| Conditions | 79 |
| Total Lines | 282 |
| Code Lines | 192 |
| Lines | 33 |
| Ratio | 11.7 % |
| Tests | 132 |
| CRAP Score | 79 |
| Changes | 0 | ||
Small methods make your code easier to understand, in particular if combined with a good name. Besides, if your method is small, finding a good name is usually much easier.
For example, if you find yourself adding comments to a method's body, this is usually a good sign to extract the commented part to a new method, and use the comment as a starting point when coming up with a good name for this new method.
Commonly applied refactorings include:
If many parameters/temporary variables are present:
Complex classes like abydos.distance._synoname.Synoname.dist_abs() often do a lot of different things. To break such a class down, we need to identify a cohesive component within that class. A common approach to find such a component is to look for fields/methods that share the same prefixes, or suffixes.
Once you have determined the fields that belong together, you can apply the Extract Class refactoring. If the component makes sense as a sub-class, Extract Subclass is also a candidate, and is often faster.
| 1 | # -*- coding: utf-8 -*- |
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| 361 | 1 | def dist_abs( |
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| 362 | self, |
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| 363 | src, |
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| 364 | tar, |
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| 365 | word_approx_min=0.3, |
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| 366 | char_approx_min=0.73, |
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| 367 | tests=2 ** 12 - 1, |
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| 368 | ret_name=False, |
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| 369 | ): |
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| 370 | """Return the Synoname similarity type of two words. |
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| 371 | |||
| 372 | Parameters |
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| 373 | ---------- |
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| 374 | src : str |
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| 375 | Source string for comparison |
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| 376 | tar : str |
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| 377 | Target string for comparison |
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| 378 | word_approx_min : float |
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| 379 | The minimum word approximation value to signal a 'word_approx' |
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| 380 | match |
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| 381 | char_approx_min : float |
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| 382 | The minimum character approximation value to signal a 'char_approx' |
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| 383 | match |
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| 384 | tests : int or Iterable |
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| 385 | Either an integer indicating tests to perform or a list of test |
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| 386 | names to perform (defaults to performing all tests) |
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| 387 | ret_name : bool |
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| 388 | If True, returns the match name rather than its integer equivalent |
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| 389 | |||
| 390 | Returns |
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| 391 | ------- |
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| 392 | int (or str if ret_name is True) |
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| 393 | Synoname value |
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| 394 | |||
| 395 | Examples |
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| 396 | -------- |
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| 397 | >>> synoname(('Breghel', 'Pieter', ''), ('Brueghel', 'Pieter', '')) |
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| 398 | 2 |
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| 399 | >>> synoname(('Breghel', 'Pieter', ''), ('Brueghel', 'Pieter', ''), |
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| 400 | ... ret_name=True) |
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| 401 | 'omission' |
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| 402 | >>> synoname(('Dore', 'Gustave', ''), |
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| 403 | ... ('Dore', 'Paul Gustave Louis Christophe', ''), ret_name=True) |
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| 404 | 'inclusion' |
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| 405 | >>> synoname(('Pereira', 'I. R.', ''), ('Pereira', 'I. Smith', ''), |
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| 406 | ... ret_name=True) |
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| 407 | 'word_approx' |
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| 408 | |||
| 409 | """ |
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| 410 | 1 | if isinstance(tests, Iterable): |
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| 411 | 1 | new_tests = 0 |
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| 412 | 1 | for term in tests: |
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| 413 | 1 | if term in self.test_dict: |
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| 414 | 1 | new_tests += self.test_dict[term] |
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| 415 | 1 | tests = new_tests |
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| 416 | |||
| 417 | 1 | if isinstance(src, tuple): |
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| 418 | 1 | src_ln, src_fn, src_qual = src |
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| 419 | 1 | elif '#' in src: |
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| 420 | 1 | src_ln, src_fn, src_qual = src.split('#')[-3:] |
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| 421 | else: |
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| 422 | 1 | src_ln, src_fn, src_qual = src, '', '' |
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| 423 | |||
