67f097a161
This migrates old python2 dict.iteritems() to python3 dict.items(). iteritems was removed in python3 meaning these script will otherwise not run. Note that this remains backwards compatible since dict.items() also existed in python2, though the implementation was more memory intensive for large dicts (which these likely aren't). This is similar to https://dart-review.googlesource.com/c/sdk/+/200184 Change-Id: I4fe5c90d21de97d0ecceb27fa6efa7d7deb14098 Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/200864 Reviewed-by: Alexander Thomas <athom@google.com> Commit-Queue: Clement Skau <cskau@google.com>
322 lines
14 KiB
Python
322 lines
14 KiB
Python
# Copyright (C) 2013 Google Inc. All rights reserved.
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#
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# Redistribution and use in source and binary forms, with or without
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# modification, are permitted provided that the following conditions are
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# met:
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#
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# * Redistributions of source code must retain the above copyright
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# notice, this list of conditions and the following disclaimer.
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# * Redistributions in binary form must reproduce the above
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# copyright notice, this list of conditions and the following disclaimer
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# in the documentation and/or other materials provided with the
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# distribution.
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# * Neither the name of Google Inc. nor the names of its
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# contributors may be used to endorse or promote products derived from
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# this software without specific prior written permission.
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#
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# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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# "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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# LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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# A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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# OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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# SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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# LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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# DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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# THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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# (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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# OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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"""Generate Blink C++ bindings (.h and .cpp files) for use by Dart:HTML.
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If run itself, caches Jinja templates (and creates dummy file for build,
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since cache filenames are unpredictable and opaque).
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This module is *not* concurrency-safe without care: bytecode caching creates
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a race condition on cache *write* (crashes if one process tries to read a
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partially-written cache). However, if you pre-cache the templates (by running
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the module itself), then you can parallelize compiling individual files, since
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cache *reading* is safe.
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Input: An object of class IdlDefinitions, containing an IDL interface X
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Output: DartX.h and DartX.cpp
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Design doc: http://www.chromium.org/developers/design-documents/idl-compiler
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"""
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import os
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import cPickle as pickle
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import re
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import sys
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# Path handling for libraries and templates
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# Paths have to be normalized because Jinja uses the exact template path to
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# determine the hash used in the cache filename, and we need a pre-caching step
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# to be concurrency-safe. Use absolute path because __file__ is absolute if
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# module is imported, and relative if executed directly.
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# If paths differ between pre-caching and individual file compilation, the cache
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# is regenerated, which causes a race condition and breaks concurrent build,
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# since some compile processes will try to read the partially written cache.
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module_path, module_filename = os.path.split(os.path.realpath(__file__))
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third_party_dir = os.path.normpath(
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os.path.join(module_path, os.pardir, os.pardir, os.pardir, os.pardir,
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os.pardir))
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templates_dir = os.path.normpath(os.path.join(module_path, 'templates'))
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# Make sure extension is .py, not .pyc or .pyo, so doesn't depend on caching
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module_pyname = os.path.splitext(module_filename)[0] + '.py'
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# jinja2 is in chromium's third_party directory.
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# Insert at 1 so at front to override system libraries, and
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# after path[0] == invoking script dir
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sys.path.insert(1, third_party_dir)
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# Add the base compiler scripts to the path here as in compiler.py
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dart_script_path = os.path.dirname(os.path.abspath(__file__))
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script_path = os.path.join(
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os.path.dirname(os.path.dirname(dart_script_path)), 'scripts')
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sys.path.extend([script_path])
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import jinja2
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import idl_types
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from idl_types import IdlType
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from utilities import write_pickle_file
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from v8_globals import includes
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from dart_utilities import DartUtilities
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# TODO(jacobr): remove this hacked together list.
