mirror of
https://github.com/graphql-python/graphene.git
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add depth limit validator
This commit is contained in:
parent
fce45ef552
commit
aa11681048
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@ -10,3 +10,4 @@ Execution
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dataloader
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fileuploading
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subscriptions
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validators
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35
docs/execution/validators.rst
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35
docs/execution/validators.rst
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Middleware
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==========
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Validation rules help validate a given GraphQL query, before executing it.To help with common use
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cases, graphene provides a few validation rules out of the box.
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Depth limit Validator
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-----------------
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The depth limit validator helps to prevent execution of malicious
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queries. It takes in the following arguments.
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- ``max_depth`` is the maximum allowed depth for any operation in a GraphQL document.
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- ``ignore`` Stops recursive depth checking based on a field name. Either a string or regexp to match the name, or a function that returns a boolean
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- ``callback`` Called each time validation runs. Receives an Object which is a map of the depths for each operation.
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Example
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-------
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Here is how you would implement depth-limiting on your schema.
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.. code:: python
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from graphene.validators import depth_limit_validator
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# The following schema doesn't execute queries
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# which have a depth more than 20.
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result = schema.execute(
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'THE QUERY',
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validation_rules=[
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depth_limit_validator(
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max_depth=20
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)
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]
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)
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6
graphene/validators/__init__.py
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6
graphene/validators/__init__.py
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from .depth_limit_validator import depth_limit_validator
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__all__ = [
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"depth_limit_validator"
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]
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198
graphene/validators/depth_limit_validator.py
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198
graphene/validators/depth_limit_validator.py
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# This is a Python port of https://github.com/stems/graphql-depth-limit
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# which is licensed under the terms of the MIT license, reproduced below.
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#
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# -----------
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#
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# MIT License
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#
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# Copyright (c) 2017 Stem
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#
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# Permission is hereby granted, free of charge, to any person obtaining a copy
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# of this software and associated documentation files (the "Software"), to deal
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# in the Software without restriction, including without limitation the rights
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# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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# copies of the Software, and to permit persons to whom the Software is
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# furnished to do so, subject to the following conditions:
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#
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# The above copyright notice and this permission notice shall be included in all
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# copies or substantial portions of the Software.
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#
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# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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# SOFTWARE.
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import re
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from typing import Callable, Dict, List, Optional, Union
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from graphql import GraphQLError, is_introspection_type
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from graphql.language import (
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DefinitionNode,
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FieldNode,
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FragmentDefinitionNode,
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FragmentSpreadNode,
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InlineFragmentNode,
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Node,
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OperationDefinitionNode,
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)
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from graphql.validation import ValidationContext, ValidationRule
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IgnoreType = Union[Callable[[str], bool], re.Pattern, str]
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def depth_limit_validator(
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max_depth: int,
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ignore: Optional[List[IgnoreType]] = None,
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callback: Callable[[Dict[str, int]], None] = None,
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):
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class DepthLimitValidator(ValidationRule):
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def __init__(self, validation_context: ValidationContext):
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document = validation_context.document
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definitions = document.definitions
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fragments = get_fragments(definitions)
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queries = get_queries_and_mutations(definitions)
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query_depths = {}
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for name in queries:
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query_depths[name] = determine_depth(
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node=queries[name],
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fragments=fragments,
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depth_so_far=0,
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max_depth=max_depth,
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context=validation_context,
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operation_name=name,
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ignore=ignore,
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)
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if callable(callback):
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callback(query_depths)
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super().__init__(validation_context)
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return DepthLimitValidator
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def get_fragments(
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definitions: List[DefinitionNode],
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) -> Dict[str, FragmentDefinitionNode]:
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fragments = {}
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for definition in definitions:
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if isinstance(definition, FragmentDefinitionNode):
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fragments[definition.name.value] = definition
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return fragments
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# This will actually get both queries and mutations.
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# We can basically treat those the same
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def get_queries_and_mutations(
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definitions: List[DefinitionNode],
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) -> Dict[str, OperationDefinitionNode]:
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operations = {}
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for definition in definitions:
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if isinstance(definition, OperationDefinitionNode):
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operation = definition.name.value if definition.name else "anonymous"
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operations[operation] = definition
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return operations
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def determine_depth(
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node: Node,
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fragments: Dict[str, FragmentDefinitionNode],
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depth_so_far: int,
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max_depth: int,
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context: ValidationContext,
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operation_name: str,
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ignore: Optional[List[IgnoreType]] = None,
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) -> int:
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if depth_so_far > max_depth:
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context.report_error(
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GraphQLError(
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f"'{operation_name}' exceeds maximum operation depth of {max_depth}",
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[node],
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)
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)
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return depth_so_far
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if isinstance(node, FieldNode):
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# from: https://spec.graphql.org/June2018/#sec-Schema
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# > All types and directives defined within a schema must not have a name which
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# > begins with "__" (two underscores), as this is used exclusively
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# > by GraphQL’s introspection system.
