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agronholm / sqlacodegen / 18649859477

20 Oct 2025 10:57AM UTC coverage: 97.767% (-0.1%) from 97.887%
18649859477

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Workaround SQLAlchemy  2.0.42 DOMAIN type adaptation regression (#435)

* Bugfix

* Added CHANGES.rst entry

* Comment fix

9 of 11 new or added lines in 1 file covered. (81.82%)

1445 of 1478 relevant lines covered (97.77%)

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97.07
/src/sqlacodegen/generators.py
1
from __future__ import annotations
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2

3
import inspect
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import re
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5
import sys
5✔
6
from abc import ABCMeta, abstractmethod
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from collections import defaultdict
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from collections.abc import Collection, Iterable, Sequence
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from dataclasses import dataclass
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from importlib import import_module
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11
from inspect import Parameter
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from itertools import count
5✔
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from keyword import iskeyword
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from pprint import pformat
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from textwrap import indent
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from typing import Any, ClassVar, Literal, cast
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18
import inflect
5✔
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import sqlalchemy
5✔
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from sqlalchemy import (
5✔
21
    ARRAY,
22
    Boolean,
23
    CheckConstraint,
24
    Column,
25
    Computed,
26
    Constraint,
27
    DefaultClause,
28
    Enum,
29
    ForeignKey,
30
    ForeignKeyConstraint,
31
    Identity,
32
    Index,
33
    MetaData,
34
    PrimaryKeyConstraint,
35
    String,
36
    Table,
37
    Text,
38
    TypeDecorator,
39
    UniqueConstraint,
40
)
41
from sqlalchemy.dialects.postgresql import DOMAIN, JSON, JSONB
5✔
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from sqlalchemy.engine import Connection, Engine
5✔
43
from sqlalchemy.exc import CompileError
5✔
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from sqlalchemy.sql.elements import TextClause
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from sqlalchemy.sql.type_api import UserDefinedType
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from sqlalchemy.types import TypeEngine
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47

48
from .models import (
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49
    ColumnAttribute,
50
    JoinType,
51
    Model,
52
    ModelClass,
53
    RelationshipAttribute,
54
    RelationshipType,
55
)
56
from .utils import (
5✔
57
    decode_postgresql_sequence,
58
    get_column_names,
59
    get_common_fk_constraints,
60
    get_compiled_expression,
61
    get_constraint_sort_key,
62
    get_stdlib_module_names,
63
    qualified_table_name,
64
    render_callable,
65
    uses_default_name,
66
)
67

68
_re_boolean_check_constraint = re.compile(r"(?:.*?\.)?(.*?) IN \(0, 1\)")
5✔
69
_re_column_name = re.compile(r'(?:(["`]?).*\1\.)?(["`]?)(.*)\2')
5✔
70
_re_enum_check_constraint = re.compile(r"(?:.*?\.)?(.*?) IN \((.+)\)")
5✔
71
_re_enum_item = re.compile(r"'(.*?)(?<!\\)'")
5✔
72
_re_invalid_identifier = re.compile(r"(?u)\W")
5✔
73

74

75
@dataclass
5✔
76
class LiteralImport:
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77
    pkgname: str
5✔
78
    name: str
5✔
79

80

81
@dataclass
5✔
82
class Base:
5✔
83
    """Representation of MetaData for Tables, respectively Base for classes"""
84

85
    literal_imports: list[LiteralImport]
5✔
86
    declarations: list[str]
5✔
87
    metadata_ref: str
5✔
88
    decorator: str | None = None
5✔
89
    table_metadata_declaration: str | None = None
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90

91

92
class CodeGenerator(metaclass=ABCMeta):
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93
    valid_options: ClassVar[set[str]] = set()
5✔
94

95
    def __init__(
5✔
96
        self, metadata: MetaData, bind: Connection | Engine, options: Sequence[str]
97
    ):
98
        self.metadata: MetaData = metadata
5✔
99
        self.bind: Connection | Engine = bind
5✔
100
        self.options: set[str] = set(options)
5✔
101

102
        # Validate options
103
        invalid_options = {opt for opt in options if opt not in self.valid_options}
5✔
104
        if invalid_options:
5✔
105
            raise ValueError("Unrecognized options: " + ", ".join(invalid_options))
×
106

107
    @property
5✔
108
    @abstractmethod
5✔
109
    def views_supported(self) -> bool:
5✔
110
        pass
×
111

112
    @abstractmethod
5✔
113
    def generate(self) -> str:
5✔
114
        """
115
        Generate the code for the given metadata.
116
        .. note:: May modify the metadata.
117
        """
118

119

120
@dataclass(eq=False)
5✔
121
class TablesGenerator(CodeGenerator):
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122
    valid_options: ClassVar[set[str]] = {"noindexes", "noconstraints", "nocomments"}
5✔
123
    stdlib_module_names: ClassVar[set[str]] = get_stdlib_module_names()
5✔
124

125
    def __init__(
5✔
126
        self,
127
        metadata: MetaData,
128
        bind: Connection | Engine,
129
        options: Sequence[str],
130
        *,
131
        indentation: str = "    ",
132
    ):
133
        super().__init__(metadata, bind, options)
5✔
134
        self.indentation: str = indentation
5✔
135
        self.imports: dict[str, set[str]] = defaultdict(set)
5✔
136
        self.module_imports: set[str] = set()
5✔
137

138
    @property
5✔
139
    def views_supported(self) -> bool:
5✔
140
        return True
×
141

142
    def generate_base(self) -> None:
5✔
143
        self.base = Base(
5✔
144
            literal_imports=[LiteralImport("sqlalchemy", "MetaData")],
145
            declarations=["metadata = MetaData()"],
146
            metadata_ref="metadata",
147
        )
148

149
    def generate(self) -> str:
5✔
150
        self.generate_base()
5✔
151

152
        sections: list[str] = []
5✔
153

154
        # Remove unwanted elements from the metadata
155
        for table in list(self.metadata.tables.values()):
5✔
156
            if self.should_ignore_table(table):
5✔
157
                self.metadata.remove(table)
×
158
                continue
×
159

160
            if "noindexes" in self.options:
5✔
161
                table.indexes.clear()
5✔
162

163
            if "noconstraints" in self.options:
5✔
164
                table.constraints.clear()
5✔
165

166
            if "nocomments" in self.options:
5✔
167
                table.comment = None
5✔
168

169
            for column in table.columns:
5✔
170
                if "nocomments" in self.options:
5✔
171
                    column.comment = None
5✔
172

173
        # Use information from column constraints to figure out the intended column
174
        # types
175
        for table in self.metadata.tables.values():
5✔
176
            self.fix_column_types(table)
5✔
177

178
        # Generate the models
179
        models: list[Model] = self.generate_models()
5✔
180

181
        # Render module level variables
182
        variables = self.render_module_variables(models)
5✔
183
        if variables:
5✔
184
            sections.append(variables + "\n")
5✔
185

186
        # Render models
187
        rendered_models = self.render_models(models)
5✔
188
        if rendered_models:
5✔
189
            sections.append(rendered_models)
5✔
190

191
        # Render collected imports
192
        groups = self.group_imports()
5✔
193
        imports = "\n\n".join("\n".join(line for line in group) for group in groups)
5✔
194
        if imports:
5✔
195
            sections.insert(0, imports)
5✔
196

197
        return "\n\n".join(sections) + "\n"
5✔
198

199
    def collect_imports(self, models: Iterable[Model]) -> None:
5✔
200
        for literal_import in self.base.literal_imports:
5✔
201
            self.add_literal_import(literal_import.pkgname, literal_import.name)
5✔
202

203
        for model in models:
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204
            self.collect_imports_for_model(model)
5✔
205

206
    def collect_imports_for_model(self, model: Model) -> None:
5✔
207
        if model.__class__ is Model:
5✔
208
            self.add_import(Table)
5✔
209

210
        for column in model.table.c:
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211
            self.collect_imports_for_column(column)
5✔
212

213
        for constraint in model.table.constraints:
5✔
214
            self.collect_imports_for_constraint(constraint)
5✔
215

216
        for index in model.table.indexes:
5✔
217
            self.collect_imports_for_constraint(index)
5✔
218

219
    def collect_imports_for_column(self, column: Column[Any]) -> None:
5✔
220
        self.add_import(column.type)
5✔
221

