kopia lustrzana https://github.com/espressif/esp-idf
403 wiersze
17 KiB
Python
403 wiersze
17 KiB
Python
#!/usr/bin/env python
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# -*- coding: utf-8 -*-
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#
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# gen_kconfig_doc - confgen.py support for generating ReST markup documentation
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#
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# For each option in the loaded Kconfig (e.g. 'FOO'), CONFIG_FOO link target is
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# generated, allowing options to be referenced in other documents
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# (using :ref:`CONFIG_FOO`)
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#
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# Copyright 2017-2020 Espressif Systems (Shanghai) PTE LTD
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http:#www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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from __future__ import print_function
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import re
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import kconfiglib
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# Indentation to be used in the generated file
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INDENT = ' '
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# Characters used when underlining section heading
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HEADING_SYMBOLS = '#*=-^"+'
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# Keep the heading level in sync with api-reference/kconfig.rst
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INITIAL_HEADING_LEVEL = 3
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MAX_HEADING_LEVEL = len(HEADING_SYMBOLS) - 1
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class ConfigTargetVisibility(object):
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"""
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Determine the visibility of Kconfig options based on IDF targets. Note that other environment variables should not
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imply invisibility and neither dependencies on visible options with default disabled state. This difference makes
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it necessary to implement our own visibility and cannot use the visibility defined inside Kconfiglib.
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"""
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def __init__(self, config, target):
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# target actually is not necessary here because kconfiglib.expr_value() will evaluate it internally
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self.config = config
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self.visibility = dict() # node name to (x, y) mapping where x is the visibility (True/False) and y is the
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# name of the config which implies the visibility
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self.target_env_var = 'IDF_TARGET'
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self.direct_eval_set = frozenset([kconfiglib.EQUAL, kconfiglib.UNEQUAL, kconfiglib.LESS, kconfiglib.LESS_EQUAL,
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kconfiglib.GREATER, kconfiglib.GREATER_EQUAL])
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def _implies_invisibility(self, item):
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if isinstance(item, tuple):
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if item[0] == kconfiglib.NOT:
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(invisibility, source) = self._implies_invisibility(item[1])
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if source is not None and source.startswith(self.target_env_var):
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return (not invisibility, source)
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else:
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# we want to be visible all configs which are not dependent on target variables,
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# e.g. "depends on XY" and "depends on !XY" as well
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return (False, None)
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elif item[0] == kconfiglib.AND:
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(invisibility, source) = self._implies_invisibility(item[1])
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if invisibility:
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return (True, source)
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(invisibility, source) = self._implies_invisibility(item[2])
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if invisibility:
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return (True, source)
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return (False, None)
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elif item[0] == kconfiglib.OR:
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implication_list = [self._implies_invisibility(item[1]), self._implies_invisibility(item[2])]
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if all([implies for (implies, _) in implication_list]):
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source_list = [s for (_, s) in implication_list if s.startswith(self.target_env_var)]
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if len(set(source_list)) != 1: # set removes the duplicates
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print('[WARNING] list contains targets: {}'.format(source_list))
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return (True, source_list[0])
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return (False, None)
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elif item[0] in self.direct_eval_set:
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def node_is_invisible(item):
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return all([node.prompt is None for node in item.nodes])
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if node_is_invisible(item[1]) or node_is_invisible(item[1]):
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# it makes no sense to call self._implies_invisibility() here because it won't generate any useful
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# "source"
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return (not kconfiglib.expr_value(item), None)
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else:
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# expressions with visible configs can be changed to make the item visible
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return (False, None)
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else:
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raise RuntimeError('Unimplemented operation in {}'.format(item))
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else: # Symbol or Choice
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vis_list = [self._visible(node) for node in item.nodes]
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if len(vis_list) > 0 and all([not visible for (visible, _) in vis_list]):
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source_list = [s for (_, s) in vis_list if s is not None and s.startswith(self.target_env_var)]
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if len(set(source_list)) != 1: # set removes the duplicates
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print('[WARNING] list contains targets: {}'.format(source_list))
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return (True, source_list[0])
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if item.name.startswith(self.target_env_var):
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return (not kconfiglib.expr_value(item), item.name)
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if len(vis_list) == 1:
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(visible, source) = vis_list[0]
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if visible:
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return (False, item.name) # item.name is important here in case the result will be inverted: if
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# the dependency is on another config then it can be still visible
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return (False, None)
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def _visible(self, node):
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if isinstance(node.item, kconfiglib.Symbol) or isinstance(node.item, kconfiglib.Choice):
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dependencies = node.item.direct_dep # "depends on" for configs
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name_id = node.item.name
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simple_def = len(node.item.nodes) <= 1 # defined only in one source file
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# Probably it is not necessary to check the default statements.