| 424 | 1 | if isinstance(tar, tuple): |
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| 425 | 1 | tar_ln, tar_fn, tar_qual = tar |
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| 426 | 1 | elif '#' in tar: |
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| 427 | 1 | tar_ln, tar_fn, tar_qual = tar.split('#')[-3:] |
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| 428 | else: |
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| 429 | 1 | tar_ln, tar_fn, tar_qual = tar, '', '' |
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| 430 | |||
| 431 | 1 | def _split_special(spec): |
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| 432 | 1 | spec_list = [] |
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| 433 | 1 | while spec: |
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| 434 | 1 | spec_list.append((int(spec[:3]), spec[3:4])) |
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| 435 | 1 | spec = spec[4:] |
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| 436 | 1 | return spec_list |
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| 437 | |||
| 438 | 1 | def _fmt_retval(val): |
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| 439 | 1 | if ret_name: |
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| 440 | 1 | return self.match_name[val] |
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| 441 | 1 | return val |
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| 442 | |||
| 443 | # 1. Preprocessing |
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| 444 | |||
| 445 | # Lowercasing |
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| 446 | 1 | src_fn = src_fn.strip().lower() |
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| 447 | 1 | src_ln = src_ln.strip().lower() |
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| 448 | 1 | src_qual = src_qual.strip().lower() |
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| 449 | |||
| 450 | 1 | tar_fn = tar_fn.strip().lower() |
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| 451 | 1 | tar_ln = tar_ln.strip().lower() |
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| 452 | 1 | tar_qual = tar_qual.strip().lower() |
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| 453 | |||
| 454 | # Create toolcodes |
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| 455 | 1 | src_ln, src_fn, src_tc = self.stc.fingerprint(src_ln, src_fn, src_qual) |
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| 456 | 1 | tar_ln, tar_fn, tar_tc = self.stc.fingerprint(tar_ln, tar_fn, tar_qual) |
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| 457 | |||
| 458 | 1 | src_generation = int(src_tc[2]) |
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| 459 | 1 | src_romancode = int(src_tc[3:6]) |
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| 460 | 1 | src_len_fn = int(src_tc[6:8]) |
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| 461 | 1 | src_tc = src_tc.split('$') |
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| 462 | 1 | src_specials = _split_special(src_tc[1]) |
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| 463 | |||
| 464 | 1 | tar_generation = int(tar_tc[2]) |
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| 465 | 1 | tar_romancode = int(tar_tc[3:6]) |
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| 466 | 1 | tar_len_fn = int(tar_tc[6:8]) |
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| 467 | 1 | tar_tc = tar_tc.split('$') |
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| 468 | 1 | tar_specials = _split_special(tar_tc[1]) |
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| 469 | |||
| 470 | 1 | gen_conflict = (src_generation != tar_generation) and bool( |
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| 471 | src_generation or tar_generation |
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| 472 | ) |
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| 473 | 1 | roman_conflict = (src_romancode != tar_romancode) and bool( |
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| 474 | src_romancode or tar_romancode |
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| 475 | ) |
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| 476 | |||
| 477 | 1 | ln_equal = src_ln == tar_ln |
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| 478 | 1 | fn_equal = src_fn == tar_fn |
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| 479 | |||
| 480 | # approx_c |
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| 481 | 1 | def _approx_c(): |
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| 482 | 1 | if gen_conflict or roman_conflict: |
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| 483 | 1 | return False, 0 |
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| 484 | |||
| 485 | 1 | full_src = ' '.join((src_ln, src_fn)) |
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| 486 | 1 | if full_src.startswith('master '): |
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| 487 | 1 | full_src = full_src[len('master ') :] |
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| 488 | 1 | for intro in [ |
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| 489 | 'of the ', |
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| 490 | 'of ', |
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| 491 | 'known as the ', |
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| 492 | 'with the ', |
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| 493 | 'with ', |
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| 494 | ]: |
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| 495 | 1 | if full_src.startswith(intro): |
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| 496 | 1 | full_src = full_src[len(intro) :] |
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| 497 | |||
| 498 | 1 | full_tar = ' '.join((tar_ln, tar_fn)) |
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| 499 | 1 | if full_tar.startswith('master '): |
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| 500 | 1 | full_tar = full_tar[len('master ') :] |
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| 501 | 1 | for intro in [ |
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| 502 | 'of the ', |
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| 503 | 'of ', |
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| 504 | 'known as the ', |