222
        if isinstance(column.type, ARRAY):
5✔
223
            self.add_import(column.type.item_type.__class__)
5✔
224
        elif isinstance(column.type, (JSONB, JSON)):
5✔
225
            if (
5✔
226
                not isinstance(column.type.astext_type, Text)
227
                or column.type.astext_type.length is not None
228
            ):
229
                self.add_import(column.type.astext_type)
5✔
230
        elif isinstance(column.type, DOMAIN):
5✔
231
            self.add_import(column.type.data_type.__class__)
5✔
232

233
        if column.default:
5✔
234
            self.add_import(column.default)
5✔
235

236
        if column.server_default:
5✔
237
            if isinstance(column.server_default, (Computed, Identity)):
5✔
238
                self.add_import(column.server_default)
5✔
239
            elif isinstance(column.server_default, DefaultClause):
5✔
240
                self.add_literal_import("sqlalchemy", "text")
5✔
241

242
    def collect_imports_for_constraint(self, constraint: Constraint | Index) -> None:
5✔
243
        if isinstance(constraint, Index):
5✔
244
            if len(constraint.columns) > 1 or not uses_default_name(constraint):
5✔
245
                self.add_literal_import("sqlalchemy", "Index")
5✔
246
        elif isinstance(constraint, PrimaryKeyConstraint):
5✔
247
            if not uses_default_name(constraint):
5✔
248
                self.add_literal_import("sqlalchemy", "PrimaryKeyConstraint")
5✔
249
        elif isinstance(constraint, UniqueConstraint):
5✔
250
            if len(constraint.columns) > 1 or not uses_default_name(constraint):
5✔
251
                self.add_literal_import("sqlalchemy", "UniqueConstraint")
5✔
252
        elif isinstance(constraint, ForeignKeyConstraint):
5✔
253
            if len(constraint.columns) > 1 or not uses_default_name(constraint):
5✔
254
                self.add_literal_import("sqlalchemy", "ForeignKeyConstraint")
5✔
255
            else:
256
                self.add_import(ForeignKey)
5✔
257
        else:
258
            self.add_import(constraint)
5✔
259

260
    def add_import(self, obj: Any) -> None:
5✔
261
        # Don't store builtin imports
262
        if getattr(obj, "__module__", "builtins") == "builtins":
5✔
263
            return
×
264

265
        type_ = type(obj) if not isinstance(obj, type) else obj
5✔
266
        pkgname = type_.__module__
5✔
267

268
        # The column types have already been adapted towards generic types if possible,
269
        # so if this is still a vendor specific type (e.g., MySQL INTEGER) be sure to
270
        # use that rather than the generic sqlalchemy type as it might have different
271
        # constructor parameters.
272
        if pkgname.startswith("sqlalchemy.dialects."):
5✔
273
            dialect_pkgname = ".".join(pkgname.split(".")[0:3])
5✔
274
            dialect_pkg = import_module(dialect_pkgname)
5✔
275

276
            if type_.__name__ in dialect_pkg.__all__:
5✔
277
                pkgname = dialect_pkgname
5✔
278
        elif type_ is getattr(sqlalchemy, type_.__name__, None):
5✔
279
            pkgname = "sqlalchemy"
5✔
280
        else:
281
            pkgname = type_.__module__
5✔
282

283
        self.add_literal_import(pkgname, type_.__name__)
5✔
284

285
    def add_literal_import(self, pkgname: str, name: str) -> None:
5✔
286
        names = self.imports.setdefault(pkgname, set())
5✔
287
        names.add(name)
5✔
288

289
    def remove_literal_import(self, pkgname: str, name: str) -> None:
5✔
290
        names = self.imports.setdefault(pkgname, set())
5✔
291
        if name in names:
5✔
292
            names.remove(name)
×
293

294
    def add_module_import(self, pgkname: str) -> None:
5✔
295
        self.module_imports.add(pgkname)
5✔
296

297
    def group_imports(self) -> list[list[str]]:
5✔
298
        future_imports: list[str] = []
5✔
299
        stdlib_imports: list[str] = []
5✔
300
        thirdparty_imports: list[str] = []
5✔
301

302
        def get_collection(package: str) -> list[str]:
5✔
303
            collection = thirdparty_imports
5✔
304
            if package == "__future__":
5✔
305
                collection = future_imports
×
306
            elif package in self.stdlib_module_names:
5✔
307
                collection = stdlib_imports
5✔
308
            elif package in sys.modules:
5✔
309
                if "site-packages" not in (sys.modules[package].__file__ or ""):
5✔
310
                    collection = stdlib_imports
5✔
311
            return collection
5✔
312

313
        for package in sorted(self.imports):
5✔
314
            imports = ", ".join(sorted(self.imports[package]))
5✔
315

316
            collection = get_collection(package)
5✔
317
            collection.append(f"from {package} import {imports}")
5✔
318

319
        for module in sorted(self.module_imports):
5✔
320
            collection = get_collection(module)
5✔
321
            collection.append(f"import {module}")
5✔
322

323
        return [
5✔
324
            group
325
            for group in (future_imports, stdlib_imports, thirdparty_imports)
326
            if group
327
        ]
328

329
    def generate_models(self) -> list[Model]:
5✔
330
        models = [Model(table) for table in self.metadata.sorted_tables]
5✔
331

332
        # Collect the imports
333
        self.collect_imports(models)
5✔
334

335
        # Generate names for models
336
        global_names = {
5✔
337
            name for namespace in self.imports.values() for name in namespace
338
        }
339
        for model in models:
5✔
340
            self.generate_model_name(model, global_names)
5✔
341
            global_names.add(model.name)
5✔
342

343
        return models
5✔
344

345
    def generate_model_name(self, model: Model, global_names: set[str]) -> None:
5✔
346
        preferred_name = f"t_{model.table.name}"
5✔
347
        model.name = self.find_free_name(preferred_name, global_names)
5✔
348

349
    def render_module_variables(self, models: list[Model]) -> str:
5✔
350
        declarations = self.base.declarations
5✔
351

352
        if any(not isinstance(model, ModelClass) for model in models):
5✔
353
            if self.base.table_metadata_declaration is not None:
5✔
354
                declarations.append(self.base.table_metadata_declaration)
×
355

356
        return "\n".join(declarations)
5✔
357

358
    def render_models(self, models: list[Model]) -> str:
5✔
359
        rendered: list[str] = []
5✔
360
        for model in models:
5✔
361
            rendered_table = self.render_table(model.table)
5✔
362
            rendered.append(f"{model.name} = {rendered_table}")
5✔
363

364
        return "\n\n".join(rendered)
5✔
365

366
    def render_table(self, table: Table) -> str:
5✔
367
        args: list[str] = [f"{table.name!r}, {self.base.metadata_ref}"]
5✔
368
        kwargs: dict[str, object] = {}
5✔
369
        for column in table.columns:
5✔
370
            # Cast is required because of a bug in the SQLAlchemy stubs regarding
371
            # Table.columns
372
            args.append(self.render_column(column, True, is_table=True))
5✔
373

374
        for constraint in sorted(table.constraints, key=get_constraint_sort_key):
5✔
375
            if uses_default_name(constraint):
5✔
376
                if isinstance(constraint, PrimaryKeyConstraint):
5✔
377
                    continue
5✔
378
                elif isinstance(constraint, (ForeignKeyConstraint, UniqueConstraint)):
5✔
379
                    if len(constraint.columns) == 1:
5✔
380
                        continue
5✔
381

382
            args.append(self.render_constraint(constraint))
5✔
383

384
        for index in sorted(table.indexes, key=lambda i: cast(str, i.name)):
5✔
385
            # One-column indexes should be rendered as index=True on columns
386
            if len(index.columns) > 1 or not uses_default_name(index):
5✔
387
                args.append(self.render_index(index))
5✔
388

389
        if table.schema:
5✔
390
            kwargs["schema"] = repr(table.schema)
5✔
391

392
        table_comment = getattr(table, "comment", None)
5✔
393
        if table_comment:
5✔
394
            kwargs["comment"] = repr(table.comment)
5✔
395

396
        return render_callable("Table", *args, kwargs=kwargs, indentation="    ")
5✔
397

