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mkapi.py
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mkapi.py
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#!/usr/bin/python
# zproject API XML model generator
#
# Syntax: mkapi.py project-header class1 class2...
#
# This is a code generator built using the iMatix GSL code generation
# language. See https://github.com/zeromq/gsl for details.
#
# Copyright (c) the Contributors as noted in the AUTHORS file.
# This file is part of zproject.
#
# This Source Code Form is subject to the terms of the Mozilla Public
# License, v. 2.0. If a copy of the MPL was not distributed with this
# file, You can obtain one at http://mozilla.org/MPL/2.0/.
from __future__ import print_function
import argparse
import re
import os
import os.path
import sys
from collections import namedtuple
from xml.sax.saxutils import quoteattr as s_xml_quoteattr
from xml.sax.saxutils import escape as s_xml_escape
from pycparser import c_parser, c_ast, parse_file
__doc__ = """
Generate zproto API XML model from CLASS compatible function declarations
"""
MacroDecl = namedtuple("MacroDecl", "name, value, comment")
TypeDecl = namedtuple("TypeDecl", "type, ptr, quals")
ArgDecl = namedtuple("ArgDecl", "name, type, ptr, quals, xtra")
def s_comment_fill(comment):
comment = re.sub(r' +(?=\n|$)', '', comment)
return s_xml_escape(comment)
def s_parse_comments_and_macros(fp):
interface_re = re.compile(r"^//\W*@interface\W*$")
end_re = re.compile(r"^//\W*@end\W*$")
macro_re = re.compile(r"^#define.*$")
comments = dict()
macros = list()
is_interface = False
last_comment = ""
# go to @interface
for i, line in enumerate(fp):
if not is_interface:
if not interface_re.match(line):
continue
is_interface = True
continue
if end_re.match(line):
break
if macro_re.match(line):
try:
_, name, value, comment = line.split(' ', 3)
comment = comment.strip()[3:]
except ValueError:
_, name, value = line.split(' ', 2)
value = value.strip()
comment = ""
macros.append(MacroDecl(name, value, comment))
continue
if line.startswith("//"):
last_comment += 6*' ' + line[2:]
continue
if last_comment:
comments[i] = last_comment.rstrip()
last_comment = ""
return comments, macros
def parse_comments_and_macros(filename):
"""Return comments, macros objects from file
comments are tuple (line, comment)
macros are (name, value, comment)
Function use content between @interface @end lines only
"""
with open(filename) as fp:
return s_parse_comments_and_macros(fp)
class FuncDeclVisitor(c_ast.NodeVisitor):
def __init__(self, *args, **kwargs):
super(FuncDeclVisitor, self).__init__(*args, **kwargs)
self._ret = list()
self._callbacks = set()
self._enums = set()
@staticmethod
def s_decl_type(node):
ptr = ''
while isinstance(node, c_ast.PtrDecl):
ptr = ptr + '*'
node = node.type
for attr in ("names", "name"):
if not hasattr(node.type, attr):
continue
return TypeDecl(' '.join(getattr(node.type, attr)), ptr, node.quals)
return TypeDecl("", "void", "")
raise AttributeError("%s:%s:%s: %s do not have .type.names or .type.name" % (
node.coord.file,
node.coord.line,
node.coord.column,
node.__class__.__name__))
def func_args(self, node):
if node.args is None:
return (ArgDecl('', "void", '', [], {}), )
ret = list()
for idx, n in node.args.children():
if isinstance(n, (c_ast.Decl, c_ast.Typename)):
typ, ptr, quals = FuncDeclVisitor.s_decl_type(n.type)
xtra = {}
if typ in self._callbacks:
xtra["callback"] = True
if typ in self._enums:
xtra["enum"] = True
ret.append((ArgDecl(n.name, typ, ptr, quals, xtra)))
