mirror of
https://github.com/kennethreitz/tablib.git
synced 2026-06-05 15:00:19 +00:00
Merge branch 'develop'
This commit is contained in:
+1
-1
@@ -1 +1 @@
|
||||
include HISTORY.rst README.rst tabbed LICENSE AUTHORS
|
||||
include HISTORY.rst README.rst LICENSE AUTHORS
|
||||
+1
-1
@@ -122,7 +122,7 @@ Or, if you absolutely must: ::
|
||||
Contribute
|
||||
----------
|
||||
|
||||
If you'd like to , simply fork `the repository`_, commit your changes, and send a pull requests. Make sure you add yourself to AUTHORS_.
|
||||
If you'd like to contribute, simply fork `the repository`_, commit your changes, and send a pull request. Make sure you add yourself to AUTHORS_.
|
||||
|
||||
|
||||
Roadmap
|
||||
|
||||
@@ -1,14 +0,0 @@
|
||||
#!/usr/bin/env python
|
||||
# -*- coding: utf-8 -*-
|
||||
|
||||
"""
|
||||
Tabbed -- CLI for Tablib
|
||||
Copyright (c) 2010 Kenneth Reitz. MIT License.
|
||||
"""
|
||||
|
||||
import tablib.cli
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
|
||||
tablib.cli.start()
|
||||
@@ -1,85 +0,0 @@
|
||||
#!/usr/bin/env python
|
||||
# encoding: utf-8
|
||||
|
||||
""" Tabbed CLI Inteface Application
|
||||
"""
|
||||
|
||||
import io
|
||||
import sys
|
||||
|
||||
from helpers import *
|
||||
import tablib.core
|
||||
|
||||
from packages import opster
|
||||
|
||||
|
||||
FORMATS = ('json', 'yaml', 'xls', 'csv', 'html')
|
||||
|
||||
opts = []
|
||||
|
||||
opts.append(('v', 'version', False, 'Report tabbed version'))
|
||||
|
||||
for format in FORMATS:
|
||||
opts.append(('', format, False, 'Output to %s' % (format.upper())))
|
||||
|
||||
|
||||
|
||||
@opster.command(options=opts, usage='[FILE] [--FORMAT | FILE]')
|
||||
def start(in_file=None, out_file=None, **opts):
|
||||
"""Covertly convert dataset formats"""
|
||||
|
||||
opts = Struct(**opts)
|
||||
|
||||
if opts.version:
|
||||
print('Tabbed, Ver. %s' % tabbed.core.__version__)
|
||||
sys.sys.exit(0)
|
||||
|
||||
stdin = piped()
|
||||
|
||||
if stdin:
|
||||
print stdin
|
||||
|
||||
elif in_file:
|
||||
|
||||
try:
|
||||
in_file = io.open(in_file, 'r')
|
||||
except Exception, e:
|
||||
print(' %s cannot be read.' % in_file)
|
||||
sys.exit(65)
|
||||
|
||||
file_ext = in_file.name.split('.')[-1]
|
||||
|
||||
if file_ext.lower() in FORMATS:
|
||||
setattr(opts, file_ext, True)
|
||||
else:
|
||||
print('Import format not supported.')
|
||||
sys.exit(65)
|
||||
else:
|
||||
print('Please provide input.')
|
||||
sys.exit(65)
|
||||
|
||||
|
||||
|
||||
_formats_sum = sum(opts[f] for f in FORMATS)
|
||||
|
||||
# Multiple output formats given
|
||||
if _formats_sum > 1:
|
||||
print('Please specify a single output format.')
|
||||
sys.exit(64)
|
||||
|
||||
# No output formats given
|
||||
elif _formats_sum < 1:
|
||||
print('Please specify an output format.')
|
||||
sys.exit(64)
|
||||
|
||||
|
||||
# fetch options.formats list
|
||||
# if sum(()) > 1
|
||||
# log only one data format please
|
||||
# if sum of formats == 0, specity format
|
||||
|
||||
# look for filename
|
||||
|
||||
print opts.__dict__
|
||||
print in_file
|
||||
print out_file
|
||||
+4
-40
@@ -11,30 +11,23 @@ import csv
|
||||
import cStringIO
|
||||
import random
|
||||
|
||||
|
||||
from helpers import *
|
||||
import simplejson as json
|
||||
|
||||
|
||||
import xlwt
|
||||
import yaml
|
||||
|
||||
from helpers import *
|
||||
|
||||
|
||||
__all__ = ['Dataset', 'DataBook', 'source']
|
||||
__all__ = ['Dataset', 'DataBook']
|
||||
|
||||
__name__ = 'tablib'
|
||||
__version__ = '0.6.0'
|
||||
__build__ = 0x000600
|
||||
__version__ = '0.6.1'
|
||||
__build__ = 0x000601
|
||||
__author__ = 'Kenneth Reitz'
|
||||
__license__ = 'MIT'
|
||||
__copyright__ = 'Copyright 2010 Kenneth Reitz'
|
||||
|
||||
|
||||
FILE_EXTENSIONS = ('csv', 'json', 'xls', 'yaml')
|
||||
|
||||
|
||||
|
||||
class Dataset(object):
|
||||
"""Epic Tabular-Dataset object. """
|
||||
|
||||
@@ -164,7 +157,6 @@ class Dataset(object):
|
||||
|
||||
wb = xlwt.Workbook()
|
||||
ws = wb.add_sheet(self.title if self.title else 'Tabbed Dataset')
|
||||
# for row in self._package(dicts=False):
|
||||
for i, row in enumerate(self._package(dicts=False)):
|
||||
for j, col in enumerate(row):
|
||||
ws.write(i, j, str(col))
|
||||
@@ -184,28 +176,6 @@ class Dataset(object):
|
||||
self._validate(row)
|
||||
self._data.insert(i, tuple(row))
|
||||
|
||||
def sort_by(self, key):
|
||||
"""Sorts datastet by given key"""
|
||||
# todo: accpept string if headers, or index nubmer
|
||||
pass
|
||||
|
||||
def save(self, filename=None, format=None):
|
||||
"""Saves dataset"""
|
||||
if not format:
|
||||
format = filename.split('.')[-1].lower() # set format from filename
|
||||
|
||||
if format not in FILE_EXTENSIONS:
|
||||
raise UnsupportedFormat
|
||||
|
||||
|
||||
# note export format
|
||||
# open file, save the bitch
|
||||
|
||||
|
||||
def export(self):
|
||||
"""Exports Dataset to given filename or file-object."""
|
||||
pass
|
||||
|
||||
|
||||
class DataBook(object):
|
||||
"""A book of Dataset objects.
|
||||
@@ -282,9 +252,3 @@ class InvalidDimensions(Exception):
|
||||
|
||||
class UnsupportedFormat(NotImplementedError):
|
||||
"Format is not supported"
|
||||
|
||||
|
||||
def source(src=None, file=None, filename=None):
|
||||
"""docstring for import"""
|
||||
#open by filename
|
||||
pass
|
||||
@@ -1 +0,0 @@
|
||||
all = ['simplejson', 'typecheck', 'xlwt', 'opster']
|
||||
@@ -1,612 +0,0 @@
|
||||
# (c) Alexander Solovyov, 2009, under terms of the new BSD License
|
||||
'''Command line arguments parser
|
||||
'''
|
||||
|
||||
import sys, traceback, getopt, types, textwrap, inspect, os
|
||||
from itertools import imap
|
||||
|
||||
__all__ = ['command', 'dispatch']
|
||||
__version__ = '0.9.10'
|
||||
__author__ = 'Alexander Solovyov'
|
||||
__email__ = 'piranha@piranha.org.ua'
|
||||
|
||||
write = sys.stdout.write
|
||||
err = sys.stderr.write
|
||||
|
||||
CMDTABLE = {}
|
||||
|
||||
# --------
|
||||
# Public interface
|
||||
# --------
|
||||
|
||||
def command(options=None, usage=None, name=None, shortlist=False, hide=False):
|
||||
'''Decorator to mark function to be used for command line processing.
|
||||
|
||||
All arguments are optional:
|
||||
|
||||
- ``options``: options in format described in docs. If not supplied,
|
||||
will be determined from function.
|
||||
- ``usage``: usage string for function, replaces ``%name`` with name
|
||||
of program or subcommand. In case if it's subcommand and ``%name``
|
||||
is not present, usage is prepended by ``name``
|
||||
- ``name``: used for multiple subcommands. Defaults to wrapped
|
||||
function name
|
||||
- ``shortlist``: if command should be included in shortlist. Used
|
||||
only with multiple subcommands
|
||||
- ``hide``: if command should be hidden from help listing. Used only
|
||||
with multiple subcommands, overrides ``shortlist``
|
||||
'''
|
||||
def wrapper(func):
|
||||
try:
|
||||
options_ = list(guess_options(func))
|
||||
except TypeError:
|
||||
options_ = []
|
||||
try:
|
||||
options_ = options_ + list(options)
|
||||
except TypeError:
|
||||
pass
|
||||
|
||||
name_ = name or func.__name__.replace('_', '-')
|
||||
if usage is None:
|
||||
usage_ = guess_usage(func, options_)
|
||||
else:
|
||||
usage_ = usage
|
||||
prefix = hide and '~' or (shortlist and '^' or '')
|
||||
CMDTABLE[prefix + name_] = (func, options_, usage_)
|
||||
|
||||
def help_func(name=None):
|
||||
return help_cmd(func, replace_name(usage_, sysname()), options_)
|
||||
|
||||
@wraps(func)
|
||||
def inner(*args, **opts):
|
||||
# look if we need to add 'help' option
|
||||
try:
|
||||
(True for option in reversed(options_)
|
||||
if option[1] == 'help').next()
|
||||
except StopIteration:
|
||||
options_.append(('h', 'help', False, 'show help'))
|
||||
|
||||
argv = opts.pop('argv', sys.argv[1:])
|
||||
if opts.pop('help', False):
|
||||
return help_func()
|
||||
|
||||
if args or opts:
|
||||
# no catcher here because this is call from Python
|
||||
return call_cmd_regular(func, options_)(*args, **opts)
|
||||
|
||||
try:
|
||||
opts, args = catcher(lambda: parse(argv, options_), help_func)
|
||||
except Abort:
|
||||
return -1
|
||||
|
||||
try:
|
||||
if opts.pop('help', False):
|
||||
return help_func()
|
||||
return catcher(lambda: call_cmd(name_, func)(*args, **opts),
|
||||
help_func)
|
||||
except Abort:
|
||||
return -1
|
||||
|
||||
return inner
|
||||
return wrapper
|
||||
|
||||
|
||||
def dispatch(args=None, cmdtable=None, globaloptions=None,
|
||||
middleware=lambda x: x):
|
||||
'''Dispatch command arguments based on subcommands.
|
||||
|
||||
- ``args``: list of arguments, default: ``sys.argv[1:]``
|
||||
- ``cmdtable``: dict of commands in format described below.
|
||||
If not supplied, will use functions decorated with ``@command``.
|
||||
- ``globaloptions``: list of options which are applied to all
|
||||
commands, will contain ``--help`` option at least.
|
||||
- ``middleware``: global decorator for all commands.
|
||||
|
||||
cmdtable format description::
|
||||
|
||||
{'name': (function, options, usage)}
|
||||
|
||||
- ``name`` is the name used on command-line. Can contain aliases
|
||||
(separate them with ``|``), pointer to a fact that this command
|
||||
should be displayed in short help (start name with ``^``), or to
|
||||
a fact that this command should be hidden (start name with ``~``)
|
||||
- ``function`` is the actual callable
|
||||
- ``options`` is options list in format described in docs
|
||||
- ``usage`` is the short string of usage
|
||||
'''
|
||||
args = args or sys.argv[1:]
|
||||
cmdtable = cmdtable or CMDTABLE
|
||||
|
||||
globaloptions = globaloptions or []
|
||||
globaloptions.append(('h', 'help', False, 'display help'))
|
||||
|
||||
cmdtable['help'] = (help_(cmdtable, globaloptions), [], '[TOPIC]')
|
||||
help_func = cmdtable['help'][0]
|
||||
|
||||
autocomplete(cmdtable, args)
|
||||
|
||||
try:
|
||||
name, func, args, kwargs = catcher(
|
||||
lambda: _dispatch(args, cmdtable, globaloptions),
|
||||
help_func)
|
||||
return catcher(
|
||||
lambda: call_cmd(name, middleware(func))(*args, **kwargs),
|
||||
help_func)
|
||||
except Abort:
|
||||
return -1
|
||||
|
||||
# --------
|
||||
# Help
|
||||
# --------
|
||||
|
||||
def help_(cmdtable, globalopts):
|
||||
def help_inner(name=None):
|
||||
'''Show help for a given help topic or a help overview
|
||||
|
||||
With no arguments, print a list of commands with short help messages.
|
||||
|
||||
Given a command name, print help for that command.
|
||||
'''
|
||||
def helplist():
|
||||
hlp = {}
|
||||
# determine if any command is marked for shortlist
|
||||
shortlist = (name == 'shortlist' and
|
||||
any(imap(lambda x: x.startswith('^'), cmdtable)))
|
||||
|
||||
for cmd, info in cmdtable.items():
|
||||
if cmd.startswith('~'):
|
||||
continue # do not display hidden commands
|
||||
if shortlist and not cmd.startswith('^'):
|
||||
continue # short help contains only marked commands
|
||||
cmd = cmd.lstrip('^~')
|
||||
doc = info[0].__doc__ or '(no help text available)'
|
||||
hlp[cmd] = doc.splitlines()[0].rstrip()
|
||||
|
||||
hlplist = sorted(hlp)
|
||||
maxlen = max(map(len, hlplist))
|
||||
|
||||
write('usage: %s <command> [options]\n' % sysname())
|
||||
write('\ncommands:\n\n')
|
||||
for cmd in hlplist:
|
||||
doc = hlp[cmd]
|
||||
if False: # verbose?
|
||||
write(' %s:\n %s\n' % (cmd.replace('|', ', '), doc))
|
||||
else:
|
||||
write(' %-*s %s\n' % (maxlen, cmd.split('|', 1)[0],
|
||||
doc))
|
||||
|
||||
if not cmdtable:
|
||||
return err('No commands specified!\n')
|
||||
|
||||
if not name or name == 'shortlist':
|
||||
return helplist()
|
||||
|
||||
aliases, (cmd, options, usage) = findcmd(name, cmdtable)
|
||||
return help_cmd(cmd,
|
||||
replace_name(usage, sysname() + ' ' + aliases[0]),
|
||||
options + globalopts)
|
||||
return help_inner
|
||||
|
||||
def help_cmd(func, usage, options):
|
||||
'''show help for given command
|
||||
|
||||
- ``func``: function to generate help for (``func.__doc__`` is taken)
|
||||
- ``usage``: usage string
|
||||
- ``options``: options in usual format
|
||||
|
||||
>>> def test(*args, **opts):
|
||||
... """that's a test command
|
||||
...
|
||||
... you can do nothing with this command"""
|
||||
... pass
|
||||
>>> opts = [('l', 'listen', 'localhost',
|
||||
... 'ip to listen on'),
|
||||
... ('p', 'port', 8000,
|
||||
... 'port to listen on'),
|
||||
... ('d', 'daemonize', False,
|
||||
... 'daemonize process'),
|
||||
... ('', 'pid-file', '',
|
||||
... 'name of file to write process ID to')]
|
||||
>>> help_cmd(test, 'test [-l HOST] [NAME]', opts)
|
||||
test [-l HOST] [NAME]
|
||||
<BLANKLINE>
|
||||
that's a test command
|
||||
<BLANKLINE>
|
||||
you can do nothing with this command
|
||||
<BLANKLINE>
|
||||
options:
|
||||
<BLANKLINE>
|
||||
-l --listen ip to listen on (default: localhost)
|
||||
-p --port port to listen on (default: 8000)
|
||||
-d --daemonize daemonize process
|
||||
--pid-file name of file to write process ID to
|
||||
<BLANKLINE>
|
||||
'''
|
||||
write(usage + '\n')
|
||||
doc = func.__doc__
|
||||
if not doc:
|
||||
doc = '(no help text available)'
|
||||
write('\n' + doc.strip() + '\n\n')
|
||||
if options:
|
||||
write(''.join(help_options(options)))
|
||||
|
||||
def help_options(options):
|
||||
yield 'options:\n\n'
|
||||
output = []
|
||||
for short, name, default, desc in options:
|
||||
if hasattr(default, '__call__'):
|
||||
default = default(None)
|
||||
default = default and ' (default: %s)' % default or ''
|
||||
output.append(('%2s%s' % (short and '-%s' % short,
|
||||
name and ' --%s' % name),
|
||||
'%s%s' % (desc, default)))
|
||||
|
||||
opts_len = max([len(first) for first, second in output if second] or [0])
|
||||
for first, second in output:
|
||||
if second:
|
||||
# wrap description at 78 chars
|
||||
second = textwrap.wrap(second, width=(78 - opts_len - 3))
|
||||
pad = '\n' + ' ' * (opts_len + 3)
|
||||
yield ' %-*s %s\n' % (opts_len, first, pad.join(second))
|
||||
else:
|
||||
yield '%s\n' % first
|
||||
|
||||
|
||||
# --------
|
||||
# Options parsing
|
||||
# --------
|
||||
|
||||
def parse(args, options):
|
||||
'''
|
||||
>>> opts = [('l', 'listen', 'localhost',
|
||||
... 'ip to listen on'),
|
||||
... ('p', 'port', 8000,
|
||||
... 'port to listen on'),
|
||||
... ('d', 'daemonize', False,
|
||||
... 'daemonize process'),
|
||||
... ('', 'pid-file', '',
|
||||
... 'name of file to write process ID to')]
|
||||
>>> print parse(['-l', '0.0.0.0', '--pi', 'test', 'all'], opts)
|
||||
({'pid_file': 'test', 'daemonize': False, 'port': 8000, 'listen': '0.0.0.0'}, ['all'])
|
||||
|
||||
'''
|
||||
argmap, defmap, state = {}, {}, {}
|
||||
shortlist, namelist, funlist = '', [], []
|
||||
|
||||
for short, name, default, comment in options:
|
||||
if short and len(short) != 1:
|
||||
raise FOError('Short option should be only a single'
|
||||
' character: %s' % short)
|
||||
if not name:
|
||||
raise FOError(
|
||||
'Long name should be defined for every option')
|
||||
# change name to match Python styling
|
||||
pyname = name.replace('-', '_')
|
||||
argmap['-' + short] = argmap['--' + name] = pyname
|
||||
defmap[pyname] = default
|
||||
|
||||
# copy defaults to state
|
||||
if isinstance(default, list):
|
||||
state[pyname] = default[:]
|
||||
elif hasattr(default, '__call__'):
|
||||
funlist.append(pyname)
|
||||
state[pyname] = None
|
||||
else:
|
||||
state[pyname] = default
|
||||
|
||||
# getopt wants indication that it takes a parameter
|
||||
if not (default is None or default is True or default is False):
|
||||
if short: short += ':'
|
||||
if name: name += '='
|
||||
if short:
|
||||
shortlist += short
|
||||
if name:
|
||||
namelist.append(name)
|
||||
|
||||
opts, args = getopt.gnu_getopt(args, shortlist, namelist)
|
||||
|
||||
# transfer result to state
|
||||
for opt, val in opts:
|
||||
name = argmap[opt]
|
||||
t = type(defmap[name])
|
||||
if t is types.FunctionType:
|
||||
del funlist[funlist.index(name)]
|
||||
state[name] = defmap[name](val)
|
||||
elif t is types.ListType:
|
||||
state[name].append(val)
|
||||
elif t in (types.NoneType, types.BooleanType):
|
||||
state[name] = not defmap[name]
|
||||
else:
|
||||
state[name] = t(val)
|
||||
|
||||
for name in funlist:
|
||||
state[name] = defmap[name](None)
|
||||
|
||||
return state, args
|
||||
# --------
|
||||
# Subcommand system
|
||||
# --------
|
||||
|
||||
def _dispatch(args, cmdtable, globalopts):
|
||||
cmd, func, args, options = cmdparse(args, cmdtable, globalopts)
|
||||
|
||||
if options.pop('help', False):
|
||||
return 'help', cmdtable['help'][0], [cmd], {}
|
||||
elif not cmd:
|
||||
return 'help', cmdtable['help'][0], ['shortlist'], {}
|
||||
|
||||
return cmd, func, args, options
|
||||
|
||||
def cmdparse(args, cmdtable, globalopts):
|
||||
# command is the first non-option
|
||||
cmd = None
|
||||
for arg in args:
|
||||
if not arg.startswith('-'):
|
||||
cmd = arg
|
||||
break
|
||||
|
||||
if cmd:
|
||||
args.pop(args.index(cmd))
|
||||
|
||||
aliases, info = findcmd(cmd, cmdtable)
|
||||
cmd = aliases[0]
|
||||
possibleopts = list(info[1])
|
||||
else:
|
||||
possibleopts = []
|
||||
|
||||
possibleopts.extend(globalopts)
|
||||
|
||||
try:
|
||||
options, args = parse(args, possibleopts)
|
||||
except getopt.GetoptError, e:
|
||||
raise ParseError(cmd, e)
|
||||
|
||||
return (cmd, cmd and info[0] or None, args, options)
|
||||
|
||||
def aliases_(cmdtable_key):
|
||||
return cmdtable_key.lstrip("^~").split("|")
|
||||
|
||||
def findpossible(cmd, table):
|
||||
"""
|
||||
Return cmd -> (aliases, command table entry)
|
||||
for each matching command.
|
||||
"""
|
||||
choice = {}
|
||||
for e in table.keys():
|
||||
aliases = aliases_(e)
|
||||
found = None
|
||||
if cmd in aliases:
|
||||
found = cmd
|
||||
else:
|
||||
for a in aliases:
|
||||
if a.startswith(cmd):
|
||||
found = a
|
||||
break
|
||||
if found is not None:
|
||||
choice[found] = (aliases, table[e])
|
||||
|
||||
return choice
|
||||
|
||||
def findcmd(cmd, table):
|
||||
"""Return (aliases, command table entry) for command string."""
|
||||
choice = findpossible(cmd, table)
|
||||
|
||||
if cmd in choice:
|
||||
return choice[cmd]
|
||||
|
||||
if len(choice) > 1:
|
||||
clist = choice.keys()
|
||||
clist.sort()
|
||||
raise AmbiguousCommand(cmd, clist)
|
||||
|
||||
if choice:
|
||||
return choice.values()[0]
|
||||
|
||||
raise UnknownCommand(cmd)
|
||||
|
||||
# --------
|
||||
# Helpers
|
||||
# --------
|
||||
|
||||
def guess_options(func):
|
||||
args, varargs, varkw, defaults = inspect.getargspec(func)
|
||||
for name, option in zip(args[-len(defaults):], defaults):
|
||||
try:
|
||||
sname, default, hlp = option
|
||||
yield (sname, name.replace('_', '-'), default, hlp)
|
||||
except TypeError:
|
||||
pass
|
||||
|
||||
def guess_usage(func, options):
|
||||
usage = '%name '
|
||||
if options:
|
||||
usage += '[OPTIONS] '
|
||||
args, varargs = inspect.getargspec(func)[:2]
|
||||
argnum = len(args) - len(options)
|
||||
if argnum > 0:
|
||||
usage += args[0].upper()
|
||||
if argnum > 1:
|
||||
usage += 'S'
|
||||
elif varargs:
|
||||
usage += '[%s]' % varargs.upper()
|
||||
return usage
|
||||
|
||||
def catcher(target, help_func):
|
||||
'''Catches all exceptions and prints human-readable information on them
|
||||
'''
|
||||
try:
|
||||
return target()
|
||||
except UnknownCommand, e:
|
||||
err("unknown command: '%s'\n" % e)
|
||||
except AmbiguousCommand, e:
|
||||
err("command '%s' is ambiguous:\n %s\n" %
|
||||
(e.args[0], ' '.join(e.args[1])))
|
||||
except ParseError, e:
|
||||
err('%s: %s\n' % (e.args[0], e.args[1]))
|
||||
help_func(e.args[0])
|
||||
except getopt.GetoptError, e:
|
||||
err('error: %s\n' % e)
|
||||
help_func()
|
||||
except FOError, e:
|
||||
err('%s\n' % e)
|
||||
except KeyboardInterrupt:
|
||||
err('interrupted!\n')
|
||||
except SystemExit:
|
||||
raise
|
||||
except:
|
||||
err('unknown exception encountered')
|
||||
raise
|
||||
|
||||
raise Abort
|
||||
|
||||
def call_cmd(name, func):
|
||||
def inner(*args, **kwargs):
|
||||
try:
|
||||
return func(*args, **kwargs)
|
||||
except TypeError:
|
||||
if len(traceback.extract_tb(sys.exc_info()[2])) == 1:
|
||||
raise ParseError(name, "invalid arguments")
|
||||
raise
|
||||
return inner
|
||||
|
||||
def call_cmd_regular(func, opts):
|
||||
def inner(*args, **kwargs):
|
||||
funcargs, _, varkw, defaults = inspect.getargspec(func)
|
||||
if len(args) > len(funcargs):
|
||||
raise TypeError('You have supplied more positional arguments'
|
||||
' than applicable')
|
||||
|
||||
funckwargs = dict((lname.replace('-', '_'), default)
|
||||
for _, lname, default, _ in opts)
|
||||
if 'help' not in (defaults or ()) and not varkw:
|
||||
funckwargs.pop('help', None)
|
||||
funckwargs.update(kwargs)
|
||||
return func(*args, **funckwargs)
|
||||
return inner
|
||||
|
||||
def replace_name(usage, name):
|
||||
if '%name' in usage:
|
||||
return usage.replace('%name', name, 1)
|
||||
return name + ' ' + usage
|
||||
|
||||
def sysname():
|
||||
name = sys.argv[0]
|
||||
if name.startswith('./'):
|
||||
return name[2:]
|
||||
return name
|
||||
|
||||
try:
|
||||
from functools import wraps
|
||||
except ImportError:
|
||||
def wraps(wrapped, assigned=('__module__', '__name__', '__doc__'),
|
||||
updated=('__dict__',)):
|
||||
def inner(wrapper):
|
||||
for attr in assigned:
|
||||
setattr(wrapper, attr, getattr(wrapped, attr))
|
||||
for attr in updated:
|
||||
getattr(wrapper, attr).update(getattr(wrapped, attr, {}))
|
||||
return wrapper
|
||||
return inner
|
||||
|
||||
# --------
|
||||
# Autocomplete system
|
||||
# --------
|
||||
|
||||
# Borrowed from PIP
|
||||
def autocomplete(cmdtable, args):
|
||||
"""Command and option completion.
|
||||
|
||||
Enable by sourcing one of the completion shell scripts (bash or zsh).