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| 505 | 'with the ', |
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| 506 | 'with ', |
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| 507 | ]: |
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| 508 | 1 | if full_tar.startswith(intro): |
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| 509 | 1 | full_tar = full_tar[len(intro) :] |
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| 510 | |||
| 511 | 1 | loc_ratio = sim_ratcliff_obershelp(full_src, full_tar) |
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| 512 | 1 | return loc_ratio >= char_approx_min, loc_ratio |
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| 513 | |||
| 514 | 1 | approx_c_result, ca_ratio = _approx_c() |
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| 515 | |||
| 516 | 1 | if tests & self.test_dict['exact'] and fn_equal and ln_equal: |
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| 517 | 1 | return _fmt_retval(self.match_type_dict['exact']) |
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| 518 | 1 | if tests & self.test_dict['omission']: |
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| 519 | 1 | View Code Duplication | if ( |
| 520 | fn_equal |
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| 521 | and levenshtein(src_ln, tar_ln, cost=(1, 1, 99, 99)) == 1 |
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| 522 | ): |
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| 523 | 1 | if not roman_conflict: |
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| 524 | 1 | return _fmt_retval(self.match_type_dict['omission']) |
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| 525 | 1 | elif ( |
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| 526 | ln_equal |
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| 527 | and levenshtein(src_fn, tar_fn, cost=(1, 1, 99, 99)) == 1 |
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| 528 | ): |
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| 529 | 1 | return _fmt_retval(self.match_type_dict['omission']) |
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| 530 | 1 | View Code Duplication | if tests & self.test_dict['substitution']: |
| 531 | 1 | if ( |
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| 532 | fn_equal |
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| 533 | and levenshtein(src_ln, tar_ln, cost=(99, 99, 1, 99)) == 1 |
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| 534 | ): |
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| 535 | 1 | return _fmt_retval(self.match_type_dict['substitution']) |
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| 536 | 1 | elif ( |
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| 537 | ln_equal |
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| 538 | and levenshtein(src_fn, tar_fn, cost=(99, 99, 1, 99)) == 1 |
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| 539 | ): |
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| 540 | 1 | return _fmt_retval(self.match_type_dict['substitution']) |
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| 541 | 1 | View Code Duplication | if tests & self.test_dict['transposition']: |
| 542 | 1 | if fn_equal and ( |
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| 543 | levenshtein(src_ln, tar_ln, mode='osa', cost=(99, 99, 99, 1)) |
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| 544 | == 1 |
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| 545 | ): |
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| 546 | 1 | return _fmt_retval(self.match_type_dict['transposition']) |
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| 547 | 1 | elif ln_equal and ( |
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| 548 | levenshtein(src_fn, tar_fn, mode='osa', cost=(99, 99, 99, 1)) |
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| 549 | == 1 |
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| 550 | ): |
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| 551 | 1 | return _fmt_retval(self.match_type_dict['transposition']) |
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| 552 | 1 | if tests & self.test_dict['punctuation']: |
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| 553 | 1 | np_src_fn = self._synoname_strip_punct(src_fn) |
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| 554 | 1 | np_tar_fn = self._synoname_strip_punct(tar_fn) |
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| 555 | 1 | np_src_ln = self._synoname_strip_punct(src_ln) |
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| 556 | 1 | np_tar_ln = self._synoname_strip_punct(tar_ln) |
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| 557 | |||
| 558 | 1 | if (np_src_fn == np_tar_fn) and (np_src_ln == np_tar_ln): |
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| 559 | 1 | return _fmt_retval(self.match_type_dict['punctuation']) |
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| 560 | |||
| 561 | 1 | np_src_fn = self._synoname_strip_punct(src_fn.replace('-', ' ')) |
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| 562 | 1 | np_tar_fn = self._synoname_strip_punct(tar_fn.replace('-', ' ')) |
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| 563 | 1 | np_src_ln = self._synoname_strip_punct(src_ln.replace('-', ' ')) |
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| 564 | 1 | np_tar_ln = self._synoname_strip_punct(tar_ln.replace('-', ' ')) |
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| 565 | |||
| 566 | 1 | if (np_src_fn == np_tar_fn) and (np_src_ln == np_tar_ln): |
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| 567 | 1 | return _fmt_retval(self.match_type_dict['punctuation']) |
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| 568 | |||
| 569 | 1 | if tests & self.test_dict['initials'] and ln_equal: |
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| 570 | 1 | if src_fn and tar_fn: |
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| 571 | 1 | src_initials = self._synoname_strip_punct(src_fn).split() |
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| 572 | 1 | tar_initials = self._synoname_strip_punct(tar_fn).split() |
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| 573 | 1 | initials = bool( |
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| 574 | (len(src_initials) == len(''.join(src_initials))) |