398
    def render_index(self, index: Index) -> str:
5✔
399
        extra_args = [repr(col.name) for col in index.columns]
5✔
400
        kwargs = {}
5✔
401
        if index.unique:
5✔
402
            kwargs["unique"] = True
5✔
403

404
        return render_callable("Index", repr(index.name), *extra_args, kwargs=kwargs)
5✔
405

406
    # TODO find better solution for is_table
407
    def render_column(
5✔
408
        self, column: Column[Any], show_name: bool, is_table: bool = False
409
    ) -> str:
410
        args = []
5✔
411
        kwargs: dict[str, Any] = {}
5✔
412
        kwarg = []
5✔
413
        is_part_of_composite_pk = (
5✔
414
            column.primary_key and len(column.table.primary_key) > 1
415
        )
416
        dedicated_fks = [
5✔
417
            c
418
            for c in column.foreign_keys
419
            if c.constraint
420
            and len(c.constraint.columns) == 1
421
            and uses_default_name(c.constraint)
422
        ]
423
        is_unique = any(
5✔
424
            isinstance(c, UniqueConstraint)
425
            and set(c.columns) == {column}
426
            and uses_default_name(c)
427
            for c in column.table.constraints
428
        )
429
        is_unique = is_unique or any(
5✔
430
            i.unique and set(i.columns) == {column} and uses_default_name(i)
431
            for i in column.table.indexes
432
        )
433
        is_primary = (
5✔
434
            any(
435
                isinstance(c, PrimaryKeyConstraint)
436
                and column.name in c.columns
437
                and uses_default_name(c)
438
                for c in column.table.constraints
439
            )
440
            or column.primary_key
441
        )
442
        has_index = any(
5✔
443
            set(i.columns) == {column} and uses_default_name(i)
444
            for i in column.table.indexes
445
        )
446

447
        if show_name:
5✔
448
            args.append(repr(column.name))
5✔
449

450
        # Render the column type if there are no foreign keys on it or any of them
451
        # points back to itself
452
        if not dedicated_fks or any(fk.column is column for fk in dedicated_fks):
5✔
453
            args.append(self.render_column_type(column.type))
5✔
454

455
        for fk in dedicated_fks:
5✔
456
            args.append(self.render_constraint(fk))
5✔
457

458
        if column.default:
5✔
459
            args.append(repr(column.default))
5✔
460

461
        if column.key != column.name:
5✔
462
            kwargs["key"] = column.key
×
463
        if is_primary:
5✔
464
            kwargs["primary_key"] = True
5✔
465
        if not column.nullable and not column.primary_key:
5✔
466
            kwargs["nullable"] = False
5✔
467
        if column.nullable and is_part_of_composite_pk:
5✔
468
            kwargs["nullable"] = True
5✔
469

470
        if is_unique:
5✔
471
            column.unique = True
5✔
472
            kwargs["unique"] = True
5✔
473
        if has_index:
5✔
474
            column.index = True
5✔
475
            kwarg.append("index")
5✔
476
            kwargs["index"] = True
5✔
477

478
        if isinstance(column.server_default, DefaultClause):
5✔
479
            kwargs["server_default"] = render_callable(
5✔
480
                "text", repr(cast(TextClause, column.server_default.arg).text)
481
            )
482
        elif isinstance(column.server_default, Computed):
5✔
483
            expression = str(column.server_default.sqltext)
5✔
484

485
            computed_kwargs = {}
5✔
486
            if column.server_default.persisted is not None:
5✔
487
                computed_kwargs["persisted"] = column.server_default.persisted
5✔
488

489
            args.append(
5✔
490
                render_callable("Computed", repr(expression), kwargs=computed_kwargs)
491
            )
492
        elif isinstance(column.server_default, Identity):
5✔
493
            args.append(repr(column.server_default))
5✔
494
        elif column.server_default:
5✔
495
            kwargs["server_default"] = repr(column.server_default)
×
496

497
        comment = getattr(column, "comment", None)
5✔
498
        if comment:
5✔
499
            kwargs["comment"] = repr(comment)
5✔
500

501
        return self.render_column_callable(is_table, *args, **kwargs)
5✔
502

503
    def render_column_callable(self, is_table: bool, *args: Any, **kwargs: Any) -> str:
5✔
504
        if is_table:
5✔
505
            self.add_import(Column)
5✔
506
            return render_callable("Column", *args, kwargs=kwargs)
5✔
507
        else:
508
            return render_callable("mapped_column", *args, kwargs=kwargs)
5✔
509

510
    def render_column_type(self, coltype: TypeEngine[Any]) -> str:
5✔
511
        args = []
5✔
512
        kwargs: dict[str, Any] = {}
5✔
513
        sig = inspect.signature(coltype.__class__.__init__)
5✔
514
        defaults = {param.name: param.default for param in sig.parameters.values()}
5✔
515
        missing = object()
5✔
516
        use_kwargs = False
5✔
517
        for param in list(sig.parameters.values())[1:]:
5✔
518
            # Remove annoyances like _warn_on_bytestring
519
            if param.name.startswith("_"):
5✔
520
                continue
5✔
521
            elif param.kind in (Parameter.VAR_POSITIONAL, Parameter.VAR_KEYWORD):
5✔
522
                use_kwargs = True
5✔
523
                continue
5✔
524

525
            value = getattr(coltype, param.name, missing)
5✔
526

527
            if isinstance(value, (JSONB, JSON)):
5✔
528
                # Remove astext_type if it's the default
529
                if (
5✔
530
                    isinstance(value.astext_type, Text)
531
                    and value.astext_type.length is None
532
                ):
533
                    value.astext_type = None  # type: ignore[assignment]
5✔
534
                else:
535
                    self.add_import(Text)
5✔
536

537
            default = defaults.get(param.name, missing)
5✔
538
            if isinstance(value, TextClause):
5✔
539
                self.add_literal_import("sqlalchemy", "text")
5✔
540
                rendered_value = render_callable("text", repr(value.text))
5✔
541
            else:
542
                rendered_value = repr(value)
5✔
543

544
            if value is missing or value == default:
5✔
545
                use_kwargs = True
5✔
546
            elif use_kwargs:
5✔
547
                kwargs[param.name] = rendered_value
5✔
548
            else:
549
                args.append(rendered_value)
5✔
550

551
        vararg = next(
5✔
552
            (
553
                param.name
554
                for param in sig.parameters.values()
555
                if param.kind is Parameter.VAR_POSITIONAL
556
            ),
557
            None,
558
        )
559
        if vararg and hasattr(coltype, vararg):
5✔
560
            varargs_repr = [repr(arg) for arg in getattr(coltype, vararg)]
5✔
561
            args.extend(varargs_repr)
5✔
562

563
        # These arguments cannot be autodetected from the Enum initializer
564
        if isinstance(coltype, Enum):
5✔
565
            for colname in "name", "schema":
5✔
566
                if (value := getattr(coltype, colname)) is not None:
5✔
567
                    kwargs[colname] = repr(value)
5✔
568

569
        if isinstance(coltype, (JSONB, JSON)):
5✔
570
            # Remove astext_type if it's the default
571
            if (
5✔
572
                isinstance(coltype.astext_type, Text)
573
                and coltype.astext_type.length is None
574
            ):
575
                del kwargs["astext_type"]
5✔
576

577
        if args or kwargs:
5✔
578
            return render_callable(coltype.__class__.__name__, *args, kwargs=kwargs)
5✔
579
        else:
580
            return coltype.__class__.__name__
5✔
581

582
    def render_constraint(self, constraint: Constraint | ForeignKey) -> str:
5✔
583
        def add_fk_options(*opts: Any) -> None:
5✔
584
            args.extend(repr(opt) for opt in opts)
5✔
585
            for attr in "ondelete", "onupdate", "deferrable", "initially", "match":
5✔
586
                value = getattr(constraint, attr, None)
5✔
587
                if value:
5✔
588
                    kwargs[attr] = repr(value)
5✔
589

