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680 lines
23 KiB
Python
680 lines
23 KiB
Python
# -*- coding: utf-8 -*-
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#
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# Copyright IBM, Corp. 2011
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# Copyright (c) 2013-2021 Red Hat Inc.
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#
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# Authors:
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# Anthony Liguori <aliguori@us.ibm.com>
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# Markus Armbruster <armbru@redhat.com>
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# Eric Blake <eblake@redhat.com>
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# Marc-André Lureau <marcandre.lureau@redhat.com>
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# John Snow <jsnow@redhat.com>
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#
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# This work is licensed under the terms of the GNU GPL, version 2.
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# See the COPYING file in the top-level directory.
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"""
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Normalize and validate (context-free) QAPI schema expression structures.
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`QAPISchemaParser` parses a QAPI schema into abstract syntax trees
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consisting of dict, list, str, bool, and int nodes. This module ensures
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that these nested structures have the correct type(s) and key(s) where
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appropriate for the QAPI context-free grammar.
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The QAPI schema expression language allows for certain syntactic sugar;
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this module also handles the normalization process of these nested
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structures.
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See `check_exprs` for the main entry point.
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See `schema.QAPISchema` for processing into native Python data
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structures and contextual semantic validation.
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"""
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import re
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from typing import (
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Dict,
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Iterable,
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List,
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Optional,
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Union,
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cast,
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)
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from .common import c_name
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from .error import QAPISemError
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from .parser import QAPIExpression
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from .source import QAPISourceInfo
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# See check_name_str(), below.
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valid_name = re.compile(r'(__[a-z0-9.-]+_)?'
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r'(x-)?'
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r'([a-z][a-z0-9_-]*)$', re.IGNORECASE)
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def check_name_is_str(name: object,
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info: QAPISourceInfo,
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source: str) -> None:
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"""
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Ensure that ``name`` is a ``str``.
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:raise QAPISemError: When ``name`` fails validation.
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"""
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if not isinstance(name, str):
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raise QAPISemError(info, "%s requires a string name" % source)
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def check_name_str(name: str, info: QAPISourceInfo, source: str) -> str:
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"""
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Ensure that ``name`` is a valid QAPI name.
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A valid name consists of ASCII letters, digits, ``-``, and ``_``,
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starting with a letter. It may be prefixed by a downstream prefix
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of the form __RFQDN_, or the experimental prefix ``x-``. If both
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prefixes are present, the __RFDQN_ prefix goes first.
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A valid name cannot start with ``q_``, which is reserved.
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:param name: Name to check.
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:param info: QAPI schema source file information.
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:param source: Error string describing what ``name`` belongs to.
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:raise QAPISemError: When ``name`` fails validation.
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:return: The stem of the valid name, with no prefixes.
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"""
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# Reserve the entire 'q_' namespace for c_name(), and for 'q_empty'
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# and 'q_obj_*' implicit type names.
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match = valid_name.match(name)
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if not match or c_name(name, False).startswith('q_'):
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raise QAPISemError(info, "%s has an invalid name" % source)
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return match.group(3)
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def check_name_upper(name: str, info: QAPISourceInfo, source: str) -> None:
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"""
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Ensure that ``name`` is a valid event name.
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This means it must be a valid QAPI name as checked by
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`check_name_str()`, but where the stem prohibits lowercase
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characters and ``-``.
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:param name: Name to check.
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:param info: QAPI schema source file information.
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:param source: Error string describing what ``name`` belongs to.
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:raise QAPISemError: When ``name`` fails validation.
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"""
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stem = check_name_str(name, info, source)
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if re.search(r'[a-z-]', stem):
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raise QAPISemError(
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info, "name of %s must not use lowercase or '-'" % source)
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def check_name_lower(name: str, info: QAPISourceInfo, source: str,
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permit_upper: bool = False,
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permit_underscore: bool = False) -> None:
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"""
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Ensure that ``name`` is a valid command or member name.
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This means it must be a valid QAPI name as checked by
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`check_name_str()`, but where the stem prohibits uppercase
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characters and ``_``.
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:param name: Name to check.
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:param info: QAPI schema source file information.
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:param source: Error string describing what ``name`` belongs to.
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:param permit_upper: Additionally permit uppercase.
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:param permit_underscore: Additionally permit ``_``.
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:raise QAPISemError: When ``name`` fails validation.
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"""
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stem = check_name_str(name, info, source)
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if ((not permit_upper and re.search(r'[A-Z]', stem))
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or (not permit_underscore and '_' in stem)):
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raise QAPISemError(
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info, "name of %s must not use uppercase or '_'" % source)
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def check_name_camel(name: str, info: QAPISourceInfo, source: str) -> None:
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"""
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Ensure that ``name`` is a valid user-defined type name.