elif isinstance(n, c_ast.EllipsisParam):
ret.append(ArgDecl("", "...", "", [], {}))
else:
raise NotImplementedError("%s is not supported in func_args" % (n.__class__.__name__))
return tuple(ret)
def decl_dict(self, node):
typ, ptr, quals = FuncDeclVisitor.s_decl_type(node.type.type)
rtyp = ArgDecl("", typ, ptr, quals, {})
if typ in self._enums:
rtyp.xtra["enum"] = True
decl_dict = {
"return_type" : rtyp,
"name" : node.name,
"args" : self.func_args(node.type),
"coord" : node.coord,
}
return decl_dict
@staticmethod
def s_enum_items(enumerators):
return [MacroDecl(n.name, n.value.value if n.value is not None else "", "")
for n in enumerators]
@staticmethod
def s_enum_dict(node):
decl_dict = {
"type" : "enum",
"name" : node.name,
"items" : FuncDeclVisitor.s_enum_items(node.type.type.values.enumerators),
"coord" : node.coord
}
return decl_dict
def visit_Decl(self, node):
if not isinstance (node.type, c_ast.FuncDecl):
return
decl_dict = self.decl_dict(node)
typ = "singleton"
if decl_dict["args"] and \
decl_dict["args"][0].name == "self" and \
decl_dict["args"][0].type.endswith("_t") and \
decl_dict["args"][0].ptr == "*":
typ = "method"
decl_dict["type"] = typ
self._ret.append(decl_dict)
def visit_Typedef(self, node):
if isinstance(node.type, c_ast.FuncDecl):
decl_dict = self.decl_dict(node)
decl_dict["type"] = "callback_type"
self._ret.append(decl_dict)
self._callbacks.add(decl_dict["name"])
return
elif isinstance(node.type.type, c_ast.Enum):
decl_dict = FuncDeclVisitor.s_enum_dict(node)
self._ret.append(decl_dict)
self._enums.add(decl_dict["name"])
return
def s_cpp_args(args):
cpp_args = [args.cpp, ]
try:
for d in args.DEFINE:
cpp_args.append("-D" + d)
except TypeError:
pass
try:
for d in args.INCLUDE:
cpp_args.append("-I" + d)
except TypeError:
pass
return cpp_args
def get_func_decls(filename, args):
cpp_args = s_cpp_args(args)
if args.cpp.lower() == "none":
ast = parse_file(filename)
else:
ast = parse_file(filename,
use_cpp=True,
cpp_path=os.path.join(os.path.dirname(__file__), "fake_cpp"),
cpp_args=cpp_args)
v = FuncDeclVisitor()
for idx, node in ast.children():
v.visit(node)
return v._ret
def s_decl_to_zproject_type(arg):
class ZT(object):
def __init__(self, name, size=None):
self.name = name
self.size = size
dct = {
("void", "") : ZT("nothing"),
("void", "*") : ZT("anything"),
("size_t", "") : ZT("size"),
("time_t", "") : ZT("time"),
("int64_t", "") : ZT("clock"),
("bool", "") : ZT("boolean"),
("_Bool", "") : ZT("boolean"),
("int", "") : ZT("integer"),
("uint8_t", "") : ZT("number", 1),
("uint16_t", "") : ZT("number", 2),
("uint32_t", "") : ZT("number", 4),
("uint64_t", "") : ZT("number", 8),
("float", "") : ZT("real", 4),
("double", "") : ZT("real", 8),
("char", "*") : ZT("string"),
("byte", "*") : ZT("buffer"),
("off_t", "") : ZT("file_size"),
}
if hasattr(arg, "xtra") and "enum" in arg.xtra:
return ZT(arg.xtra["enum_type"])
if arg.type.endswith("_t") and arg.ptr in ("*", "**"):
return ZT(arg.type[:-2])
if arg.name == "format" and arg.type == "char" and arg.ptr == "*":
return ZT("format")
try:
typ = dct[(arg.type, arg.ptr)]
except KeyError:
return ZT(arg.type)
return typ
def s_arg_mutable(arg):
"""Return if attribute mutable should appear in API model
-1 means no
0 means mutable = "0"
1 means mutable = "1"
"""
if s_decl_to_zproject_type(arg).name in ("string", "format") or arg.ptr == "":
return -1
if "const" in arg.quals:
return 0
return 1
def s_show_zproto_model_arguments(fp, decl_dict, typ):
was_format = False
for arg in decl_dict["args"]:
if arg.name in (None, "") and arg.type == "void":