|
||||
"""
|
||||
|
||||
# Don't complete if user hasn't sourced bash_completion file.
|
||||
if not os.environ.has_key('OPSTER_AUTO_COMPLETE'):
|
||||
return
|
||||
cwords = os.environ['COMP_WORDS'].split()[1:]
|
||||
cword = int(os.environ['COMP_CWORD'])
|
||||
|
||||
try:
|
||||
current = cwords[cword-1]
|
||||
except IndexError:
|
||||
current = ''
|
||||
|
||||
commands = []
|
||||
for k in cmdtable.keys():
|
||||
commands += aliases_(k)
|
||||
|
||||
# command
|
||||
if cword == 1:
|
||||
print ' '.join(filter(lambda x: x.startswith(current), commands))
|
||||
|
||||
# command options
|
||||
elif cwords[0] in commands:
|
||||
options = []
|
||||
aliases, (cmd, opts, usage) = findcmd(cwords[0], cmdtable)
|
||||
for (short, long, default, help) in opts:
|
||||
options.append('-%s' % short)
|
||||
options.append('--%s' % long)
|
||||
|
||||
options = [o for o in options if o.startswith(current)]
|
||||
print ' '.join(filter(lambda x: x.startswith(current), options))
|
||||
|
||||
sys.exit(1)
|
||||
|
||||
|
||||
COMPLETIONS = {
|
||||
'bash':
|
||||
"""
|
||||
# opster bash completion start
|
||||
_opster_completion()
|
||||
{
|
||||
COMPREPLY=( $( COMP_WORDS="${COMP_WORDS[*]}" \\
|
||||
COMP_CWORD=$COMP_CWORD \\
|
||||
OPSTER_AUTO_COMPLETE=1 $1 ) )
|
||||
}
|
||||
complete -o default -F _opster_completion %s
|
||||
# opster bash completion end
|
||||
""",
|
||||
'zsh':
|
||||
"""
|
||||
# opster zsh completion start
|
||||
function _opster_completion {
|
||||
local words cword
|
||||
read -Ac words
|
||||
read -cn cword
|
||||
reply=( $( COMP_WORDS="$words[*]" \\
|
||||
COMP_CWORD=$(( cword-1 )) \\
|
||||
OPSTER_AUTO_COMPLETE=1 $words[1] ) )
|
||||
}
|
||||
compctl -K _opster_completion %s
|
||||
# opster zsh completion end
|
||||
"""
|
||||
}
|
||||
|
||||
@command(name='_completion', hide=True)
|
||||
def completion(type=('t', 'bash', 'Completion type (bash or zsh)')):
|
||||
"""Outputs completion script for bash or zsh."""
|
||||
|
||||
prog_name = os.path.split(sys.argv[0])[1]
|
||||
print COMPLETIONS[type] % prog_name
|
||||
|
||||
# --------
|
||||
# Exceptions
|
||||
# --------
|
||||
|
||||
# Command exceptions
|
||||
class CommandException(Exception):
|
||||
'Base class for command exceptions'
|
||||
|
||||
class AmbiguousCommand(CommandException):
|
||||
'Raised if command is ambiguous'
|
||||
|
||||
class UnknownCommand(CommandException):
|
||||
'Raised if command is unknown'
|
||||
|
||||
class ParseError(CommandException):
|
||||
'Raised on error in command line parsing'
|
||||
|
||||
class Abort(CommandException):
|
||||
'Abort execution'
|
||||
|
||||
class FOError(CommandException):
|
||||
'Raised on trouble with opster configuration'
|
||||
@@ -1,437 +0,0 @@
|
||||
r"""JSON (JavaScript Object Notation) <http://json.org> is a subset of
|
||||
JavaScript syntax (ECMA-262 3rd edition) used as a lightweight data
|
||||
interchange format.
|
||||
|
||||
:mod:`simplejson` exposes an API familiar to users of the standard library
|
||||
:mod:`marshal` and :mod:`pickle` modules. It is the externally maintained
|
||||
version of the :mod:`json` library contained in Python 2.6, but maintains
|
||||
compatibility with Python 2.4 and Python 2.5 and (currently) has
|
||||
significant performance advantages, even without using the optional C
|
||||
extension for speedups.
|
||||
|
||||
Encoding basic Python object hierarchies::
|
||||
|
||||
>>> import simplejson as json
|
||||
>>> json.dumps(['foo', {'bar': ('baz', None, 1.0, 2)}])
|
||||
'["foo", {"bar": ["baz", null, 1.0, 2]}]'
|
||||
>>> print json.dumps("\"foo\bar")
|
||||
"\"foo\bar"
|
||||
>>> print json.dumps(u'\u1234')
|
||||
"\u1234"
|
||||
>>> print json.dumps('\\')
|
||||
"\\"
|
||||
>>> print json.dumps({"c": 0, "b": 0, "a": 0}, sort_keys=True)
|
||||
{"a": 0, "b": 0, "c": 0}
|
||||
>>> from StringIO import StringIO
|
||||
>>> io = StringIO()
|
||||
>>> json.dump(['streaming API'], io)
|
||||
>>> io.getvalue()
|
||||
'["streaming API"]'
|
||||
|
||||
Compact encoding::
|
||||
|
||||
>>> import simplejson as json
|
||||
>>> json.dumps([1,2,3,{'4': 5, '6': 7}], separators=(',',':'))
|
||||
'[1,2,3,{"4":5,"6":7}]'
|
||||
|
||||
Pretty printing::
|
||||
|
||||
>>> import simplejson as json
|
||||
>>> s = json.dumps({'4': 5, '6': 7}, sort_keys=True, indent=' ')
|
||||
>>> print '\n'.join([l.rstrip() for l in s.splitlines()])
|
||||
{
|
||||
"4": 5,
|
||||
"6": 7
|
||||
}
|
||||
|
||||
Decoding JSON::
|
||||
|
||||
>>> import simplejson as json
|
||||
>>> obj = [u'foo', {u'bar': [u'baz', None, 1.0, 2]}]
|
||||
>>> json.loads('["foo", {"bar":["baz", null, 1.0, 2]}]') == obj
|
||||
True
|
||||
>>> json.loads('"\\"foo\\bar"') == u'"foo\x08ar'
|
||||
True
|
||||
>>> from StringIO import StringIO
|
||||
>>> io = StringIO('["streaming API"]')
|
||||
>>> json.load(io)[0] == 'streaming API'
|
||||
True
|
||||
|
||||
Specializing JSON object decoding::
|
||||
|
||||
>>> import simplejson as json
|
||||
>>> def as_complex(dct):
|
||||
... if '__complex__' in dct:
|
||||
... return complex(dct['real'], dct['imag'])
|
||||
... return dct
|
||||
...
|
||||
>>> json.loads('{"__complex__": true, "real": 1, "imag": 2}',
|
||||
... object_hook=as_complex)
|
||||
(1+2j)
|
||||
>>> from decimal import Decimal
|
||||
>>> json.loads('1.1', parse_float=Decimal) == Decimal('1.1')
|
||||
True
|
||||
|
||||
Specializing JSON object encoding::
|
||||
|
||||
>>> import simplejson as json
|
||||
>>> def encode_complex(obj):
|
||||
... if isinstance(obj, complex):
|
||||
... return [obj.real, obj.imag]
|
||||
... raise TypeError(repr(o) + " is not JSON serializable")
|
||||
...
|
||||
>>> json.dumps(2 + 1j, default=encode_complex)
|
||||
'[2.0, 1.0]'
|
||||
>>> json.JSONEncoder(default=encode_complex).encode(2 + 1j)
|
||||
'[2.0, 1.0]'
|
||||
>>> ''.join(json.JSONEncoder(default=encode_complex).iterencode(2 + 1j))
|
||||
'[2.0, 1.0]'
|
||||
|
||||
|
||||
Using simplejson.tool from the shell to validate and pretty-print::
|
||||
|
||||
$ echo '{"json":"obj"}' | python -m simplejson.tool
|
||||
{
|
||||
"json": "obj"
|
||||
}
|
||||
$ echo '{ 1.2:3.4}' | python -m simplejson.tool
|
||||
Expecting property name: line 1 column 2 (char 2)
|
||||
"""
|
||||
__version__ = '2.1.1'
|
||||
__all__ = [
|
||||
'dump', 'dumps', 'load', 'loads',
|
||||
'JSONDecoder', 'JSONDecodeError', 'JSONEncoder',
|
||||
'OrderedDict',
|
||||
]
|
||||
|
||||
__author__ = 'Bob Ippolito <bob@redivi.com>'
|
||||
|
||||
from decimal import Decimal
|
||||
|
||||
from decoder import JSONDecoder, JSONDecodeError
|
||||
from encoder import JSONEncoder
|
||||
def _import_OrderedDict():
|
||||
import collections
|
||||
try:
|
||||
return collections.OrderedDict
|
||||
except AttributeError:
|
||||
import ordered_dict
|
||||
return ordered_dict.OrderedDict
|
||||
OrderedDict = _import_OrderedDict()
|
||||
|
||||
def _import_c_make_encoder():
|
||||
try:
|
||||
from simplejson._speedups import make_encoder
|
||||
return make_encoder
|
||||
except ImportError:
|
||||
return None
|
||||
|
||||
_default_encoder = JSONEncoder(
|
||||
skipkeys=False,
|
||||
ensure_ascii=True,
|
||||
check_circular=True,
|
||||
allow_nan=True,
|
||||
indent=None,
|
||||
separators=None,
|
||||
encoding='utf-8',
|
||||
default=None,
|
||||
use_decimal=False,
|
||||
)
|
||||
|
||||
def dump(obj, fp, skipkeys=False, ensure_ascii=True, check_circular=True,
|
||||
allow_nan=True, cls=None, indent=None, separators=None,
|
||||
encoding='utf-8', default=None, use_decimal=False, **kw):
|
||||
"""Serialize ``obj`` as a JSON formatted stream to ``fp`` (a
|
||||
``.write()``-supporting file-like object).
|
||||
|
||||
If ``skipkeys`` is true then ``dict`` keys that are not basic types
|
||||
(``str``, ``unicode``, ``int``, ``long``, ``float``, ``bool``, ``None``)
|
||||
will be skipped instead of raising a ``TypeError``.
|
||||
|
||||
If ``ensure_ascii`` is false, then the some chunks written to ``fp``
|
||||
may be ``unicode`` instances, subject to normal Python ``str`` to
|
||||
``unicode`` coercion rules. Unless ``fp.write()`` explicitly
|
||||
understands ``unicode`` (as in ``codecs.getwriter()``) this is likely
|
||||
to cause an error.
|
||||
|
||||
If ``check_circular`` is false, then the circular reference check
|
||||
for container types will be skipped and a circular reference will
|
||||
result in an ``OverflowError`` (or worse).
|
||||
|
||||
If ``allow_nan`` is false, then it will be a ``ValueError`` to
|
||||
serialize out of range ``float`` values (``nan``, ``inf``, ``-inf``)
|
||||
in strict compliance of the JSON specification, instead of using the
|
||||
JavaScript equivalents (``NaN``, ``Infinity``, ``-Infinity``).
|
||||
|
||||
If *indent* is a string, then JSON array elements and object members
|
||||
will be pretty-printed with a newline followed by that string repeated
|
||||
for each level of nesting. ``None`` (the default) selects the most compact
|
||||
representation without any newlines. For backwards compatibility with
|
||||
versions of simplejson earlier than 2.1.0, an integer is also accepted
|
||||
and is converted to a string with that many spaces.
|
||||
|
||||
If ``separators`` is an ``(item_separator, dict_separator)`` tuple
|
||||
then it will be used instead of the default ``(', ', ': ')`` separators.
|
||||
``(',', ':')`` is the most compact JSON representation.
|
||||
|
||||
``encoding`` is the character encoding for str instances, default is UTF-8.
|
||||
|
||||
``default(obj)`` is a function that should return a serializable version
|
||||
of obj or raise TypeError. The default simply raises TypeError.
|
||||
|
||||
If *use_decimal* is true (default: ``False``) then decimal.Decimal
|
||||
will be natively serialized to JSON with full precision.
|
||||
|
||||
To use a custom ``JSONEncoder`` subclass (e.g. one that overrides the
|
||||
``.default()`` method to serialize additional types), specify it with
|
||||
the ``cls`` kwarg.
|
||||
|
||||
"""
|
||||
# cached encoder
|
||||
if (not skipkeys and ensure_ascii and
|
||||
check_circular and allow_nan and
|
||||
cls is None and indent is None and separators is None and
|
||||
encoding == 'utf-8' and default is None and not kw):
|
||||
iterable = _default_encoder.iterencode(obj)
|
||||
else:
|
||||
if cls is None:
|
||||
cls = JSONEncoder
|
||||
iterable = cls(skipkeys=skipkeys, ensure_ascii=ensure_ascii,
|
||||
check_circular=check_circular, allow_nan=allow_nan, indent=indent,
|
||||
separators=separators, encoding=encoding,
|
||||
default=default, use_decimal=use_decimal, **kw).iterencode(obj)
|
||||
# could accelerate with writelines in some versions of Python, at
|
||||
# a debuggability cost
|
||||
for chunk in iterable:
|
||||
fp.write(chunk)
|
||||
|
||||
|
||||
def dumps(obj, skipkeys=False, ensure_ascii=True, check_circular=True,
|
||||
allow_nan=True, cls=None, indent=None, separators=None,
|
||||
encoding='utf-8', default=None, use_decimal=False, **kw):
|
||||
"""Serialize ``obj`` to a JSON formatted ``str``.
|
||||
|
||||
If ``skipkeys`` is false then ``dict`` keys that are not basic types
|
||||
(``str``, ``unicode``, ``int``, ``long``, ``float``, ``bool``, ``None``)
|
||||
will be skipped instead of raising a ``TypeError``.
|
||||
|
||||
If ``ensure_ascii`` is false, then the return value will be a
|
||||
``unicode`` instance subject to normal Python ``str`` to ``unicode``
|
||||
coercion rules instead of being escaped to an ASCII ``str``.
|
||||
|
||||
If ``check_circular`` is false, then the circular reference check
|
||||
for container types will be skipped and a circular reference will
|
||||
result in an ``OverflowError`` (or worse).
|
||||
|
||||
If ``allow_nan`` is false, then it will be a ``ValueError`` to
|
||||
serialize out of range ``float`` values (``nan``, ``inf``, ``-inf``) in
|
||||
strict compliance of the JSON specification, instead of using the
|
||||
JavaScript equivalents (``NaN``, ``Infinity``, ``-Infinity``).
|
||||
|
||||
If ``indent`` is a string, then JSON array elements and object members
|
||||
will be pretty-printed with a newline followed by that string repeated
|
||||
for each level of nesting. ``None`` (the default) selects the most compact
|
||||
representation without any newlines. For backwards compatibility with
|
||||
versions of simplejson earlier than 2.1.0, an integer is also accepted
|
||||
and is converted to a string with that many spaces.
|
||||
|
||||
If ``separators`` is an ``(item_separator, dict_separator)`` tuple
|
||||
then it will be used instead of the default ``(', ', ': ')`` separators.
|
||||
``(',', ':')`` is the most compact JSON representation.
|
||||
|
||||
``encoding`` is the character encoding for str instances, default is UTF-8.
|
||||
|
||||
``default(obj)`` is a function that should return a serializable version
|
||||
of obj or raise TypeError. The default simply raises TypeError.
|
||||
|
||||
If *use_decimal* is true (default: ``False``) then decimal.Decimal
|
||||
will be natively serialized to JSON with full precision.
|
||||
|
||||
To use a custom ``JSONEncoder`` subclass (e.g. one that overrides the
|
||||
``.default()`` method to serialize additional types), specify it with
|
||||
the ``cls`` kwarg.
|
||||
|
||||
"""
|
||||
# cached encoder
|
||||
if (not skipkeys and ensure_ascii and
|
||||
check_circular and allow_nan and
|
||||
cls is None and indent is None and separators is None and
|
||||
encoding == 'utf-8' and default is None and not use_decimal
|
||||
and not kw):
|
||||
return _default_encoder.encode(obj)
|
||||
if cls is None:
|
||||
cls = JSONEncoder
|
||||
return cls(
|
||||
skipkeys=skipkeys, ensure_ascii=ensure_ascii,
|
||||
check_circular=check_circular, allow_nan=allow_nan, indent=indent,
|
||||
separators=separators, encoding=encoding, default=default,
|
||||
use_decimal=use_decimal, **kw).encode(obj)
|
||||
|
||||
|
||||
_default_decoder = JSONDecoder(encoding=None, object_hook=None,
|
||||
object_pairs_hook=None)
|
||||
|
||||
|
||||
def load(fp, encoding=None, cls=None, object_hook=None, parse_float=None,
|
||||
parse_int=None, parse_constant=None, object_pairs_hook=None,
|
||||
use_decimal=False, **kw):
|
||||
"""Deserialize ``fp`` (a ``.read()``-supporting file-like object containing
|
||||
a JSON document) to a Python object.
|
||||
|
||||
*encoding* determines the encoding used to interpret any
|
||||
:class:`str` objects decoded by this instance (``'utf-8'`` by
|
||||
default). It has no effect when decoding :class:`unicode` objects.
|
||||
|
||||
Note that currently only encodings that are a superset of ASCII work,
|
||||
strings of other encodings should be passed in as :class:`unicode`.
|
||||
|
||||
*object_hook*, if specified, will be called with the result of every
|
||||
JSON object decoded and its return value will be used in place of the
|
||||
given :class:`dict`. This can be used to provide custom
|
||||
deserializations (e.g. to support JSON-RPC class hinting).
|
||||
|
||||
*object_pairs_hook* is an optional function that will be called with
|
||||
the result of any object literal decode with an ordered list of pairs.
|
||||
The return value of *object_pairs_hook* will be used instead of the
|
||||
:class:`dict`. This feature can be used to implement custom decoders
|
||||
that rely on the order that the key and value pairs are decoded (for
|
||||
example, :func:`collections.OrderedDict` will remember the order of
|
||||
insertion). If *object_hook* is also defined, the *object_pairs_hook*
|
||||
takes priority.
|
||||
|
||||
*parse_float*, if specified, will be called with the string of every
|
||||
JSON float to be decoded. By default, this is equivalent to
|
||||
``float(num_str)``. This can be used to use another datatype or parser
|
||||
for JSON floats (e.g. :class:`decimal.Decimal`).
|
||||
|
||||
*parse_int*, if specified, will be called with the string of every
|
||||
JSON int to be decoded. By default, this is equivalent to
|
||||
``int(num_str)``. This can be used to use another datatype or parser
|
||||
for JSON integers (e.g. :class:`float`).
|
||||
|
||||
*parse_constant*, if specified, will be called with one of the
|
||||
following strings: ``'-Infinity'``, ``'Infinity'``, ``'NaN'``. This
|
||||
can be used to raise an exception if invalid JSON numbers are
|
||||
encountered.
|
||||
|
||||
If *use_decimal* is true (default: ``False``) then it implies
|
||||
parse_float=decimal.Decimal for parity with ``dump``.
|
||||
|
||||
To use a custom ``JSONDecoder`` subclass, specify it with the ``cls``
|
||||
kwarg.
|
||||
|
||||
"""
|
||||
return loads(fp.read(),
|
||||
encoding=encoding, cls=cls, object_hook=object_hook,
|
||||
parse_float=parse_float, parse_int=parse_int,
|
||||
parse_constant=parse_constant, object_pairs_hook=object_pairs_hook,
|
||||
use_decimal=use_decimal, **kw)
|
||||
|
||||
|
||||
def loads(s, encoding=None, cls=None, object_hook=None, parse_float=None,
|
||||
parse_int=None, parse_constant=None, object_pairs_hook=None,
|
||||
use_decimal=False, **kw):
|
||||
"""Deserialize ``s`` (a ``str`` or ``unicode`` instance containing a JSON
|
||||
document) to a Python object.
|
||||
|
||||
*encoding* determines the encoding used to interpret any
|
||||
:class:`str` objects decoded by this instance (``'utf-8'`` by
|
||||
default). It has no effect when decoding :class:`unicode` objects.
|
||||
|
||||
Note that currently only encodings that are a superset of ASCII work,
|
||||
strings of other encodings should be passed in as :class:`unicode`.
|
||||
|
||||
*object_hook*, if specified, will be called with the result of every
|
||||
JSON object decoded and its return value will be used in place of the
|
||||
given :class:`dict`. This can be used to provide custom
|
||||
deserializations (e.g. to support JSON-RPC class hinting).
|
||||
|
||||
*object_pairs_hook* is an optional function that will be called with
|
||||
the result of any object literal decode with an ordered list of pairs.
|
||||
The return value of *object_pairs_hook* will be used instead of the
|
||||
:class:`dict`. This feature can be used to implement custom decoders
|
||||
that rely on the order that the key and value pairs are decoded (for
|
||||
example, :func:`collections.OrderedDict` will remember the order of
|
||||
insertion). If *object_hook* is also defined, the *object_pairs_hook*
|
||||
takes priority.
|
||||
|
||||
*parse_float*, if specified, will be called with the string of every
|
||||
JSON float to be decoded. By default, this is equivalent to
|
||||
``float(num_str)``. This can be used to use another datatype or parser
|
||||
for JSON floats (e.g. :class:`decimal.Decimal`).
|
||||
|
||||
*parse_int*, if specified, will be called with the string of every
|
||||
JSON int to be decoded. By default, this is equivalent to
|
||||
``int(num_str)``. This can be used to use another datatype or parser
|
||||
for JSON integers (e.g. :class:`float`).
|
||||
|
||||
*parse_constant*, if specified, will be called with one of the
|
||||
following strings: ``'-Infinity'``, ``'Infinity'``, ``'NaN'``. This
|
||||
can be used to raise an exception if invalid JSON numbers are
|
||||
encountered.
|
||||
|
||||
If *use_decimal* is true (default: ``False``) then it implies
|
||||
parse_float=decimal.Decimal for parity with ``dump``.
|
||||
|
||||
To use a custom ``JSONDecoder`` subclass, specify it with the ``cls``
|
||||
kwarg.
|
||||
|
||||
"""
|
||||
if (cls is None and encoding is None and object_hook is None and
|
||||
parse_int is None and parse_float is None and
|
||||
parse_constant is None and object_pairs_hook is None
|
||||
and not use_decimal and not kw):
|
||||
return _default_decoder.decode(s)
|
||||
if cls is None:
|
||||
cls = JSONDecoder
|
||||
if object_hook is not None:
|
||||
kw['object_hook'] = object_hook
|
||||
if object_pairs_hook is not None:
|
||||
kw['object_pairs_hook'] = object_pairs_hook
|
||||
if parse_float is not None:
|
||||
kw['parse_float'] = parse_float
|
||||
if parse_int is not None:
|
||||
kw['parse_int'] = parse_int
|
||||
if parse_constant is not None:
|
||||
kw['parse_constant'] = parse_constant
|
||||
if use_decimal:
|
||||
if parse_float is not None:
|
||||
raise TypeError("use_decimal=True implies parse_float=Decimal")
|
||||
kw['parse_float'] = Decimal
|
||||
return cls(encoding=encoding, **kw).decode(s)
|
||||
|
||||
|
||||
def _toggle_speedups(enabled):
|
||||
import simplejson.decoder as dec
|
||||
import simplejson.encoder as enc
|
||||
import simplejson.scanner as scan
|
||||
c_make_encoder = _import_c_make_encoder()
|
||||
if enabled:
|
||||
dec.scanstring = dec.c_scanstring or dec.py_scanstring
|
||||
enc.c_make_encoder = c_make_encoder
|
||||
enc.encode_basestring_ascii = (enc.c_encode_basestring_ascii or
|
||||
enc.py_encode_basestring_ascii)
|
||||
scan.make_scanner = scan.c_make_scanner or scan.py_make_scanner
|
||||
else:
|
||||
dec.scanstring = dec.py_scanstring
|
||||
enc.c_make_encoder = None
|
||||
enc.encode_basestring_ascii = enc.py_encode_basestring_ascii
|
||||
scan.make_scanner = scan.py_make_scanner
|
||||
dec.make_scanner = scan.make_scanner
|
||||
global _default_decoder
|
||||
_default_decoder = JSONDecoder(
|
||||
encoding=None,
|
||||
object_hook=None,
|
||||
object_pairs_hook=None,
|
||||
)
|
||||
global _default_encoder
|
||||
_default_encoder = JSONEncoder(
|
||||
skipkeys=False,
|
||||
ensure_ascii=True,
|
||||
check_circular=True,
|
||||
allow_nan=True,
|
||||
indent=None,
|
||||
separators=None,
|
||||
encoding='utf-8',
|
||||
default=None,
|
||||
)
|
||||
File diff suppressed because it is too large
Load Diff
@@ -1,421 +0,0 @@
|
||||
"""Implementation of JSONDecoder
|
||||
"""
|
||||
import re
|
||||
import sys
|
||||
import struct
|
||||
|
||||
from simplejson.scanner import make_scanner
|
||||
def _import_c_scanstring():
|
||||
try:
|
||||
from simplejson._speedups import scanstring
|
||||
return scanstring
|
||||
except ImportError:
|
||||
return None
|
||||
c_scanstring = _import_c_scanstring()
|
||||
|
||||
__all__ = ['JSONDecoder']
|
||||
|
||||
FLAGS = re.VERBOSE | re.MULTILINE | re.DOTALL
|
||||
|
||||
def _floatconstants():
|
||||
_BYTES = '7FF80000000000007FF0000000000000'.decode('hex')
|
||||
# The struct module in Python 2.4 would get frexp() out of range here
|
||||
# when an endian is specified in the format string. Fixed in Python 2.5+
|
||||
if sys.byteorder != 'big':
|
||||
_BYTES = _BYTES[:8][::-1] + _BYTES[8:][::-1]
|
||||
nan, inf = struct.unpack('dd', _BYTES)
|
||||
return nan, inf, -inf
|
||||
|
||||
NaN, PosInf, NegInf = _floatconstants()
|
||||
|
||||
|
||||
class JSONDecodeError(ValueError):
|
||||
"""Subclass of ValueError with the following additional properties:
|
||||
|
||||
msg: The unformatted error message
|
||||
doc: The JSON document being parsed
|
||||
pos: The start index of doc where parsing failed
|
||||
end: The end index of doc where parsing failed (may be None)
|
||||
lineno: The line corresponding to pos
|
||||
colno: The column corresponding to pos
|
||||
endlineno: The line corresponding to end (may be None)
|
||||
endcolno: The column corresponding to end (may be None)
|
||||
|
||||
"""
|
||||
def __init__(self, msg, doc, pos, end=None):
|
||||
ValueError.__init__(self, errmsg(msg, doc, pos, end=end))
|
||||
self.msg = msg
|
||||
self.doc = doc
|
||||
self.pos = pos
|
||||
self.end = end
|
||||
self.lineno, self.colno = linecol(doc, pos)
|
||||
if end is not None:
|
||||
self.endlineno, self.endcolno = linecol(doc, pos)
|
||||
else:
|
||||
self.endlineno, self.endcolno = None, None
|
||||
|
||||
|
||||
def linecol(doc, pos):
|
||||
lineno = doc.count('\n', 0, pos) + 1
|
||||
if lineno == 1:
|
||||
colno = pos
|
||||
else:
|
||||
colno = pos - doc.rindex('\n', 0, pos)
|
||||
return lineno, colno
|
||||
|
||||
|
||||
def errmsg(msg, doc, pos, end=None):
|
||||
# Note that this function is called from _speedups
|
||||
lineno, colno = linecol(doc, pos)
|
||||
if end is None:
|
||||
#fmt = '{0}: line {1} column {2} (char {3})'
|
||||
#return fmt.format(msg, lineno, colno, pos)
|
||||
fmt = '%s: line %d column %d (char %d)'
|
||||
return fmt % (msg, lineno, colno, pos)
|
||||
endlineno, endcolno = linecol(doc, end)
|
||||
#fmt = '{0}: line {1} column {2} - line {3} column {4} (char {5} - {6})'
|
||||
#return fmt.format(msg, lineno, colno, endlineno, endcolno, pos, end)
|
||||
fmt = '%s: line %d column %d - line %d column %d (char %d - %d)'
|
||||
return fmt % (msg, lineno, colno, endlineno, endcolno, pos, end)
|
||||
|
||||
|
||||
_CONSTANTS = {
|
||||
'-Infinity': NegInf,
|
||||
'Infinity': PosInf,
|
||||
'NaN': NaN,
|
||||
}
|
||||
|
||||
STRINGCHUNK = re.compile(r'(.*?)(["\\\x00-\x1f])', FLAGS)
|
||||
BACKSLASH = {
|
||||
'"': u'"', '\\': u'\\', '/': u'/',
|
||||
'b': u'\b', 'f': u'\f', 'n': u'\n', 'r': u'\r', 't': u'\t',
|
||||
}
|
||||
|
||||
DEFAULT_ENCODING = "utf-8"
|
||||
|
||||
def py_scanstring(s, end, encoding=None, strict=True,
|
||||
_b=BACKSLASH, _m=STRINGCHUNK.match):
|
||||
"""Scan the string s for a JSON string. End is the index of the
|
||||
character in s after the quote that started the JSON string.