590
        args: list[str] = []
5✔
591
        kwargs: dict[str, Any] = {}
5✔
592
        if isinstance(constraint, ForeignKey):
5✔
593
            remote_column = (
5✔
594
                f"{constraint.column.table.fullname}.{constraint.column.name}"
595
            )
596
            add_fk_options(remote_column)
5✔
597
        elif isinstance(constraint, ForeignKeyConstraint):
5✔
598
            local_columns = get_column_names(constraint)
5✔
599
            remote_columns = [
5✔
600
                f"{fk.column.table.fullname}.{fk.column.name}"
601
                for fk in constraint.elements
602
            ]
603
            add_fk_options(local_columns, remote_columns)
5✔
604
        elif isinstance(constraint, CheckConstraint):
5✔
605
            args.append(repr(get_compiled_expression(constraint.sqltext, self.bind)))
5✔
606
        elif isinstance(constraint, (UniqueConstraint, PrimaryKeyConstraint)):
5✔
607
            args.extend(repr(col.name) for col in constraint.columns)
5✔
608
        else:
609
            raise TypeError(
×
610
                f"Cannot render constraint of type {constraint.__class__.__name__}"
611
            )
612

613
        if isinstance(constraint, Constraint) and not uses_default_name(constraint):
5✔
614
            kwargs["name"] = repr(constraint.name)
5✔
615

616
        return render_callable(constraint.__class__.__name__, *args, kwargs=kwargs)
5✔
617

618
    def should_ignore_table(self, table: Table) -> bool:
5✔
619
        # Support for Alembic and sqlalchemy-migrate -- never expose the schema version
620
        # tables
621
        return table.name in ("alembic_version", "migrate_version")
5✔
622

623
    def find_free_name(
5✔
624
        self, name: str, global_names: set[str], local_names: Collection[str] = ()
625
    ) -> str:
626
        """
627
        Generate an attribute name that does not clash with other local or global names.
628
        """
629
        name = name.strip()
5✔
630
        assert name, "Identifier cannot be empty"
5✔
631
        name = _re_invalid_identifier.sub("_", name)
5✔
632
        if name[0].isdigit():
5✔
633
            name = "_" + name
5✔
634
        elif iskeyword(name) or name == "metadata":
5✔
635
            name += "_"
5✔
636

637
        original = name
5✔
638
        for i in count():
5✔
639
            if name not in global_names and name not in local_names:
5✔
640
                break
5✔
641

642
            name = original + (str(i) if i else "_")
5✔
643

644
        return name
5✔
645

646
    def fix_column_types(self, table: Table) -> None:
5✔
647
        """Adjust the reflected column types."""
648
        # Detect check constraints for boolean and enum columns
649
        for constraint in table.constraints.copy():
5✔
650
            if isinstance(constraint, CheckConstraint):
5✔
651
                sqltext = get_compiled_expression(constraint.sqltext, self.bind)
5✔
652

653
                # Turn any integer-like column with a CheckConstraint like
654
                # "column IN (0, 1)" into a Boolean
655
                match = _re_boolean_check_constraint.match(sqltext)
5✔
656
                if match:
5✔
657
                    colname_match = _re_column_name.match(match.group(1))
5✔
658
                    if colname_match:
5✔
659
                        colname = colname_match.group(3)
5✔
660
                        table.constraints.remove(constraint)
5✔
661
                        table.c[colname].type = Boolean()
5✔
662
                        continue
5✔
663

664
                # Turn any string-type column with a CheckConstraint like
665
                # "column IN (...)" into an Enum
666
                match = _re_enum_check_constraint.match(sqltext)
5✔
667
                if match:
5✔
668
                    colname_match = _re_column_name.match(match.group(1))
5✔
669
                    if colname_match:
5✔
670
                        colname = colname_match.group(3)
5✔
671
                        items = match.group(2)
5✔
672
                        if isinstance(table.c[colname].type, String):
5✔
673
                            table.constraints.remove(constraint)
5✔
674
                            if not isinstance(table.c[colname].type, Enum):
5✔
675
                                options = _re_enum_item.findall(items)
5✔
676
                                table.c[colname].type = Enum(
5✔
677
                                    *options, native_enum=False
678
                                )
679

680
                            continue
5✔
681

682
        for column in table.c:
5✔
683
            try:
5✔
684
                column.type = self.get_adapted_type(column.type)
5✔
685
            except CompileError:
5✔
686
                pass
5✔
687

688
            # PostgreSQL specific fix: detect sequences from server_default
689
            if column.server_default and self.bind.dialect.name == "postgresql":
5✔
690
                if isinstance(column.server_default, DefaultClause) and isinstance(
5✔
691
                    column.server_default.arg, TextClause
692
                ):
693
                    schema, seqname = decode_postgresql_sequence(
5✔
694
                        column.server_default.arg
695
                    )
696
                    if seqname:
5✔
697
                        # Add an explicit sequence
698
                        if seqname != f"{column.table.name}_{column.name}_seq":
5✔
699
                            column.default = sqlalchemy.Sequence(seqname, schema=schema)
5✔
700

701
                        column.server_default = None
5✔
702

703
    def get_adapted_type(self, coltype: Any) -> Any:
5✔
704
        compiled_type = coltype.compile(self.bind.engine.dialect)
5✔
705
        for supercls in coltype.__class__.__mro__:
5✔
706
            if not supercls.__name__.startswith("_") and hasattr(
5✔
707
                supercls, "__visit_name__"
708
            ):
709
                # Don't try to adapt UserDefinedType as it's not a proper column type
710
                if supercls is UserDefinedType or issubclass(supercls, TypeDecorator):
5✔
711
                    return coltype
5✔
712

713
                # Hack to fix adaptation of the Enum class which is broken since
714
                # SQLAlchemy 1.2
715
                kw = {}
5✔
716
                if supercls is Enum:
5✔
717
                    kw["name"] = coltype.name
5✔
718
                    if coltype.schema:
5✔
719
                        kw["schema"] = coltype.schema
5✔
720

721
                # Hack to fix Postgres DOMAIN type adaptation, broken as of SQLAlchemy 2.0.42
722
                # For additional information - https://github.com/agronholm/sqlacodegen/issues/416#issuecomment-3417480599
723
                if supercls is DOMAIN:
5✔
724
                    if coltype.default:
5✔
NEW
725
                        kw["default"] = coltype.default
×
726
                    if coltype.constraint_name is not None:
5✔
727
                        kw["constraint_name"] = coltype.constraint_name
5✔
728
                    if coltype.not_null:
5✔
NEW
729
                        kw["not_null"] = coltype.not_null
×
730
                    if coltype.check is not None:
5✔
731
                        kw["check"] = coltype.check
5✔
732
                    if coltype.create_type:
5✔
733
                        kw["create_type"] = coltype.create_type
5✔
734

735
                try:
5✔
736
                    new_coltype = coltype.adapt(supercls)
5✔
737
                except TypeError:
5✔
738
                    # If the adaptation fails, don't try again
739
                    break
5✔
740

741
                for key, value in kw.items():
5✔
742
                    setattr(new_coltype, key, value)
5✔
743

744
                if isinstance(coltype, ARRAY):
5✔
745
                    new_coltype.item_type = self.get_adapted_type(new_coltype.item_type)
5✔
746

747
                try:
5✔
748
                    # If the adapted column type does not render the same as the
749
                    # original, don't substitute it
750
                    if new_coltype.compile(self.bind.engine.dialect) != compiled_type:
5✔
751
                        break
5✔
752
                except CompileError:
5✔
753
                    # If the adapted column type can't be compiled, don't substitute it
754
                    break
5✔
755

756
                # Stop on the first valid non-uppercase column type class
757
                coltype = new_coltype
5✔
758
                if supercls.__name__ != supercls.__name__.upper():
5✔
759
                    break
5✔
760

761
        return coltype
5✔
762

763

764
class DeclarativeGenerator(TablesGenerator):
5✔
765
    valid_options: ClassVar[set[str]] = TablesGenerator.valid_options | {
5✔
766
        "use_inflect",
767
        "nojoined",
768
        "nobidi",
769
    }
770

771
    def __init__(
5✔
772
        self,
773
        metadata: MetaData,
774
        bind: Connection | Engine,
775
        options: Sequence[str],
776
        *,
777
        indentation: str = "    ",
778
        base_class_name: str = "Base",
779
    ):
780
        super().__init__(metadata, bind, options, indentation=indentation)
5✔
781
        self.base_class_name: str = base_class_name
5✔
782
        self.inflect_engine = inflect.engine()
5✔
783