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INTERFACES_WITHOUT_RESOLVERS = frozenset([
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'TypeConversions', 'GCObservation', 'InternalProfilers',
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'InternalRuntimeFlags', 'InternalSettings', 'InternalSettingsGenerated',
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'Internals', 'LayerRect', 'LayerRectList', 'MallocStatistics',
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'TypeConversions'
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])
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class CodeGeneratorDart(object):
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def __init__(self, interfaces_info, cache_dir):
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interfaces_info = interfaces_info or {}
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self.interfaces_info = interfaces_info
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self.jinja_env = initialize_jinja_env(cache_dir)
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# Set global type info
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idl_types.set_ancestors(
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dict((interface_name, interface_info['ancestors'])
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for interface_name, interface_info in interfaces_info.items()
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if interface_info['ancestors']))
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IdlType.set_callback_interfaces(
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set(interface_name
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for interface_name, interface_info in interfaces_info.items()
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if interface_info['is_callback_interface']))
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IdlType.set_implemented_as_interfaces(
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dict((interface_name, interface_info['implemented_as'])
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for interface_name, interface_info in interfaces_info.items()
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if interface_info['implemented_as']))
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IdlType.set_garbage_collected_types(
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set(interface_name
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for interface_name, interface_info in interfaces_info.items()
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if 'GarbageCollected' in
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interface_info['inherited_extended_attributes']))
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def generate_code(self, definitions, interface_name, idl_pickle_filename,
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only_if_changed):
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"""Returns .h/.cpp code as (header_text, cpp_text)."""
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try:
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interface = definitions.interfaces[interface_name]
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except KeyError:
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raise Exception('%s not in IDL definitions' % interface_name)
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# Store other interfaces for introspection
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interfaces.update(definitions.interfaces)
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# Set local type info
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IdlType.set_callback_functions(definitions.callback_functions.keys())
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IdlType.set_enums((enum.name, enum.values)
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for enum in definitions.enumerations.values())
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# Select appropriate Jinja template and contents function
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if interface.is_callback:
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header_template_filename = 'callback_interface_h.template'
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cpp_template_filename = 'callback_interface_cpp.template'
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generate_contents = dart_callback_interface.generate_callback_interface
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else:
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header_template_filename = 'interface_h.template'
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cpp_template_filename = 'interface_cpp.template'
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generate_contents = dart_interface.generate_interface
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header_template = self.jinja_env.get_template(header_template_filename)
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cpp_template = self.jinja_env.get_template(cpp_template_filename)
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# Generate contents (input parameters for Jinja)
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template_contents = generate_contents(interface)
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template_contents['code_generator'] = module_pyname
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# Add includes for interface itself and any dependencies
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interface_info = self.interfaces_info[interface_name]
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template_contents['header_includes'].add(interface_info['include_path'])
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template_contents['header_includes'] = sorted(
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template_contents['header_includes'])
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includes.update(interface_info.get('dependencies_include_paths', []))
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# Remove includes that are not needed for Dart and trigger fatal
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# compile warnings if included. These IDL files need to be
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# imported by Dart to generate the list of events but the
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# associated header files do not contain any code used by Dart.
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includes.discard('core/dom/GlobalEventHandlers.h')
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includes.discard('core/frame/DOMWindowEventHandlers.h')
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template_contents['cpp_includes'] = sorted(includes)
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idl_world = {'interface': None, 'callback': None}
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# Load the pickle file for this IDL.
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if os.path.isfile(idl_pickle_filename):
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with open(idl_pickle_filename) as idl_pickle_file:
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idl_global_data = pickle.load(idl_pickle_file)
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idl_pickle_file.close()
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idl_world['interface'] = idl_global_data['interface']
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idl_world['callback'] = idl_global_data['callback']
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if 'interface_name' in template_contents:
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interface_global = {
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'name':
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template_contents['interface_name'],
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'parent_interface':
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template_contents['parent_interface'],
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'is_active_dom_object':
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template_contents['is_active_dom_object'],
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'is_event_target':
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template_contents['is_event_target'],
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'has_resolver':
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template_contents['interface_name'] not in
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INTERFACES_WITHOUT_RESOLVERS,
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'is_node':
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template_contents['is_node'],
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'conditional_string':
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template_contents['conditional_string'],
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}
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idl_world['interface'] = interface_global
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else:
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callback_global = {'name': template_contents['cpp_class']}
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idl_world['callback'] = callback_global
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write_pickle_file(idl_pickle_filename, idl_world, only_if_changed)
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# Render Jinja templates
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header_text = header_template.render(template_contents)
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cpp_text = cpp_template.render(template_contents)
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return header_text, cpp_text
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# Generates global file for all interfaces.