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This means it must be a valid QAPI name as checked by
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`check_name_str()`, but where the stem must be in CamelCase.
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:param name: Name to check.
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:param info: QAPI schema source file information.
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:param source: Error string describing what ``name`` belongs to.
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:raise QAPISemError: When ``name`` fails validation.
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"""
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stem = check_name_str(name, info, source)
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if not re.match(r'[A-Z][A-Za-z0-9]*[a-z][A-Za-z0-9]*$', stem):
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raise QAPISemError(info, "name of %s must use CamelCase" % source)
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def check_defn_name_str(name: str, info: QAPISourceInfo, meta: str) -> None:
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"""
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Ensure that ``name`` is a valid definition name.
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Based on the value of ``meta``, this means that:
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- 'event' names adhere to `check_name_upper()`.
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- 'command' names adhere to `check_name_lower()`.
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- Else, meta is a type, and must pass `check_name_camel()`.
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These names must not end with ``List``.
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:param name: Name to check.
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:param info: QAPI schema source file information.
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:param meta: Meta-type name of the QAPI expression.
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:raise QAPISemError: When ``name`` fails validation.
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"""
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if meta == 'event':
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check_name_upper(name, info, meta)
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elif meta == 'command':
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check_name_lower(
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name, info, meta,
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permit_underscore=name in info.pragma.command_name_exceptions)
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else:
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check_name_camel(name, info, meta)
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if name.endswith('List'):
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raise QAPISemError(
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info, "%s name should not end in 'List'" % meta)
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def check_keys(value: Dict[str, object],
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info: QAPISourceInfo,
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source: str,
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required: List[str],
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optional: List[str]) -> None:
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"""
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Ensure that a dict has a specific set of keys.
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:param value: The dict to check.
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:param info: QAPI schema source file information.
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:param source: Error string describing this ``value``.
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:param required: Keys that *must* be present.
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:param optional: Keys that *may* be present.
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:raise QAPISemError: When unknown keys are present.
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"""
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def pprint(elems: Iterable[str]) -> str:
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return ', '.join("'" + e + "'" for e in sorted(elems))
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missing = set(required) - set(value)
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if missing:
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raise QAPISemError(
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info,
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"%s misses key%s %s"
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% (source, 's' if len(missing) > 1 else '',
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pprint(missing)))
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allowed = set(required) | set(optional)
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unknown = set(value) - allowed
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if unknown:
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raise QAPISemError(
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info,
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"%s has unknown key%s %s\nValid keys are %s."
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% (source, 's' if len(unknown) > 1 else '',
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pprint(unknown), pprint(allowed)))
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def check_flags(expr: QAPIExpression) -> None:
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"""
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Ensure flag members (if present) have valid values.
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:param expr: The expression to validate.
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:raise QAPISemError:
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When certain flags have an invalid value, or when
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incompatible flags are present.
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"""
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for key in ('gen', 'success-response'):
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if key in expr and expr[key] is not False:
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raise QAPISemError(
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expr.info, "flag '%s' may only use false value" % key)
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for key in ('boxed', 'allow-oob', 'allow-preconfig', 'coroutine'):
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if key in expr and expr[key] is not True:
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raise QAPISemError(
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expr.info, "flag '%s' may only use true value" % key)
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if 'allow-oob' in expr and 'coroutine' in expr:
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# This is not necessarily a fundamental incompatibility, but
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# we don't have a use case and the desired semantics isn't
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# obvious. The simplest solution is to forbid it until we get
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# a use case for it.
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raise QAPISemError(
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expr.info, "flags 'allow-oob' and 'coroutine' are incompatible")
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def check_if(expr: Dict[str, object],
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info: QAPISourceInfo, source: str) -> None:
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"""
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Validate the ``if`` member of an object.
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The ``if`` member may be either a ``str`` or a dict.
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:param expr: The expression containing the ``if`` member to validate.
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:param info: QAPI schema source file information.
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:param source: Error string describing ``expr``.
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:raise QAPISemError:
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When the "if" member fails validation, or when there are no
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non-empty conditions.