continue
if arg.name == "self" and arg.type != "void":
continue
if typ == "destructor" and arg.name == "self_p" and arg.ptr == "**":
continue
if was_format and arg.type == "...":
continue
typ = s_decl_to_zproject_type(arg)
was_format = (typ.name == "format")
mut = s_arg_mutable(arg)
print(""" <argument name = "%(name)s" type = "%(type)s"%(size)s%(byref)s%(mutable)s%(callback)s />""" %
{ "name" : arg.name,
"type" : typ.name,
"size" : ' size = "%s"' % typ.size if typ.size is not None else "",
"byref" : ' by_reference = "1"' if arg.ptr == "**" else "",
"mutable" : ' mutable = "%s"' % mut if mut in (0, 1) else "",
"callback" : ' callback = "1"' if "callback" in arg.xtra else "",
}, file=fp)
def s_show_zproto_model_comment(fp, decl_dict, comments):
for i in range(3):
if decl_dict["coord"].line -i in comments:
print(s_comment_fill(comments[decl_dict["coord"].line-i]),
file=fp)
def s_show_zproto_mc(fp, klass, decl_dict, comments):
"""Show method or callback_type - they're mostly the same except tag name"""
klass_l = len(klass) + 1
typ = decl_dict["type"]
singleton=''
nam = decl_dict["name"][klass_l:] if decl_dict["name"] != klass else klass
name = ' name = "%s"' % nam
if decl_dict["name"] == klass + "_new":
typ = "constructor"
name = ""
elif decl_dict["name"] == klass + "_destroy":
typ = "destructor"
name = ""
elif typ == "singleton":
typ = "method"
singleton=' singleton = "1"'
if typ == "method":
arg = decl_dict["return_type"]
if arg.ptr == "*" and not "const" in arg.quals:
print(" <!-- function returns non const pointer, if it allocates new object, add fresh=\"1\" to <return/> -->",
file=fp)
print(""" <%s%s%s>""" % (typ, name, singleton), file=fp)
s_show_zproto_model_comment(fp, decl_dict, comments)
s_show_zproto_model_arguments(fp, decl_dict, typ)
if typ not in ("constructor", "destructor") and \
(decl_dict["return_type"].type != "void" or decl_dict["return_type"].ptr != ""):
arg = decl_dict["return_type"]
mut = s_arg_mutable(arg)
ret_type = s_decl_to_zproject_type(arg)
print(""" <return type = "%(type)s"%(size)s%(mutable)s />""" % {
"size" : ' size = "%s"' % ret_type.size if ret_type.size is not None else "",
"type" : ret_type.name,
"mutable" : ' mutable = "%s"' % mut if mut in (0, 1) else "",
}
, file=fp)
print(""" </%s>\n""" % (typ, ), file=fp)
def s_show_zproto_enum(fp, klass_l, decl_dict):
print(""" <enum name="%s">""" % (decl_dict["name"][klass_l:-2].lower()), file=fp)
for name, value, comment in decl_dict["items"]:
name = name[klass_l:].lower()
value = ' value="%s"' % value if value != "" else ""
print (""" <constant name="%s"%s />""" % (name, value), file=fp)
print(""" </enum>""", file=fp)
def show_zproto_model(fp, klass, decls, comments, macros):
print("""
<!---
This api model is generated by mkapi.py
please review the result carefully and especially don't forget
to add fresh="1" to all methods allocating new functions
-->
<class name = "%s" >
""" % (klass, ), file=fp)
klass_l = len(klass) + 1
include = os.path.join("include", klass + ".h")
for macro_decl in macros:
print(""" <constant name = "%s" value = %s >%s</constant>""" % (
macro_decl.name[klass_l:].lower(),
s_xml_quoteattr(macro_decl.value),
macro_decl.comment),
file=fp)
for decl_dict in (d for d in decls if os.path.normpath(d["coord"].file) == include):
if decl_dict["type"] == "enum":
s_show_zproto_enum(fp, klass_l, decl_dict)
continue
if decl_dict["name"].endswith("_test"):
continue
s_show_zproto_mc(fp, klass, decl_dict, comments)
print("</class>", file=fp)
def get_classes_from_decls(decls):