|
||||
Unescapes all valid JSON string escape sequences and raises ValueError
|
||||
on attempt to decode an invalid string. If strict is False then literal
|
||||
control characters are allowed in the string.
|
||||
|
||||
Returns a tuple of the decoded string and the index of the character in s
|
||||
after the end quote."""
|
||||
if encoding is None:
|
||||
encoding = DEFAULT_ENCODING
|
||||
chunks = []
|
||||
_append = chunks.append
|
||||
begin = end - 1
|
||||
while 1:
|
||||
chunk = _m(s, end)
|
||||
if chunk is None:
|
||||
raise JSONDecodeError(
|
||||
"Unterminated string starting at", s, begin)
|
||||
end = chunk.end()
|
||||
content, terminator = chunk.groups()
|
||||
# Content is contains zero or more unescaped string characters
|
||||
if content:
|
||||
if not isinstance(content, unicode):
|
||||
content = unicode(content, encoding)
|
||||
_append(content)
|
||||
# Terminator is the end of string, a literal control character,
|
||||
# or a backslash denoting that an escape sequence follows
|
||||
if terminator == '"':
|
||||
break
|
||||
elif terminator != '\\':
|
||||
if strict:
|
||||
msg = "Invalid control character %r at" % (terminator,)
|
||||
#msg = "Invalid control character {0!r} at".format(terminator)
|
||||
raise JSONDecodeError(msg, s, end)
|
||||
else:
|
||||
_append(terminator)
|
||||
continue
|
||||
try:
|
||||
esc = s[end]
|
||||
except IndexError:
|
||||
raise JSONDecodeError(
|
||||
"Unterminated string starting at", s, begin)
|
||||
# If not a unicode escape sequence, must be in the lookup table
|
||||
if esc != 'u':
|
||||
try:
|
||||
char = _b[esc]
|
||||
except KeyError:
|
||||
msg = "Invalid \\escape: " + repr(esc)
|
||||
raise JSONDecodeError(msg, s, end)
|
||||
end += 1
|
||||
else:
|
||||
# Unicode escape sequence
|
||||
esc = s[end + 1:end + 5]
|
||||
next_end = end + 5
|
||||
if len(esc) != 4:
|
||||
msg = "Invalid \\uXXXX escape"
|
||||
raise JSONDecodeError(msg, s, end)
|
||||
uni = int(esc, 16)
|
||||
# Check for surrogate pair on UCS-4 systems
|
||||
if 0xd800 <= uni <= 0xdbff and sys.maxunicode > 65535:
|
||||
msg = "Invalid \\uXXXX\\uXXXX surrogate pair"
|
||||
if not s[end + 5:end + 7] == '\\u':
|
||||
raise JSONDecodeError(msg, s, end)
|
||||
esc2 = s[end + 7:end + 11]
|
||||
if len(esc2) != 4:
|
||||
raise JSONDecodeError(msg, s, end)
|
||||
uni2 = int(esc2, 16)
|
||||
uni = 0x10000 + (((uni - 0xd800) << 10) | (uni2 - 0xdc00))
|
||||
next_end += 6
|
||||
char = unichr(uni)
|
||||
end = next_end
|
||||
# Append the unescaped character
|
||||
_append(char)
|
||||
return u''.join(chunks), end
|
||||
|
||||
|
||||
# Use speedup if available
|
||||
scanstring = c_scanstring or py_scanstring
|
||||
|
||||
WHITESPACE = re.compile(r'[ \t\n\r]*', FLAGS)
|
||||
WHITESPACE_STR = ' \t\n\r'
|
||||
|
||||
def JSONObject((s, end), encoding, strict, scan_once, object_hook,
|
||||
object_pairs_hook, memo=None,
|
||||
_w=WHITESPACE.match, _ws=WHITESPACE_STR):
|
||||
# Backwards compatibility
|
||||
if memo is None:
|
||||
memo = {}
|
||||
memo_get = memo.setdefault
|
||||
pairs = []
|
||||
# Use a slice to prevent IndexError from being raised, the following
|
||||
# check will raise a more specific ValueError if the string is empty
|
||||
nextchar = s[end:end + 1]
|
||||
# Normally we expect nextchar == '"'
|
||||
if nextchar != '"':
|
||||
if nextchar in _ws:
|
||||
end = _w(s, end).end()
|
||||
nextchar = s[end:end + 1]
|
||||
# Trivial empty object
|
||||
if nextchar == '}':
|
||||
if object_pairs_hook is not None:
|
||||
result = object_pairs_hook(pairs)
|
||||
return result, end
|
||||
pairs = {}
|
||||
if object_hook is not None:
|
||||
pairs = object_hook(pairs)
|
||||
return pairs, end + 1
|
||||
elif nextchar != '"':
|
||||
raise JSONDecodeError("Expecting property name", s, end)
|
||||
end += 1
|
||||
while True:
|
||||
key, end = scanstring(s, end, encoding, strict)
|
||||
key = memo_get(key, key)
|
||||
|
||||
# To skip some function call overhead we optimize the fast paths where
|
||||
# the JSON key separator is ": " or just ":".
|
||||
if s[end:end + 1] != ':':
|
||||
end = _w(s, end).end()
|
||||
if s[end:end + 1] != ':':
|
||||
raise JSONDecodeError("Expecting : delimiter", s, end)
|
||||
|
||||
end += 1
|
||||
|
||||
try:
|
||||
if s[end] in _ws:
|
||||
end += 1
|
||||
if s[end] in _ws:
|
||||
end = _w(s, end + 1).end()
|
||||
except IndexError:
|
||||
pass
|
||||
|
||||
try:
|
||||
value, end = scan_once(s, end)
|
||||
except StopIteration:
|
||||
raise JSONDecodeError("Expecting object", s, end)
|
||||
pairs.append((key, value))
|
||||
|
||||
try:
|
||||
nextchar = s[end]
|
||||
if nextchar in _ws:
|
||||
end = _w(s, end + 1).end()
|
||||
nextchar = s[end]
|
||||
except IndexError:
|
||||
nextchar = ''
|
||||
end += 1
|
||||
|
||||
if nextchar == '}':
|
||||
break
|
||||
elif nextchar != ',':
|
||||
raise JSONDecodeError("Expecting , delimiter", s, end - 1)
|
||||
|
||||
try:
|
||||
nextchar = s[end]
|
||||
if nextchar in _ws:
|
||||
end += 1
|
||||
nextchar = s[end]
|
||||
if nextchar in _ws:
|
||||
end = _w(s, end + 1).end()
|
||||
nextchar = s[end]
|
||||
except IndexError:
|
||||
nextchar = ''
|
||||
|
||||
end += 1
|
||||
if nextchar != '"':
|
||||
raise JSONDecodeError("Expecting property name", s, end - 1)
|
||||
|
||||
if object_pairs_hook is not None:
|
||||
result = object_pairs_hook(pairs)
|
||||
return result, end
|
||||
pairs = dict(pairs)
|
||||
if object_hook is not None:
|
||||
pairs = object_hook(pairs)
|
||||
return pairs, end
|
||||
|
||||
def JSONArray((s, end), scan_once, _w=WHITESPACE.match, _ws=WHITESPACE_STR):
|
||||
values = []
|
||||
nextchar = s[end:end + 1]
|
||||
if nextchar in _ws:
|
||||
end = _w(s, end + 1).end()
|
||||
nextchar = s[end:end + 1]
|
||||
# Look-ahead for trivial empty array
|
||||
if nextchar == ']':
|
||||
return values, end + 1
|
||||
_append = values.append
|
||||
while True:
|
||||
try:
|
||||
value, end = scan_once(s, end)
|
||||
except StopIteration:
|
||||
raise JSONDecodeError("Expecting object", s, end)
|
||||
_append(value)
|
||||
nextchar = s[end:end + 1]
|
||||
if nextchar in _ws:
|
||||
end = _w(s, end + 1).end()
|
||||
nextchar = s[end:end + 1]
|
||||
end += 1
|
||||
if nextchar == ']':
|
||||
break
|
||||
elif nextchar != ',':
|
||||
raise JSONDecodeError("Expecting , delimiter", s, end)
|
||||
|
||||
try:
|
||||
if s[end] in _ws:
|
||||
end += 1
|
||||
if s[end] in _ws:
|
||||
end = _w(s, end + 1).end()
|
||||
except IndexError:
|
||||
pass
|
||||
|
||||
return values, end
|
||||
|
||||
class JSONDecoder(object):
|
||||
"""Simple JSON <http://json.org> decoder
|
||||
|
||||
Performs the following translations in decoding by default:
|
||||
|
||||
+---------------+-------------------+
|
||||
| JSON | Python |
|
||||
+===============+===================+
|
||||
| object | dict |
|
||||
+---------------+-------------------+
|
||||
| array | list |
|
||||
+---------------+-------------------+
|
||||
| string | unicode |
|
||||
+---------------+-------------------+
|
||||
| number (int) | int, long |
|
||||
+---------------+-------------------+
|
||||
| number (real) | float |
|
||||
+---------------+-------------------+
|
||||
| true | True |
|
||||
+---------------+-------------------+
|
||||
| false | False |
|
||||
+---------------+-------------------+
|
||||
| null | None |
|
||||
+---------------+-------------------+
|
||||
|
||||
It also understands ``NaN``, ``Infinity``, and ``-Infinity`` as
|
||||
their corresponding ``float`` values, which is outside the JSON spec.
|
||||
|
||||
"""
|
||||
|
||||
def __init__(self, encoding=None, object_hook=None, parse_float=None,
|
||||
parse_int=None, parse_constant=None, strict=True,
|
||||
object_pairs_hook=None):
|
||||
"""
|
||||
*encoding* determines the encoding used to interpret any
|
||||
:class:`str` objects decoded by this instance (``'utf-8'`` by
|
||||
default). It has no effect when decoding :class:`unicode` objects.
|
||||
|
||||
Note that currently only encodings that are a superset of ASCII work,
|
||||
strings of other encodings should be passed in as :class:`unicode`.
|
||||
|
||||
*object_hook*, if specified, will be called with the result of every
|
||||
JSON object decoded and its return value will be used in place of the
|
||||
given :class:`dict`. This can be used to provide custom
|
||||
deserializations (e.g. to support JSON-RPC class hinting).
|
||||
|
||||
*object_pairs_hook* is an optional function that will be called with
|
||||
the result of any object literal decode with an ordered list of pairs.
|
||||
The return value of *object_pairs_hook* will be used instead of the
|
||||
:class:`dict`. This feature can be used to implement custom decoders
|
||||
that rely on the order that the key and value pairs are decoded (for
|
||||
example, :func:`collections.OrderedDict` will remember the order of
|
||||
insertion). If *object_hook* is also defined, the *object_pairs_hook*
|
||||
takes priority.
|
||||
|
||||
*parse_float*, if specified, will be called with the string of every
|
||||
JSON float to be decoded. By default, this is equivalent to
|
||||
``float(num_str)``. This can be used to use another datatype or parser
|
||||
for JSON floats (e.g. :class:`decimal.Decimal`).
|
||||
|
||||
*parse_int*, if specified, will be called with the string of every
|
||||
JSON int to be decoded. By default, this is equivalent to
|
||||
``int(num_str)``. This can be used to use another datatype or parser
|
||||
for JSON integers (e.g. :class:`float`).
|
||||
|
||||
*parse_constant*, if specified, will be called with one of the
|
||||
following strings: ``'-Infinity'``, ``'Infinity'``, ``'NaN'``. This
|
||||
can be used to raise an exception if invalid JSON numbers are
|
||||
encountered.
|
||||
|
||||
*strict* controls the parser's behavior when it encounters an
|
||||
invalid control character in a string. The default setting of
|
||||
``True`` means that unescaped control characters are parse errors, if
|
||||
``False`` then control characters will be allowed in strings.
|
||||
|
||||
"""
|
||||
self.encoding = encoding
|
||||
self.object_hook = object_hook
|
||||
self.object_pairs_hook = object_pairs_hook
|
||||
self.parse_float = parse_float or float
|
||||
self.parse_int = parse_int or int
|
||||
self.parse_constant = parse_constant or _CONSTANTS.__getitem__
|
||||
self.strict = strict
|
||||
self.parse_object = JSONObject
|
||||
self.parse_array = JSONArray
|
||||
self.parse_string = scanstring
|
||||
self.memo = {}
|
||||
self.scan_once = make_scanner(self)
|
||||
|
||||
def decode(self, s, _w=WHITESPACE.match):
|
||||
"""Return the Python representation of ``s`` (a ``str`` or ``unicode``
|
||||
instance containing a JSON document)
|
||||
|
||||
"""
|
||||
obj, end = self.raw_decode(s, idx=_w(s, 0).end())
|
||||
end = _w(s, end).end()
|
||||
if end != len(s):
|
||||
raise JSONDecodeError("Extra data", s, end, len(s))
|
||||
return obj
|
||||
|
||||
def raw_decode(self, s, idx=0):
|
||||
"""Decode a JSON document from ``s`` (a ``str`` or ``unicode``
|
||||
beginning with a JSON document) and return a 2-tuple of the Python
|
||||
representation and the index in ``s`` where the document ended.
|
||||
|
||||
This can be used to decode a JSON document from a string that may
|
||||
have extraneous data at the end.
|
||||
|
||||
"""
|
||||
try:
|
||||
obj, end = self.scan_once(s, idx)
|
||||
except StopIteration:
|
||||
raise JSONDecodeError("No JSON object could be decoded", s, idx)
|
||||
return obj, end
|
||||
@@ -1,501 +0,0 @@
|
||||
"""Implementation of JSONEncoder
|
||||
"""
|
||||
import re
|
||||
from decimal import Decimal
|
||||
|
||||
def _import_speedups():
|
||||
try:
|
||||
from simplejson import _speedups
|
||||
return _speedups.encode_basestring_ascii, _speedups.make_encoder
|
||||
except ImportError:
|
||||
return None, None
|
||||
c_encode_basestring_ascii, c_make_encoder = _import_speedups()
|
||||
|
||||
from simplejson.decoder import PosInf
|
||||
|
||||
ESCAPE = re.compile(r'[\x00-\x1f\\"\b\f\n\r\t]')
|
||||
ESCAPE_ASCII = re.compile(r'([\\"]|[^\ -~])')
|
||||
HAS_UTF8 = re.compile(r'[\x80-\xff]')
|
||||
ESCAPE_DCT = {
|
||||
'\\': '\\\\',
|
||||
'"': '\\"',
|
||||
'\b': '\\b',
|
||||
'\f': '\\f',
|
||||
'\n': '\\n',
|
||||
'\r': '\\r',
|
||||
'\t': '\\t',
|
||||
}
|
||||
for i in range(0x20):
|
||||
#ESCAPE_DCT.setdefault(chr(i), '\\u{0:04x}'.format(i))
|
||||
ESCAPE_DCT.setdefault(chr(i), '\\u%04x' % (i,))
|
||||
|
||||
FLOAT_REPR = repr
|
||||
|
||||
def encode_basestring(s):
|
||||
"""Return a JSON representation of a Python string
|
||||
|
||||
"""
|
||||
if isinstance(s, str) and HAS_UTF8.search(s) is not None:
|
||||
s = s.decode('utf-8')
|
||||
def replace(match):
|
||||
return ESCAPE_DCT[match.group(0)]
|
||||
return u'"' + ESCAPE.sub(replace, s) + u'"'
|
||||
|
||||
|
||||
def py_encode_basestring_ascii(s):
|
||||
"""Return an ASCII-only JSON representation of a Python string
|
||||
|
||||
"""
|
||||
if isinstance(s, str) and HAS_UTF8.search(s) is not None:
|
||||
s = s.decode('utf-8')
|
||||
def replace(match):
|
||||
s = match.group(0)
|
||||
try:
|
||||
return ESCAPE_DCT[s]
|
||||
except KeyError:
|
||||
n = ord(s)
|
||||
if n < 0x10000:
|
||||
#return '\\u{0:04x}'.format(n)
|
||||
return '\\u%04x' % (n,)
|
||||
else:
|
||||
# surrogate pair
|
||||
n -= 0x10000
|
||||
s1 = 0xd800 | ((n >> 10) & 0x3ff)
|
||||
s2 = 0xdc00 | (n & 0x3ff)
|
||||
#return '\\u{0:04x}\\u{1:04x}'.format(s1, s2)
|
||||
return '\\u%04x\\u%04x' % (s1, s2)
|
||||
return '"' + str(ESCAPE_ASCII.sub(replace, s)) + '"'
|
||||
|
||||
|
||||
encode_basestring_ascii = (
|
||||
c_encode_basestring_ascii or py_encode_basestring_ascii)
|
||||
|
||||
class JSONEncoder(object):
|
||||
"""Extensible JSON <http://json.org> encoder for Python data structures.
|
||||
|
||||
Supports the following objects and types by default:
|
||||
|
||||
+-------------------+---------------+
|
||||
| Python | JSON |
|
||||
+===================+===============+
|
||||
| dict | object |
|
||||
+-------------------+---------------+
|
||||
| list, tuple | array |
|
||||
+-------------------+---------------+
|
||||
| str, unicode | string |
|
||||
+-------------------+---------------+
|
||||
| int, long, float | number |
|
||||
+-------------------+---------------+
|
||||
| True | true |
|
||||
+-------------------+---------------+
|
||||
| False | false |
|
||||
+-------------------+---------------+
|
||||
| None | null |
|
||||
+-------------------+---------------+
|
||||
|
||||
To extend this to recognize other objects, subclass and implement a
|
||||
``.default()`` method with another method that returns a serializable
|
||||
object for ``o`` if possible, otherwise it should call the superclass
|
||||
implementation (to raise ``TypeError``).
|
||||
|
||||
"""
|
||||
item_separator = ', '
|
||||
key_separator = ': '
|
||||
def __init__(self, skipkeys=False, ensure_ascii=True,
|
||||
check_circular=True, allow_nan=True, sort_keys=False,
|
||||
indent=None, separators=None, encoding='utf-8', default=None,
|
||||
use_decimal=False):
|
||||
"""Constructor for JSONEncoder, with sensible defaults.
|
||||
|
||||
If skipkeys is false, then it is a TypeError to attempt
|
||||
encoding of keys that are not str, int, long, float or None. If
|
||||
skipkeys is True, such items are simply skipped.
|
||||
|
||||
If ensure_ascii is true, the output is guaranteed to be str
|
||||
objects with all incoming unicode characters escaped. If
|
||||
ensure_ascii is false, the output will be unicode object.
|
||||
|
||||
If check_circular is true, then lists, dicts, and custom encoded
|
||||
objects will be checked for circular references during encoding to
|
||||
prevent an infinite recursion (which would cause an OverflowError).
|
||||
Otherwise, no such check takes place.
|
||||
|
||||
If allow_nan is true, then NaN, Infinity, and -Infinity will be
|
||||
encoded as such. This behavior is not JSON specification compliant,
|
||||
but is consistent with most JavaScript based encoders and decoders.
|
||||
Otherwise, it will be a ValueError to encode such floats.
|
||||
|
||||
If sort_keys is true, then the output of dictionaries will be
|
||||
sorted by key; this is useful for regression tests to ensure
|
||||
that JSON serializations can be compared on a day-to-day basis.
|
||||
|
||||
If indent is a string, then JSON array elements and object members
|
||||
will be pretty-printed with a newline followed by that string repeated
|
||||
for each level of nesting. ``None`` (the default) selects the most compact
|
||||
representation without any newlines. For backwards compatibility with
|
||||
versions of simplejson earlier than 2.1.0, an integer is also accepted
|
||||
and is converted to a string with that many spaces.
|
||||
|
||||
If specified, separators should be a (item_separator, key_separator)
|
||||
tuple. The default is (', ', ': '). To get the most compact JSON
|
||||
representation you should specify (',', ':') to eliminate whitespace.
|
||||
|
||||
If specified, default is a function that gets called for objects
|
||||
that can't otherwise be serialized. It should return a JSON encodable
|
||||
version of the object or raise a ``TypeError``.
|
||||
|
||||
If encoding is not None, then all input strings will be
|
||||
transformed into unicode using that encoding prior to JSON-encoding.
|
||||
The default is UTF-8.
|
||||
|
||||
If use_decimal is true (not the default), ``decimal.Decimal`` will
|
||||
be supported directly by the encoder. For the inverse, decode JSON
|
||||
with ``parse_float=decimal.Decimal``.
|
||||
|
||||
"""
|
||||
|
||||
self.skipkeys = skipkeys
|
||||
self.ensure_ascii = ensure_ascii
|
||||
self.check_circular = check_circular
|
||||
self.allow_nan = allow_nan
|
||||
self.sort_keys = sort_keys
|
||||
self.use_decimal = use_decimal
|
||||
if isinstance(indent, (int, long)):
|
||||
indent = ' ' * indent
|
||||
self.indent = indent
|
||||
if separators is not None:
|
||||
self.item_separator, self.key_separator = separators
|
||||
if default is not None:
|
||||
self.default = default
|
||||
self.encoding = encoding
|
||||
|
||||
def default(self, o):
|
||||
"""Implement this method in a subclass such that it returns
|
||||
a serializable object for ``o``, or calls the base implementation
|
||||
(to raise a ``TypeError``).
|
||||
|
||||
For example, to support arbitrary iterators, you could
|
||||
implement default like this::
|
||||
|
||||
def default(self, o):
|
||||
try:
|
||||
iterable = iter(o)
|
||||
except TypeError:
|
||||
pass
|
||||
else:
|
||||
return list(iterable)
|
||||
return JSONEncoder.default(self, o)
|
||||
|
||||
"""
|
||||
raise TypeError(repr(o) + " is not JSON serializable")
|
||||
|
||||
def encode(self, o):
|
||||
"""Return a JSON string representation of a Python data structure.
|
||||
|
||||
>>> from simplejson import JSONEncoder
|
||||
>>> JSONEncoder().encode({"foo": ["bar", "baz"]})
|
||||
'{"foo": ["bar", "baz"]}'
|
||||
|
||||
"""
|
||||
# This is for extremely simple cases and benchmarks.
|
||||
if isinstance(o, basestring):
|
||||
if isinstance(o, str):
|
||||
_encoding = self.encoding
|
||||
if (_encoding is not None
|
||||
and not (_encoding == 'utf-8')):
|
||||
o = o.decode(_encoding)
|
||||
if self.ensure_ascii:
|
||||
return encode_basestring_ascii(o)
|
||||
else:
|
||||
return encode_basestring(o)
|
||||
# This doesn't pass the iterator directly to ''.join() because the
|
||||
# exceptions aren't as detailed. The list call should be roughly
|
||||
# equivalent to the PySequence_Fast that ''.join() would do.
|
||||
chunks = self.iterencode(o, _one_shot=True)
|
||||
if not isinstance(chunks, (list, tuple)):
|
||||
chunks = list(chunks)
|
||||
if self.ensure_ascii:
|
||||
return ''.join(chunks)
|
||||
else:
|
||||
return u''.join(chunks)
|
||||
|
||||
def iterencode(self, o, _one_shot=False):
|
||||
"""Encode the given object and yield each string
|
||||
representation as available.
|
||||
|
||||
For example::
|
||||
|
||||
for chunk in JSONEncoder().iterencode(bigobject):
|
||||
mysocket.write(chunk)
|
||||
|
||||
"""
|
||||
if self.check_circular:
|
||||
markers = {}
|
||||
else:
|
||||
markers = None
|
||||
if self.ensure_ascii:
|
||||
_encoder = encode_basestring_ascii
|
||||
else:
|
||||
_encoder = encode_basestring
|
||||
if self.encoding != 'utf-8':
|
||||
def _encoder(o, _orig_encoder=_encoder, _encoding=self.encoding):
|
||||
if isinstance(o, str):
|
||||
o = o.decode(_encoding)
|
||||
return _orig_encoder(o)
|
||||
|
||||
def floatstr(o, allow_nan=self.allow_nan,
|
||||
_repr=FLOAT_REPR, _inf=PosInf, _neginf=-PosInf):
|
||||
# Check for specials. Note that this type of test is processor
|
||||
# and/or platform-specific, so do tests which don't depend on
|
||||
# the internals.
|
||||
|
||||
if o != o:
|
||||
text = 'NaN'
|
||||
elif o == _inf:
|
||||
text = 'Infinity'
|
||||
elif o == _neginf:
|
||||
text = '-Infinity'
|
||||
else:
|
||||
return _repr(o)
|
||||
|
||||
if not allow_nan:
|
||||
raise ValueError(
|
||||
"Out of range float values are not JSON compliant: " +
|
||||
repr(o))
|
||||
|
||||
return text
|
||||
|
||||
|
||||
key_memo = {}
|
||||
if (_one_shot and c_make_encoder is not None
|
||||
and not self.indent and not self.sort_keys):
|
||||
_iterencode = c_make_encoder(
|
||||
markers, self.default, _encoder, self.indent,
|
||||
self.key_separator, self.item_separator, self.sort_keys,
|
||||
self.skipkeys, self.allow_nan, key_memo, self.use_decimal)
|
||||
else:
|
||||
_iterencode = _make_iterencode(
|
||||
markers, self.default, _encoder, self.indent, floatstr,
|
||||
self.key_separator, self.item_separator, self.sort_keys,
|
||||
self.skipkeys, _one_shot, self.use_decimal)
|
||||
try:
|
||||
return _iterencode(o, 0)
|
||||
finally:
|
||||
key_memo.clear()
|
||||
|
||||
|
||||
class JSONEncoderForHTML(JSONEncoder):
|
||||
"""An encoder that produces JSON safe to embed in HTML.
|
||||
|
||||
To embed JSON content in, say, a script tag on a web page, the
|
||||
characters &, < and > should be escaped. They cannot be escaped
|
||||
with the usual entities (e.g. &) because they are not expanded
|
||||
within <script> tags.