784
    def generate_base(self) -> None:
5✔
785
        self.base = Base(
5✔
786
            literal_imports=[LiteralImport("sqlalchemy.orm", "DeclarativeBase")],
787
            declarations=[
788
                f"class {self.base_class_name}(DeclarativeBase):",
789
                f"{self.indentation}pass",
790
            ],
791
            metadata_ref=f"{self.base_class_name}.metadata",
792
        )
793

794
    def collect_imports(self, models: Iterable[Model]) -> None:
5✔
795
        super().collect_imports(models)
5✔
796
        if any(isinstance(model, ModelClass) for model in models):
5✔
797
            self.add_literal_import("sqlalchemy.orm", "Mapped")
5✔
798
            self.add_literal_import("sqlalchemy.orm", "mapped_column")
5✔
799

800
    def collect_imports_for_model(self, model: Model) -> None:
5✔
801
        super().collect_imports_for_model(model)
5✔
802
        if isinstance(model, ModelClass):
5✔
803
            if model.relationships:
5✔
804
                self.add_literal_import("sqlalchemy.orm", "relationship")
5✔
805

806
    def generate_models(self) -> list[Model]:
5✔
807
        models_by_table_name: dict[str, Model] = {}
5✔
808

809
        # Pick association tables from the metadata into their own set, don't process
810
        # them normally
811
        links: defaultdict[str, list[Model]] = defaultdict(lambda: [])
5✔
812
        for table in self.metadata.sorted_tables:
5✔
813
            qualified_name = qualified_table_name(table)
5✔
814

815
            # Link tables have exactly two foreign key constraints and all columns are
816
            # involved in them
817
            fk_constraints = sorted(
5✔
818
                table.foreign_key_constraints, key=get_constraint_sort_key
819
            )
820
            if len(fk_constraints) == 2 and all(
5✔
821
                col.foreign_keys for col in table.columns
822
            ):
823
                model = models_by_table_name[qualified_name] = Model(table)
5✔
824
                tablename = fk_constraints[0].elements[0].column.table.name
5✔
825
                links[tablename].append(model)
5✔
826
                continue
5✔
827

828
            # Only form model classes for tables that have a primary key and are not
829
            # association tables
830
            if not table.primary_key:
5✔
831
                models_by_table_name[qualified_name] = Model(table)
5✔
832
            else:
833
                model = ModelClass(table)
5✔
834
                models_by_table_name[qualified_name] = model
5✔
835

836
                # Fill in the columns
837
                for column in table.c:
5✔
838
                    column_attr = ColumnAttribute(model, column)
5✔
839
                    model.columns.append(column_attr)
5✔
840

841
        # Add relationships
842
        for model in models_by_table_name.values():
5✔
843
            if isinstance(model, ModelClass):
5✔
844
                self.generate_relationships(
5✔
845
                    model, models_by_table_name, links[model.table.name]
846
                )
847

848
        # Nest inherited classes in their superclasses to ensure proper ordering
849
        if "nojoined" not in self.options:
5✔
850
            for model in list(models_by_table_name.values()):
5✔
851
                if not isinstance(model, ModelClass):
5✔
852
                    continue
5✔
853

854
                pk_column_names = {col.name for col in model.table.primary_key.columns}
5✔
855
                for constraint in model.table.foreign_key_constraints:
5✔
856
                    if set(get_column_names(constraint)) == pk_column_names:
5✔
857
                        target = models_by_table_name[
5✔
858
                            qualified_table_name(constraint.elements[0].column.table)
859
                        ]
860
                        if isinstance(target, ModelClass):
5✔
861
                            model.parent_class = target
5✔
862
                            target.children.append(model)
5✔
863

864
        # Change base if we only have tables
865
        if not any(
5✔
866
            isinstance(model, ModelClass) for model in models_by_table_name.values()
867
        ):
868
            super().generate_base()
5✔
869

870
        # Collect the imports
871
        self.collect_imports(models_by_table_name.values())
5✔
872

873
        # Rename models and their attributes that conflict with imports or other
874
        # attributes
875
        global_names = {
5✔
876
            name for namespace in self.imports.values() for name in namespace
877
        }
878
        for model in models_by_table_name.values():
5✔
879
            self.generate_model_name(model, global_names)
5✔
880
            global_names.add(model.name)
5✔
881

882
        return list(models_by_table_name.values())
5✔
883

884
    def generate_relationships(
5✔
885
        self,
886
        source: ModelClass,
887
        models_by_table_name: dict[str, Model],
888
        association_tables: list[Model],
889
    ) -> list[RelationshipAttribute]:
890
        relationships: list[RelationshipAttribute] = []
5✔
891
        reverse_relationship: RelationshipAttribute | None
892

893
        # Add many-to-one (and one-to-many) relationships
894
        pk_column_names = {col.name for col in source.table.primary_key.columns}
5✔
895
        for constraint in sorted(
5✔
896
            source.table.foreign_key_constraints, key=get_constraint_sort_key
897
        ):
898
            target = models_by_table_name[
5✔
899
                qualified_table_name(constraint.elements[0].column.table)
900
            ]
901
            if isinstance(target, ModelClass):
5✔
902
                if "nojoined" not in self.options:
5✔
903
                    if set(get_column_names(constraint)) == pk_column_names:
5✔
904
                        parent = models_by_table_name[
5✔
905
                            qualified_table_name(constraint.elements[0].column.table)
906
                        ]
907
                        if isinstance(parent, ModelClass):
5✔
908
                            source.parent_class = parent
5✔
909
                            parent.children.append(source)
5✔
910
                            continue
5✔
911

912
                # Add uselist=False to One-to-One relationships
913
                column_names = get_column_names(constraint)
5✔
914
                if any(
5✔
915
                    isinstance(c, (PrimaryKeyConstraint, UniqueConstraint))
916
                    and {col.name for col in c.columns} == set(column_names)
917
                    for c in constraint.table.constraints
918
                ):
919
                    r_type = RelationshipType.ONE_TO_ONE
5✔
920
                else:
921
                    r_type = RelationshipType.MANY_TO_ONE
5✔
922

923
                relationship = RelationshipAttribute(r_type, source, target, constraint)
5✔
924
                source.relationships.append(relationship)
5✔
925

926
                # For self referential relationships, remote_side needs to be set
927
                if source is target:
5✔
928
                    relationship.remote_side = [
5✔
929
                        source.get_column_attribute(col.name)
930
                        for col in constraint.referred_table.primary_key
931
                    ]
932

933
                # If the two tables share more than one foreign key constraint,
934
                # SQLAlchemy needs an explicit primaryjoin to figure out which column(s)
935
                # it needs
936
                common_fk_constraints = get_common_fk_constraints(
5✔
937
                    source.table, target.table
938
                )
939
                if len(common_fk_constraints) > 1:
5✔
940
                    relationship.foreign_keys = [
5✔
941
                        source.get_column_attribute(key)
942
                        for key in constraint.column_keys
943
                    ]
944

945
                # Generate the opposite end of the relationship in the target class
946
                if "nobidi" not in self.options:
5✔
947
                    if r_type is RelationshipType.MANY_TO_ONE:
5✔
948
                        r_type = RelationshipType.ONE_TO_MANY
5✔
949

950
                    reverse_relationship = RelationshipAttribute(
5✔
951
                        r_type,
952
                        target,
953
                        source,
954
                        constraint,
955
                        foreign_keys=relationship.foreign_keys,
956
                        backref=relationship,
957
                    )
958
                    relationship.backref = reverse_relationship
5✔
959
                    target.relationships.append(reverse_relationship)
5✔
960

961
                    # For self referential relationships, remote_side needs to be set
962
                    if source is target:
5✔
963
                        reverse_relationship.remote_side = [
5✔
964
                            source.get_column_attribute(colname)
965
                            for colname in constraint.column_keys
966
                        ]
967

968
        # Add many-to-many relationships
969
        for association_table in association_tables:
5✔
970
            fk_constraints = sorted(
5✔
971
                association_table.table.foreign_key_constraints,
972
                key=get_constraint_sort_key,
973
            )
974
            target = models_by_table_name[
5✔
975
                qualified_table_name(fk_constraints[1].elements[0].column.table)
976
            ]
977
            if isinstance(target, ModelClass):
5✔
978
                relationship = RelationshipAttribute(
5✔
979
                    RelationshipType.MANY_TO_MANY,
980
                    source,
981
                    target,
982
                    fk_constraints[1],
983
                    association_table,
984
                )
985
                source.relationships.append(relationship)
5✔
986