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else:
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dependencies = node.visibility # "visible if" for menu
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name_id = node.prompt[0]
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simple_def = False # menus can be defined with the same name at multiple locations and they don't know
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# about each other like configs through node.item.nodes. Therefore, they cannot be stored and have to be
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# re-evaluated always.
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try:
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(visib, source) = self.visibility[name_id]
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except KeyError:
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def invert_first_arg(_tuple):
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return (not _tuple[0], _tuple[1])
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(visib, source) = self._visible(node.parent) if node.parent else (True, None)
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if visib:
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(visib, source) = invert_first_arg(self._implies_invisibility(dependencies))
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if simple_def:
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# Configs defined at multiple places are not stored because they could have different visibility based
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# on different targets. kconfiglib.expr_value() will handle the visibility.
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self.visibility[name_id] = (visib, source)
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return (visib, source) # not used in "finally" block because failure messages from _implies_invisibility are
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# this way more understandable
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def visible(self, node):
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if not node.prompt:
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# don't store this in self.visibility because don't want to stop at invisible nodes when recursively
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# searching for invisible targets
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return False
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return self._visible(node)[0]
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def write_docs(config, visibility, filename):
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""" Note: writing .rst documentation ignores the current value
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of any items. ie the --config option can be ignored.
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(However at time of writing it still needs to be set to something...) """
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with open(filename, 'w') as f:
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for node in config.node_iter():
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write_menu_item(f, node, visibility)
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def node_is_menu(node):
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try:
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return node.item == kconfiglib.MENU or node.is_menuconfig
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except AttributeError:
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return False # not all MenuNodes have is_menuconfig for some reason
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def get_breadcrumbs(node):
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# this is a bit wasteful as it recalculates each time, but still...
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result = []
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node = node.parent
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while node.parent:
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if node.prompt:
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result = [':ref:`%s`' % get_link_anchor(node)] + result
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node = node.parent
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return ' > '.join(result)
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def get_link_anchor(node):
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try:
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return 'CONFIG_%s' % node.item.name
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except AttributeError:
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assert(node_is_menu(node)) # only menus should have no item.name
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# for menus, build a link anchor out of the parents
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result = []
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while node.parent:
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if node.prompt:
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result = [re.sub(r'[^a-zA-z0-9]+', '-', node.prompt[0])] + result
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node = node.parent
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result = '-'.join(result).lower()
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return result
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def get_heading_level(node):
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result = INITIAL_HEADING_LEVEL
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node = node.parent
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while node.parent:
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result += 1
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if result == MAX_HEADING_LEVEL:
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return MAX_HEADING_LEVEL
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node = node.parent
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return result
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def format_rest_text(text, indent):
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# Format an indented text block for use with ReST
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text = indent + text.replace('\n', '\n' + indent)
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# Escape some characters which are inline formatting in ReST
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text = text.replace('*', '\\*')
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text = text.replace('_', '\\_')
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# replace absolute links to documentation by relative ones
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text = re.sub(r'https://docs.espressif.com/projects/esp-idf/\w+/\w+/(.+)\.html', r':doc:`../\1`', text)
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text += '\n'
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return text
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def _minimize_expr(expr, visibility):
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def expr_nodes_invisible(e):