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:return: None
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"""
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def _check_if(cond: Union[str, object]) -> None:
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if isinstance(cond, str):
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if not re.fullmatch(r'[A-Z][A-Z0-9_]*', cond):
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raise QAPISemError(
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info,
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"'if' condition '%s' of %s is not a valid identifier"
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% (cond, source))
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return
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if not isinstance(cond, dict):
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raise QAPISemError(
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info,
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"'if' condition of %s must be a string or an object" % source)
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check_keys(cond, info, "'if' condition of %s" % source, [],
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["all", "any", "not"])
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if len(cond) != 1:
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raise QAPISemError(
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info,
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"'if' condition of %s has conflicting keys" % source)
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if 'not' in cond:
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_check_if(cond['not'])
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elif 'all' in cond:
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_check_infix('all', cond['all'])
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else:
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_check_infix('any', cond['any'])
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def _check_infix(operator: str, operands: object) -> None:
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if not isinstance(operands, list):
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raise QAPISemError(
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info,
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"'%s' condition of %s must be an array"
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% (operator, source))
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if not operands:
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raise QAPISemError(
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info, "'if' condition [] of %s is useless" % source)
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for operand in operands:
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_check_if(operand)
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ifcond = expr.get('if')
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if ifcond is None:
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return
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_check_if(ifcond)
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def normalize_members(members: object) -> None:
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"""
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Normalize a "members" value.
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If ``members`` is a dict, for every value in that dict, if that
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value is not itself already a dict, normalize it to
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``{'type': value}``.
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:forms:
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:sugared: ``Dict[str, Union[str, TypeRef]]``
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:canonical: ``Dict[str, TypeRef]``
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:param members: The members value to normalize.
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:return: None, ``members`` is normalized in-place as needed.
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"""
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if isinstance(members, dict):
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for key, arg in members.items():
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if isinstance(arg, dict):
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continue
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members[key] = {'type': arg}
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def check_type_name(value: Optional[object],
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info: QAPISourceInfo, source: str) -> None:
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if value is not None and not isinstance(value, str):
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raise QAPISemError(info, "%s should be a type name" % source)
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def check_type_name_or_array(value: Optional[object],
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info: QAPISourceInfo, source: str) -> None:
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if value is None or isinstance(value, str):
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return
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if not isinstance(value, list):
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raise QAPISemError(info,
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"%s should be a type name or array" % source)
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if len(value) != 1 or not isinstance(value[0], str):
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raise QAPISemError(info,
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"%s: array type must contain single type name" %
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source)
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def check_type_implicit(value: Optional[object],
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info: QAPISourceInfo, source: str,
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parent_name: Optional[str]) -> None:
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"""
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Normalize and validate an optional implicit struct type.
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Accept ``None`` or a ``dict`` defining an implicit struct type.
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The latter is normalized in place.
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:param value: The value to check.
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:param info: QAPI schema source file information.
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:param source: Error string describing this ``value``.
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:param parent_name:
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When the value of ``parent_name`` is in pragma
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``member-name-exceptions``, an implicit struct type may
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violate the member naming rules.
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:raise QAPISemError: When ``value`` fails validation.
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:return: None
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"""
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if value is None:
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return
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if not isinstance(value, dict):
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raise QAPISemError(info,
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"%s should be an object or type name" % source)
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permissive = parent_name in info.pragma.member_name_exceptions
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for (key, arg) in value.items():
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key_source = "%s member '%s'" % (source, key)
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if key.startswith('*'):
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key = key[1:]
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check_name_lower(key, info, key_source,
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permit_upper=permissive,
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permit_underscore=permissive)
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if c_name(key, False) == 'u' or c_name(key, False).startswith('has_'):
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raise QAPISemError(info, "%s uses reserved name" % key_source)
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check_keys(arg, info, key_source, ['type'], ['if', 'features'])
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check_if(arg, info, key_source)
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check_features(arg.get('features'), info)
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check_type_name_or_array(arg['type'], info, key_source)
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def check_type_name_or_implicit(value: Optional[object],
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info: QAPISourceInfo, source: str,
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parent_name: Optional[str]) -> None:
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if value is None or isinstance(value, str):
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return
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check_type_implicit(value, info, source, parent_name)
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def check_features(features: Optional[object],
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info: QAPISourceInfo) -> None:
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"""
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Normalize and validate the ``features`` member.
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``features`` may be a ``list`` of either ``str`` or ``dict``.
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Any ``str`` element will be normalized to ``{'name': element}``.
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:forms:
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:sugared: ``List[Union[str, Feature]]``
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:canonical: ``List[Feature]``
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:param features: The features member value to validate.
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:param info: QAPI schema source file information.
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:raise QAPISemError: When ``features`` fails validation.
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:return: None, ``features`` is normalized in-place as needed.