|
||||
"""
|
||||
|
||||
def encode(self, o):
|
||||
# Override JSONEncoder.encode because it has hacks for
|
||||
# performance that make things more complicated.
|
||||
chunks = self.iterencode(o, True)
|
||||
if self.ensure_ascii:
|
||||
return ''.join(chunks)
|
||||
else:
|
||||
return u''.join(chunks)
|
||||
|
||||
def iterencode(self, o, _one_shot=False):
|
||||
chunks = super(JSONEncoderForHTML, self).iterencode(o, _one_shot)
|
||||
for chunk in chunks:
|
||||
chunk = chunk.replace('&', '\\u0026')
|
||||
chunk = chunk.replace('<', '\\u003c')
|
||||
chunk = chunk.replace('>', '\\u003e')
|
||||
yield chunk
|
||||
|
||||
|
||||
def _make_iterencode(markers, _default, _encoder, _indent, _floatstr,
|
||||
_key_separator, _item_separator, _sort_keys, _skipkeys, _one_shot,
|
||||
_use_decimal,
|
||||
## HACK: hand-optimized bytecode; turn globals into locals
|
||||
False=False,
|
||||
True=True,
|
||||
ValueError=ValueError,
|
||||
basestring=basestring,
|
||||
Decimal=Decimal,
|
||||
dict=dict,
|
||||
float=float,
|
||||
id=id,
|
||||
int=int,
|
||||
isinstance=isinstance,
|
||||
list=list,
|
||||
long=long,
|
||||
str=str,
|
||||
tuple=tuple,
|
||||
):
|
||||
|
||||
def _iterencode_list(lst, _current_indent_level):
|
||||
if not lst:
|
||||
yield '[]'
|
||||
return
|
||||
if markers is not None:
|
||||
markerid = id(lst)
|
||||
if markerid in markers:
|
||||
raise ValueError("Circular reference detected")
|
||||
markers[markerid] = lst
|
||||
buf = '['
|
||||
if _indent is not None:
|
||||
_current_indent_level += 1
|
||||
newline_indent = '\n' + (_indent * _current_indent_level)
|
||||
separator = _item_separator + newline_indent
|
||||
buf += newline_indent
|
||||
else:
|
||||
newline_indent = None
|
||||
separator = _item_separator
|
||||
first = True
|
||||
for value in lst:
|
||||
if first:
|
||||
first = False
|
||||
else:
|
||||
buf = separator
|
||||
if isinstance(value, basestring):
|
||||
yield buf + _encoder(value)
|
||||
elif value is None:
|
||||
yield buf + 'null'
|
||||
elif value is True:
|
||||
yield buf + 'true'
|
||||
elif value is False:
|
||||
yield buf + 'false'
|
||||
elif isinstance(value, (int, long)):
|
||||
yield buf + str(value)
|
||||
elif isinstance(value, float):
|
||||
yield buf + _floatstr(value)
|
||||
elif _use_decimal and isinstance(value, Decimal):
|
||||
yield buf + str(value)
|
||||
else:
|
||||
yield buf
|
||||
if isinstance(value, (list, tuple)):
|
||||
chunks = _iterencode_list(value, _current_indent_level)
|
||||
elif isinstance(value, dict):
|
||||
chunks = _iterencode_dict(value, _current_indent_level)
|
||||
else:
|
||||
chunks = _iterencode(value, _current_indent_level)
|
||||
for chunk in chunks:
|
||||
yield chunk
|
||||
if newline_indent is not None:
|
||||
_current_indent_level -= 1
|
||||
yield '\n' + (_indent * _current_indent_level)
|
||||
yield ']'
|
||||
if markers is not None:
|
||||
del markers[markerid]
|
||||
|
||||
def _iterencode_dict(dct, _current_indent_level):
|
||||
if not dct:
|
||||
yield '{}'
|
||||
return
|
||||
if markers is not None:
|
||||
markerid = id(dct)
|
||||
if markerid in markers:
|
||||
raise ValueError("Circular reference detected")
|
||||
markers[markerid] = dct
|
||||
yield '{'
|
||||
if _indent is not None:
|
||||
_current_indent_level += 1
|
||||
newline_indent = '\n' + (_indent * _current_indent_level)
|
||||
item_separator = _item_separator + newline_indent
|
||||
yield newline_indent
|
||||
else:
|
||||
newline_indent = None
|
||||
item_separator = _item_separator
|
||||
first = True
|
||||
if _sort_keys:
|
||||
items = dct.items()
|
||||
items.sort(key=lambda kv: kv[0])
|
||||
else:
|
||||
items = dct.iteritems()
|
||||
for key, value in items:
|
||||
if isinstance(key, basestring):
|
||||
pass
|
||||
# JavaScript is weakly typed for these, so it makes sense to
|
||||
# also allow them. Many encoders seem to do something like this.
|
||||
elif isinstance(key, float):
|
||||
key = _floatstr(key)
|
||||
elif key is True:
|
||||
key = 'true'
|
||||
elif key is False:
|
||||
key = 'false'
|
||||
elif key is None:
|
||||
key = 'null'
|
||||
elif isinstance(key, (int, long)):
|
||||
key = str(key)
|
||||
elif _skipkeys:
|
||||
continue
|
||||
else:
|
||||
raise TypeError("key " + repr(key) + " is not a string")
|
||||
if first:
|
||||
first = False
|
||||
else:
|
||||
yield item_separator
|
||||
yield _encoder(key)
|
||||
yield _key_separator
|
||||
if isinstance(value, basestring):
|
||||
yield _encoder(value)
|
||||
elif value is None:
|
||||
yield 'null'
|
||||
elif value is True:
|
||||
yield 'true'
|
||||
elif value is False:
|
||||
yield 'false'
|
||||
elif isinstance(value, (int, long)):
|
||||
yield str(value)
|
||||
elif isinstance(value, float):
|
||||
yield _floatstr(value)
|
||||
elif _use_decimal and isinstance(value, Decimal):
|
||||
yield str(value)
|
||||
else:
|
||||
if isinstance(value, (list, tuple)):
|
||||
chunks = _iterencode_list(value, _current_indent_level)
|
||||
elif isinstance(value, dict):
|
||||
chunks = _iterencode_dict(value, _current_indent_level)
|
||||
else:
|
||||
chunks = _iterencode(value, _current_indent_level)
|
||||
for chunk in chunks:
|
||||
yield chunk
|
||||
if newline_indent is not None:
|
||||
_current_indent_level -= 1
|
||||
yield '\n' + (_indent * _current_indent_level)
|
||||
yield '}'
|
||||
if markers is not None:
|
||||
del markers[markerid]
|
||||
|
||||
def _iterencode(o, _current_indent_level):
|
||||
if isinstance(o, basestring):
|
||||
yield _encoder(o)
|
||||
elif o is None:
|
||||
yield 'null'
|
||||
elif o is True:
|
||||
yield 'true'
|
||||
elif o is False:
|
||||
yield 'false'
|
||||
elif isinstance(o, (int, long)):
|
||||
yield str(o)
|
||||
elif isinstance(o, float):
|
||||
yield _floatstr(o)
|
||||
elif isinstance(o, (list, tuple)):
|
||||
for chunk in _iterencode_list(o, _current_indent_level):
|
||||
yield chunk
|
||||
elif isinstance(o, dict):
|
||||
for chunk in _iterencode_dict(o, _current_indent_level):
|
||||
yield chunk
|
||||
elif _use_decimal and isinstance(o, Decimal):
|
||||
yield str(o)
|
||||
else:
|
||||
if markers is not None:
|
||||
markerid = id(o)
|
||||
if markerid in markers:
|
||||
raise ValueError("Circular reference detected")
|
||||
markers[markerid] = o
|
||||
o = _default(o)
|
||||
for chunk in _iterencode(o, _current_indent_level):
|
||||
yield chunk
|
||||
if markers is not None:
|
||||
del markers[markerid]
|
||||
|
||||
return _iterencode
|
||||
@@ -1,119 +0,0 @@
|
||||
"""Drop-in replacement for collections.OrderedDict by Raymond Hettinger
|
||||
|
||||
http://code.activestate.com/recipes/576693/
|
||||
|
||||
"""
|
||||
from UserDict import DictMixin
|
||||
|
||||
# Modified from original to support Python 2.4, see
|
||||
# http://code.google.com/p/simplejson/issues/detail?id=53
|
||||
try:
|
||||
all
|
||||
except NameError:
|
||||
def all(seq):
|
||||
for elem in seq:
|
||||
if not elem:
|
||||
return False
|
||||
return True
|
||||
|
||||
class OrderedDict(dict, DictMixin):
|
||||
|
||||
def __init__(self, *args, **kwds):
|
||||
if len(args) > 1:
|
||||
raise TypeError('expected at most 1 arguments, got %d' % len(args))
|
||||
try:
|
||||
self.__end
|
||||
except AttributeError:
|
||||
self.clear()
|
||||
self.update(*args, **kwds)
|
||||
|
||||
def clear(self):
|
||||
self.__end = end = []
|
||||
end += [None, end, end] # sentinel node for doubly linked list
|
||||
self.__map = {} # key --> [key, prev, next]
|
||||
dict.clear(self)
|
||||
|
||||
def __setitem__(self, key, value):
|
||||
if key not in self:
|
||||
end = self.__end
|
||||
curr = end[1]
|
||||
curr[2] = end[1] = self.__map[key] = [key, curr, end]
|
||||
dict.__setitem__(self, key, value)
|
||||
|
||||
def __delitem__(self, key):
|
||||
dict.__delitem__(self, key)
|
||||
key, prev, next = self.__map.pop(key)
|
||||
prev[2] = next
|
||||
next[1] = prev
|
||||
|
||||
def __iter__(self):
|
||||
end = self.__end
|
||||
curr = end[2]
|
||||
while curr is not end:
|
||||
yield curr[0]
|
||||
curr = curr[2]
|
||||
|
||||
def __reversed__(self):
|
||||
end = self.__end
|
||||
curr = end[1]
|
||||
while curr is not end:
|
||||
yield curr[0]
|
||||
curr = curr[1]
|
||||
|
||||
def popitem(self, last=True):
|
||||
if not self:
|
||||
raise KeyError('dictionary is empty')
|
||||
# Modified from original to support Python 2.4, see
|
||||
# http://code.google.com/p/simplejson/issues/detail?id=53
|
||||
if last:
|
||||
key = reversed(self).next()
|
||||
else:
|
||||
key = iter(self).next()
|
||||
value = self.pop(key)
|
||||
return key, value
|
||||
|
||||
def __reduce__(self):
|
||||
items = [[k, self[k]] for k in self]
|
||||
tmp = self.__map, self.__end
|
||||
del self.__map, self.__end
|
||||
inst_dict = vars(self).copy()
|
||||
self.__map, self.__end = tmp
|
||||
if inst_dict:
|
||||
return (self.__class__, (items,), inst_dict)
|
||||
return self.__class__, (items,)
|
||||
|
||||
def keys(self):
|
||||
return list(self)
|
||||
|
||||
setdefault = DictMixin.setdefault
|
||||
update = DictMixin.update
|
||||
pop = DictMixin.pop
|
||||
values = DictMixin.values
|
||||
items = DictMixin.items
|
||||
iterkeys = DictMixin.iterkeys
|
||||
itervalues = DictMixin.itervalues
|
||||
iteritems = DictMixin.iteritems
|
||||
|
||||
def __repr__(self):
|
||||
if not self:
|
||||
return '%s()' % (self.__class__.__name__,)
|
||||
return '%s(%r)' % (self.__class__.__name__, self.items())
|
||||
|
||||
def copy(self):
|
||||
return self.__class__(self)
|
||||
|
||||
@classmethod
|
||||
def fromkeys(cls, iterable, value=None):
|
||||
d = cls()
|
||||
for key in iterable:
|
||||
d[key] = value
|
||||
return d
|
||||
|
||||
def __eq__(self, other):
|
||||
if isinstance(other, OrderedDict):
|
||||
return len(self)==len(other) and \
|
||||
all(p==q for p, q in zip(self.items(), other.items()))
|
||||
return dict.__eq__(self, other)
|
||||
|
||||
def __ne__(self, other):
|
||||
return not self == other
|
||||
@@ -1,77 +0,0 @@
|
||||
"""JSON token scanner
|
||||
"""
|
||||
import re
|
||||
def _import_c_make_scanner():
|
||||
try:
|
||||
from simplejson._speedups import make_scanner
|
||||
return make_scanner
|
||||
except ImportError:
|
||||
return None
|
||||
c_make_scanner = _import_c_make_scanner()
|
||||
|
||||
__all__ = ['make_scanner']
|
||||
|
||||
NUMBER_RE = re.compile(
|
||||
r'(-?(?:0|[1-9]\d*))(\.\d+)?([eE][-+]?\d+)?',
|
||||
(re.VERBOSE | re.MULTILINE | re.DOTALL))
|
||||
|
||||
def py_make_scanner(context):
|
||||
parse_object = context.parse_object
|
||||
parse_array = context.parse_array
|
||||
parse_string = context.parse_string
|
||||
match_number = NUMBER_RE.match
|
||||
encoding = context.encoding
|
||||
strict = context.strict
|
||||
parse_float = context.parse_float
|
||||
parse_int = context.parse_int
|
||||
parse_constant = context.parse_constant
|
||||
object_hook = context.object_hook
|
||||
object_pairs_hook = context.object_pairs_hook
|
||||
memo = context.memo
|
||||
|
||||
def _scan_once(string, idx):
|
||||
try:
|
||||
nextchar = string[idx]
|
||||
except IndexError:
|
||||
raise StopIteration
|
||||
|
||||
if nextchar == '"':
|
||||
return parse_string(string, idx + 1, encoding, strict)
|
||||
elif nextchar == '{':
|
||||
return parse_object((string, idx + 1), encoding, strict,
|
||||
_scan_once, object_hook, object_pairs_hook, memo)
|
||||
elif nextchar == '[':
|
||||
return parse_array((string, idx + 1), _scan_once)
|
||||
elif nextchar == 'n' and string[idx:idx + 4] == 'null':
|
||||
return None, idx + 4
|
||||
elif nextchar == 't' and string[idx:idx + 4] == 'true':
|
||||
return True, idx + 4
|
||||
elif nextchar == 'f' and string[idx:idx + 5] == 'false':
|
||||
return False, idx + 5
|
||||
|
||||
m = match_number(string, idx)
|
||||
if m is not None:
|
||||
integer, frac, exp = m.groups()
|
||||
if frac or exp:
|
||||
res = parse_float(integer + (frac or '') + (exp or ''))
|
||||
else:
|
||||
res = parse_int(integer)
|
||||
return res, m.end()
|
||||
elif nextchar == 'N' and string[idx:idx + 3] == 'NaN':
|
||||
return parse_constant('NaN'), idx + 3
|
||||
elif nextchar == 'I' and string[idx:idx + 8] == 'Infinity':
|
||||
return parse_constant('Infinity'), idx + 8
|
||||
elif nextchar == '-' and string[idx:idx + 9] == '-Infinity':
|
||||
return parse_constant('-Infinity'), idx + 9
|
||||
else:
|
||||
raise StopIteration
|
||||
|
||||
def scan_once(string, idx):
|
||||
try:
|
||||
return _scan_once(string, idx)
|
||||
finally:
|
||||
memo.clear()
|
||||
|
||||
return scan_once
|
||||
|
||||
make_scanner = c_make_scanner or py_make_scanner
|
||||
@@ -1,63 +0,0 @@
|
||||
import unittest
|
||||
import doctest
|
||||
|
||||
|
||||
class OptionalExtensionTestSuite(unittest.TestSuite):
|
||||
def run(self, result):
|
||||
import simplejson
|
||||
run = unittest.TestSuite.run
|
||||
run(self, result)
|
||||
simplejson._toggle_speedups(False)
|
||||
run(self, result)
|
||||
simplejson._toggle_speedups(True)
|
||||
return result
|
||||
|
||||
|
||||
def additional_tests(suite=None):
|
||||
import simplejson
|
||||
import simplejson.encoder
|
||||
import simplejson.decoder
|
||||
if suite is None:
|
||||
suite = unittest.TestSuite()
|
||||
for mod in (simplejson, simplejson.encoder, simplejson.decoder):
|
||||
suite.addTest(doctest.DocTestSuite(mod))
|
||||
suite.addTest(doctest.DocFileSuite('../../index.rst'))
|
||||
return suite
|
||||
|
||||
|
||||
def all_tests_suite():
|
||||
suite = unittest.TestLoader().loadTestsFromNames([
|
||||
'simplejson.tests.test_check_circular',
|
||||
'simplejson.tests.test_decode',
|
||||
'simplejson.tests.test_default',
|
||||
'simplejson.tests.test_dump',
|
||||
'simplejson.tests.test_encode_basestring_ascii',
|
||||
'simplejson.tests.test_encode_for_html',
|
||||
'simplejson.tests.test_fail',
|
||||
'simplejson.tests.test_float',
|
||||
'simplejson.tests.test_indent',
|
||||
'simplejson.tests.test_pass1',
|
||||
'simplejson.tests.test_pass2',
|
||||
'simplejson.tests.test_pass3',
|
||||
'simplejson.tests.test_recursion',
|
||||
'simplejson.tests.test_scanstring',
|
||||
'simplejson.tests.test_separators',
|
||||
'simplejson.tests.test_speedups',
|
||||
'simplejson.tests.test_unicode',
|
||||
'simplejson.tests.test_decimal',
|
||||
])
|
||||
suite = additional_tests(suite)
|
||||
return OptionalExtensionTestSuite([suite])
|
||||
|
||||
|
||||
def main():
|
||||
runner = unittest.TextTestRunner()
|
||||
suite = all_tests_suite()
|
||||
runner.run(suite)
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
import os
|
||||
import sys
|
||||
sys.path.insert(0, os.path.dirname(os.path.dirname(os.path.dirname(os.path.abspath(__file__)))))
|
||||
main()
|
||||
@@ -1,30 +0,0 @@
|
||||
from unittest import TestCase
|
||||
import simplejson as json
|
||||
|
||||
def default_iterable(obj):
|
||||
return list(obj)
|
||||
|
||||
class TestCheckCircular(TestCase):
|
||||
def test_circular_dict(self):
|
||||
dct = {}
|
||||
dct['a'] = dct
|
||||
self.assertRaises(ValueError, json.dumps, dct)
|
||||
|
||||
def test_circular_list(self):
|
||||
lst = []
|
||||
lst.append(lst)
|
||||
self.assertRaises(ValueError, json.dumps, lst)
|
||||
|
||||
def test_circular_composite(self):
|
||||
dct2 = {}
|
||||
dct2['a'] = []
|
||||
dct2['a'].append(dct2)
|
||||
self.assertRaises(ValueError, json.dumps, dct2)
|
||||
|
||||
def test_circular_default(self):
|
||||
json.dumps([set()], default=default_iterable)
|
||||
self.assertRaises(TypeError, json.dumps, [set()])
|
||||
|
||||
def test_circular_off_default(self):
|
||||
json.dumps([set()], default=default_iterable, check_circular=False)
|
||||
self.assertRaises(TypeError, json.dumps, [set()], check_circular=False)
|
||||
@@ -1,33 +0,0 @@
|
||||
from decimal import Decimal
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson as json
|
||||
|
||||
class TestDecimal(TestCase):
|
||||
NUMS = "1.0", "10.00", "1.1", "1234567890.1234567890", "500"
|
||||
def test_decimal_encode(self):
|
||||
for d in map(Decimal, self.NUMS):
|
||||
self.assertEquals(json.dumps(d, use_decimal=True), str(d))
|
||||
|
||||
def test_decimal_decode(self):
|
||||
for s in self.NUMS:
|
||||
self.assertEquals(json.loads(s, parse_float=Decimal), Decimal(s))
|
||||
|
||||
def test_decimal_roundtrip(self):
|
||||
for d in map(Decimal, self.NUMS):
|
||||
# The type might not be the same (int and Decimal) but they
|
||||
# should still compare equal.
|
||||
self.assertEquals(
|
||||
json.loads(
|
||||
json.dumps(d, use_decimal=True), parse_float=Decimal),
|
||||
d)
|
||||
self.assertEquals(
|
||||
json.loads(
|
||||
json.dumps([d], use_decimal=True), parse_float=Decimal),
|
||||
[d])
|
||||
|
||||
def test_decimal_defaults(self):
|
||||
d = Decimal(1)
|
||||
# use_decimal=False is the default
|
||||
self.assertRaises(TypeError, json.dumps, d, use_decimal=False)
|
||||
self.assertRaises(TypeError, json.dumps, d)
|
||||
@@ -1,73 +0,0 @@
|
||||
import decimal
|
||||
from unittest import TestCase
|
||||
from StringIO import StringIO
|
||||
|
||||
import simplejson as json
|
||||
from simplejson import OrderedDict
|
||||
|
||||
class TestDecode(TestCase):
|
||||
if not hasattr(TestCase, 'assertIs'):
|
||||
def assertIs(self, a, b):
|
||||
self.assertTrue(a is b, '%r is %r' % (a, b))
|
||||
|
||||
def test_decimal(self):
|
||||
rval = json.loads('1.1', parse_float=decimal.Decimal)
|
||||
self.assertTrue(isinstance(rval, decimal.Decimal))
|
||||
self.assertEquals(rval, decimal.Decimal('1.1'))
|
||||
|
||||
def test_float(self):
|
||||
rval = json.loads('1', parse_int=float)
|
||||
self.assertTrue(isinstance(rval, float))
|
||||
self.assertEquals(rval, 1.0)
|
||||
|
||||
def test_decoder_optimizations(self):