seen = set()
for decl_dict in decls:
name = decl_dict["name"]
klass = name[:name.rfind('_')]
include = os.path.join("include", klass + ".h")
if not os.path.exists(include):
continue
if klass in seen:
continue
seen.add(klass)
yield klass
def s_mangle_enum_type(arg, klass):
typ = arg.type[len(klass)+1:]
if typ.endswith("_t"):
typ = typ[:-2]
arg.xtra["enum_type"] = "enum:%(klass)s.%(type)s" % {
"klass" : klass,
"type" : typ
}
# brute force the enum type
# TODO: a saner approach would be to add klass name to each xtra first
# and then reiterate once
def s_update_enum_type(decls):
for klass in sorted(get_classes_from_decls(decls), reverse=True):
for decl_dict in (d for d in decls if "args" in d):
ret = decl_dict["return_type"]
if ret.type.startswith(klass):
s_mangle_enum_type(ret, klass)
for arg in (a for a in decl_dict["args"] if "enum_type" not in a.xtra and "enum" in a.xtra and a.type.startswith(klass)):
s_mangle_enum_type(arg, klass)
def s_which(binary):
for d in os.getenv("PATH").split(':'):
full_path = os.path.join(d, binary)
if os.path.isfile(full_path):
return full_path
return None
def s_detect_system_preprocessor():
if sys.platform == "darwin":
if s_which("clang") is None:
return None
return "clang -E"
if s_which("gcc") is not None:
return "gcc -E"
if s_which("clang") is not None:
return "clang -E"
return None
def s_expand_dirs(args):
ret = list()
if args.INCLUDE is None:
return ret
for d in args.INCLUDE:
path = os.path.expandvars(
os.path.expanduser(d))
if not os.path.isdir(path):
print("W: '%s' is not directory" % path)
ret.append(path)
return ret
def main(argv=sys.argv[1:]):
p = argparse.ArgumentParser(description=__doc__)
p.add_argument("-D", "--define", help="extra defines, which will be passed to c preprocessor", dest="DEFINE", action='append')
p.add_argument("-I", "--include", help="extra includes, which will be passed to c preprocessor", dest="INCLUDE", action='append')
p.add_argument("--cpp", help="Define c preprocessor to use (gcc -E, clang -E, auto for autodetect and none for not calling preprocessor at all", default="auto")
p.add_argument("header", help="main header file of the project")
p.add_argument("klass", help="classes to process, default all", metavar="class", nargs='*')
args = p.parse_args(argv)
args.INCLUDE = s_expand_dirs(args)
args.output = "api"
if args.cpp == "auto":
foo = s_detect_system_preprocessor()
if foo is None:
print ("E: Can't detect system preprocessor for platform '%s', neither gcc neither clang are found. Specify it via --cpp parameter" % sys.platform, file=sys.stderr)
sys.exit(1)
args.cpp = foo
try:
os.makedirs(args.output)
except OSError as e:
if e.errno != 17: #file exists
raise e
decls = get_func_decls(args.header, args)
s_update_enum_type (decls)
if len(args.klass) == 0:
klasses = get_classes_from_decls(decls)
else:
decl_klasses = frozenset(get_classes_from_decls(decls))
arg_klasses = frozenset(args.klass)
klasses = decl_klasses.intersection(arg_klasses)
if not arg_klasses.issubset(decl_klasses):
print("W: following class declaration not found: %s" % ", ".join(arg_klasses.difference(decl_klasses)))
print("I: hint add -DMYPROJ_BUILD_DRAFT_API if class is not yet marked as stable")
sys.exit(1)
for klass in klasses:
print ("I: processing class %s" % klass)
include = os.path.join("include", klass + ".h")
comments, macros = parse_comments_and_macros(include)
model = os.path.join(args.output, klass + ".xml")
with open(model, 'wt') as fp:
show_zproto_model(fp, klass, decls, comments, macros)
if __name__ == "__main__":
main()