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"""
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if features is None:
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return
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if not isinstance(features, list):
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raise QAPISemError(info, "'features' must be an array")
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features[:] = [f if isinstance(f, dict) else {'name': f}
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for f in features]
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for feat in features:
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source = "'features' member"
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assert isinstance(feat, dict)
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check_keys(feat, info, source, ['name'], ['if'])
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check_name_is_str(feat['name'], info, source)
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source = "%s '%s'" % (source, feat['name'])
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check_name_lower(feat['name'], info, source)
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check_if(feat, info, source)
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def check_enum(expr: QAPIExpression) -> None:
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"""
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Normalize and validate this expression as an ``enum`` definition.
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:param expr: The expression to validate.
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:raise QAPISemError: When ``expr`` is not a valid ``enum``.
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:return: None, ``expr`` is normalized in-place as needed.
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"""
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name = expr['enum']
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members = expr['data']
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prefix = expr.get('prefix')
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info = expr.info
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if not isinstance(members, list):
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raise QAPISemError(info, "'data' must be an array")
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if prefix is not None and not isinstance(prefix, str):
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raise QAPISemError(info, "'prefix' must be a string")
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permissive = name in info.pragma.member_name_exceptions
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members[:] = [m if isinstance(m, dict) else {'name': m}
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for m in members]
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for member in members:
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source = "'data' member"
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check_keys(member, info, source, ['name'], ['if', 'features'])
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member_name = member['name']
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check_name_is_str(member_name, info, source)
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source = "%s '%s'" % (source, member_name)
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# Enum members may start with a digit
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if member_name[0].isdigit():
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member_name = 'd' + member_name # Hack: hide the digit
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check_name_lower(member_name, info, source,
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permit_upper=permissive,
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permit_underscore=permissive)
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check_if(member, info, source)
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check_features(member.get('features'), info)
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def check_struct(expr: QAPIExpression) -> None:
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"""
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Normalize and validate this expression as a ``struct`` definition.
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:param expr: The expression to validate.
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:raise QAPISemError: When ``expr`` is not a valid ``struct``.
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:return: None, ``expr`` is normalized in-place as needed.
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"""
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name = cast(str, expr['struct']) # Checked in check_exprs
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members = expr['data']
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check_type_implicit(members, expr.info, "'data'", name)
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check_type_name(expr.get('base'), expr.info, "'base'")
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def check_union(expr: QAPIExpression) -> None:
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"""
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Normalize and validate this expression as a ``union`` definition.
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:param expr: The expression to validate.
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|
|
|
:raise QAPISemError: when ``expr`` is not a valid ``union``.
|
|
:return: None, ``expr`` is normalized in-place as needed.
|
|
"""
|
|
name = cast(str, expr['union']) # Checked in check_exprs
|
|
base = expr['base']
|
|
discriminator = expr['discriminator']
|
|
members = expr['data']
|
|
info = expr.info
|
|
|
|
check_type_name_or_implicit(base, info, "'base'", name)
|
|
check_name_is_str(discriminator, info, "'discriminator'")
|
|
|
|
if not isinstance(members, dict):
|
|
raise QAPISemError(info, "'data' must be an object")
|
|
|
|
for (key, value) in members.items():
|
|
source = "'data' member '%s'" % key
|
|
check_keys(value, info, source, ['type'], ['if'])
|
|
check_if(value, info, source)
|
|
check_type_name(value['type'], info, source)
|
|
|
|
|
|
def check_alternate(expr: QAPIExpression) -> None:
|
|
"""
|
|
Normalize and validate this expression as an ``alternate`` definition.
|
|
|
|
:param expr: The expression to validate.
|
|
|
|
:raise QAPISemError: When ``expr`` is not a valid ``alternate``.
|
|
:return: None, ``expr`` is normalized in-place as needed.
|
|
"""
|
|
members = expr['data']
|
|
info = expr.info
|
|
|
|
if not members:
|
|
raise QAPISemError(info, "'data' must not be empty")
|
|
|
|
if not isinstance(members, dict):
|
|
raise QAPISemError(info, "'data' must be an object")
|
|
|
|
for (key, value) in members.items():
|
|
source = "'data' member '%s'" % key
|
|
check_name_lower(key, info, source)
|
|
check_keys(value, info, source, ['type'], ['if'])
|
|
check_if(value, info, source)
|
|
check_type_name_or_array(value['type'], info, source)
|
|
|
|
|
|
def check_command(expr: QAPIExpression) -> None:
|
|
"""
|
|
Normalize and validate this expression as a ``command`` definition.
|
|
|
|
:param expr: The expression to validate.
|
|
|
|
:raise QAPISemError: When ``expr`` is not a valid ``command``.
|
|
:return: None, ``expr`` is normalized in-place as needed.