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| 575 | or (len(tar_initials) == len(''.join(tar_initials))) |
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| 576 | ) |
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| 577 | 1 | if initials: |
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| 578 | 1 | src_initials = ''.join(_[0] for _ in src_initials) |
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| 579 | 1 | tar_initials = ''.join(_[0] for _ in tar_initials) |
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| 580 | 1 | if src_initials == tar_initials: |
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| 581 | 1 | return _fmt_retval(self.match_type_dict['initials']) |
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| 582 | 1 | initial_diff = abs(len(src_initials) - len(tar_initials)) |
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| 583 | 1 | if initial_diff and ( |
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| 584 | ( |
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| 585 | initial_diff |
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| 586 | == levenshtein( |
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| 587 | src_initials, |
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| 588 | tar_initials, |
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| 589 | cost=(1, 99, 99, 99), |
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| 590 | ) |
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| 591 | ) |
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| 592 | or ( |
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| 593 | initial_diff |
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| 594 | == levenshtein( |
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| 595 | tar_initials, |
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| 596 | src_initials, |
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| 597 | cost=(1, 99, 99, 99), |
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| 598 | ) |
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| 599 | ) |
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| 600 | ): |
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| 601 | 1 | return _fmt_retval(self.match_type_dict['initials']) |
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| 602 | 1 | if tests & self.test_dict['extension']: |
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| 603 | 1 | if src_ln[1] == tar_ln[1] and ( |
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| 604 | src_ln.startswith(tar_ln) or tar_ln.startswith(src_ln) |
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| 605 | ): |
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| 606 | 1 | if ( |
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| 607 | (not src_len_fn and not tar_len_fn) |
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| 608 | or (tar_fn and src_fn.startswith(tar_fn)) |
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| 609 | or (src_fn and tar_fn.startswith(src_fn)) |
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| 610 | ) and not roman_conflict: |
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| 611 | 1 | return _fmt_retval(self.match_type_dict['extension']) |
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| 612 | 1 | if tests & self.test_dict['inclusion'] and ln_equal: |
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| 613 | 1 | if (src_fn and src_fn in tar_fn) or (tar_fn and tar_fn in src_ln): |
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| 614 | 1 | return _fmt_retval(self.match_type_dict['inclusion']) |
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| 615 | 1 | if tests & self.test_dict['no_first'] and ln_equal: |
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| 616 | 1 | if src_fn == '' or tar_fn == '': |
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| 617 | 1 | return _fmt_retval(self.match_type_dict['no_first']) |
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| 618 | 1 | if tests & self.test_dict['word_approx']: |
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| 619 | 1 | ratio = self._synoname_word_approximation( |
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| 620 | src_ln, |
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| 621 | tar_ln, |
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| 622 | src_fn, |
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| 623 | tar_fn, |
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| 624 | { |
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| 625 | 'gen_conflict': gen_conflict, |
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| 626 | 'roman_conflict': roman_conflict, |
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| 627 | 'src_specials': src_specials, |
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| 628 | 'tar_specials': tar_specials, |
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| 629 | }, |
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| 630 | ) |
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| 631 | 1 | if ratio == 1 and tests & self.test_dict['confusions']: |
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| 632 | 1 | if ( |
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| 633 | ' '.join((src_fn, src_ln)).strip() |
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| 634 | == ' '.join((tar_fn, tar_ln)).strip() |
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| 635 | ): |
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| 636 | 1 | return _fmt_retval(self.match_type_dict['confusions']) |
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| 637 | 1 | if ratio >= word_approx_min: |
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| 638 | 1 | return _fmt_retval(self.match_type_dict['word_approx']) |
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| 639 | 1 | if tests & self.test_dict['char_approx']: |
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| 640 | 1 | if ca_ratio >= char_approx_min: |
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| 641 | 1 | return _fmt_retval(self.match_type_dict['char_approx']) |
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| 642 | 1 | return _fmt_retval(self.match_type_dict['no_match']) |
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| 643 | |||
| 740 |