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should_ignore = str(node.name.value).startswith("__") or is_ignored(
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node, ignore
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)
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if should_ignore or not node.selection_set:
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return 0
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return 1 + max(
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map(
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lambda selection: determine_depth(
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node=selection,
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fragments=fragments,
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depth_so_far=depth_so_far + 1,
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max_depth=max_depth,
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context=context,
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operation_name=operation_name,
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ignore=ignore,
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),
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node.selection_set.selections,
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)
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)
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elif isinstance(node, FragmentSpreadNode):
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return determine_depth(
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node=fragments[node.name.value],
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fragments=fragments,
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depth_so_far=depth_so_far,
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max_depth=max_depth,
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context=context,
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operation_name=operation_name,
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ignore=ignore,
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)
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elif isinstance(
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node, (InlineFragmentNode, FragmentDefinitionNode, OperationDefinitionNode)
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):
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return max(
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map(
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lambda selection: determine_depth(
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node=selection,
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fragments=fragments,
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depth_so_far=depth_so_far,
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max_depth=max_depth,
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context=context,
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operation_name=operation_name,
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ignore=ignore,
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),
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node.selection_set.selections,
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)
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)
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else:
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raise Exception(f"Depth crawler cannot handle: {node.kind}") # pragma: no cover
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def is_ignored(node: FieldNode, ignore: Optional[List[IgnoreType]] = None) -> bool:
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if ignore is None:
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return False
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for rule in ignore:
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field_name = node.name.value
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if isinstance(rule, str):
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if field_name == rule:
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return True
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elif isinstance(rule, re.Pattern):
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if rule.match(field_name):
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return True
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elif callable(rule):
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if rule(field_name):
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return True
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else:
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raise ValueError(f"Invalid ignore option: {rule}")
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return False
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0
graphene/validators/tests/__init__.py
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0
graphene/validators/tests/__init__.py
Normal file
279
graphene/validators/tests/test_depth_limit_validator.py
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279
graphene/validators/tests/test_depth_limit_validator.py
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import re
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from pytest import raises
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from graphql import parse, get_introspection_query, validate
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from ...types import Schema, ObjectType, Interface
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from ...types import String, Int, List, Field
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from ..depth_limit_validator import depth_limit_validator
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class PetType(Interface):
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name = String(required=True)
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class meta:
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name = "Pet"
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class CatType(ObjectType):
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class meta:
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name = "Cat"
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interfaces = (PetType,)
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class DogType(ObjectType):
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class meta:
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name = "Dog"
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interfaces = (PetType,)
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class AddressType(ObjectType):
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street = String(required=True)
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number = Int(required=True)
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city = String(required=True)
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country = String(required=True)
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class Meta:
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name = "Address"
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class HumanType(ObjectType):
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name = String(required=True)
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email = String(required=True)
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address = Field(AddressType, required=True)
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pets = List(PetType, required=True)
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class Meta:
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name = "Human"
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class Query(ObjectType):
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user = Field(
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HumanType,
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required=True,
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name=String()
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)
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version = String(
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required=True
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)
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user1 = Field(
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HumanType,
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required=True
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)
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user2 = Field(
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HumanType,
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required=True
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)
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user3 = Field(
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HumanType,
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required=True
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)
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@staticmethod
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def resolve_user(root, info, name=None):
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pass
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schema = Schema(query=Query)
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def run_query(query: str, max_depth: int, ignore=None):
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document = parse(query)
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result = None
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def callback(query_depths):
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nonlocal result
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result = query_depths
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errors = validate(
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schema.graphql_schema,
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document,
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rules=(
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depth_limit_validator(
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max_depth=max_depth,
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ignore=ignore,
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callback=callback
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),
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),
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)
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return errors, result
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def test_should_count_depth_without_fragment():
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query = """
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query read0 {
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version
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}
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query read1 {
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version
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user {
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name
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}
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}
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query read2 {
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matt: user(name: "matt") {
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email
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}
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andy: user(name: "andy") {
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email
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address {
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city
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}
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}
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}
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query read3 {
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matt: user(name: "matt") {
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email
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}
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andy: user(name: "andy") {
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email
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address {
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city
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}
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pets {
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name
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owner {
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name
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}
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}
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}
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}
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"""
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expected = {"read0": 0, "read1": 1, "read2": 2, "read3": 3}
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errors, result = run_query(query, 10)
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assert not errors
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assert result == expected
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def test_should_count_with_fragments():
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query = """
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query read0 {
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... on Query {
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version
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}
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}
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query read1 {
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version
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user {
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... on Human {
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name
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}
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}
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}
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fragment humanInfo on Human {
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email
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}
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fragment petInfo on Pet {
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name
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owner {
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name
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}
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}
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query read2 {
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matt: user(name: "matt") {
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...humanInfo
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}
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andy: user(name: "andy") {
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...humanInfo
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address {
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city
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}
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}
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}
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query read3 {
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matt: user(name: "matt") {
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...humanInfo
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}
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andy: user(name: "andy") {
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... on Human {
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email
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}
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address {
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city
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}
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pets {
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...petInfo
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}
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}
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}
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"""
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expected = {"read0": 0, "read1": 1, "read2": 2, "read3": 3}
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errors, result = run_query(query, 10)
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assert not errors
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assert result == expected
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def test_should_ignore_the_introspection_query():
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errors, result = run_query(get_introspection_query(), 10)
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assert not errors
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assert result == {"IntrospectionQuery": 0}
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def test_should_catch_very_deep_query():
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query = """{
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user {
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pets {
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owner {
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pets {
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owner {
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pets {
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name
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}
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}
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}
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}
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}
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}
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}
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"""
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errors, result = run_query(query, 4)
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assert len(errors) == 1
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assert errors[0].message == "'anonymous' exceeds maximum operation depth of 4"
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def test_should_ignore_field():
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query = """
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query read1 {
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user { address { city } }
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}
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query read2 {
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user1 { address { city } }
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user2 { address { city } }
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user3 { address { city } }
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}
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"""
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errors, result = run_query(
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query,
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10,
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ignore=[
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"user1",
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re.compile("user2"),
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lambda field_name: field_name == "user3",
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],
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)
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expected = {"read1": 2, "read2": 0}
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assert not errors
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assert result == expected
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def test_should_raise_invalid_ignore():
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query = """
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query read1 {
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user { address { city } }
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}
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"""
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with raises(ValueError, match="Invalid ignore option:"):
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run_query(
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query,
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10,
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ignore=[True],
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)
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