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symbols.py
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# Copyright 2017 Palantir Technologies, Inc.
import logging
import os
from pyls import hookimpl
from pyls.lsp import SymbolKind
log = logging.getLogger(__name__)
@hookimpl
def pyls_document_symbols(config, document):
# pylint: disable=broad-except
# pylint: disable=too-many-nested-blocks
# pylint: disable=too-many-locals
# pylint: disable=too-many-branches
symbols_settings = config.plugin_settings('jedi_symbols')
all_scopes = symbols_settings.get('all_scopes', True)
add_import_symbols = symbols_settings.get('include_import_symbols', True)
use_document_path = False
document_dir = os.path.normpath(os.path.dirname(document.path))
if not os.path.isfile(os.path.join(document_dir, '__init__.py')):
use_document_path = True
definitions = document.jedi_names(use_document_path, all_scopes=all_scopes)
module_name = document.dot_path
symbols = []
exclude = set({})
redefinitions = {}
while definitions != []:
d = definitions.pop(0)
if not add_import_symbols:
sym_full_name = d.full_name
if sym_full_name is not None:
if (not sym_full_name.startswith(module_name) and
not sym_full_name.startswith('__main__')):
continue
if _include_def(d) and document.path == d.module_path:
tuple_range = _tuple_range(d)
if tuple_range in exclude:
continue
kind = redefinitions.get(tuple_range, None)
if kind is not None:
exclude |= {tuple_range}
if d.type == 'statement':
if d.description.startswith('self'):
kind = 'field'
symbol = {
'name': d.name,
'containerName': _container(d),
'location': {
'uri': document.uri,
'range': _range(d),
},
'kind': _kind(d) if kind is None else _SYMBOL_KIND_MAP[kind],
}
symbols.append(symbol)
if d.type == 'class':
try:
defined_names = list(d.defined_names())
for method in defined_names:
if method.type == 'function':
redefinitions[_tuple_range(method)] = 'method'
elif method.type == 'statement':
redefinitions[_tuple_range(method)] = 'field'
else:
redefinitions[_tuple_range(method)] = method.type
definitions = list(defined_names) + definitions
except Exception:
pass
return symbols
def _include_def(definition):
return (
# Don't tend to include parameters as symbols
definition.type != 'param' and
# Unused vars should also be skipped
definition.name != '_' and
_kind(definition) is not None
)
def _container(definition):
try:
# Jedi sometimes fails here.
parent = definition.parent()
# Here we check that a grand-parent exists to avoid declaring symbols
# as children of the module.
if parent.parent():
return parent.name
except: # pylint: disable=bare-except
return None
return None
def _range(definition):
# This gets us more accurate end position
definition = definition._name.tree_name.get_definition()
(start_line, start_column) = definition.start_pos
(end_line, end_column) = definition.end_pos
return {
'start': {'line': start_line - 1, 'character': start_column},
'end': {'line': end_line - 1, 'character': end_column}
}
def _tuple_range(definition):
definition = definition._name.tree_name.get_definition()
return (definition.start_pos, definition.end_pos)
_SYMBOL_KIND_MAP = {
'none': SymbolKind.Variable,
'type': SymbolKind.Class,
'tuple': SymbolKind.Class,
'dict': SymbolKind.Class,
'dictionary': SymbolKind.Class,
'function': SymbolKind.Function,
'lambda': SymbolKind.Function,
'generator': SymbolKind.Function,
'class': SymbolKind.Class,
'instance': SymbolKind.Class,
'method': SymbolKind.Method,
'builtin': SymbolKind.Class,
'builtinfunction': SymbolKind.Function,
'module': SymbolKind.Module,
'file': SymbolKind.File,
'xrange': SymbolKind.Array,
'slice': SymbolKind.Class,
'traceback': SymbolKind.Class,
'frame': SymbolKind.Class,
'buffer': SymbolKind.Array,
'dictproxy': SymbolKind.Class,
'funcdef': SymbolKind.Function,
'property': SymbolKind.Property,
'import': SymbolKind.Module,
'keyword': SymbolKind.Variable,
'constant': SymbolKind.Constant,
'variable': SymbolKind.Variable,
'value': SymbolKind.Variable,
'param': SymbolKind.Variable,
'statement': SymbolKind.Variable,
'boolean': SymbolKind.Boolean,
'int': SymbolKind.Number,
'longlean': SymbolKind.Number,
'float': SymbolKind.Number,
'complex': SymbolKind.Number,
'string': SymbolKind.String,
'unicode': SymbolKind.String,
'list': SymbolKind.Array,
'field': SymbolKind.Field
}
def _kind(d):
""" Return the VSCode Symbol Type """
return _SYMBOL_KIND_MAP.get(d.type)