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return hasattr(e, 'nodes') and len(e.nodes) > 0 and all(not visibility.visible(i) for i in e.nodes)
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if isinstance(expr, tuple):
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if expr[0] == kconfiglib.NOT:
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new_expr = _minimize_expr(expr[1], visibility)
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return kconfiglib.Kconfig.y if new_expr == kconfiglib.Kconfig.n else new_expr
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else:
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new_expr1 = _minimize_expr(expr[1], visibility)
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new_expr2 = _minimize_expr(expr[2], visibility)
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if expr[0] == kconfiglib.AND:
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if new_expr1 == kconfiglib.Kconfig.n or new_expr2 == kconfiglib.Kconfig.n:
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return kconfiglib.Kconfig.n
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if new_expr1 == kconfiglib.Kconfig.y:
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return new_expr2
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if new_expr2 == kconfiglib.Kconfig.y:
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return new_expr1
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elif expr[0] == kconfiglib.OR:
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if new_expr1 == kconfiglib.Kconfig.y or new_expr2 == kconfiglib.Kconfig.y:
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return kconfiglib.Kconfig.y
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if new_expr1 == kconfiglib.Kconfig.n:
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return new_expr2
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if new_expr2 == kconfiglib.Kconfig.n:
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return new_expr1
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elif expr[0] == kconfiglib.EQUAL:
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if not isinstance(new_expr1, type(new_expr2)):
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return kconfiglib.Kconfig.n
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if new_expr1 == new_expr2:
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return kconfiglib.Kconfig.y
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elif expr[0] == kconfiglib.UNEQUAL:
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if not isinstance(new_expr1, type(new_expr2)):
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return kconfiglib.Kconfig.y
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if new_expr1 != new_expr2:
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return kconfiglib.Kconfig.n
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else: # <, <=, >, >=
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if not isinstance(new_expr1, type(new_expr2)):
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return kconfiglib.Kconfig.n # e.g "True < 2"
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if expr_nodes_invisible(new_expr1) or expr_nodes_invisible(new_expr2):
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return kconfiglib.Kconfig.y if kconfiglib.expr_value(expr) else kconfiglib.Kconfig.n
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return (expr[0], new_expr1, new_expr2)
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if (not kconfiglib.expr_value(expr) and len(expr.config_string) == 0 and expr_nodes_invisible(expr)):
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# nodes which are invisible
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# len(expr.nodes) > 0 avoids constant symbols without actual node definitions, e.g. integer constants
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# len(expr.config_string) == 0 avoids hidden configs which reflects the values of choices
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return kconfiglib.Kconfig.n
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if (kconfiglib.expr_value(expr) and len(expr.config_string) > 0 and expr_nodes_invisible(expr)):
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# hidden config dependencies which will be written to sdkconfig as enabled ones.
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return kconfiglib.Kconfig.y
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if any(node.item.name.startswith(visibility.target_env_var) for node in expr.nodes):
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# We know the actual values for IDF_TARGETs
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return kconfiglib.Kconfig.y if kconfiglib.expr_value(expr) else kconfiglib.Kconfig.n
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return expr
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def write_menu_item(f, node, visibility):
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def is_choice(node):
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""" Skip choice nodes, they are handled as part of the parent (see below) """
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return isinstance(node.parent.item, kconfiglib.Choice)
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if is_choice(node) or not visibility.visible(node):
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return
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try:
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name = node.item.name
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except AttributeError:
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name = None
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is_menu = node_is_menu(node)
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# Heading
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if name:
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title = 'CONFIG_%s' % name
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else:
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# if no symbol name, use the prompt as the heading
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title = node.prompt[0]
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f.write('.. _%s:\n\n' % get_link_anchor(node))
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f.write('%s\n' % title)
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f.write(HEADING_SYMBOLS[get_heading_level(node)] * len(title))
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f.write('\n\n')
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if name:
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f.write('%s%s\n\n' % (INDENT, node.prompt[0]))
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f.write('%s:emphasis:`Found in:` %s\n\n' % (INDENT, get_breadcrumbs(node)))
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try:
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if node.help:
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# Help text normally contains newlines, but spaces at the beginning of
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# each line are stripped by kconfiglib. We need to re-indent the text
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# to produce valid ReST.