987
                # Generate the opposite end of the relationship in the target class
988
                reverse_relationship = None
5✔
989
                if "nobidi" not in self.options:
5✔
990
                    reverse_relationship = RelationshipAttribute(
5✔
991
                        RelationshipType.MANY_TO_MANY,
992
                        target,
993
                        source,
994
                        fk_constraints[0],
995
                        association_table,
996
                        relationship,
997
                    )
998
                    relationship.backref = reverse_relationship
5✔
999
                    target.relationships.append(reverse_relationship)
5✔
1000

1001
                # Add a primary/secondary join for self-referential many-to-many
1002
                # relationships
1003
                if source is target:
5✔
1004
                    both_relationships = [relationship]
5✔
1005
                    reverse_flags = [False, True]
5✔
1006
                    if reverse_relationship:
5✔
1007
                        both_relationships.append(reverse_relationship)
5✔
1008

1009
                    for relationship, reverse in zip(both_relationships, reverse_flags):
5✔
1010
                        if (
5✔
1011
                            not relationship.association_table
1012
                            or not relationship.constraint
1013
                        ):
1014
                            continue
×
1015

1016
                        constraints = sorted(
5✔
1017
                            relationship.constraint.table.foreign_key_constraints,
1018
                            key=get_constraint_sort_key,
1019
                            reverse=reverse,
1020
                        )
1021
                        pri_pairs = zip(
5✔
1022
                            get_column_names(constraints[0]), constraints[0].elements
1023
                        )
1024
                        sec_pairs = zip(
5✔
1025
                            get_column_names(constraints[1]), constraints[1].elements
1026
                        )
1027
                        relationship.primaryjoin = [
5✔
1028
                            (
1029
                                relationship.source,
1030
                                elem.column.name,
1031
                                relationship.association_table,
1032
                                col,
1033
                            )
1034
                            for col, elem in pri_pairs
1035
                        ]
1036
                        relationship.secondaryjoin = [
5✔
1037
                            (
1038
                                relationship.target,
1039
                                elem.column.name,
1040
                                relationship.association_table,
1041
                                col,
1042
                            )
1043
                            for col, elem in sec_pairs
1044
                        ]
1045

1046
        return relationships
5✔
1047

1048
    def generate_model_name(self, model: Model, global_names: set[str]) -> None:
5✔
1049
        if isinstance(model, ModelClass):
5✔
1050
            preferred_name = _re_invalid_identifier.sub("_", model.table.name)
5✔
1051
            preferred_name = "".join(
5✔
1052
                part[:1].upper() + part[1:] for part in preferred_name.split("_")
1053
            )
1054
            if "use_inflect" in self.options:
5✔
1055
                singular_name = self.inflect_engine.singular_noun(preferred_name)
5✔
1056
                if singular_name:
5✔
1057
                    preferred_name = singular_name
5✔
1058

1059
            model.name = self.find_free_name(preferred_name, global_names)
5✔
1060

1061
            # Fill in the names for column attributes
1062
            local_names: set[str] = set()
5✔
1063
            for column_attr in model.columns:
5✔
1064
                self.generate_column_attr_name(column_attr, global_names, local_names)
5✔
1065
                local_names.add(column_attr.name)
5✔
1066

1067
            # Fill in the names for relationship attributes
1068
            for relationship in model.relationships:
5✔
1069
                self.generate_relationship_name(relationship, global_names, local_names)
5✔
1070
                local_names.add(relationship.name)
5✔
1071
        else:
1072
            super().generate_model_name(model, global_names)
5✔
1073

1074
    def generate_column_attr_name(
5✔
1075
        self,
1076
        column_attr: ColumnAttribute,
1077
        global_names: set[str],
1078
        local_names: set[str],
1079
    ) -> None:
1080
        column_attr.name = self.find_free_name(
5✔
1081
            column_attr.column.name, global_names, local_names
1082
        )
1083

1084
    def generate_relationship_name(
5✔
1085
        self,
1086
        relationship: RelationshipAttribute,
1087
        global_names: set[str],
1088
        local_names: set[str],
1089
    ) -> None:
1090
        # Self referential reverse relationships
1091
        preferred_name: str
1092
        if (
5✔
1093
            relationship.type
1094
            in (RelationshipType.ONE_TO_MANY, RelationshipType.ONE_TO_ONE)
1095
            and relationship.source is relationship.target
1096
            and relationship.backref
1097
            and relationship.backref.name
1098
        ):
1099
            preferred_name = relationship.backref.name + "_reverse"
5✔
1100
        else:
1101
            preferred_name = relationship.target.table.name
5✔
1102

1103
            # If there's a constraint with a single column that ends with "_id", use the
1104
            # preceding part as the relationship name
1105
            if relationship.constraint:
5✔
1106
                is_source = relationship.source.table is relationship.constraint.table
5✔
1107
                if is_source or relationship.type not in (
5✔
1108
                    RelationshipType.ONE_TO_ONE,
1109
                    RelationshipType.ONE_TO_MANY,
1110
                ):
1111
                    column_names = [c.name for c in relationship.constraint.columns]
5✔
1112
                    if len(column_names) == 1 and column_names[0].endswith("_id"):
5✔
1113
                        preferred_name = column_names[0][:-3]
5✔
1114

1115
            if "use_inflect" in self.options:
5✔
1116
                inflected_name: str | Literal[False]
1117
                if relationship.type in (
5✔
1118
                    RelationshipType.ONE_TO_MANY,
1119
                    RelationshipType.MANY_TO_MANY,
1120
                ):
1121
                    if not self.inflect_engine.singular_noun(preferred_name):
5✔
1122
                        preferred_name = self.inflect_engine.plural_noun(preferred_name)
×
1123
                else:
1124
                    inflected_name = self.inflect_engine.singular_noun(preferred_name)
5✔
1125
                    if inflected_name:
5✔
1126
                        preferred_name = inflected_name
5✔
1127

1128
        relationship.name = self.find_free_name(
5✔
1129
            preferred_name, global_names, local_names
1130
        )
1131

1132
    def render_models(self, models: list[Model]) -> str:
5✔
1133
        rendered: list[str] = []
5✔
1134
        for model in models:
5✔
1135
            if isinstance(model, ModelClass):
5✔
1136
                rendered.append(self.render_class(model))
5✔
1137
            else:
1138
                rendered.append(f"{model.name} = {self.render_table(model.table)}")
5✔
1139

1140
        return "\n\n\n".join(rendered)
5✔
1141

1142
    def render_class(self, model: ModelClass) -> str:
5✔
1143
        sections: list[str] = []
5✔
1144

1145
        # Render class variables / special declarations
1146
        class_vars: str = self.render_class_variables(model)
5✔
1147
        if class_vars:
5✔
1148
            sections.append(class_vars)
5✔
1149

1150
        # Render column attributes
1151
        rendered_column_attributes: list[str] = []
5✔
1152
        for nullable in (False, True):
5✔
1153
            for column_attr in model.columns:
5✔
1154
                if column_attr.column.nullable is nullable:
5✔
1155
                    rendered_column_attributes.append(
5✔
1156
                        self.render_column_attribute(column_attr)
1157
                    )
1158

1159
        if rendered_column_attributes:
5✔
1160
            sections.append("\n".join(rendered_column_attributes))
5✔
1161

1162
        # Render relationship attributes
1163
        rendered_relationship_attributes: list[str] = [
5✔
1164
            self.render_relationship(relationship)
1165
            for relationship in model.relationships
1166
        ]
1167

1168
        if rendered_relationship_attributes:
5✔
1169
            sections.append("\n".join(rendered_relationship_attributes))
5✔
1170

1171
        declaration = self.render_class_declaration(model)
5✔
1172
        rendered_sections = "\n\n".join(
5✔
1173
            indent(section, self.indentation) for section in sections
1174
        )
1175
        return f"{declaration}\n{rendered_sections}"
5✔
1176

1177
    def render_class_declaration(self, model: ModelClass) -> str:
5✔
1178
        parent_class_name = (
5✔
1179
            model.parent_class.name if model.parent_class else self.base_class_name
1180
        )
1181
        return f"class {model.name}({parent_class_name}):"
5✔
1182