|
||||
# Several optimizations were made that skip over calls to
|
||||
# the whitespace regex, so this test is designed to try and
|
||||
# exercise the uncommon cases. The array cases are already covered.
|
||||
rval = json.loads('{ "key" : "value" , "k":"v" }')
|
||||
self.assertEquals(rval, {"key":"value", "k":"v"})
|
||||
|
||||
def test_empty_objects(self):
|
||||
s = '{}'
|
||||
self.assertEqual(json.loads(s), eval(s))
|
||||
s = '[]'
|
||||
self.assertEqual(json.loads(s), eval(s))
|
||||
s = '""'
|
||||
self.assertEqual(json.loads(s), eval(s))
|
||||
|
||||
def test_object_pairs_hook(self):
|
||||
s = '{"xkd":1, "kcw":2, "art":3, "hxm":4, "qrt":5, "pad":6, "hoy":7}'
|
||||
p = [("xkd", 1), ("kcw", 2), ("art", 3), ("hxm", 4),
|
||||
("qrt", 5), ("pad", 6), ("hoy", 7)]
|
||||
self.assertEqual(json.loads(s), eval(s))
|
||||
self.assertEqual(json.loads(s, object_pairs_hook=lambda x: x), p)
|
||||
self.assertEqual(json.load(StringIO(s),
|
||||
object_pairs_hook=lambda x: x), p)
|
||||
od = json.loads(s, object_pairs_hook=OrderedDict)
|
||||
self.assertEqual(od, OrderedDict(p))
|
||||
self.assertEqual(type(od), OrderedDict)
|
||||
# the object_pairs_hook takes priority over the object_hook
|
||||
self.assertEqual(json.loads(s,
|
||||
object_pairs_hook=OrderedDict,
|
||||
object_hook=lambda x: None),
|
||||
OrderedDict(p))
|
||||
|
||||
def check_keys_reuse(self, source, loads):
|
||||
rval = loads(source)
|
||||
(a, b), (c, d) = sorted(rval[0]), sorted(rval[1])
|
||||
self.assertIs(a, c)
|
||||
self.assertIs(b, d)
|
||||
|
||||
def test_keys_reuse_str(self):
|
||||
s = u'[{"a_key": 1, "b_\xe9": 2}, {"a_key": 3, "b_\xe9": 4}]'.encode('utf8')
|
||||
self.check_keys_reuse(s, json.loads)
|
||||
|
||||
def test_keys_reuse_unicode(self):
|
||||
s = u'[{"a_key": 1, "b_\xe9": 2}, {"a_key": 3, "b_\xe9": 4}]'
|
||||
self.check_keys_reuse(s, json.loads)
|
||||
|
||||
def test_empty_strings(self):
|
||||
self.assertEqual(json.loads('""'), "")
|
||||
self.assertEqual(json.loads(u'""'), u"")
|
||||
self.assertEqual(json.loads('[""]'), [""])
|
||||
self.assertEqual(json.loads(u'[""]'), [u""])
|
||||
@@ -1,9 +0,0 @@
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson as json
|
||||
|
||||
class TestDefault(TestCase):
|
||||
def test_default(self):
|
||||
self.assertEquals(
|
||||
json.dumps(type, default=repr),
|
||||
json.dumps(repr(type)))
|
||||
@@ -1,27 +0,0 @@
|
||||
from unittest import TestCase
|
||||
from cStringIO import StringIO
|
||||
|
||||
import simplejson as json
|
||||
|
||||
class TestDump(TestCase):
|
||||
def test_dump(self):
|
||||
sio = StringIO()
|
||||
json.dump({}, sio)
|
||||
self.assertEquals(sio.getvalue(), '{}')
|
||||
|
||||
def test_dumps(self):
|
||||
self.assertEquals(json.dumps({}), '{}')
|
||||
|
||||
def test_encode_truefalse(self):
|
||||
self.assertEquals(json.dumps(
|
||||
{True: False, False: True}, sort_keys=True),
|
||||
'{"false": true, "true": false}')
|
||||
self.assertEquals(json.dumps(
|
||||
{2: 3.0, 4.0: 5L, False: 1, 6L: True, "7": 0}, sort_keys=True),
|
||||
'{"false": 1, "2": 3.0, "4.0": 5, "6": true, "7": 0}')
|
||||
|
||||
def test_ordered_dict(self):
|
||||
# http://bugs.python.org/issue6105
|
||||
items = [('one', 1), ('two', 2), ('three', 3), ('four', 4), ('five', 5)]
|
||||
s = json.dumps(json.OrderedDict(items))
|
||||
self.assertEqual(s, '{"one": 1, "two": 2, "three": 3, "four": 4, "five": 5}')
|
||||
@@ -1,41 +0,0 @@
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson.encoder
|
||||
|
||||
CASES = [
|
||||
(u'/\\"\ucafe\ubabe\uab98\ufcde\ubcda\uef4a\x08\x0c\n\r\t`1~!@#$%^&*()_+-=[]{}|;:\',./<>?', '"/\\\\\\"\\ucafe\\ubabe\\uab98\\ufcde\\ubcda\\uef4a\\b\\f\\n\\r\\t`1~!@#$%^&*()_+-=[]{}|;:\',./<>?"'),
|
||||
(u'\u0123\u4567\u89ab\ucdef\uabcd\uef4a', '"\\u0123\\u4567\\u89ab\\ucdef\\uabcd\\uef4a"'),
|
||||
(u'controls', '"controls"'),
|
||||
(u'\x08\x0c\n\r\t', '"\\b\\f\\n\\r\\t"'),
|
||||
(u'{"object with 1 member":["array with 1 element"]}', '"{\\"object with 1 member\\":[\\"array with 1 element\\"]}"'),
|
||||
(u' s p a c e d ', '" s p a c e d "'),
|
||||
(u'\U0001d120', '"\\ud834\\udd20"'),
|
||||
(u'\u03b1\u03a9', '"\\u03b1\\u03a9"'),
|
||||
('\xce\xb1\xce\xa9', '"\\u03b1\\u03a9"'),
|
||||
(u'\u03b1\u03a9', '"\\u03b1\\u03a9"'),
|
||||
('\xce\xb1\xce\xa9', '"\\u03b1\\u03a9"'),
|
||||
(u'\u03b1\u03a9', '"\\u03b1\\u03a9"'),
|
||||
(u'\u03b1\u03a9', '"\\u03b1\\u03a9"'),
|
||||
(u"`1~!@#$%^&*()_+-={':[,]}|;.</>?", '"`1~!@#$%^&*()_+-={\':[,]}|;.</>?"'),
|
||||
(u'\x08\x0c\n\r\t', '"\\b\\f\\n\\r\\t"'),
|
||||
(u'\u0123\u4567\u89ab\ucdef\uabcd\uef4a', '"\\u0123\\u4567\\u89ab\\ucdef\\uabcd\\uef4a"'),
|
||||
]
|
||||
|
||||
class TestEncodeBaseStringAscii(TestCase):
|
||||
def test_py_encode_basestring_ascii(self):
|
||||
self._test_encode_basestring_ascii(simplejson.encoder.py_encode_basestring_ascii)
|
||||
|
||||
def test_c_encode_basestring_ascii(self):
|
||||
if not simplejson.encoder.c_encode_basestring_ascii:
|
||||
return
|
||||
self._test_encode_basestring_ascii(simplejson.encoder.c_encode_basestring_ascii)
|
||||
|
||||
def _test_encode_basestring_ascii(self, encode_basestring_ascii):
|
||||
fname = encode_basestring_ascii.__name__
|
||||
for input_string, expect in CASES:
|
||||
result = encode_basestring_ascii(input_string)
|
||||
#self.assertEquals(result, expect,
|
||||
# '{0!r} != {1!r} for {2}({3!r})'.format(
|
||||
# result, expect, fname, input_string))
|
||||
self.assertEquals(result, expect,
|
||||
'%r != %r for %s(%r)' % (result, expect, fname, input_string))
|
||||
@@ -1,32 +0,0 @@
|
||||
import unittest
|
||||
|
||||
import simplejson.decoder
|
||||
import simplejson.encoder
|
||||
|
||||
|
||||
class TestEncodeForHTML(unittest.TestCase):
|
||||
|
||||
def setUp(self):
|
||||
self.decoder = simplejson.decoder.JSONDecoder()
|
||||
self.encoder = simplejson.encoder.JSONEncoderForHTML()
|
||||
|
||||
def test_basic_encode(self):
|
||||
self.assertEqual(r'"\u0026"', self.encoder.encode('&'))
|
||||
self.assertEqual(r'"\u003c"', self.encoder.encode('<'))
|
||||
self.assertEqual(r'"\u003e"', self.encoder.encode('>'))
|
||||
|
||||
def test_basic_roundtrip(self):
|
||||
for char in '&<>':
|
||||
self.assertEqual(
|
||||
char, self.decoder.decode(
|
||||
self.encoder.encode(char)))
|
||||
|
||||
def test_prevent_script_breakout(self):
|
||||
bad_string = '</script><script>alert("gotcha")</script>'
|
||||
self.assertEqual(
|
||||
r'"\u003c/script\u003e\u003cscript\u003e'
|
||||
r'alert(\"gotcha\")\u003c/script\u003e"',
|
||||
self.encoder.encode(bad_string))
|
||||
self.assertEqual(
|
||||
bad_string, self.decoder.decode(
|
||||
self.encoder.encode(bad_string)))
|
||||
@@ -1,91 +0,0 @@
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson as json
|
||||
|
||||
# Fri Dec 30 18:57:26 2005
|
||||
JSONDOCS = [
|
||||
# http://json.org/JSON_checker/test/fail1.json
|
||||
'"A JSON payload should be an object or array, not a string."',
|
||||
# http://json.org/JSON_checker/test/fail2.json
|
||||
'["Unclosed array"',
|
||||
# http://json.org/JSON_checker/test/fail3.json
|
||||
'{unquoted_key: "keys must be quoted}',
|
||||
# http://json.org/JSON_checker/test/fail4.json
|
||||
'["extra comma",]',
|
||||
# http://json.org/JSON_checker/test/fail5.json
|
||||
'["double extra comma",,]',
|
||||
# http://json.org/JSON_checker/test/fail6.json
|
||||
'[ , "<-- missing value"]',
|
||||
# http://json.org/JSON_checker/test/fail7.json
|
||||
'["Comma after the close"],',
|
||||
# http://json.org/JSON_checker/test/fail8.json
|
||||
'["Extra close"]]',
|
||||
# http://json.org/JSON_checker/test/fail9.json
|
||||
'{"Extra comma": true,}',
|
||||
# http://json.org/JSON_checker/test/fail10.json
|
||||
'{"Extra value after close": true} "misplaced quoted value"',
|
||||
# http://json.org/JSON_checker/test/fail11.json
|
||||
'{"Illegal expression": 1 + 2}',
|
||||
# http://json.org/JSON_checker/test/fail12.json
|
||||
'{"Illegal invocation": alert()}',
|
||||
# http://json.org/JSON_checker/test/fail13.json
|
||||
'{"Numbers cannot have leading zeroes": 013}',
|
||||
# http://json.org/JSON_checker/test/fail14.json
|
||||
'{"Numbers cannot be hex": 0x14}',
|
||||
# http://json.org/JSON_checker/test/fail15.json
|
||||
'["Illegal backslash escape: \\x15"]',
|
||||
# http://json.org/JSON_checker/test/fail16.json
|
||||
'["Illegal backslash escape: \\\'"]',
|
||||
# http://json.org/JSON_checker/test/fail17.json
|
||||
'["Illegal backslash escape: \\017"]',
|
||||
# http://json.org/JSON_checker/test/fail18.json
|
||||
'[[[[[[[[[[[[[[[[[[[["Too deep"]]]]]]]]]]]]]]]]]]]]',
|
||||
# http://json.org/JSON_checker/test/fail19.json
|
||||
'{"Missing colon" null}',
|
||||
# http://json.org/JSON_checker/test/fail20.json
|
||||
'{"Double colon":: null}',
|
||||
# http://json.org/JSON_checker/test/fail21.json
|
||||
'{"Comma instead of colon", null}',
|
||||
# http://json.org/JSON_checker/test/fail22.json
|
||||
'["Colon instead of comma": false]',
|
||||
# http://json.org/JSON_checker/test/fail23.json
|
||||
'["Bad value", truth]',
|
||||
# http://json.org/JSON_checker/test/fail24.json
|
||||
"['single quote']",
|
||||
# http://code.google.com/p/simplejson/issues/detail?id=3
|
||||
u'["A\u001FZ control characters in string"]',
|
||||
]
|
||||
|
||||
SKIPS = {
|
||||
1: "why not have a string payload?",
|
||||
18: "spec doesn't specify any nesting limitations",
|
||||
}
|
||||
|
||||
class TestFail(TestCase):
|
||||
def test_failures(self):
|
||||
for idx, doc in enumerate(JSONDOCS):
|
||||
idx = idx + 1
|
||||
if idx in SKIPS:
|
||||
json.loads(doc)
|
||||
continue
|
||||
try:
|
||||
json.loads(doc)
|
||||
except json.JSONDecodeError:
|
||||
pass
|
||||
else:
|
||||
#self.fail("Expected failure for fail{0}.json: {1!r}".format(idx, doc))
|
||||
self.fail("Expected failure for fail%d.json: %r" % (idx, doc))
|
||||
|
||||
def test_array_decoder_issue46(self):
|
||||
# http://code.google.com/p/simplejson/issues/detail?id=46
|
||||
for doc in [u'[,]', '[,]']:
|
||||
try:
|
||||
json.loads(doc)
|
||||
except json.JSONDecodeError, e:
|
||||
self.assertEquals(e.pos, 1)
|
||||
self.assertEquals(e.lineno, 1)
|
||||
self.assertEquals(e.colno, 1)
|
||||
except Exception, e:
|
||||
self.fail("Unexpected exception raised %r %s" % (e, e))
|
||||
else:
|
||||
self.fail("Unexpected success parsing '[,]'")
|
||||
@@ -1,19 +0,0 @@
|
||||
import math
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson as json
|
||||
|
||||
class TestFloat(TestCase):
|
||||
def test_floats(self):
|
||||
for num in [1617161771.7650001, math.pi, math.pi**100,
|
||||
math.pi**-100, 3.1]:
|
||||
self.assertEquals(float(json.dumps(num)), num)
|
||||
self.assertEquals(json.loads(json.dumps(num)), num)
|
||||
self.assertEquals(json.loads(unicode(json.dumps(num))), num)
|
||||
|
||||
def test_ints(self):
|
||||
for num in [1, 1L, 1<<32, 1<<64]:
|
||||
self.assertEquals(json.dumps(num), str(num))
|
||||
self.assertEquals(int(json.dumps(num)), num)
|
||||
self.assertEquals(json.loads(json.dumps(num)), num)
|
||||
self.assertEquals(json.loads(unicode(json.dumps(num))), num)
|
||||
@@ -1,53 +0,0 @@
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson as json
|
||||
import textwrap
|
||||
|
||||
class TestIndent(TestCase):
|
||||
def test_indent(self):
|
||||
h = [['blorpie'], ['whoops'], [], 'd-shtaeou', 'd-nthiouh',
|
||||
'i-vhbjkhnth',
|
||||
{'nifty': 87}, {'field': 'yes', 'morefield': False} ]
|
||||
|
||||
expect = textwrap.dedent("""\
|
||||
[
|
||||
\t[
|
||||
\t\t"blorpie"
|
||||
\t],
|
||||
\t[
|
||||
\t\t"whoops"
|
||||
\t],
|
||||
\t[],
|
||||
\t"d-shtaeou",
|
||||
\t"d-nthiouh",
|
||||
\t"i-vhbjkhnth",
|
||||
\t{
|
||||
\t\t"nifty": 87
|
||||
\t},
|
||||
\t{
|
||||
\t\t"field": "yes",
|
||||
\t\t"morefield": false
|
||||
\t}
|
||||
]""")
|
||||
|
||||
|
||||
d1 = json.dumps(h)
|
||||
d2 = json.dumps(h, indent='\t', sort_keys=True, separators=(',', ': '))
|
||||
d3 = json.dumps(h, indent=' ', sort_keys=True, separators=(',', ': '))
|
||||
d4 = json.dumps(h, indent=2, sort_keys=True, separators=(',', ': '))
|
||||
|
||||
h1 = json.loads(d1)
|
||||
h2 = json.loads(d2)
|
||||
h3 = json.loads(d3)
|
||||
h4 = json.loads(d4)
|
||||
|
||||
self.assertEquals(h1, h)
|
||||
self.assertEquals(h2, h)
|
||||
self.assertEquals(h3, h)
|
||||
self.assertEquals(h4, h)
|
||||
self.assertEquals(d3, expect.replace('\t', ' '))
|
||||
self.assertEquals(d4, expect.replace('\t', ' '))
|
||||
# NOTE: Python 2.4 textwrap.dedent converts tabs to spaces,
|
||||
# so the following is expected to fail. Python 2.4 is not a
|
||||
# supported platform in simplejson 2.1.0+.
|
||||
self.assertEquals(d2, expect)
|
||||
@@ -1,76 +0,0 @@
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson as json
|
||||
|
||||
# from http://json.org/JSON_checker/test/pass1.json
|
||||
JSON = r'''
|
||||
[
|
||||
"JSON Test Pattern pass1",
|
||||
{"object with 1 member":["array with 1 element"]},
|
||||
{},
|
||||
[],
|
||||
-42,
|
||||
true,
|
||||
false,
|
||||
null,
|
||||
{
|
||||
"integer": 1234567890,
|
||||
"real": -9876.543210,
|
||||
"e": 0.123456789e-12,
|
||||
"E": 1.234567890E+34,
|
||||
"": 23456789012E666,
|
||||
"zero": 0,
|
||||
"one": 1,
|
||||
"space": " ",
|
||||
"quote": "\"",
|
||||
"backslash": "\\",
|
||||
"controls": "\b\f\n\r\t",
|
||||
"slash": "/ & \/",
|
||||
"alpha": "abcdefghijklmnopqrstuvwyz",
|
||||
"ALPHA": "ABCDEFGHIJKLMNOPQRSTUVWYZ",
|
||||
"digit": "0123456789",
|
||||
"special": "`1~!@#$%^&*()_+-={':[,]}|;.</>?",
|
||||
"hex": "\u0123\u4567\u89AB\uCDEF\uabcd\uef4A",
|
||||
"true": true,
|
||||
"false": false,
|
||||
"null": null,
|
||||
"array":[ ],
|
||||
"object":{ },
|
||||
"address": "50 St. James Street",
|
||||
"url": "http://www.JSON.org/",
|
||||
"comment": "// /* <!-- --",
|
||||
"# -- --> */": " ",
|
||||
" s p a c e d " :[1,2 , 3
|
||||
|
||||
,
|
||||
|
||||
4 , 5 , 6 ,7 ],
|
||||
"compact": [1,2,3,4,5,6,7],
|
||||
"jsontext": "{\"object with 1 member\":[\"array with 1 element\"]}",
|
||||
"quotes": "" \u0022 %22 0x22 034 "",
|
||||
"\/\\\"\uCAFE\uBABE\uAB98\uFCDE\ubcda\uef4A\b\f\n\r\t`1~!@#$%^&*()_+-=[]{}|;:',./<>?"
|
||||
: "A key can be any string"
|
||||
},
|
||||
0.5 ,98.6
|
||||
,
|
||||
99.44
|
||||
,
|
||||
|
||||
1066
|
||||
|
||||
|
||||
,"rosebud"]
|
||||
'''
|
||||
|
||||
class TestPass1(TestCase):
|
||||
def test_parse(self):
|
||||
# test in/out equivalence and parsing
|
||||
res = json.loads(JSON)
|
||||
out = json.dumps(res)
|
||||
self.assertEquals(res, json.loads(out))
|
||||
try:
|
||||
json.dumps(res, allow_nan=False)
|
||||
except ValueError:
|
||||
pass
|
||||
else:
|
||||
self.fail("23456789012E666 should be out of range")
|
||||
@@ -1,14 +0,0 @@
|
||||
from unittest import TestCase
|
||||
import simplejson as json
|
||||
|
||||
# from http://json.org/JSON_checker/test/pass2.json
|
||||
JSON = r'''
|
||||
[[[[[[[[[[[[[[[[[[["Not too deep"]]]]]]]]]]]]]]]]]]]
|
||||
'''
|
||||
|
||||
class TestPass2(TestCase):
|
||||
def test_parse(self):
|
||||
# test in/out equivalence and parsing
|
||||
res = json.loads(JSON)
|
||||
out = json.dumps(res)
|
||||
self.assertEquals(res, json.loads(out))
|
||||
@@ -1,20 +0,0 @@
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson as json
|
||||
|
||||
# from http://json.org/JSON_checker/test/pass3.json
|
||||
JSON = r'''
|
||||
{
|
||||
"JSON Test Pattern pass3": {
|
||||
"The outermost value": "must be an object or array.",
|
||||
"In this test": "It is an object."
|
||||
}
|
||||
}
|
||||
'''
|
||||
|
||||
class TestPass3(TestCase):
|
||||
def test_parse(self):
|
||||
# test in/out equivalence and parsing
|
||||
res = json.loads(JSON)
|
||||
out = json.dumps(res)
|
||||
self.assertEquals(res, json.loads(out))
|
||||
@@ -1,67 +0,0 @@
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson as json
|
||||
|
||||
class JSONTestObject:
|
||||
pass
|
||||
|
||||
|
||||
class RecursiveJSONEncoder(json.JSONEncoder):
|
||||
recurse = False
|
||||
def default(self, o):
|
||||
if o is JSONTestObject:
|
||||
if self.recurse:
|
||||
return [JSONTestObject]
|
||||
else:
|
||||
return 'JSONTestObject'
|
||||
return json.JSONEncoder.default(o)
|
||||
|
||||
|
||||
class TestRecursion(TestCase):
|
||||
def test_listrecursion(self):
|
||||
x = []
|
||||
x.append(x)
|
||||
try:
|
||||
json.dumps(x)
|
||||
except ValueError:
|
||||
pass
|
||||
else:
|
||||
self.fail("didn't raise ValueError on list recursion")
|
||||
x = []
|
||||
y = [x]
|
||||
x.append(y)
|
||||
try:
|
||||
json.dumps(x)
|
||||
except ValueError:
|
||||
pass
|
||||
else:
|
||||
self.fail("didn't raise ValueError on alternating list recursion")
|
||||
y = []
|
||||
x = [y, y]
|
||||
# ensure that the marker is cleared
|
||||
json.dumps(x)
|
||||
|
||||
def test_dictrecursion(self):
|
||||
x = {}
|
||||
x["test"] = x
|
||||
try:
|
||||
json.dumps(x)
|
||||
except ValueError:
|
||||
pass
|
||||
else:
|
||||
self.fail("didn't raise ValueError on dict recursion")
|
||||
x = {}
|
||||
y = {"a": x, "b": x}
|
||||
# ensure that the marker is cleared
|
||||
json.dumps(x)
|
||||
|
||||
def test_defaultrecursion(self):
|
||||
enc = RecursiveJSONEncoder()
|
||||
self.assertEquals(enc.encode(JSONTestObject), '"JSONTestObject"')
|
||||
enc.recurse = True
|
||||
try:
|
||||
enc.encode(JSONTestObject)
|
||||
except ValueError:
|
||||
pass
|
||||
else:
|
||||
self.fail("didn't raise ValueError on default recursion")
|
||||
@@ -1,117 +0,0 @@
|
||||
import sys
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson as json
|
||||
import simplejson.decoder
|
||||
|
||||
class TestScanString(TestCase):
|
||||
def test_py_scanstring(self):
|
||||
self._test_scanstring(simplejson.decoder.py_scanstring)
|
||||
|
||||
def test_c_scanstring(self):
|
||||
if not simplejson.decoder.c_scanstring:
|
||||
return
|
||||
self._test_scanstring(simplejson.decoder.c_scanstring)
|
||||
|
||||
def _test_scanstring(self, scanstring):
|
||||
self.assertEquals(
|
||||
scanstring('"z\\ud834\\udd20x"', 1, None, True),
|
||||
(u'z\U0001d120x', 16))
|
||||
|
||||
if sys.maxunicode == 65535:
|
||||
self.assertEquals(
|
||||
scanstring(u'"z\U0001d120x"', 1, None, True),
|
||||
(u'z\U0001d120x', 6))
|
||||
else:
|
||||
self.assertEquals(
|
||||
scanstring(u'"z\U0001d120x"', 1, None, True),
|
||||
(u'z\U0001d120x', 5))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('"\\u007b"', 1, None, True),
|
||||
(u'{', 8))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('"A JSON payload should be an object or array, not a string."', 1, None, True),
|
||||
(u'A JSON payload should be an object or array, not a string.', 60))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('["Unclosed array"', 2, None, True),
|
||||
(u'Unclosed array', 17))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('["extra comma",]', 2, None, True),
|
||||
(u'extra comma', 14))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('["double extra comma",,]', 2, None, True),
|
||||
(u'double extra comma', 21))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('["Comma after the close"],', 2, None, True),
|
||||
(u'Comma after the close', 24))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('["Extra close"]]', 2, None, True),
|
||||
(u'Extra close', 14))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('{"Extra comma": true,}', 2, None, True),
|
||||
(u'Extra comma', 14))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('{"Extra value after close": true} "misplaced quoted value"', 2, None, True),
|
||||
(u'Extra value after close', 26))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('{"Illegal expression": 1 + 2}', 2, None, True),
|
||||
(u'Illegal expression', 21))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('{"Illegal invocation": alert()}', 2, None, True),
|
||||
(u'Illegal invocation', 21))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('{"Numbers cannot have leading zeroes": 013}', 2, None, True),
|
||||
(u'Numbers cannot have leading zeroes', 37))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('{"Numbers cannot be hex": 0x14}', 2, None, True),
|
||||
(u'Numbers cannot be hex', 24))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('[[[[[[[[[[[[[[[[[[[["Too deep"]]]]]]]]]]]]]]]]]]]]', 21, None, True),
|
||||
(u'Too deep', 30))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('{"Missing colon" null}', 2, None, True),
|
||||
(u'Missing colon', 16))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('{"Double colon":: null}', 2, None, True),
|
||||
(u'Double colon', 15))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('{"Comma instead of colon", null}', 2, None, True),
|
||||
(u'Comma instead of colon', 25))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('["Colon instead of comma": false]', 2, None, True),
|
||||
(u'Colon instead of comma', 25))
|
||||
|
||||
self.assertEquals(
|
||||
scanstring('["Bad value", truth]', 2, None, True),
|
||||
(u'Bad value', 12))
|
||||
|
||||
def test_issue3623(self):
|
||||
self.assertRaises(ValueError, json.decoder.scanstring, "xxx", 1,
|
||||
"xxx")
|
||||
self.assertRaises(UnicodeDecodeError,
|
||||
json.encoder.encode_basestring_ascii, "xx\xff")
|
||||
|
||||
def test_overflow(self):
|
||||
# Python 2.5 does not have maxsize
|
||||
maxsize = getattr(sys, 'maxsize', sys.maxint)
|
||||
self.assertRaises(OverflowError, json.decoder.scanstring, "xxx",
|
||||
maxsize + 1)
|
||||
|
||||
@@ -1,42 +0,0 @@
|
||||
import textwrap
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson as json
|
||||
|
||||
|
||||
class TestSeparators(TestCase):
|
||||
def test_separators(self):
|
||||
h = [['blorpie'], ['whoops'], [], 'd-shtaeou', 'd-nthiouh', 'i-vhbjkhnth',
|
||||
{'nifty': 87}, {'field': 'yes', 'morefield': False} ]
|
||||
|
||||
expect = textwrap.dedent("""\
|
||||
[
|
||||
[
|
||||
"blorpie"
|
||||
] ,
|
||||
[
|
||||
"whoops"
|
||||
] ,
|
||||
[] ,
|
||||
"d-shtaeou" ,
|
||||
"d-nthiouh" ,
|
||||
"i-vhbjkhnth" ,
|
||||
{
|
||||
"nifty" : 87
|
||||
} ,
|
||||
{
|
||||
"field" : "yes" ,
|
||||
"morefield" : false
|
||||
}
|
||||
]""")
|
||||
|
||||
|
||||
d1 = json.dumps(h)
|
||||
d2 = json.dumps(h, indent=' ', sort_keys=True, separators=(' ,', ' : '))
|
||||
|
||||
h1 = json.loads(d1)
|
||||
h2 = json.loads(d2)
|
||||
|
||||
self.assertEquals(h1, h)
|
||||
self.assertEquals(h2, h)
|
||||
self.assertEquals(d2, expect)
|
||||
@@ -1,21 +0,0 @@
|
||||
import decimal
|
||||
from unittest import TestCase
|
||||
|
||||
from simplejson import decoder, encoder, scanner
|
||||
|
||||
def has_speedups():
|
||||
return encoder.c_make_encoder is not None
|
||||
|
||||
class TestDecode(TestCase):
|
||||
def test_make_scanner(self):
|
||||
if not has_speedups():
|
||||
return
|
||||
self.assertRaises(AttributeError, scanner.c_make_scanner, 1)
|
||||
|
||||
def test_make_encoder(self):
|
||||
if not has_speedups():
|
||||
return
|
||||
self.assertRaises(TypeError, encoder.c_make_encoder,
|
||||
None,
|
||||
"\xCD\x7D\x3D\x4E\x12\x4C\xF9\x79\xD7\x52\xBA\x82\xF2\x27\x4A\x7D\xA0\xCA\x75",
|
||||
None)
|
||||
@@ -1,99 +0,0 @@
|
||||
from unittest import TestCase
|
||||
|
||||
import simplejson as json
|
||||
|
||||
class TestUnicode(TestCase):
|
||||
def test_encoding1(self):
|
||||
encoder = json.JSONEncoder(encoding='utf-8')
|
||||
u = u'\N{GREEK SMALL LETTER ALPHA}\N{GREEK CAPITAL LETTER OMEGA}'
|
||||
s = u.encode('utf-8')
|
||||
ju = encoder.encode(u)
|
||||
js = encoder.encode(s)
|
||||
self.assertEquals(ju, js)
|
||||
|
||||
def test_encoding2(self):
|
||||
u = u'\N{GREEK SMALL LETTER ALPHA}\N{GREEK CAPITAL LETTER OMEGA}'
|
||||
s = u.encode('utf-8')
|
||||
ju = json.dumps(u, encoding='utf-8')
|
||||
js = json.dumps(s, encoding='utf-8')
|
||||
self.assertEquals(ju, js)
|
||||
|
||||
def test_encoding3(self):
|
||||
u = u'\N{GREEK SMALL LETTER ALPHA}\N{GREEK CAPITAL LETTER OMEGA}'
|
||||
j = json.dumps(u)
|
||||
self.assertEquals(j, '"\\u03b1\\u03a9"')
|
||||
|
||||
def test_encoding4(self):
|
||||
u = u'\N{GREEK SMALL LETTER ALPHA}\N{GREEK CAPITAL LETTER OMEGA}'
|
||||
j = json.dumps([u])
|
||||
self.assertEquals(j, '["\\u03b1\\u03a9"]')
|
||||
|
||||
def test_encoding5(self):
|
||||
u = u'\N{GREEK SMALL LETTER ALPHA}\N{GREEK CAPITAL LETTER OMEGA}'
|
||||
j = json.dumps(u, ensure_ascii=False)
|
||||
self.assertEquals(j, u'"' + u + u'"')
|
||||
|
||||
def test_encoding6(self):
|
||||
u = u'\N{GREEK SMALL LETTER ALPHA}\N{GREEK CAPITAL LETTER OMEGA}'
|
||||
j = json.dumps([u], ensure_ascii=False)
|
||||
self.assertEquals(j, u'["' + u + u'"]')
|
||||
|
||||
def test_big_unicode_encode(self):
|
||||
u = u'\U0001d120'
|
||||
self.assertEquals(json.dumps(u), '"\\ud834\\udd20"')
|
||||
self.assertEquals(json.dumps(u, ensure_ascii=False), u'"\U0001d120"')
|
||||
|
||||
def test_big_unicode_decode(self):
|
||||
u = u'z\U0001d120x'
|
||||
self.assertEquals(json.loads('"' + u + '"'), u)
|
||||
self.assertEquals(json.loads('"z\\ud834\\udd20x"'), u)
|
||||
|
||||
def test_unicode_decode(self):
|
||||
for i in range(0, 0xd7ff):
|
||||
u = unichr(i)
|
||||
#s = '"\\u{0:04x}"'.format(i)
|
||||
s = '"\\u%04x"' % (i,)
|
||||
self.assertEquals(json.loads(s), u)
|
||||
|
||||
def test_object_pairs_hook_with_unicode(self):
|
||||
s = u'{"xkd":1, "kcw":2, "art":3, "hxm":4, "qrt":5, "pad":6, "hoy":7}'
|
||||
p = [(u"xkd", 1), (u"kcw", 2), (u"art", 3), (u"hxm", 4),
|
||||
(u"qrt", 5), (u"pad", 6), (u"hoy", 7)]
|
||||
self.assertEqual(json.loads(s), eval(s))
|
||||
self.assertEqual(json.loads(s, object_pairs_hook=lambda x: x), p)
|
||||
od = json.loads(s, object_pairs_hook=json.OrderedDict)
|
||||
self.assertEqual(od, json.OrderedDict(p))
|
||||
self.assertEqual(type(od), json.OrderedDict)
|
||||
# the object_pairs_hook takes priority over the object_hook
|
||||
self.assertEqual(json.loads(s,
|
||||
object_pairs_hook=json.OrderedDict,
|
||||
object_hook=lambda x: None),
|
||||
json.OrderedDict(p))
|
||||
|
||||
|
||||
def test_default_encoding(self):
|
||||
self.assertEquals(json.loads(u'{"a": "\xe9"}'.encode('utf-8')),
|
||||
{'a': u'\xe9'})
|
||||
|
||||
def test_unicode_preservation(self):
|
||||
self.assertEquals(type(json.loads(u'""')), unicode)
|
||||
self.assertEquals(type(json.loads(u'"a"')), unicode)
|
||||
self.assertEquals(type(json.loads(u'["a"]')[0]), unicode)
|
||||
|
||||
def test_ensure_ascii_false_returns_unicode(self):
|
||||
# http://code.google.com/p/simplejson/issues/detail?id=48
|
||||
self.assertEquals(type(json.dumps([], ensure_ascii=False)), unicode)
|
||||
self.assertEquals(type(json.dumps(0, ensure_ascii=False)), unicode)
|
||||
self.assertEquals(type(json.dumps({}, ensure_ascii=False)), unicode)
|
||||
self.assertEquals(type(json.dumps("", ensure_ascii=False)), unicode)
|
||||
|
||||
def test_ensure_ascii_false_bytestring_encoding(self):
|
||||
# http://code.google.com/p/simplejson/issues/detail?id=48
|
||||
doc1 = {u'quux': 'Arr\xc3\xaat sur images'}
|
||||
doc2 = {u'quux': u'Arr\xeat sur images'}
|
||||
doc_ascii = '{"quux": "Arr\\u00eat sur images"}'
|
||||
doc_unicode = u'{"quux": "Arr\xeat sur images"}'
|
||||
self.assertEquals(json.dumps(doc1), doc_ascii)
|
||||
self.assertEquals(json.dumps(doc2), doc_ascii)
|
||||
self.assertEquals(json.dumps(doc1, ensure_ascii=False), doc_unicode)
|
||||
self.assertEquals(json.dumps(doc2, ensure_ascii=False), doc_unicode)
|
||||
@@ -1,39 +0,0 @@
|
||||
r"""Command-line tool to validate and pretty-print JSON
|
||||
|
||||
Usage::
|
||||
|
||||
$ echo '{"json":"obj"}' | python -m simplejson.tool
|
||||
{
|
||||
"json": "obj"
|
||||
}
|
||||
$ echo '{ 1.2:3.4}' | python -m simplejson.tool
|
||||
Expecting property name: line 1 column 2 (char 2)
|
||||
|
||||
"""
|
||||
import sys
|
||||
import simplejson as json
|
||||
|
||||
def main():
|
||||
if len(sys.argv) == 1:
|
||||
infile = sys.stdin
|
||||
outfile = sys.stdout
|
||||
elif len(sys.argv) == 2:
|
||||
infile = open(sys.argv[1], 'rb')
|
||||
outfile = sys.stdout
|
||||
elif len(sys.argv) == 3:
|
||||
infile = open(sys.argv[1], 'rb')
|
||||
outfile = open(sys.argv[2], 'wb')
|
||||
else:
|
||||
raise SystemExit(sys.argv[0] + " [infile [outfile]]")
|
||||
try:
|
||||
obj = json.load(infile,
|
||||
object_pairs_hook=json.OrderedDict,
|
||||
use_decimal=True)
|
||||
except ValueError, e:
|
||||
raise SystemExit(e)
|
||||
json.dump(obj, outfile, sort_keys=True, indent=' ', use_decimal=True)
|
||||
outfile.write('\n')
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
||||
@@ -1,288 +0,0 @@
|
||||
|
||||
from error import *
|
||||
|
||||
from tokens import *
|
||||
from events import *
|
||||
from nodes import *
|
||||
|
||||
from loader import *
|
||||
from dumper import *
|
||||
|
||||
__version__ = '3.09'
|
||||
|
||||
try:
|
||||
from cyaml import *
|
||||
__with_libyaml__ = True
|
||||
except ImportError:
|
||||
__with_libyaml__ = False
|
||||
|
||||
def scan(stream, Loader=Loader):
|
||||
"""
|
||||
Scan a YAML stream and produce scanning tokens.