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f.write(format_rest_text(node.help, INDENT))
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f.write('\n')
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except AttributeError:
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pass # No help
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if isinstance(node.item, kconfiglib.Choice):
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f.write('%sAvailable options:\n' % INDENT)
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choice_node = node.list
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while choice_node:
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# Format available options as a list
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f.write('%s- %-20s (%s)\n' % (INDENT * 2, choice_node.prompt[0], choice_node.item.name))
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if choice_node.help:
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HELP_INDENT = INDENT * 2
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fmt_help = format_rest_text(choice_node.help, ' ' + HELP_INDENT)
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f.write('%s \n%s\n' % (HELP_INDENT, fmt_help))
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choice_node = choice_node.next
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f.write('\n\n')
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if isinstance(node.item, kconfiglib.Symbol):
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def _expr_str(sc):
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if sc.is_constant or not sc.nodes or sc.choice:
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return '{}'.format(sc.name)
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return ':ref:`%s%s`' % (sc.kconfig.config_prefix, sc.name)
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range_strs = []
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for low, high, cond in node.item.ranges:
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cond = _minimize_expr(cond, visibility)
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if cond == kconfiglib.Kconfig.n:
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continue
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if not isinstance(cond, tuple) and cond != kconfiglib.Kconfig.y:
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if len(cond.nodes) > 0 and all(not visibility.visible(i) for i in cond.nodes):
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if not kconfiglib.expr_value(cond):
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continue
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range_str = '%s- from %s to %s' % (INDENT * 2, low.str_value, high.str_value)
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if cond != kconfiglib.Kconfig.y and not kconfiglib.expr_value(cond):
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range_str += ' if %s' % kconfiglib.expr_str(cond, _expr_str)
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range_strs.append(range_str)
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if len(range_strs) > 0:
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f.write('%sRange:\n' % INDENT)
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f.write('\n'.join(range_strs))
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f.write('\n\n')
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default_strs = []
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for default, cond in node.item.defaults:
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cond = _minimize_expr(cond, visibility)
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if cond == kconfiglib.Kconfig.n:
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continue
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if not isinstance(cond, tuple) and cond != kconfiglib.Kconfig.y:
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if len(cond.nodes) > 0 and all(not visibility.visible(i) for i in cond.nodes):
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if not kconfiglib.expr_value(cond):
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continue
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# default.type is mostly UNKNOWN so it cannot be used reliably for detecting the type
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d = default.str_value
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if d in ['y', 'Y']:
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d = 'Yes (enabled)'
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elif d in ['n', 'N']:
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d = 'No (disabled)'
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elif re.search(r'[^0-9a-fA-F]', d): # simple string detection: if it not a valid number
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d = '"%s"' % d
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default_str = '%s- %s' % (INDENT * 2, d)
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if cond != kconfiglib.Kconfig.y and not kconfiglib.expr_value(cond):
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default_str += ' if %s' % kconfiglib.expr_str(cond, _expr_str)
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default_strs.append(default_str)
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if len(default_strs) > 0:
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f.write('%sDefault value:\n' % INDENT)
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f.write('\n'.join(default_strs))
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f.write('\n\n')
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if is_menu:
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# enumerate links to child items
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child_list = []
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child = node.list
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while child:
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if not is_choice(child) and child.prompt and visibility.visible(child):
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child_list.append((child.prompt[0], get_link_anchor(child)))
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child = child.next
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if len(child_list) > 0:
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f.write('Contains:\n\n')
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sorted_child_list = sorted(child_list, key=lambda pair: pair[0].lower())
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ref_list = ['- :ref:`{}`'.format(anchor) for _, anchor in sorted_child_list]
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f.write('\n'.join(ref_list))
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f.write('\n\n')
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if __name__ == '__main__':
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print("Run this via 'confgen.py --output doc FILENAME'")
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