|
|
"""
|
|
args = expr.get('data')
|
|
rets = expr.get('returns')
|
|
boxed = expr.get('boxed', False)
|
|
|
|
if boxed:
|
|
if args is None:
|
|
raise QAPISemError(expr.info, "'boxed': true requires 'data'")
|
|
check_type_name(args, expr.info, "'data'")
|
|
else:
|
|
check_type_name_or_implicit(args, expr.info, "'data'", None)
|
|
check_type_name_or_array(rets, expr.info, "'returns'")
|
|
|
|
|
|
def check_event(expr: QAPIExpression) -> None:
|
|
"""
|
|
Normalize and validate this expression as an ``event`` definition.
|
|
|
|
:param expr: The expression to validate.
|
|
|
|
:raise QAPISemError: When ``expr`` is not a valid ``event``.
|
|
:return: None, ``expr`` is normalized in-place as needed.
|
|
"""
|
|
args = expr.get('data')
|
|
boxed = expr.get('boxed', False)
|
|
|
|
if boxed:
|
|
if args is None:
|
|
raise QAPISemError(expr.info, "'boxed': true requires 'data'")
|
|
check_type_name(args, expr.info, "'data'")
|
|
else:
|
|
check_type_name_or_implicit(args, expr.info, "'data'", None)
|
|
|
|
|
|
def check_exprs(exprs: List[QAPIExpression]) -> List[QAPIExpression]:
|
|
"""
|
|
Validate and normalize a list of parsed QAPI schema expressions.
|
|
|
|
This function accepts a list of expressions and metadata as returned
|
|
by the parser. It destructively normalizes the expressions in-place.
|
|
|
|
:param exprs: The list of expressions to normalize and validate.
|
|
|
|
:raise QAPISemError: When any expression fails validation.
|
|
:return: The same list of expressions (now modified).
|
|
"""
|
|
for expr in exprs:
|
|
info = expr.info
|
|
doc = expr.doc
|
|
|
|
if 'include' in expr:
|
|
continue
|
|
|
|
metas = expr.keys() & {'enum', 'struct', 'union', 'alternate',
|
|
'command', 'event'}
|
|
if len(metas) != 1:
|
|
raise QAPISemError(
|
|
info,
|
|
"expression must have exactly one key"
|
|
" 'enum', 'struct', 'union', 'alternate',"
|
|
" 'command', 'event'")
|
|
meta = metas.pop()
|
|
|
|
check_name_is_str(expr[meta], info, "'%s'" % meta)
|
|
name = cast(str, expr[meta])
|
|
info.set_defn(meta, name)
|
|
check_defn_name_str(name, info, meta)
|
|
|
|
if doc:
|
|
if doc.symbol != name:
|
|
raise QAPISemError(
|
|
info, "documentation comment is for '%s'" % doc.symbol)
|
|
doc.check_expr(expr)
|
|
elif info.pragma.doc_required:
|
|
raise QAPISemError(info,
|
|
"documentation comment required")
|
|
|
|
if meta == 'enum':
|
|
check_keys(expr, info, meta,
|
|
['enum', 'data'], ['if', 'features', 'prefix'])
|
|
check_enum(expr)
|
|
elif meta == 'union':
|
|
check_keys(expr, info, meta,
|
|
['union', 'base', 'discriminator', 'data'],
|
|
['if', 'features'])
|
|
normalize_members(expr.get('base'))
|
|
normalize_members(expr['data'])
|
|
check_union(expr)
|
|
elif meta == 'alternate':
|
|
check_keys(expr, info, meta,
|
|
['alternate', 'data'], ['if', 'features'])
|
|
normalize_members(expr['data'])
|
|
check_alternate(expr)
|
|
elif meta == 'struct':
|
|
check_keys(expr, info, meta,
|
|
['struct', 'data'], ['base', 'if', 'features'])
|
|
normalize_members(expr['data'])
|
|
check_struct(expr)
|
|
elif meta == 'command':
|
|
check_keys(expr, info, meta,
|
|
['command'],
|
|
['data', 'returns', 'boxed', 'if', 'features',
|
|
'gen', 'success-response', 'allow-oob',
|
|
'allow-preconfig', 'coroutine'])
|
|
normalize_members(expr.get('data'))
|
|
check_command(expr)
|
|
elif meta == 'event':
|
|
check_keys(expr, info, meta,
|
|
['event'], ['data', 'boxed', 'if', 'features'])
|
|
normalize_members(expr.get('data'))
|
|
check_event(expr)
|
|
else:
|
|
assert False, 'unexpected meta type'
|
|
|
|
check_if(expr, info, meta)
|
|
check_features(expr.get('features'), info)
|
|
check_flags(expr)
|
|
|
|
return exprs
|