1183
    def render_class_variables(self, model: ModelClass) -> str:
5✔
1184
        variables = [f"__tablename__ = {model.table.name!r}"]
5✔
1185

1186
        # Render constraints and indexes as __table_args__
1187
        table_args = self.render_table_args(model.table)
5✔
1188
        if table_args:
5✔
1189
            variables.append(f"__table_args__ = {table_args}")
5✔
1190

1191
        return "\n".join(variables)
5✔
1192

1193
    def render_table_args(self, table: Table) -> str:
5✔
1194
        args: list[str] = []
5✔
1195
        kwargs: dict[str, str] = {}
5✔
1196

1197
        # Render constraints
1198
        for constraint in sorted(table.constraints, key=get_constraint_sort_key):
5✔
1199
            if uses_default_name(constraint):
5✔
1200
                if isinstance(constraint, PrimaryKeyConstraint):
5✔
1201
                    continue
5✔
1202
                if (
5✔
1203
                    isinstance(constraint, (ForeignKeyConstraint, UniqueConstraint))
1204
                    and len(constraint.columns) == 1
1205
                ):
1206
                    continue
5✔
1207

1208
            args.append(self.render_constraint(constraint))
5✔
1209

1210
        # Render indexes
1211
        for index in sorted(table.indexes, key=lambda i: cast(str, i.name)):
5✔
1212
            if len(index.columns) > 1 or not uses_default_name(index):
5✔
1213
                args.append(self.render_index(index))
5✔
1214

1215
        if table.schema:
5✔
1216
            kwargs["schema"] = table.schema
5✔
1217

1218
        if table.comment:
5✔
1219
            kwargs["comment"] = table.comment
5✔
1220

1221
        if kwargs:
5✔
1222
            formatted_kwargs = pformat(kwargs)
5✔
1223
            if not args:
5✔
1224
                return formatted_kwargs
5✔
1225
            else:
1226
                args.append(formatted_kwargs)
5✔
1227

1228
        if args:
5✔
1229
            rendered_args = f",\n{self.indentation}".join(args)
5✔
1230
            if len(args) == 1:
5✔
1231
                rendered_args += ","
5✔
1232

1233
            return f"(\n{self.indentation}{rendered_args}\n)"
5✔
1234
        else:
1235
            return ""
5✔
1236

1237
    def render_column_python_type(self, column: Column[Any]) -> str:
5✔
1238
        def get_type_qualifiers() -> tuple[str, TypeEngine[Any], str]:
5✔
1239
            column_type = column.type
5✔
1240
            pre: list[str] = []
5✔
1241
            post_size = 0
5✔
1242
            if column.nullable:
5✔
1243
                self.add_literal_import("typing", "Optional")
5✔
1244
                pre.append("Optional[")
5✔
1245
                post_size += 1
5✔
1246

1247
            if isinstance(column_type, ARRAY):
5✔
1248
                dim = getattr(column_type, "dimensions", None) or 1
5✔
1249
                pre.extend("list[" for _ in range(dim))
5✔
1250
                post_size += dim
5✔
1251

1252
                column_type = column_type.item_type
5✔
1253

1254
            return "".join(pre), column_type, "]" * post_size
5✔
1255

1256
        def render_python_type(column_type: TypeEngine[Any]) -> str:
5✔
1257
            if isinstance(column_type, DOMAIN):
5✔
1258
                column_type = column_type.data_type
5✔
1259

1260
            try:
5✔
1261
                python_type = column_type.python_type
5✔
1262
                python_type_module = python_type.__module__
5✔
1263
                python_type_name = python_type.__name__
5✔
1264
            except NotImplementedError:
4✔
1265
                self.add_literal_import("typing", "Any")
4✔
1266
                return "Any"
4✔
1267

1268
            if python_type_module == "builtins":
5✔
1269
                return python_type_name
5✔
1270

1271
            self.add_module_import(python_type_module)
5✔
1272
            return f"{python_type_module}.{python_type_name}"
5✔
1273

1274
        pre, col_type, post = get_type_qualifiers()
5✔
1275
        column_python_type = f"{pre}{render_python_type(col_type)}{post}"
5✔
1276
        return column_python_type
5✔
1277

1278
    def render_column_attribute(self, column_attr: ColumnAttribute) -> str:
5✔
1279
        column = column_attr.column
5✔
1280
        rendered_column = self.render_column(column, column_attr.name != column.name)
5✔
1281
        rendered_column_python_type = self.render_column_python_type(column)
5✔
1282

1283
        return f"{column_attr.name}: Mapped[{rendered_column_python_type}] = {rendered_column}"
5✔
1284

1285
    def render_relationship(self, relationship: RelationshipAttribute) -> str:
5✔
1286
        def render_column_attrs(column_attrs: list[ColumnAttribute]) -> str:
5✔
1287
            rendered = []
5✔
1288
            for attr in column_attrs:
5✔
1289
                if attr.model is relationship.source:
5✔
1290
                    rendered.append(attr.name)
5✔
1291
                else:
1292
                    rendered.append(repr(f"{attr.model.name}.{attr.name}"))
×
1293

1294
            return "[" + ", ".join(rendered) + "]"
5✔
1295

1296
        def render_foreign_keys(column_attrs: list[ColumnAttribute]) -> str:
5✔
1297
            rendered = []
5✔
1298
            render_as_string = False
5✔
1299
            # Assume that column_attrs are all in relationship.source or none
1300
            for attr in column_attrs:
5✔
1301
                if attr.model is relationship.source:
5✔
1302
                    rendered.append(attr.name)
5✔
1303
                else:
1304
                    rendered.append(f"{attr.model.name}.{attr.name}")
5✔
1305
                    render_as_string = True
5✔
1306

1307
            if render_as_string:
5✔
1308
                return "'[" + ", ".join(rendered) + "]'"
5✔
1309
            else:
1310
                return "[" + ", ".join(rendered) + "]"
5✔
1311

1312
        def render_join(terms: list[JoinType]) -> str:
5✔
1313
            rendered_joins = []
5✔
1314
            for source, source_col, target, target_col in terms:
5✔
1315
                rendered = f"lambda: {source.name}.{source_col} == {target.name}."
5✔
1316
                if target.__class__ is Model:
5✔
1317
                    rendered += "c."
5✔
1318

1319
                rendered += str(target_col)
5✔
1320
                rendered_joins.append(rendered)
5✔
1321

1322
            if len(rendered_joins) > 1:
5✔
1323
                rendered = ", ".join(rendered_joins)
×
1324
                return f"and_({rendered})"
×
1325
            else:
1326
                return rendered_joins[0]
5✔
1327

1328
        # Render keyword arguments
1329
        kwargs: dict[str, Any] = {}
5✔
1330
        if relationship.type is RelationshipType.ONE_TO_ONE and relationship.constraint:
5✔
1331
            if relationship.constraint.referred_table is relationship.source.table:
5✔
1332
                kwargs["uselist"] = False
5✔
1333

1334
        # Add the "secondary" keyword for many-to-many relationships
1335
        if relationship.association_table:
5✔
1336
            table_ref = relationship.association_table.table.name
5✔
1337
            if relationship.association_table.schema:
5✔
1338
                table_ref = f"{relationship.association_table.schema}.{table_ref}"
5✔
1339

1340
            kwargs["secondary"] = repr(table_ref)
5✔
1341

1342
        if relationship.remote_side:
5✔
1343
            kwargs["remote_side"] = render_column_attrs(relationship.remote_side)
5✔
1344

1345
        if relationship.foreign_keys:
5✔
1346
            kwargs["foreign_keys"] = render_foreign_keys(relationship.foreign_keys)
5✔
1347

1348
        if relationship.primaryjoin:
5✔
1349
            kwargs["primaryjoin"] = render_join(relationship.primaryjoin)
5✔
1350

1351
        if relationship.secondaryjoin:
5✔
1352
            kwargs["secondaryjoin"] = render_join(relationship.secondaryjoin)
5✔
1353

1354
        if relationship.backref:
5✔
1355
            kwargs["back_populates"] = repr(relationship.backref.name)
5✔
1356

1357
        rendered_relationship = render_callable(
5✔
1358
            "relationship", repr(relationship.target.name), kwargs=kwargs
1359
        )
1360