|
||||
"""
|
||||
loader = Loader(stream)
|
||||
while loader.check_token():
|
||||
yield loader.get_token()
|
||||
|
||||
def parse(stream, Loader=Loader):
|
||||
"""
|
||||
Parse a YAML stream and produce parsing events.
|
||||
"""
|
||||
loader = Loader(stream)
|
||||
while loader.check_event():
|
||||
yield loader.get_event()
|
||||
|
||||
def compose(stream, Loader=Loader):
|
||||
"""
|
||||
Parse the first YAML document in a stream
|
||||
and produce the corresponding representation tree.
|
||||
"""
|
||||
loader = Loader(stream)
|
||||
return loader.get_single_node()
|
||||
|
||||
def compose_all(stream, Loader=Loader):
|
||||
"""
|
||||
Parse all YAML documents in a stream
|
||||
and produce corresponding representation trees.
|
||||
"""
|
||||
loader = Loader(stream)
|
||||
while loader.check_node():
|
||||
yield loader.get_node()
|
||||
|
||||
def load(stream, Loader=Loader):
|
||||
"""
|
||||
Parse the first YAML document in a stream
|
||||
and produce the corresponding Python object.
|
||||
"""
|
||||
loader = Loader(stream)
|
||||
return loader.get_single_data()
|
||||
|
||||
def load_all(stream, Loader=Loader):
|
||||
"""
|
||||
Parse all YAML documents in a stream
|
||||
and produce corresponding Python objects.
|
||||
"""
|
||||
loader = Loader(stream)
|
||||
while loader.check_data():
|
||||
yield loader.get_data()
|
||||
|
||||
def safe_load(stream):
|
||||
"""
|
||||
Parse the first YAML document in a stream
|
||||
and produce the corresponding Python object.
|
||||
Resolve only basic YAML tags.
|
||||
"""
|
||||
return load(stream, SafeLoader)
|
||||
|
||||
def safe_load_all(stream):
|
||||
"""
|
||||
Parse all YAML documents in a stream
|
||||
and produce corresponding Python objects.
|
||||
Resolve only basic YAML tags.
|
||||
"""
|
||||
return load_all(stream, SafeLoader)
|
||||
|
||||
def emit(events, stream=None, Dumper=Dumper,
|
||||
canonical=None, indent=None, width=None,
|
||||
allow_unicode=None, line_break=None):
|
||||
"""
|
||||
Emit YAML parsing events into a stream.
|
||||
If stream is None, return the produced string instead.
|
||||
"""
|
||||
getvalue = None
|
||||
if stream is None:
|
||||
from StringIO import StringIO
|
||||
stream = StringIO()
|
||||
getvalue = stream.getvalue
|
||||
dumper = Dumper(stream, canonical=canonical, indent=indent, width=width,
|
||||
allow_unicode=allow_unicode, line_break=line_break)
|
||||
for event in events:
|
||||
dumper.emit(event)
|
||||
if getvalue:
|
||||
return getvalue()
|
||||
|
||||
def serialize_all(nodes, stream=None, Dumper=Dumper,
|
||||
canonical=None, indent=None, width=None,
|
||||
allow_unicode=None, line_break=None,
|
||||
encoding='utf-8', explicit_start=None, explicit_end=None,
|
||||
version=None, tags=None):
|
||||
"""
|
||||
Serialize a sequence of representation trees into a YAML stream.
|
||||
If stream is None, return the produced string instead.
|
||||
"""
|
||||
getvalue = None
|
||||
if stream is None:
|
||||
if encoding is None:
|
||||
from StringIO import StringIO
|
||||
else:
|
||||
from cStringIO import StringIO
|
||||
stream = StringIO()
|
||||
getvalue = stream.getvalue
|
||||
dumper = Dumper(stream, canonical=canonical, indent=indent, width=width,
|
||||
allow_unicode=allow_unicode, line_break=line_break,
|
||||
encoding=encoding, version=version, tags=tags,
|
||||
explicit_start=explicit_start, explicit_end=explicit_end)
|
||||
dumper.open()
|
||||
for node in nodes:
|
||||
dumper.serialize(node)
|
||||
dumper.close()
|
||||
if getvalue:
|
||||
return getvalue()
|
||||
|
||||
def serialize(node, stream=None, Dumper=Dumper, **kwds):
|
||||
"""
|
||||
Serialize a representation tree into a YAML stream.
|
||||
If stream is None, return the produced string instead.
|
||||
"""
|
||||
return serialize_all([node], stream, Dumper=Dumper, **kwds)
|
||||
|
||||
def dump_all(documents, stream=None, Dumper=Dumper,
|
||||
default_style=None, default_flow_style=None,
|
||||
canonical=None, indent=None, width=None,
|
||||
allow_unicode=None, line_break=None,
|
||||
encoding='utf-8', explicit_start=None, explicit_end=None,
|
||||
version=None, tags=None):
|
||||
"""
|
||||
Serialize a sequence of Python objects into a YAML stream.
|
||||
If stream is None, return the produced string instead.
|
||||
"""
|
||||
getvalue = None
|
||||
if stream is None:
|
||||
if encoding is None:
|
||||
from StringIO import StringIO
|
||||
else:
|
||||
from cStringIO import StringIO
|
||||
stream = StringIO()
|
||||
getvalue = stream.getvalue
|
||||
dumper = Dumper(stream, default_style=default_style,
|
||||
default_flow_style=default_flow_style,
|
||||
canonical=canonical, indent=indent, width=width,
|
||||
allow_unicode=allow_unicode, line_break=line_break,
|
||||
encoding=encoding, version=version, tags=tags,
|
||||
explicit_start=explicit_start, explicit_end=explicit_end)
|
||||
dumper.open()
|
||||
for data in documents:
|
||||
dumper.represent(data)
|
||||
dumper.close()
|
||||
if getvalue:
|
||||
return getvalue()
|
||||
|
||||
def dump(data, stream=None, Dumper=Dumper, **kwds):
|
||||
"""
|
||||
Serialize a Python object into a YAML stream.
|
||||
If stream is None, return the produced string instead.
|
||||
"""
|
||||
return dump_all([data], stream, Dumper=Dumper, **kwds)
|
||||
|
||||
def safe_dump_all(documents, stream=None, **kwds):
|
||||
"""
|
||||
Serialize a sequence of Python objects into a YAML stream.
|
||||
Produce only basic YAML tags.
|
||||
If stream is None, return the produced string instead.
|
||||
"""
|
||||
return dump_all(documents, stream, Dumper=SafeDumper, **kwds)
|
||||
|
||||
def safe_dump(data, stream=None, **kwds):
|
||||
"""
|
||||
Serialize a Python object into a YAML stream.
|
||||
Produce only basic YAML tags.
|
||||
If stream is None, return the produced string instead.
|
||||
"""
|
||||
return dump_all([data], stream, Dumper=SafeDumper, **kwds)
|
||||
|
||||
def add_implicit_resolver(tag, regexp, first=None,
|
||||
Loader=Loader, Dumper=Dumper):
|
||||
"""
|
||||
Add an implicit scalar detector.
|
||||
If an implicit scalar value matches the given regexp,
|
||||
the corresponding tag is assigned to the scalar.
|
||||
first is a sequence of possible initial characters or None.
|
||||
"""
|
||||
Loader.add_implicit_resolver(tag, regexp, first)
|
||||
Dumper.add_implicit_resolver(tag, regexp, first)
|
||||
|
||||
def add_path_resolver(tag, path, kind=None, Loader=Loader, Dumper=Dumper):
|
||||
"""
|
||||
Add a path based resolver for the given tag.
|
||||
A path is a list of keys that forms a path
|
||||
to a node in the representation tree.
|
||||
Keys can be string values, integers, or None.
|
||||
"""
|
||||
Loader.add_path_resolver(tag, path, kind)
|
||||
Dumper.add_path_resolver(tag, path, kind)
|
||||
|
||||
def add_constructor(tag, constructor, Loader=Loader):
|
||||
"""
|
||||
Add a constructor for the given tag.
|
||||
Constructor is a function that accepts a Loader instance
|
||||
and a node object and produces the corresponding Python object.
|
||||
"""
|
||||
Loader.add_constructor(tag, constructor)
|
||||
|
||||
def add_multi_constructor(tag_prefix, multi_constructor, Loader=Loader):
|
||||
"""
|
||||
Add a multi-constructor for the given tag prefix.
|
||||
Multi-constructor is called for a node if its tag starts with tag_prefix.
|
||||
Multi-constructor accepts a Loader instance, a tag suffix,
|
||||
and a node object and produces the corresponding Python object.
|
||||
"""
|
||||
Loader.add_multi_constructor(tag_prefix, multi_constructor)
|
||||
|
||||
def add_representer(data_type, representer, Dumper=Dumper):
|
||||
"""
|
||||
Add a representer for the given type.
|
||||
Representer is a function accepting a Dumper instance
|
||||
and an instance of the given data type
|
||||
and producing the corresponding representation node.
|
||||
"""
|
||||
Dumper.add_representer(data_type, representer)
|
||||
|
||||
def add_multi_representer(data_type, multi_representer, Dumper=Dumper):
|
||||
"""
|
||||
Add a representer for the given type.
|
||||
Multi-representer is a function accepting a Dumper instance
|
||||
and an instance of the given data type or subtype
|
||||
and producing the corresponding representation node.
|
||||
"""
|
||||
Dumper.add_multi_representer(data_type, multi_representer)
|
||||
|
||||
class YAMLObjectMetaclass(type):
|
||||
"""
|
||||
The metaclass for YAMLObject.
|
||||
"""
|
||||
def __init__(cls, name, bases, kwds):
|
||||
super(YAMLObjectMetaclass, cls).__init__(name, bases, kwds)
|
||||
if 'yaml_tag' in kwds and kwds['yaml_tag'] is not None:
|
||||
cls.yaml_loader.add_constructor(cls.yaml_tag, cls.from_yaml)
|
||||
cls.yaml_dumper.add_representer(cls, cls.to_yaml)
|
||||
|
||||
class YAMLObject(object):
|
||||
"""
|
||||
An object that can dump itself to a YAML stream
|
||||
and load itself from a YAML stream.
|
||||
"""
|
||||
|
||||
__metaclass__ = YAMLObjectMetaclass
|
||||
__slots__ = () # no direct instantiation, so allow immutable subclasses
|
||||
|
||||
yaml_loader = Loader
|
||||
yaml_dumper = Dumper
|
||||
|
||||
yaml_tag = None
|
||||
yaml_flow_style = None
|
||||
|
||||
def from_yaml(cls, loader, node):
|
||||
"""
|
||||
Convert a representation node to a Python object.
|
||||
"""
|
||||
return loader.construct_yaml_object(node, cls)
|
||||
from_yaml = classmethod(from_yaml)
|
||||
|
||||
def to_yaml(cls, dumper, data):
|
||||
"""
|
||||
Convert a Python object to a representation node.
|
||||
"""
|
||||
return dumper.represent_yaml_object(cls.yaml_tag, data, cls,
|
||||
flow_style=cls.yaml_flow_style)
|
||||
to_yaml = classmethod(to_yaml)
|
||||
|
||||
@@ -1,139 +0,0 @@
|
||||
|
||||
__all__ = ['Composer', 'ComposerError']
|
||||
|
||||
from error import MarkedYAMLError
|
||||
from events import *
|
||||
from nodes import *
|
||||
|
||||
class ComposerError(MarkedYAMLError):
|
||||
pass
|
||||
|
||||
class Composer(object):
|
||||
|
||||
def __init__(self):
|
||||
self.anchors = {}
|
||||
|
||||
def check_node(self):
|
||||
# Drop the STREAM-START event.
|
||||
if self.check_event(StreamStartEvent):
|
||||
self.get_event()
|
||||
|
||||
# If there are more documents available?
|
||||
return not self.check_event(StreamEndEvent)
|
||||
|
||||
def get_node(self):
|
||||
# Get the root node of the next document.
|
||||
if not self.check_event(StreamEndEvent):
|
||||
return self.compose_document()
|
||||
|
||||
def get_single_node(self):
|
||||
# Drop the STREAM-START event.
|
||||
self.get_event()
|
||||
|
||||
# Compose a document if the stream is not empty.
|
||||
document = None
|
||||
if not self.check_event(StreamEndEvent):
|
||||
document = self.compose_document()
|
||||
|
||||
# Ensure that the stream contains no more documents.
|
||||
if not self.check_event(StreamEndEvent):
|
||||
event = self.get_event()
|
||||
raise ComposerError("expected a single document in the stream",
|
||||
document.start_mark, "but found another document",
|
||||
event.start_mark)
|
||||
|
||||
# Drop the STREAM-END event.
|
||||
self.get_event()
|
||||
|
||||
return document
|
||||
|
||||
def compose_document(self):
|
||||
# Drop the DOCUMENT-START event.
|
||||
self.get_event()
|
||||
|
||||
# Compose the root node.
|
||||
node = self.compose_node(None, None)
|
||||
|
||||
# Drop the DOCUMENT-END event.
|
||||
self.get_event()
|
||||
|
||||
self.anchors = {}
|
||||
return node
|
||||
|
||||
def compose_node(self, parent, index):
|
||||
if self.check_event(AliasEvent):
|
||||
event = self.get_event()
|
||||
anchor = event.anchor
|
||||
if anchor not in self.anchors:
|
||||
raise ComposerError(None, None, "found undefined alias %r"
|
||||
% anchor.encode('utf-8'), event.start_mark)
|
||||
return self.anchors[anchor]
|
||||
event = self.peek_event()
|
||||
anchor = event.anchor
|
||||
if anchor is not None:
|
||||
if anchor in self.anchors:
|
||||
raise ComposerError("found duplicate anchor %r; first occurence"
|
||||
% anchor.encode('utf-8'), self.anchors[anchor].start_mark,
|
||||
"second occurence", event.start_mark)
|
||||
self.descend_resolver(parent, index)
|
||||
if self.check_event(ScalarEvent):
|
||||
node = self.compose_scalar_node(anchor)
|
||||
elif self.check_event(SequenceStartEvent):
|
||||
node = self.compose_sequence_node(anchor)
|
||||
elif self.check_event(MappingStartEvent):
|
||||
node = self.compose_mapping_node(anchor)
|
||||
self.ascend_resolver()
|
||||
return node
|
||||
|
||||
def compose_scalar_node(self, anchor):
|
||||
event = self.get_event()
|
||||
tag = event.tag
|
||||
if tag is None or tag == u'!':
|
||||
tag = self.resolve(ScalarNode, event.value, event.implicit)
|
||||
node = ScalarNode(tag, event.value,
|
||||
event.start_mark, event.end_mark, style=event.style)
|
||||
if anchor is not None:
|
||||
self.anchors[anchor] = node
|
||||
return node
|
||||
|
||||
def compose_sequence_node(self, anchor):
|
||||
start_event = self.get_event()
|
||||
tag = start_event.tag
|
||||
if tag is None or tag == u'!':
|
||||
tag = self.resolve(SequenceNode, None, start_event.implicit)
|
||||
node = SequenceNode(tag, [],
|
||||
start_event.start_mark, None,
|
||||
flow_style=start_event.flow_style)
|
||||
if anchor is not None:
|
||||
self.anchors[anchor] = node
|
||||
index = 0
|
||||
while not self.check_event(SequenceEndEvent):
|
||||
node.value.append(self.compose_node(node, index))
|
||||
index += 1
|
||||
end_event = self.get_event()
|
||||
node.end_mark = end_event.end_mark
|
||||
return node
|
||||
|
||||
def compose_mapping_node(self, anchor):
|
||||
start_event = self.get_event()
|
||||
tag = start_event.tag
|
||||
if tag is None or tag == u'!':
|
||||
tag = self.resolve(MappingNode, None, start_event.implicit)
|
||||
node = MappingNode(tag, [],
|
||||
start_event.start_mark, None,
|
||||
flow_style=start_event.flow_style)
|
||||
if anchor is not None:
|
||||
self.anchors[anchor] = node
|
||||
while not self.check_event(MappingEndEvent):
|
||||
#key_event = self.peek_event()
|
||||
item_key = self.compose_node(node, None)
|
||||
#if item_key in node.value:
|
||||
# raise ComposerError("while composing a mapping", start_event.start_mark,
|
||||
# "found duplicate key", key_event.start_mark)
|
||||
item_value = self.compose_node(node, item_key)
|
||||
#node.value[item_key] = item_value
|
||||
node.value.append((item_key, item_value))
|
||||
end_event = self.get_event()
|
||||
node.end_mark = end_event.end_mark
|
||||
return node
|
||||
|
||||
@@ -1,684 +0,0 @@
|
||||
|
||||
__all__ = ['BaseConstructor', 'SafeConstructor', 'Constructor',
|
||||
'ConstructorError']
|
||||
|
||||
from error import *
|
||||
from nodes import *
|
||||
|
||||
import datetime
|
||||
|
||||
try:
|
||||
set
|
||||
except NameError:
|
||||
from sets import Set as set
|
||||
|
||||
import binascii, re, sys, types
|
||||
|
||||
class ConstructorError(MarkedYAMLError):
|
||||
pass
|
||||
|
||||
class BaseConstructor(object):
|
||||
|
||||
yaml_constructors = {}
|
||||
yaml_multi_constructors = {}
|
||||
|
||||
def __init__(self):
|
||||
self.constructed_objects = {}
|
||||
self.recursive_objects = {}
|
||||
self.state_generators = []
|
||||
self.deep_construct = False
|
||||
|
||||
def check_data(self):
|
||||
# If there are more documents available?
|
||||
return self.check_node()
|
||||
|
||||
def get_data(self):
|
||||
# Construct and return the next document.
|
||||
if self.check_node():
|
||||
return self.construct_document(self.get_node())
|
||||
|
||||
def get_single_data(self):
|
||||
# Ensure that the stream contains a single document and construct it.
|
||||
node = self.get_single_node()
|
||||
if node is not None:
|
||||
return self.construct_document(node)
|
||||
return None
|
||||
|
||||
def construct_document(self, node):
|
||||
data = self.construct_object(node)
|
||||
while self.state_generators:
|
||||
state_generators = self.state_generators
|
||||
self.state_generators = []
|
||||
for generator in state_generators:
|
||||
for dummy in generator:
|
||||
pass
|
||||
self.constructed_objects = {}
|
||||
self.recursive_objects = {}
|
||||
self.deep_construct = False
|
||||
return data
|
||||
|
||||
def construct_object(self, node, deep=False):
|
||||
if deep:
|
||||
old_deep = self.deep_construct
|
||||
self.deep_construct = True
|
||||
if node in self.constructed_objects:
|
||||
return self.constructed_objects[node]
|
||||
if node in self.recursive_objects:
|
||||
raise ConstructorError(None, None,
|
||||
"found unconstructable recursive node", node.start_mark)
|
||||
self.recursive_objects[node] = None
|
||||
constructor = None
|
||||
tag_suffix = None
|
||||
if node.tag in self.yaml_constructors:
|
||||
constructor = self.yaml_constructors[node.tag]
|
||||
else:
|
||||
for tag_prefix in self.yaml_multi_constructors:
|
||||
if node.tag.startswith(tag_prefix):
|
||||
tag_suffix = node.tag[len(tag_prefix):]
|
||||
constructor = self.yaml_multi_constructors[tag_prefix]
|
||||
break
|
||||
else:
|
||||
if None in self.yaml_multi_constructors:
|
||||
tag_suffix = node.tag
|
||||
constructor = self.yaml_multi_constructors[None]
|
||||
elif None in self.yaml_constructors:
|
||||
constructor = self.yaml_constructors[None]
|
||||
elif isinstance(node, ScalarNode):
|
||||
constructor = self.__class__.construct_scalar
|
||||
elif isinstance(node, SequenceNode):
|
||||
constructor = self.__class__.construct_sequence
|
||||
elif isinstance(node, MappingNode):
|
||||
constructor = self.__class__.construct_mapping
|
||||
if tag_suffix is None:
|
||||
data = constructor(self, node)
|
||||
else:
|
||||
data = constructor(self, tag_suffix, node)
|
||||
if isinstance(data, types.GeneratorType):
|
||||
generator = data
|
||||
data = generator.next()
|
||||
if self.deep_construct:
|
||||
for dummy in generator:
|
||||
pass
|
||||
else:
|
||||
self.state_generators.append(generator)
|
||||
self.constructed_objects[node] = data
|
||||
del self.recursive_objects[node]
|
||||
if deep:
|
||||
self.deep_construct = old_deep
|
||||
return data
|
||||
|
||||
def construct_scalar(self, node):
|
||||
if not isinstance(node, ScalarNode):
|
||||
raise ConstructorError(None, None,
|
||||
"expected a scalar node, but found %s" % node.id,
|
||||
node.start_mark)
|
||||
return node.value
|
||||
|
||||
def construct_sequence(self, node, deep=False):
|
||||
if not isinstance(node, SequenceNode):
|
||||
raise ConstructorError(None, None,
|
||||
"expected a sequence node, but found %s" % node.id,
|
||||
node.start_mark)
|
||||
return [self.construct_object(child, deep=deep)
|
||||
for child in node.value]
|
||||
|
||||
def construct_mapping(self, node, deep=False):
|
||||
if not isinstance(node, MappingNode):
|
||||
raise ConstructorError(None, None,
|
||||
"expected a mapping node, but found %s" % node.id,
|
||||
node.start_mark)
|
||||
mapping = {}
|
||||
for key_node, value_node in node.value:
|
||||
key = self.construct_object(key_node, deep=deep)
|
||||
try:
|
||||
hash(key)
|
||||
except TypeError, exc:
|
||||
raise ConstructorError("while constructing a mapping", node.start_mark,
|
||||
"found unacceptable key (%s)" % exc, key_node.start_mark)
|
||||
value = self.construct_object(value_node, deep=deep)
|
||||
mapping[key] = value
|
||||
return mapping
|
||||
|
||||
def construct_pairs(self, node, deep=False):
|
||||
if not isinstance(node, MappingNode):
|
||||
raise ConstructorError(None, None,
|
||||
"expected a mapping node, but found %s" % node.id,
|
||||
node.start_mark)
|
||||
pairs = []
|
||||
for key_node, value_node in node.value:
|
||||
key = self.construct_object(key_node, deep=deep)
|
||||
value = self.construct_object(value_node, deep=deep)
|
||||
pairs.append((key, value))
|
||||
return pairs
|
||||
|
||||
def add_constructor(cls, tag, constructor):
|
||||
if not 'yaml_constructors' in cls.__dict__:
|
||||
cls.yaml_constructors = cls.yaml_constructors.copy()
|
||||
cls.yaml_constructors[tag] = constructor
|
||||
add_constructor = classmethod(add_constructor)
|
||||
|
||||
def add_multi_constructor(cls, tag_prefix, multi_constructor):
|
||||
if not 'yaml_multi_constructors' in cls.__dict__:
|
||||
cls.yaml_multi_constructors = cls.yaml_multi_constructors.copy()
|
||||
cls.yaml_multi_constructors[tag_prefix] = multi_constructor
|
||||
add_multi_constructor = classmethod(add_multi_constructor)
|
||||
|
||||
class SafeConstructor(BaseConstructor):
|
||||
|
||||
def construct_scalar(self, node):
|
||||
if isinstance(node, MappingNode):
|
||||
for key_node, value_node in node.value:
|
||||
if key_node.tag == u'tag:yaml.org,2002:value':
|
||||
return self.construct_scalar(value_node)
|
||||
return BaseConstructor.construct_scalar(self, node)
|
||||
|
||||
def flatten_mapping(self, node):
|
||||
merge = []
|
||||
index = 0
|
||||
while index < len(node.value):
|
||||
key_node, value_node = node.value[index]
|
||||
if key_node.tag == u'tag:yaml.org,2002:merge':
|
||||
del node.value[index]
|
||||
if isinstance(value_node, MappingNode):
|
||||
self.flatten_mapping(value_node)
|
||||
merge.extend(value_node.value)
|
||||
elif isinstance(value_node, SequenceNode):
|
||||
submerge = []
|
||||
for subnode in value_node.value:
|
||||
if not isinstance(subnode, MappingNode):
|
||||
raise ConstructorError("while constructing a mapping",
|
||||
node.start_mark,
|
||||
"expected a mapping for merging, but found %s"
|
||||
% subnode.id, subnode.start_mark)
|
||||
self.flatten_mapping(subnode)
|
||||
submerge.append(subnode.value)
|
||||
submerge.reverse()
|
||||
for value in submerge:
|
||||
merge.extend(value)
|
||||
else:
|
||||
raise ConstructorError("while constructing a mapping", node.start_mark,
|
||||
"expected a mapping or list of mappings for merging, but found %s"
|
||||
% value_node.id, value_node.start_mark)
|
||||
elif key_node.tag == u'tag:yaml.org,2002:value':
|
||||
key_node.tag = u'tag:yaml.org,2002:str'
|
||||
index += 1
|
||||
else:
|
||||
index += 1
|
||||
if merge:
|
||||
node.value = merge + node.value
|
||||
|
||||
def construct_mapping(self, node, deep=False):
|
||||
if isinstance(node, MappingNode):
|
||||
self.flatten_mapping(node)
|
||||
return BaseConstructor.construct_mapping(self, node, deep=deep)
|
||||
|
||||
def construct_yaml_null(self, node):
|
||||
self.construct_scalar(node)
|
||||
return None
|
||||
|
||||
bool_values = {
|
||||
u'yes': True,
|
||||
u'no': False,
|
||||
u'true': True,
|
||||
u'false': False,
|
||||
u'on': True,
|
||||
u'off': False,
|
||||
}
|
||||
|
||||
def construct_yaml_bool(self, node):
|
||||
value = self.construct_scalar(node)
|
||||
return self.bool_values[value.lower()]
|
||||
|
||||
def construct_yaml_int(self, node):
|
||||
value = str(self.construct_scalar(node))
|
||||
value = value.replace('_', '')
|
||||
sign = +1
|
||||
if value[0] == '-':
|
||||
sign = -1
|
||||
if value[0] in '+-':
|
||||
value = value[1:]
|
||||
if value == '0':
|
||||
return 0
|
||||
elif value.startswith('0b'):
|
||||
return sign*int(value[2:], 2)
|
||||
elif value.startswith('0x'):
|
||||
return sign*int(value[2:], 16)
|
||||
elif value[0] == '0':
|
||||
return sign*int(value, 8)
|
||||
elif ':' in value:
|
||||
digits = [int(part) for part in value.split(':')]
|
||||
digits.reverse()
|
||||
base = 1
|
||||
value = 0
|
||||
for digit in digits:
|
||||
value += digit*base
|
||||
base *= 60
|
||||
return sign*value
|
||||
else:
|
||||
return sign*int(value)
|
||||
|
||||
inf_value = 1e300
|
||||
while inf_value != inf_value*inf_value:
|
||||
inf_value *= inf_value
|
||||
nan_value = -inf_value/inf_value # Trying to make a quiet NaN (like C99).