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def generate_globals(self, output_directory):
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header_template_filename = 'global_h.template'
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cpp_template_filename = 'global_cpp.template'
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# Delete the global pickle file we'll rebuild from each pickle generated
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# for each IDL file '(%s_globals.pickle) % interface_name'.
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global_pickle_filename = os.path.join(output_directory, 'global.pickle')
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if os.path.isfile(global_pickle_filename):
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os.remove(global_pickle_filename)
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# List of all interfaces and callbacks for global code generation.
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world = {'interfaces': [], 'callbacks': []}
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# Load all pickled data for each interface.
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listing = os.listdir(output_directory)
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for filename in listing:
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if filename.endswith('_globals.pickle'):
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idl_filename = os.path.join(output_directory, filename)
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with open(idl_filename) as idl_pickle_file:
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idl_world = pickle.load(idl_pickle_file)
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if 'interface' in idl_world:
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# FIXME: Why are some of these None?
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if idl_world['interface']:
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world['interfaces'].append(idl_world['interface'])
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if 'callbacks' in idl_world:
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# FIXME: Why are some of these None?
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if idl_world['callbacks']:
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world['callbacks'].append(idl_world['callback'])
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idl_pickle_file.close()
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world['interfaces'] = sorted(world['interfaces'],
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key=lambda x: x['name'])
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world['callbacks'] = sorted(world['callbacks'], key=lambda x: x['name'])
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template_contents = world
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template_contents['code_generator'] = module_pyname
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header_template = self.jinja_env.get_template(header_template_filename)
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header_text = header_template.render(template_contents)
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cpp_template = self.jinja_env.get_template(cpp_template_filename)
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cpp_text = cpp_template.render(template_contents)
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return header_text, cpp_text
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def initialize_jinja_env(cache_dir):
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jinja_env = jinja2.Environment(
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loader=jinja2.FileSystemLoader(templates_dir),
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# Bytecode cache is not concurrency-safe unless pre-cached:
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# if pre-cached this is read-only, but writing creates a race condition.
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bytecode_cache=jinja2.FileSystemBytecodeCache(cache_dir),
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keep_trailing_newline=True, # newline-terminate generated files
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lstrip_blocks=True, # so can indent control flow tags
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trim_blocks=True)
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jinja_env.filters.update({
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'blink_capitalize': DartUtilities.capitalize,
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'conditional': conditional_if_endif,
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'runtime_enabled': runtime_enabled_if,
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})
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return jinja_env
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# [Conditional]
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def conditional_if_endif(code, conditional_string):
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# Jinja2 filter to generate if/endif directive blocks
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if not conditional_string:
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return code
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return ('#if %s\n' % conditional_string + code +
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'#endif // %s\n' % conditional_string)
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# [RuntimeEnabled]
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def runtime_enabled_if(code, runtime_enabled_function_name):
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if not runtime_enabled_function_name:
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return code
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# Indent if statement to level of original code
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indent = re.match(' *', code).group(0)
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return ('%sif (%s())\n' % (indent, runtime_enabled_function_name) +
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' %s' % code)
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################################################################################
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def main(argv):
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# If file itself executed, cache templates
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try:
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cache_dir = argv[1]
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dummy_filename = argv[2]
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except IndexError as err:
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print('Usage: %s OUTPUT_DIR DUMMY_FILENAME' % argv[0])
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return 1
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# Cache templates
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jinja_env = initialize_jinja_env(cache_dir)
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template_filenames = [
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filename for filename in os.listdir(templates_dir)
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# Skip .svn, directories, etc.
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if filename.endswith(('.cpp', '.h', '.template'))
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]
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for template_filename in template_filenames:
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jinja_env.get_template(template_filename)
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# Create a dummy file as output for the build system,
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# since filenames of individual cache files are unpredictable and opaque
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# (they are hashes of the template path, which varies based on environment)
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with open(dummy_filename, 'w') as dummy_file:
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pass # |open| creates or touches the file
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if __name__ == '__main__':
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sys.exit(main(sys.argv))
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