1361
        relationship_type: str
1362
        if relationship.type == RelationshipType.ONE_TO_MANY:
5✔
1363
            relationship_type = f"list['{relationship.target.name}']"
5✔
1364
        elif relationship.type in (
5✔
1365
            RelationshipType.ONE_TO_ONE,
1366
            RelationshipType.MANY_TO_ONE,
1367
        ):
1368
            relationship_type = f"'{relationship.target.name}'"
5✔
1369
            if relationship.constraint and any(
5✔
1370
                col.nullable for col in relationship.constraint.columns
1371
            ):
1372
                self.add_literal_import("typing", "Optional")
5✔
1373
                relationship_type = f"Optional[{relationship_type}]"
5✔
1374
        elif relationship.type == RelationshipType.MANY_TO_MANY:
5✔
1375
            relationship_type = f"list['{relationship.target.name}']"
5✔
1376
        else:
1377
            self.add_literal_import("typing", "Any")
×
1378
            relationship_type = "Any"
×
1379

1380
        return (
5✔
1381
            f"{relationship.name}: Mapped[{relationship_type}] "
1382
            f"= {rendered_relationship}"
1383
        )
1384

1385

1386
class DataclassGenerator(DeclarativeGenerator):
5✔
1387
    def __init__(
5✔
1388
        self,
1389
        metadata: MetaData,
1390
        bind: Connection | Engine,
1391
        options: Sequence[str],
1392
        *,
1393
        indentation: str = "    ",
1394
        base_class_name: str = "Base",
1395
        quote_annotations: bool = False,
1396
        metadata_key: str = "sa",
1397
    ):
1398
        super().__init__(
5✔
1399
            metadata,
1400
            bind,
1401
            options,
1402
            indentation=indentation,
1403
            base_class_name=base_class_name,
1404
        )
1405
        self.metadata_key: str = metadata_key
5✔
1406
        self.quote_annotations: bool = quote_annotations
5✔
1407

1408
    def generate_base(self) -> None:
5✔
1409
        self.base = Base(
5✔
1410
            literal_imports=[
1411
                LiteralImport("sqlalchemy.orm", "DeclarativeBase"),
1412
                LiteralImport("sqlalchemy.orm", "MappedAsDataclass"),
1413
            ],
1414
            declarations=[
1415
                (f"class {self.base_class_name}(MappedAsDataclass, DeclarativeBase):"),
1416
                f"{self.indentation}pass",
1417
            ],
1418
            metadata_ref=f"{self.base_class_name}.metadata",
1419
        )
1420

1421

1422
class SQLModelGenerator(DeclarativeGenerator):
5✔
1423
    def __init__(
5✔
1424
        self,
1425
        metadata: MetaData,
1426
        bind: Connection | Engine,
1427
        options: Sequence[str],
1428
        *,
1429
        indentation: str = "    ",
1430
        base_class_name: str = "SQLModel",
1431
    ):
1432
        super().__init__(
5✔
1433
            metadata,
1434
            bind,
1435
            options,
1436
            indentation=indentation,
1437
            base_class_name=base_class_name,
1438
        )
1439

1440
    @property
5✔
1441
    def views_supported(self) -> bool:
5✔
1442
        return False
×
1443

1444
    def render_column_callable(self, is_table: bool, *args: Any, **kwargs: Any) -> str:
5✔
1445
        self.add_import(Column)
5✔
1446
        return render_callable("Column", *args, kwargs=kwargs)
5✔
1447

1448
    def generate_base(self) -> None:
5✔
1449
        self.base = Base(
5✔
1450
            literal_imports=[],
1451
            declarations=[],
1452
            metadata_ref="",
1453
        )
1454

1455
    def collect_imports(self, models: Iterable[Model]) -> None:
5✔
1456
        super(DeclarativeGenerator, self).collect_imports(models)
5✔
1457
        if any(isinstance(model, ModelClass) for model in models):
5✔
1458
            self.remove_literal_import("sqlalchemy", "MetaData")
5✔
1459
            self.add_literal_import("sqlmodel", "SQLModel")
5✔
1460
            self.add_literal_import("sqlmodel", "Field")
5✔
1461

1462
    def collect_imports_for_model(self, model: Model) -> None:
5✔
1463
        super(DeclarativeGenerator, self).collect_imports_for_model(model)
5✔
1464
        if isinstance(model, ModelClass):
5✔
1465
            for column_attr in model.columns:
5✔
1466
                if column_attr.column.nullable:
5✔
1467
                    self.add_literal_import("typing", "Optional")
5✔
1468
                    break
5✔
1469

1470
            if model.relationships:
5✔
1471
                self.add_literal_import("sqlmodel", "Relationship")
5✔
1472

1473
    def render_module_variables(self, models: list[Model]) -> str:
5✔
1474
        declarations: list[str] = []
5✔
1475
        if any(not isinstance(model, ModelClass) for model in models):
5✔
1476
            if self.base.table_metadata_declaration is not None:
×
1477
                declarations.append(self.base.table_metadata_declaration)
×
1478

1479
        return "\n".join(declarations)
5✔
1480

1481
    def render_class_declaration(self, model: ModelClass) -> str:
5✔
1482
        if model.parent_class:
5✔
1483
            parent = model.parent_class.name
×
1484
        else:
1485
            parent = self.base_class_name
5✔
1486

1487
        superclass_part = f"({parent}, table=True)"
5✔
1488
        return f"class {model.name}{superclass_part}:"
5✔
1489

1490
    def render_class_variables(self, model: ModelClass) -> str:
5✔
1491
        variables = []
5✔
1492

1493
        if model.table.name != model.name.lower():
5✔
1494
            variables.append(f"__tablename__ = {model.table.name!r}")
5✔
1495

1496
        # Render constraints and indexes as __table_args__
1497
        table_args = self.render_table_args(model.table)
5✔
1498
        if table_args:
5✔
1499
            variables.append(f"__table_args__ = {table_args}")
5✔
1500

1501
        return "\n".join(variables)
5✔
1502

1503
    def render_column_attribute(self, column_attr: ColumnAttribute) -> str:
5✔
1504
        column = column_attr.column
5✔
1505
        rendered_column = self.render_column(column, True)
5✔
1506
        rendered_column_python_type = self.render_column_python_type(column)
5✔
1507

1508
        kwargs: dict[str, Any] = {}
5✔
1509
        if column.nullable:
5✔
1510
            kwargs["default"] = None
5✔
1511
        kwargs["sa_column"] = f"{rendered_column}"
5✔
1512

1513
        rendered_field = render_callable("Field", kwargs=kwargs)
5✔
1514

1515
        return f"{column_attr.name}: {rendered_column_python_type} = {rendered_field}"
5✔
1516

1517
    def render_relationship(self, relationship: RelationshipAttribute) -> str:
5✔
1518
        rendered = super().render_relationship(relationship).partition(" = ")[2]
5✔
1519
        args = self.render_relationship_args(rendered)
5✔
1520
        kwargs: dict[str, Any] = {}
5✔
1521
        annotation = repr(relationship.target.name)
5✔
1522

1523
        if relationship.type in (
5✔
1524
            RelationshipType.ONE_TO_MANY,
1525
            RelationshipType.MANY_TO_MANY,
1526
        ):
1527
            annotation = f"list[{annotation}]"
5✔
1528
        else:
1529
            self.add_literal_import("typing", "Optional")
5✔
1530
            annotation = f"Optional[{annotation}]"
5✔
1531

1532
        rendered_field = render_callable("Relationship", *args, kwargs=kwargs)
5✔
1533
        return f"{relationship.name}: {annotation} = {rendered_field}"
5✔
1534

1535
    def render_relationship_args(self, arguments: str) -> list[str]:
5✔
1536
        argument_list = arguments.split(",")
5✔
1537
        # delete ')' and ' ' from args
1538
        argument_list[-1] = argument_list[-1][:-1]
5✔
1539
        argument_list = [argument[1:] for argument in argument_list]
5✔
1540

1541
        rendered_args: list[str] = []
5✔
1542
        for arg in argument_list:
5✔
1543
            if "back_populates" in arg:
5✔
1544
                rendered_args.append(arg)
5✔
1545
            if "uselist=False" in arg:
5✔
1546
                rendered_args.append("sa_relationship_kwargs={'uselist': False}")
5✔
1547

1548
        return rendered_args
5✔
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