|
||||
|
||||
def construct_yaml_float(self, node):
|
||||
value = str(self.construct_scalar(node))
|
||||
value = value.replace('_', '').lower()
|
||||
sign = +1
|
||||
if value[0] == '-':
|
||||
sign = -1
|
||||
if value[0] in '+-':
|
||||
value = value[1:]
|
||||
if value == '.inf':
|
||||
return sign*self.inf_value
|
||||
elif value == '.nan':
|
||||
return self.nan_value
|
||||
elif ':' in value:
|
||||
digits = [float(part) for part in value.split(':')]
|
||||
digits.reverse()
|
||||
base = 1
|
||||
value = 0.0
|
||||
for digit in digits:
|
||||
value += digit*base
|
||||
base *= 60
|
||||
return sign*value
|
||||
else:
|
||||
return sign*float(value)
|
||||
|
||||
def construct_yaml_binary(self, node):
|
||||
value = self.construct_scalar(node)
|
||||
try:
|
||||
return str(value).decode('base64')
|
||||
except (binascii.Error, UnicodeEncodeError), exc:
|
||||
raise ConstructorError(None, None,
|
||||
"failed to decode base64 data: %s" % exc, node.start_mark)
|
||||
|
||||
timestamp_regexp = re.compile(
|
||||
ur'''^(?P<year>[0-9][0-9][0-9][0-9])
|
||||
-(?P<month>[0-9][0-9]?)
|
||||
-(?P<day>[0-9][0-9]?)
|
||||
(?:(?:[Tt]|[ \t]+)
|
||||
(?P<hour>[0-9][0-9]?)
|
||||
:(?P<minute>[0-9][0-9])
|
||||
:(?P<second>[0-9][0-9])
|
||||
(?:\.(?P<fraction>[0-9]*))?
|
||||
(?:[ \t]*(?P<tz>Z|(?P<tz_sign>[-+])(?P<tz_hour>[0-9][0-9]?)
|
||||
(?::(?P<tz_minute>[0-9][0-9]))?))?)?$''', re.X)
|
||||
|
||||
def construct_yaml_timestamp(self, node):
|
||||
value = self.construct_scalar(node)
|
||||
match = self.timestamp_regexp.match(node.value)
|
||||
values = match.groupdict()
|
||||
year = int(values['year'])
|
||||
month = int(values['month'])
|
||||
day = int(values['day'])
|
||||
if not values['hour']:
|
||||
return datetime.date(year, month, day)
|
||||
hour = int(values['hour'])
|
||||
minute = int(values['minute'])
|
||||
second = int(values['second'])
|
||||
fraction = 0
|
||||
if values['fraction']:
|
||||
fraction = values['fraction'][:6]
|
||||
while len(fraction) < 6:
|
||||
fraction += '0'
|
||||
fraction = int(fraction)
|
||||
delta = None
|
||||
if values['tz_sign']:
|
||||
tz_hour = int(values['tz_hour'])
|
||||
tz_minute = int(values['tz_minute'] or 0)
|
||||
delta = datetime.timedelta(hours=tz_hour, minutes=tz_minute)
|
||||
if values['tz_sign'] == '-':
|
||||
delta = -delta
|
||||
data = datetime.datetime(year, month, day, hour, minute, second, fraction)
|
||||
if delta:
|
||||
data -= delta
|
||||
return data
|
||||
|
||||
def construct_yaml_omap(self, node):
|
||||
# Note: we do not check for duplicate keys, because it's too
|
||||
# CPU-expensive.
|
||||
omap = []
|
||||
yield omap
|
||||
if not isinstance(node, SequenceNode):
|
||||
raise ConstructorError("while constructing an ordered map", node.start_mark,
|
||||
"expected a sequence, but found %s" % node.id, node.start_mark)
|
||||
for subnode in node.value:
|
||||
if not isinstance(subnode, MappingNode):
|
||||
raise ConstructorError("while constructing an ordered map", node.start_mark,
|
||||
"expected a mapping of length 1, but found %s" % subnode.id,
|
||||
subnode.start_mark)
|
||||
if len(subnode.value) != 1:
|
||||
raise ConstructorError("while constructing an ordered map", node.start_mark,
|
||||
"expected a single mapping item, but found %d items" % len(subnode.value),
|
||||
subnode.start_mark)
|
||||
key_node, value_node = subnode.value[0]
|
||||
key = self.construct_object(key_node)
|
||||
value = self.construct_object(value_node)
|
||||
omap.append((key, value))
|
||||
|
||||
def construct_yaml_pairs(self, node):
|
||||
# Note: the same code as `construct_yaml_omap`.
|
||||
pairs = []
|
||||
yield pairs
|
||||
if not isinstance(node, SequenceNode):
|
||||
raise ConstructorError("while constructing pairs", node.start_mark,
|
||||
"expected a sequence, but found %s" % node.id, node.start_mark)
|
||||
for subnode in node.value:
|
||||
if not isinstance(subnode, MappingNode):
|
||||
raise ConstructorError("while constructing pairs", node.start_mark,
|
||||
"expected a mapping of length 1, but found %s" % subnode.id,
|
||||
subnode.start_mark)
|
||||
if len(subnode.value) != 1:
|
||||
raise ConstructorError("while constructing pairs", node.start_mark,
|
||||
"expected a single mapping item, but found %d items" % len(subnode.value),
|
||||
subnode.start_mark)
|
||||
key_node, value_node = subnode.value[0]
|
||||
key = self.construct_object(key_node)
|
||||
value = self.construct_object(value_node)
|
||||
pairs.append((key, value))
|
||||
|
||||
def construct_yaml_set(self, node):
|
||||
data = set()
|
||||
yield data
|
||||
value = self.construct_mapping(node)
|
||||
data.update(value)
|
||||
|
||||
def construct_yaml_str(self, node):
|
||||
value = self.construct_scalar(node)
|
||||
try:
|
||||
return value.encode('ascii')
|
||||
except UnicodeEncodeError:
|
||||
return value
|
||||
|
||||
def construct_yaml_seq(self, node):
|
||||
data = []
|
||||
yield data
|
||||
data.extend(self.construct_sequence(node))
|
||||
|
||||
def construct_yaml_map(self, node):
|
||||
data = {}
|
||||
yield data
|
||||
value = self.construct_mapping(node)
|
||||
data.update(value)
|
||||
|
||||
def construct_yaml_object(self, node, cls):
|
||||
data = cls.__new__(cls)
|
||||
yield data
|
||||
if hasattr(data, '__setstate__'):
|
||||
state = self.construct_mapping(node, deep=True)
|
||||
data.__setstate__(state)
|
||||
else:
|
||||
state = self.construct_mapping(node)
|
||||
data.__dict__.update(state)
|
||||
|
||||
def construct_undefined(self, node):
|
||||
raise ConstructorError(None, None,
|
||||
"could not determine a constructor for the tag %r" % node.tag.encode('utf-8'),
|
||||
node.start_mark)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:null',
|
||||
SafeConstructor.construct_yaml_null)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:bool',
|
||||
SafeConstructor.construct_yaml_bool)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:int',
|
||||
SafeConstructor.construct_yaml_int)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:float',
|
||||
SafeConstructor.construct_yaml_float)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:binary',
|
||||
SafeConstructor.construct_yaml_binary)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:timestamp',
|
||||
SafeConstructor.construct_yaml_timestamp)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:omap',
|
||||
SafeConstructor.construct_yaml_omap)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:pairs',
|
||||
SafeConstructor.construct_yaml_pairs)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:set',
|
||||
SafeConstructor.construct_yaml_set)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:str',
|
||||
SafeConstructor.construct_yaml_str)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:seq',
|
||||
SafeConstructor.construct_yaml_seq)
|
||||
|
||||
SafeConstructor.add_constructor(
|
||||
u'tag:yaml.org,2002:map',
|
||||
SafeConstructor.construct_yaml_map)
|
||||
|
||||
SafeConstructor.add_constructor(None,
|
||||
SafeConstructor.construct_undefined)
|
||||
|
||||
class Constructor(SafeConstructor):
|
||||
|
||||
def construct_python_str(self, node):
|
||||
return self.construct_scalar(node).encode('utf-8')
|
||||
|
||||
def construct_python_unicode(self, node):
|
||||
return self.construct_scalar(node)
|
||||
|
||||
def construct_python_long(self, node):
|
||||
return long(self.construct_yaml_int(node))
|
||||
|
||||
def construct_python_complex(self, node):
|
||||
return complex(self.construct_scalar(node))
|
||||
|
||||
def construct_python_tuple(self, node):
|
||||
return tuple(self.construct_sequence(node))
|
||||
|
||||
def find_python_module(self, name, mark):
|
||||
if not name:
|
||||
raise ConstructorError("while constructing a Python module", mark,
|
||||
"expected non-empty name appended to the tag", mark)
|
||||
try:
|
||||
__import__(name)
|
||||
except ImportError, exc:
|
||||
raise ConstructorError("while constructing a Python module", mark,
|
||||
"cannot find module %r (%s)" % (name.encode('utf-8'), exc), mark)
|
||||
return sys.modules[name]
|
||||
|
||||
def find_python_name(self, name, mark):
|
||||
if not name:
|
||||
raise ConstructorError("while constructing a Python object", mark,
|
||||
"expected non-empty name appended to the tag", mark)
|
||||
if u'.' in name:
|
||||
# Python 2.4 only
|
||||
#module_name, object_name = name.rsplit('.', 1)
|
||||
items = name.split('.')
|
||||
object_name = items.pop()
|
||||
module_name = '.'.join(items)
|
||||
else:
|
||||
module_name = '__builtin__'
|
||||
object_name = name
|
||||
try:
|
||||
__import__(module_name)
|
||||
except ImportError, exc:
|
||||
raise ConstructorError("while constructing a Python object", mark,
|
||||
"cannot find module %r (%s)" % (module_name.encode('utf-8'), exc), mark)
|
||||
module = sys.modules[module_name]
|
||||
if not hasattr(module, object_name):
|
||||
raise ConstructorError("while constructing a Python object", mark,
|
||||
"cannot find %r in the module %r" % (object_name.encode('utf-8'),
|
||||
module.__name__), mark)
|
||||
return getattr(module, object_name)
|
||||
|
||||
def construct_python_name(self, suffix, node):
|
||||
value = self.construct_scalar(node)
|
||||
if value:
|
||||
raise ConstructorError("while constructing a Python name", node.start_mark,
|
||||
"expected the empty value, but found %r" % value.encode('utf-8'),
|
||||
node.start_mark)
|
||||
return self.find_python_name(suffix, node.start_mark)
|
||||
|
||||
def construct_python_module(self, suffix, node):
|
||||
value = self.construct_scalar(node)
|
||||
if value:
|
||||
raise ConstructorError("while constructing a Python module", node.start_mark,
|
||||
"expected the empty value, but found %r" % value.encode('utf-8'),
|
||||
node.start_mark)
|
||||
return self.find_python_module(suffix, node.start_mark)
|
||||
|
||||
class classobj: pass
|
||||
|
||||
def make_python_instance(self, suffix, node,
|
||||
args=None, kwds=None, newobj=False):
|
||||
if not args:
|
||||
args = []
|
||||
if not kwds:
|
||||
kwds = {}
|
||||
cls = self.find_python_name(suffix, node.start_mark)
|
||||
if newobj and isinstance(cls, type(self.classobj)) \
|
||||
and not args and not kwds:
|
||||
instance = self.classobj()
|
||||
instance.__class__ = cls
|
||||
return instance
|
||||
elif newobj and isinstance(cls, type):
|
||||
return cls.__new__(cls, *args, **kwds)
|
||||
else:
|
||||
return cls(*args, **kwds)
|
||||
|
||||
def set_python_instance_state(self, instance, state):
|
||||
if hasattr(instance, '__setstate__'):
|
||||
instance.__setstate__(state)
|
||||
else:
|
||||
slotstate = {}
|
||||
if isinstance(state, tuple) and len(state) == 2:
|
||||
state, slotstate = state
|
||||
if hasattr(instance, '__dict__'):
|
||||
instance.__dict__.update(state)
|
||||
elif state:
|
||||
slotstate.update(state)
|
||||
for key, value in slotstate.items():
|
||||
setattr(object, key, value)
|
||||
|
||||
def construct_python_object(self, suffix, node):
|
||||
# Format:
|
||||
# !!python/object:module.name { ... state ... }
|
||||
instance = self.make_python_instance(suffix, node, newobj=True)
|
||||
yield instance
|
||||
deep = hasattr(instance, '__setstate__')
|
||||
state = self.construct_mapping(node, deep=deep)
|
||||
self.set_python_instance_state(instance, state)
|
||||
|
||||
def construct_python_object_apply(self, suffix, node, newobj=False):
|
||||
# Format:
|
||||
# !!python/object/apply # (or !!python/object/new)
|
||||
# args: [ ... arguments ... ]
|
||||
# kwds: { ... keywords ... }
|
||||
# state: ... state ...
|
||||
# listitems: [ ... listitems ... ]
|
||||
# dictitems: { ... dictitems ... }
|
||||
# or short format:
|
||||
# !!python/object/apply [ ... arguments ... ]
|
||||
# The difference between !!python/object/apply and !!python/object/new
|
||||
# is how an object is created, check make_python_instance for details.
|
||||
if isinstance(node, SequenceNode):
|
||||
args = self.construct_sequence(node, deep=True)
|
||||
kwds = {}
|
||||
state = {}
|
||||
listitems = []
|
||||
dictitems = {}
|
||||
else:
|
||||
value = self.construct_mapping(node, deep=True)
|
||||
args = value.get('args', [])
|
||||
kwds = value.get('kwds', {})
|
||||
state = value.get('state', {})
|
||||
listitems = value.get('listitems', [])
|
||||
dictitems = value.get('dictitems', {})
|
||||
instance = self.make_python_instance(suffix, node, args, kwds, newobj)
|
||||
if state:
|
||||
self.set_python_instance_state(instance, state)
|
||||
if listitems:
|
||||
instance.extend(listitems)
|
||||
if dictitems:
|
||||
for key in dictitems:
|
||||
instance[key] = dictitems[key]
|
||||
return instance
|
||||
|
||||
def construct_python_object_new(self, suffix, node):
|
||||
return self.construct_python_object_apply(suffix, node, newobj=True)
|
||||
|
||||
Constructor.add_constructor(
|
||||
u'tag:yaml.org,2002:python/none',
|
||||
Constructor.construct_yaml_null)
|
||||
|
||||
Constructor.add_constructor(
|
||||
u'tag:yaml.org,2002:python/bool',
|
||||
Constructor.construct_yaml_bool)
|
||||
|
||||
Constructor.add_constructor(
|
||||
u'tag:yaml.org,2002:python/str',
|
||||
Constructor.construct_python_str)
|
||||
|
||||
Constructor.add_constructor(
|
||||
u'tag:yaml.org,2002:python/unicode',
|
||||
Constructor.construct_python_unicode)
|
||||
|
||||
Constructor.add_constructor(
|
||||
u'tag:yaml.org,2002:python/int',
|
||||
Constructor.construct_yaml_int)
|
||||
|
||||
Constructor.add_constructor(
|
||||
u'tag:yaml.org,2002:python/long',
|
||||
Constructor.construct_python_long)
|
||||
|
||||
Constructor.add_constructor(
|
||||
u'tag:yaml.org,2002:python/float',
|
||||
Constructor.construct_yaml_float)
|
||||
|
||||
Constructor.add_constructor(
|
||||
u'tag:yaml.org,2002:python/complex',
|
||||
Constructor.construct_python_complex)
|
||||
|
||||
Constructor.add_constructor(
|
||||
u'tag:yaml.org,2002:python/list',
|
||||
Constructor.construct_yaml_seq)
|
||||
|
||||
Constructor.add_constructor(
|
||||
u'tag:yaml.org,2002:python/tuple',
|
||||
Constructor.construct_python_tuple)
|
||||
|
||||
Constructor.add_constructor(
|
||||
u'tag:yaml.org,2002:python/dict',
|
||||
Constructor.construct_yaml_map)
|
||||
|
||||
Constructor.add_multi_constructor(
|
||||
u'tag:yaml.org,2002:python/name:',
|
||||
Constructor.construct_python_name)
|
||||
|
||||
Constructor.add_multi_constructor(
|
||||
u'tag:yaml.org,2002:python/module:',
|
||||
Constructor.construct_python_module)
|
||||
|
||||
Constructor.add_multi_constructor(
|
||||
u'tag:yaml.org,2002:python/object:',
|
||||
Constructor.construct_python_object)
|
||||
|
||||
Constructor.add_multi_constructor(
|
||||
u'tag:yaml.org,2002:python/object/apply:',
|
||||
Constructor.construct_python_object_apply)
|
||||
|
||||
Constructor.add_multi_constructor(
|
||||
u'tag:yaml.org,2002:python/object/new:',
|
||||
Constructor.construct_python_object_new)
|
||||
|
||||
@@ -1,85 +0,0 @@
|
||||
|
||||
__all__ = ['CBaseLoader', 'CSafeLoader', 'CLoader',
|
||||
'CBaseDumper', 'CSafeDumper', 'CDumper']
|
||||
|
||||
from _yaml import CParser, CEmitter
|
||||
|
||||
from constructor import *
|
||||
|
||||
from serializer import *
|
||||
from representer import *
|
||||
|
||||
from resolver import *
|
||||
|
||||
class CBaseLoader(CParser, BaseConstructor, BaseResolver):
|
||||
|
||||
def __init__(self, stream):
|
||||
CParser.__init__(self, stream)
|
||||
BaseConstructor.__init__(self)
|
||||
BaseResolver.__init__(self)
|
||||
|
||||
class CSafeLoader(CParser, SafeConstructor, Resolver):
|
||||
|
||||
def __init__(self, stream):
|
||||
CParser.__init__(self, stream)
|
||||
SafeConstructor.__init__(self)
|
||||
Resolver.__init__(self)
|
||||
|
||||
class CLoader(CParser, Constructor, Resolver):
|
||||
|
||||
def __init__(self, stream):
|
||||
CParser.__init__(self, stream)
|
||||
Constructor.__init__(self)
|
||||
Resolver.__init__(self)
|
||||
|
||||
class CBaseDumper(CEmitter, BaseRepresenter, BaseResolver):
|
||||
|
||||
def __init__(self, stream,
|
||||
default_style=None, default_flow_style=None,
|
||||
canonical=None, indent=None, width=None,
|
||||
allow_unicode=None, line_break=None,
|
||||
encoding=None, explicit_start=None, explicit_end=None,
|
||||
version=None, tags=None):
|
||||
CEmitter.__init__(self, stream, canonical=canonical,
|
||||
indent=indent, width=width, encoding=encoding,
|
||||
allow_unicode=allow_unicode, line_break=line_break,
|
||||
explicit_start=explicit_start, explicit_end=explicit_end,
|
||||
version=version, tags=tags)
|
||||
Representer.__init__(self, default_style=default_style,
|
||||
default_flow_style=default_flow_style)
|
||||
Resolver.__init__(self)
|
||||
|
||||
class CSafeDumper(CEmitter, SafeRepresenter, Resolver):
|
||||
|
||||
def __init__(self, stream,
|
||||
default_style=None, default_flow_style=None,
|
||||
canonical=None, indent=None, width=None,
|
||||
allow_unicode=None, line_break=None,
|
||||
encoding=None, explicit_start=None, explicit_end=None,
|
||||
version=None, tags=None):
|
||||
CEmitter.__init__(self, stream, canonical=canonical,
|
||||
indent=indent, width=width, encoding=encoding,
|
||||
allow_unicode=allow_unicode, line_break=line_break,
|
||||
explicit_start=explicit_start, explicit_end=explicit_end,
|
||||
version=version, tags=tags)
|
||||
SafeRepresenter.__init__(self, default_style=default_style,
|
||||
default_flow_style=default_flow_style)
|
||||
Resolver.__init__(self)
|
||||
|
||||
class CDumper(CEmitter, Serializer, Representer, Resolver):
|
||||
|
||||
def __init__(self, stream,
|
||||
default_style=None, default_flow_style=None,
|
||||
canonical=None, indent=None, width=None,
|
||||
allow_unicode=None, line_break=None,
|
||||
encoding=None, explicit_start=None, explicit_end=None,
|
||||
version=None, tags=None):
|
||||
CEmitter.__init__(self, stream, canonical=canonical,
|
||||
indent=indent, width=width, encoding=encoding,
|
||||
allow_unicode=allow_unicode, line_break=line_break,
|
||||
explicit_start=explicit_start, explicit_end=explicit_end,
|
||||
version=version, tags=tags)
|
||||
Representer.__init__(self, default_style=default_style,
|
||||
default_flow_style=default_flow_style)
|
||||
Resolver.__init__(self)
|
||||
|
||||
@@ -1,62 +0,0 @@
|
||||
|
||||
__all__ = ['BaseDumper', 'SafeDumper', 'Dumper']
|
||||
|
||||
from emitter import *
|
||||
from serializer import *
|
||||
from representer import *
|
||||
from resolver import *
|
||||
|
||||
class BaseDumper(Emitter, Serializer, BaseRepresenter, BaseResolver):
|
||||
|
||||
def __init__(self, stream,
|
||||
default_style=None, default_flow_style=None,
|
||||
canonical=None, indent=None, width=None,
|
||||
allow_unicode=None, line_break=None,
|
||||
encoding=None, explicit_start=None, explicit_end=None,
|
||||
version=None, tags=None):
|
||||
Emitter.__init__(self, stream, canonical=canonical,
|
||||
indent=indent, width=width,
|
||||
allow_unicode=allow_unicode, line_break=line_break)
|
||||
Serializer.__init__(self, encoding=encoding,
|
||||
explicit_start=explicit_start, explicit_end=explicit_end,
|
||||
version=version, tags=tags)
|
||||
Representer.__init__(self, default_style=default_style,
|
||||
default_flow_style=default_flow_style)
|
||||
Resolver.__init__(self)
|
||||
|
||||
class SafeDumper(Emitter, Serializer, SafeRepresenter, Resolver):
|
||||
|
||||
def __init__(self, stream,
|
||||
default_style=None, default_flow_style=None,
|
||||
canonical=None, indent=None, width=None,
|
||||
allow_unicode=None, line_break=None,
|
||||
encoding=None, explicit_start=None, explicit_end=None,
|
||||
version=None, tags=None):
|
||||
Emitter.__init__(self, stream, canonical=canonical,
|
||||
indent=indent, width=width,
|
||||
allow_unicode=allow_unicode, line_break=line_break)
|
||||
Serializer.__init__(self, encoding=encoding,
|
||||
explicit_start=explicit_start, explicit_end=explicit_end,
|
||||
version=version, tags=tags)
|
||||
SafeRepresenter.__init__(self, default_style=default_style,
|
||||
default_flow_style=default_flow_style)
|
||||
Resolver.__init__(self)
|
||||
|
||||
class Dumper(Emitter, Serializer, Representer, Resolver):
|
||||
|
||||
def __init__(self, stream,
|
||||
default_style=None, default_flow_style=None,
|
||||
canonical=None, indent=None, width=None,
|
||||
allow_unicode=None, line_break=None,
|
||||
encoding=None, explicit_start=None, explicit_end=None,
|
||||
version=None, tags=None):
|
||||
Emitter.__init__(self, stream, canonical=canonical,
|
||||
indent=indent, width=width,
|
||||
allow_unicode=allow_unicode, line_break=line_break)
|
||||
Serializer.__init__(self, encoding=encoding,
|
||||
explicit_start=explicit_start, explicit_end=explicit_end,
|
||||
version=version, tags=tags)
|
||||
Representer.__init__(self, default_style=default_style,
|
||||
default_flow_style=default_flow_style)
|
||||
Resolver.__init__(self)
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -1,75 +0,0 @@
|
||||
|
||||
__all__ = ['Mark', 'YAMLError', 'MarkedYAMLError']
|
||||
|
||||
class Mark(object):
|
||||
|
||||
def __init__(self, name, index, line, column, buffer, pointer):
|
||||
self.name = name
|
||||
self.index = index
|
||||
self.line = line
|
||||
self.column = column
|
||||
self.buffer = buffer
|
||||
self.pointer = pointer
|
||||
|
||||
def get_snippet(self, indent=4, max_length=75):
|
||||
if self.buffer is None:
|
||||
return None
|
||||
head = ''
|
||||
start = self.pointer
|
||||
while start > 0 and self.buffer[start-1] not in u'\0\r\n\x85\u2028\u2029':
|
||||
start -= 1
|
||||
if self.pointer-start > max_length/2-1:
|
||||
head = ' ... '
|
||||
start += 5
|
||||
break
|
||||
tail = ''
|
||||
end = self.pointer
|
||||
while end < len(self.buffer) and self.buffer[end] not in u'\0\r\n\x85\u2028\u2029':
|
||||
end += 1
|
||||
if end-self.pointer > max_length/2-1:
|
||||
tail = ' ... '
|
||||
end -= 5
|
||||
break
|
||||
snippet = self.buffer[start:end].encode('utf-8')
|
||||
return ' '*indent + head + snippet + tail + '\n' \
|
||||
+ ' '*(indent+self.pointer-start+len(head)) + '^'
|
||||
|
||||
def __str__(self):
|
||||
snippet = self.get_snippet()
|
||||
where = " in \"%s\", line %d, column %d" \
|
||||
% (self.name, self.line+1, self.column+1)
|
||||
if snippet is not None:
|
||||
where += ":\n"+snippet
|
||||
return where
|
||||
|
||||
class YAMLError(Exception):
|
||||
pass
|
||||
|
||||
class MarkedYAMLError(YAMLError):
|
||||
|
||||
def __init__(self, context=None, context_mark=None,
|
||||
problem=None, problem_mark=None, note=None):
|
||||
self.context = context
|
||||
self.context_mark = context_mark
|
||||
self.problem = problem
|
||||
self.problem_mark = problem_mark
|
||||
self.note = note
|
||||
|
||||
def __str__(self):
|
||||
lines = []
|
||||
if self.context is not None:
|
||||
lines.append(self.context)
|
||||
if self.context_mark is not None \
|
||||
and (self.problem is None or self.problem_mark is None
|
||||
or self.context_mark.name != self.problem_mark.name
|
||||
or self.context_mark.line != self.problem_mark.line
|
||||
or self.context_mark.column != self.problem_mark.column):
|
||||
lines.append(str(self.context_mark))
|
||||
if self.problem is not None:
|
||||
lines.append(self.problem)
|
||||
if self.problem_mark is not None:
|
||||
lines.append(str(self.problem_mark))
|
||||
if self.note is not None:
|
||||
lines.append(self.note)
|
||||
return '\n'.join(lines)
