices=3, max_choices=2) |
| 468 | + |
| 469 | + def test_can_map_to_binary(self) -> None: |
| 470 | + # Test cases where can_map_to_binary should return True |
| 471 | + for p in [ |
| 472 | + # Int range with exactly 2 values |
| 473 | + RangeParameter( |
| 474 | + name="p", parameter_type=ParameterType.INT, lower=0, upper=1 |
| 475 | + ), |
| 476 | + RangeParameter( |
| 477 | + name="p", parameter_type=ParameterType.INT, lower=3, upper=4 |
| 478 | + ), |
| 479 | + # Choice with exactly 2 values |
| 480 | + ChoiceParameter( |
| 481 | + name="p", |
| 482 | + parameter_type=ParameterType.INT, |
| 483 | + values=[0, 1], |
| 484 | + is_ordered=False, |
| 485 | + ), |
| 486 | + ChoiceParameter( |
| 487 | + name="p", |
| 488 | + parameter_type=ParameterType.STRING, |
| 489 | + values=["a", "b"], |
| 490 | + is_ordered=False, |
| 491 | + ), |
| 492 | + ]: |
| 493 | + with self.subTest(p=p): |
| 494 | + self.assertTrue(can_map_to_binary(p)) |
| 495 | + |
| 496 | + # Test cases where can_map_to_binary should return False |
| 497 | + for p in [ |
| 498 | + # Float range (continuous, not binary) |
| 499 | + RangeParameter( |
| 500 | + name="p", parameter_type=ParameterType.FLOAT, lower=0, upper=1 |
| 501 | + ), |
| 502 | + # Int range with more than 2 values |
| 503 | + RangeParameter( |
| 504 | + name="p", parameter_type=ParameterType.INT, lower=0, upper=3 |
| 505 | + ), |
| 506 | + # Choice with more than 2 values |
| 507 | + ChoiceParameter( |
| 508 | + name="p", |
| 509 | + parameter_type=ParameterType.INT, |
| 510 | + values=[0, 1, 2], |
| 511 | + is_ordered=False, |
| 512 | + ), |
| 513 | + ChoiceParameter( |
| 514 | + name="p", |
| 515 | + parameter_type=ParameterType.STRING, |
| 516 | + values=["a", "b", "c"], |
| 517 | + is_ordered=False, |
| 518 | + ), |
| 519 | + ]: |
| 520 | + with self.subTest(p=p): |
| 521 | + self.assertFalse(can_map_to_binary(p)) |
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