|
||||
|
||||
@@ -1,86 +0,0 @@
|
||||
|
||||
# Abstract classes.
|
||||
|
||||
class Event(object):
|
||||
def __init__(self, start_mark=None, end_mark=None):
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
def __repr__(self):
|
||||
attributes = [key for key in ['anchor', 'tag', 'implicit', 'value']
|
||||
if hasattr(self, key)]
|
||||
arguments = ', '.join(['%s=%r' % (key, getattr(self, key))
|
||||
for key in attributes])
|
||||
return '%s(%s)' % (self.__class__.__name__, arguments)
|
||||
|
||||
class NodeEvent(Event):
|
||||
def __init__(self, anchor, start_mark=None, end_mark=None):
|
||||
self.anchor = anchor
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
|
||||
class CollectionStartEvent(NodeEvent):
|
||||
def __init__(self, anchor, tag, implicit, start_mark=None, end_mark=None,
|
||||
flow_style=None):
|
||||
self.anchor = anchor
|
||||
self.tag = tag
|
||||
self.implicit = implicit
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
self.flow_style = flow_style
|
||||
|
||||
class CollectionEndEvent(Event):
|
||||
pass
|
||||
|
||||
# Implementations.
|
||||
|
||||
class StreamStartEvent(Event):
|
||||
def __init__(self, start_mark=None, end_mark=None, encoding=None):
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
self.encoding = encoding
|
||||
|
||||
class StreamEndEvent(Event):
|
||||
pass
|
||||
|
||||
class DocumentStartEvent(Event):
|
||||
def __init__(self, start_mark=None, end_mark=None,
|
||||
explicit=None, version=None, tags=None):
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
self.explicit = explicit
|
||||
self.version = version
|
||||
self.tags = tags
|
||||
|
||||
class DocumentEndEvent(Event):
|
||||
def __init__(self, start_mark=None, end_mark=None,
|
||||
explicit=None):
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
self.explicit = explicit
|
||||
|
||||
class AliasEvent(NodeEvent):
|
||||
pass
|
||||
|
||||
class ScalarEvent(NodeEvent):
|
||||
def __init__(self, anchor, tag, implicit, value,
|
||||
start_mark=None, end_mark=None, style=None):
|
||||
self.anchor = anchor
|
||||
self.tag = tag
|
||||
self.implicit = implicit
|
||||
self.value = value
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
self.style = style
|
||||
|
||||
class SequenceStartEvent(CollectionStartEvent):
|
||||
pass
|
||||
|
||||
class SequenceEndEvent(CollectionEndEvent):
|
||||
pass
|
||||
|
||||
class MappingStartEvent(CollectionStartEvent):
|
||||
pass
|
||||
|
||||
class MappingEndEvent(CollectionEndEvent):
|
||||
pass
|
||||
|
||||
@@ -1,40 +0,0 @@
|
||||
|
||||
__all__ = ['BaseLoader', 'SafeLoader', 'Loader']
|
||||
|
||||
from reader import *
|
||||
from scanner import *
|
||||
from parser import *
|
||||
from composer import *
|
||||
from constructor import *
|
||||
from resolver import *
|
||||
|
||||
class BaseLoader(Reader, Scanner, Parser, Composer, BaseConstructor, BaseResolver):
|
||||
|
||||
def __init__(self, stream):
|
||||
Reader.__init__(self, stream)
|
||||
Scanner.__init__(self)
|
||||
Parser.__init__(self)
|
||||
Composer.__init__(self)
|
||||
BaseConstructor.__init__(self)
|
||||
BaseResolver.__init__(self)
|
||||
|
||||
class SafeLoader(Reader, Scanner, Parser, Composer, SafeConstructor, Resolver):
|
||||
|
||||
def __init__(self, stream):
|
||||
Reader.__init__(self, stream)
|
||||
Scanner.__init__(self)
|
||||
Parser.__init__(self)
|
||||
Composer.__init__(self)
|
||||
SafeConstructor.__init__(self)
|
||||
Resolver.__init__(self)
|
||||
|
||||
class Loader(Reader, Scanner, Parser, Composer, Constructor, Resolver):
|
||||
|
||||
def __init__(self, stream):
|
||||
Reader.__init__(self, stream)
|
||||
Scanner.__init__(self)
|
||||
Parser.__init__(self)
|
||||
Composer.__init__(self)
|
||||
Constructor.__init__(self)
|
||||
Resolver.__init__(self)
|
||||
|
||||
@@ -1,49 +0,0 @@
|
||||
|
||||
class Node(object):
|
||||
def __init__(self, tag, value, start_mark, end_mark):
|
||||
self.tag = tag
|
||||
self.value = value
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
def __repr__(self):
|
||||
value = self.value
|
||||
#if isinstance(value, list):
|
||||
# if len(value) == 0:
|
||||
# value = '<empty>'
|
||||
# elif len(value) == 1:
|
||||
# value = '<1 item>'
|
||||
# else:
|
||||
# value = '<%d items>' % len(value)
|
||||
#else:
|
||||
# if len(value) > 75:
|
||||
# value = repr(value[:70]+u' ... ')
|
||||
# else:
|
||||
# value = repr(value)
|
||||
value = repr(value)
|
||||
return '%s(tag=%r, value=%s)' % (self.__class__.__name__, self.tag, value)
|
||||
|
||||
class ScalarNode(Node):
|
||||
id = 'scalar'
|
||||
def __init__(self, tag, value,
|
||||
start_mark=None, end_mark=None, style=None):
|
||||
self.tag = tag
|
||||
self.value = value
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
self.style = style
|
||||
|
||||
class CollectionNode(Node):
|
||||
def __init__(self, tag, value,
|
||||
start_mark=None, end_mark=None, flow_style=None):
|
||||
self.tag = tag
|
||||
self.value = value
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
self.flow_style = flow_style
|
||||
|
||||
class SequenceNode(CollectionNode):
|
||||
id = 'sequence'
|
||||
|
||||
class MappingNode(CollectionNode):
|
||||
id = 'mapping'
|
||||
|
||||
@@ -1,584 +0,0 @@
|
||||
|
||||
# The following YAML grammar is LL(1) and is parsed by a recursive descent
|
||||
# parser.
|
||||
#
|
||||
# stream ::= STREAM-START implicit_document? explicit_document* STREAM-END
|
||||
# implicit_document ::= block_node DOCUMENT-END*
|
||||
# explicit_document ::= DIRECTIVE* DOCUMENT-START block_node? DOCUMENT-END*
|
||||
# block_node_or_indentless_sequence ::=
|
||||
# ALIAS
|
||||
# | properties (block_content | indentless_block_sequence)?
|
||||
# | block_content
|
||||
# | indentless_block_sequence
|
||||
# block_node ::= ALIAS
|
||||
# | properties block_content?
|
||||
# | block_content
|
||||
# flow_node ::= ALIAS
|
||||
# | properties flow_content?
|
||||
# | flow_content
|
||||
# properties ::= TAG ANCHOR? | ANCHOR TAG?
|
||||
# block_content ::= block_collection | flow_collection | SCALAR
|
||||
# flow_content ::= flow_collection | SCALAR
|
||||
# block_collection ::= block_sequence | block_mapping
|
||||
# flow_collection ::= flow_sequence | flow_mapping
|
||||
# block_sequence ::= BLOCK-SEQUENCE-START (BLOCK-ENTRY block_node?)* BLOCK-END
|
||||
# indentless_sequence ::= (BLOCK-ENTRY block_node?)+
|
||||
# block_mapping ::= BLOCK-MAPPING_START
|
||||
# ((KEY block_node_or_indentless_sequence?)?
|
||||
# (VALUE block_node_or_indentless_sequence?)?)*
|
||||
# BLOCK-END
|
||||
# flow_sequence ::= FLOW-SEQUENCE-START
|
||||
# (flow_sequence_entry FLOW-ENTRY)*
|
||||
# flow_sequence_entry?
|
||||
# FLOW-SEQUENCE-END
|
||||
# flow_sequence_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)?
|
||||
# flow_mapping ::= FLOW-MAPPING-START
|
||||
# (flow_mapping_entry FLOW-ENTRY)*
|
||||
# flow_mapping_entry?
|
||||
# FLOW-MAPPING-END
|
||||
# flow_mapping_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)?
|
||||
#
|
||||
# FIRST sets:
|
||||
#
|
||||
# stream: { STREAM-START }
|
||||
# explicit_document: { DIRECTIVE DOCUMENT-START }
|
||||
# implicit_document: FIRST(block_node)
|
||||
# block_node: { ALIAS TAG ANCHOR SCALAR BLOCK-SEQUENCE-START BLOCK-MAPPING-START FLOW-SEQUENCE-START FLOW-MAPPING-START }
|
||||
# flow_node: { ALIAS ANCHOR TAG SCALAR FLOW-SEQUENCE-START FLOW-MAPPING-START }
|
||||
# block_content: { BLOCK-SEQUENCE-START BLOCK-MAPPING-START FLOW-SEQUENCE-START FLOW-MAPPING-START SCALAR }
|
||||
# flow_content: { FLOW-SEQUENCE-START FLOW-MAPPING-START SCALAR }
|
||||
# block_collection: { BLOCK-SEQUENCE-START BLOCK-MAPPING-START }
|
||||
# flow_collection: { FLOW-SEQUENCE-START FLOW-MAPPING-START }
|
||||
# block_sequence: { BLOCK-SEQUENCE-START }
|
||||
# block_mapping: { BLOCK-MAPPING-START }
|
||||
# block_node_or_indentless_sequence: { ALIAS ANCHOR TAG SCALAR BLOCK-SEQUENCE-START BLOCK-MAPPING-START FLOW-SEQUENCE-START FLOW-MAPPING-START BLOCK-ENTRY }
|
||||
# indentless_sequence: { ENTRY }
|
||||
# flow_collection: { FLOW-SEQUENCE-START FLOW-MAPPING-START }
|
||||
# flow_sequence: { FLOW-SEQUENCE-START }
|
||||
# flow_mapping: { FLOW-MAPPING-START }
|
||||
# flow_sequence_entry: { ALIAS ANCHOR TAG SCALAR FLOW-SEQUENCE-START FLOW-MAPPING-START KEY }
|
||||
# flow_mapping_entry: { ALIAS ANCHOR TAG SCALAR FLOW-SEQUENCE-START FLOW-MAPPING-START KEY }
|
||||
|
||||
__all__ = ['Parser', 'ParserError']
|
||||
|
||||
from error import MarkedYAMLError
|
||||
from tokens import *
|
||||
from events import *
|
||||
from scanner import *
|
||||
|
||||
class ParserError(MarkedYAMLError):
|
||||
pass
|
||||
|
||||
class Parser(object):
|
||||
# Since writing a recursive-descendant parser is a straightforward task, we
|
||||
# do not give many comments here.
|
||||
|
||||
DEFAULT_TAGS = {
|
||||
u'!': u'!',
|
||||
u'!!': u'tag:yaml.org,2002:',
|
||||
}
|
||||
|
||||
def __init__(self):
|
||||
self.current_event = None
|
||||
self.yaml_version = None
|
||||
self.tag_handles = {}
|
||||
self.states = []
|
||||
self.marks = []
|
||||
self.state = self.parse_stream_start
|
||||
|
||||
def check_event(self, *choices):
|
||||
# Check the type of the next event.
|
||||
if self.current_event is None:
|
||||
if self.state:
|
||||
self.current_event = self.state()
|
||||
if self.current_event is not None:
|
||||
if not choices:
|
||||
return True
|
||||
for choice in choices:
|
||||
if isinstance(self.current_event, choice):
|
||||
return True
|
||||
return False
|
||||
|
||||
def peek_event(self):
|
||||
# Get the next event.
|
||||
if self.current_event is None:
|
||||
if self.state:
|
||||
self.current_event = self.state()
|
||||
return self.current_event
|
||||
|
||||
def get_event(self):
|
||||
# Get the next event and proceed further.
|
||||
if self.current_event is None:
|
||||
if self.state:
|
||||
self.current_event = self.state()
|
||||
value = self.current_event
|
||||
self.current_event = None
|
||||
return value
|
||||
|
||||
# stream ::= STREAM-START implicit_document? explicit_document* STREAM-END
|
||||
# implicit_document ::= block_node DOCUMENT-END*
|
||||
# explicit_document ::= DIRECTIVE* DOCUMENT-START block_node? DOCUMENT-END*
|
||||
|
||||
def parse_stream_start(self):
|
||||
|
||||
# Parse the stream start.
|
||||
token = self.get_token()
|
||||
event = StreamStartEvent(token.start_mark, token.end_mark,
|
||||
encoding=token.encoding)
|
||||
|
||||
# Prepare the next state.
|
||||
self.state = self.parse_implicit_document_start
|
||||
|
||||
return event
|
||||
|
||||
def parse_implicit_document_start(self):
|
||||
|
||||
# Parse an implicit document.
|
||||
if not self.check_token(DirectiveToken, DocumentStartToken,
|
||||
StreamEndToken):
|
||||
self.tag_handles = self.DEFAULT_TAGS
|
||||
token = self.peek_token()
|
||||
start_mark = end_mark = token.start_mark
|
||||
event = DocumentStartEvent(start_mark, end_mark,
|
||||
explicit=False)
|
||||
|
||||
# Prepare the next state.
|
||||
self.states.append(self.parse_document_end)
|
||||
self.state = self.parse_block_node
|
||||
|
||||
return event
|
||||
|
||||
else:
|
||||
return self.parse_document_start()
|
||||
|
||||
def parse_document_start(self):
|
||||
|
||||
# Parse any extra document end indicators.
|
||||
while self.check_token(DocumentEndToken):
|
||||
self.get_token()
|
||||
|
||||
# Parse an explicit document.
|
||||
if not self.check_token(StreamEndToken):
|
||||
token = self.peek_token()
|
||||
start_mark = token.start_mark
|
||||
version, tags = self.process_directives()
|
||||
if not self.check_token(DocumentStartToken):
|
||||
raise ParserError(None, None,
|
||||
"expected '<document start>', but found %r"
|
||||
% self.peek_token().id,
|
||||
self.peek_token().start_mark)
|
||||
token = self.get_token()
|
||||
end_mark = token.end_mark
|
||||
event = DocumentStartEvent(start_mark, end_mark,
|
||||
explicit=True, version=version, tags=tags)
|
||||
self.states.append(self.parse_document_end)
|
||||
self.state = self.parse_document_content
|
||||
else:
|
||||
# Parse the end of the stream.
|
||||
token = self.get_token()
|
||||
event = StreamEndEvent(token.start_mark, token.end_mark)
|
||||
assert not self.states
|
||||
assert not self.marks
|
||||
self.state = None
|
||||
return event
|
||||
|
||||
def parse_document_end(self):
|
||||
|
||||
# Parse the document end.
|
||||
token = self.peek_token()
|
||||
start_mark = end_mark = token.start_mark
|
||||
explicit = False
|
||||
if self.check_token(DocumentEndToken):
|
||||
token = self.get_token()
|
||||
end_mark = token.end_mark
|
||||
explicit = True
|
||||
event = DocumentEndEvent(start_mark, end_mark,
|
||||
explicit=explicit)
|
||||
|
||||
# Prepare the next state.
|
||||
self.state = self.parse_document_start
|
||||
|
||||
return event
|
||||
|
||||
def parse_document_content(self):
|
||||
if self.check_token(DirectiveToken,
|
||||
DocumentStartToken, DocumentEndToken, StreamEndToken):
|
||||
event = self.process_empty_scalar(self.peek_token().start_mark)
|
||||
self.state = self.states.pop()
|
||||
return event
|
||||
else:
|
||||
return self.parse_block_node()
|
||||
|
||||
def process_directives(self):
|
||||
self.yaml_version = None
|
||||
self.tag_handles = {}
|
||||
while self.check_token(DirectiveToken):
|
||||
token = self.get_token()
|
||||
if token.name == u'YAML':
|
||||
if self.yaml_version is not None:
|
||||
raise ParserError(None, None,
|
||||
"found duplicate YAML directive", token.start_mark)
|
||||
major, minor = token.value
|
||||
if major != 1:
|
||||
raise ParserError(None, None,
|
||||
"found incompatible YAML document (version 1.* is required)",
|
||||
token.start_mark)
|
||||
self.yaml_version = token.value
|
||||
elif token.name == u'TAG':
|
||||
handle, prefix = token.value
|
||||
if handle in self.tag_handles:
|
||||
raise ParserError(None, None,
|
||||
"duplicate tag handle %r" % handle.encode('utf-8'),
|
||||
token.start_mark)
|
||||
self.tag_handles[handle] = prefix
|
||||
if self.tag_handles:
|
||||
value = self.yaml_version, self.tag_handles.copy()
|
||||
else:
|
||||
value = self.yaml_version, None
|
||||
for key in self.DEFAULT_TAGS:
|
||||
if key not in self.tag_handles:
|
||||
self.tag_handles[key] = self.DEFAULT_TAGS[key]
|
||||
return value
|
||||
|
||||
# block_node_or_indentless_sequence ::= ALIAS
|
||||
# | properties (block_content | indentless_block_sequence)?
|
||||
# | block_content
|
||||
# | indentless_block_sequence
|
||||
# block_node ::= ALIAS
|
||||
# | properties block_content?
|
||||
# | block_content
|
||||
# flow_node ::= ALIAS
|
||||
# | properties flow_content?
|
||||
# | flow_content
|
||||
# properties ::= TAG ANCHOR? | ANCHOR TAG?
|
||||
# block_content ::= block_collection | flow_collection | SCALAR
|
||||
# flow_content ::= flow_collection | SCALAR
|
||||
# block_collection ::= block_sequence | block_mapping
|
||||
# flow_collection ::= flow_sequence | flow_mapping
|
||||
|
||||
def parse_block_node(self):
|
||||
return self.parse_node(block=True)
|
||||
|
||||
def parse_flow_node(self):
|
||||
return self.parse_node()
|
||||
|
||||
def parse_block_node_or_indentless_sequence(self):
|
||||
return self.parse_node(block=True, indentless_sequence=True)
|
||||
|
||||
def parse_node(self, block=False, indentless_sequence=False):
|
||||
if self.check_token(AliasToken):
|
||||
token = self.get_token()
|
||||
event = AliasEvent(token.value, token.start_mark, token.end_mark)
|
||||
self.state = self.states.pop()
|
||||
else:
|
||||
anchor = None
|
||||
tag = None
|
||||
start_mark = end_mark = tag_mark = None
|
||||
if self.check_token(AnchorToken):
|
||||
token = self.get_token()
|
||||
start_mark = token.start_mark
|
||||
end_mark = token.end_mark
|
||||
anchor = token.value
|
||||
if self.check_token(TagToken):
|
||||
token = self.get_token()
|
||||
tag_mark = token.start_mark
|
||||
end_mark = token.end_mark
|
||||
tag = token.value
|
||||
elif self.check_token(TagToken):
|
||||
token = self.get_token()
|
||||
start_mark = tag_mark = token.start_mark
|
||||
end_mark = token.end_mark
|
||||
tag = token.value
|
||||
if self.check_token(AnchorToken):
|
||||
token = self.get_token()
|
||||
end_mark = token.end_mark
|
||||
anchor = token.value
|
||||
if tag is not None:
|
||||
handle, suffix = tag
|
||||
if handle is not None:
|
||||
if handle not in self.tag_handles:
|
||||
raise ParserError("while parsing a node", start_mark,
|
||||
"found undefined tag handle %r" % handle.encode('utf-8'),
|
||||
tag_mark)
|
||||
tag = self.tag_handles[handle]+suffix
|
||||
else:
|
||||
tag = suffix
|
||||
#if tag == u'!':
|
||||
# raise ParserError("while parsing a node", start_mark,
|
||||
# "found non-specific tag '!'", tag_mark,
|
||||
# "Please check 'http://pyyaml.org/wiki/YAMLNonSpecificTag' and share your opinion.")
|
||||
if start_mark is None:
|
||||
start_mark = end_mark = self.peek_token().start_mark
|
||||
event = None
|
||||
implicit = (tag is None or tag == u'!')
|
||||
if indentless_sequence and self.check_token(BlockEntryToken):
|
||||
end_mark = self.peek_token().end_mark
|
||||
event = SequenceStartEvent(anchor, tag, implicit,
|
||||
start_mark, end_mark)
|
||||
self.state = self.parse_indentless_sequence_entry
|
||||
else:
|
||||
if self.check_token(ScalarToken):
|
||||
token = self.get_token()
|
||||
end_mark = token.end_mark
|
||||
if (token.plain and tag is None) or tag == u'!':
|
||||
implicit = (True, False)
|
||||
elif tag is None:
|
||||
implicit = (False, True)
|
||||
else:
|
||||
implicit = (False, False)
|
||||
event = ScalarEvent(anchor, tag, implicit, token.value,
|
||||
start_mark, end_mark, style=token.style)
|
||||
self.state = self.states.pop()
|
||||
elif self.check_token(FlowSequenceStartToken):
|
||||
end_mark = self.peek_token().end_mark
|
||||
event = SequenceStartEvent(anchor, tag, implicit,
|
||||
start_mark, end_mark, flow_style=True)
|
||||
self.state = self.parse_flow_sequence_first_entry
|
||||
elif self.check_token(FlowMappingStartToken):
|
||||
end_mark = self.peek_token().end_mark
|
||||
event = MappingStartEvent(anchor, tag, implicit,
|
||||
start_mark, end_mark, flow_style=True)
|
||||
self.state = self.parse_flow_mapping_first_key
|
||||
elif block and self.check_token(BlockSequenceStartToken):
|
||||
end_mark = self.peek_token().start_mark
|
||||
event = SequenceStartEvent(anchor, tag, implicit,
|
||||
start_mark, end_mark, flow_style=False)
|
||||
self.state = self.parse_block_sequence_first_entry
|
||||
elif block and self.check_token(BlockMappingStartToken):
|
||||
end_mark = self.peek_token().start_mark
|
||||
event = MappingStartEvent(anchor, tag, implicit,
|
||||
start_mark, end_mark, flow_style=False)
|
||||
self.state = self.parse_block_mapping_first_key
|
||||
elif anchor is not None or tag is not None:
|
||||
# Empty scalars are allowed even if a tag or an anchor is
|
||||
# specified.
|
||||
event = ScalarEvent(anchor, tag, (implicit, False), u'',
|
||||
start_mark, end_mark)
|
||||
self.state = self.states.pop()
|
||||
else:
|
||||
if block:
|
||||
node = 'block'
|
||||
else:
|
||||
node = 'flow'
|
||||
token = self.peek_token()
|
||||
raise ParserError("while parsing a %s node" % node, start_mark,
|
||||
"expected the node content, but found %r" % token.id,
|
||||
token.start_mark)
|
||||
return event
|
||||
|
||||
# block_sequence ::= BLOCK-SEQUENCE-START (BLOCK-ENTRY block_node?)* BLOCK-END
|
||||
|
||||
def parse_block_sequence_first_entry(self):
|
||||
token = self.get_token()
|
||||
self.marks.append(token.start_mark)
|
||||
return self.parse_block_sequence_entry()
|
||||
|
||||
def parse_block_sequence_entry(self):
|
||||
if self.check_token(BlockEntryToken):
|
||||
token = self.get_token()
|
||||
if not self.check_token(BlockEntryToken, BlockEndToken):
|
||||
self.states.append(self.parse_block_sequence_entry)
|
||||
return self.parse_block_node()
|
||||
else:
|
||||
self.state = self.parse_block_sequence_entry
|
||||
return self.process_empty_scalar(token.end_mark)
|
||||
if not self.check_token(BlockEndToken):
|
||||
token = self.peek_token()
|
||||
raise ParserError("while parsing a block collection", self.marks[-1],
|
||||
"expected <block end>, but found %r" % token.id, token.start_mark)
|
||||
token = self.get_token()
|
||||
event = SequenceEndEvent(token.start_mark, token.end_mark)
|
||||
self.state = self.states.pop()
|
||||
self.marks.pop()
|
||||
return event
|
||||
|
||||
# indentless_sequence ::= (BLOCK-ENTRY block_node?)+
|
||||
|
||||
def parse_indentless_sequence_entry(self):
|
||||
if self.check_token(BlockEntryToken):
|
||||
token = self.get_token()
|
||||
if not self.check_token(BlockEntryToken,
|
||||
KeyToken, ValueToken, BlockEndToken):
|
||||
self.states.append(self.parse_indentless_sequence_entry)
|
||||
return self.parse_block_node()
|
||||
else:
|
||||
self.state = self.parse_indentless_sequence_entry
|
||||
return self.process_empty_scalar(token.end_mark)
|
||||
token = self.peek_token()
|
||||
event = SequenceEndEvent(token.start_mark, token.start_mark)
|
||||
self.state = self.states.pop()
|
||||
return event
|
||||
|
||||
# block_mapping ::= BLOCK-MAPPING_START
|
||||
# ((KEY block_node_or_indentless_sequence?)?
|
||||
# (VALUE block_node_or_indentless_sequence?)?)*
|
||||
# BLOCK-END
|
||||
|
||||
def parse_block_mapping_first_key(self):
|
||||
token = self.get_token()
|
||||
self.marks.append(token.start_mark)
|
||||
return self.parse_block_mapping_key()
|
||||
|
||||
def parse_block_mapping_key(self):
|
||||
if self.check_token(KeyToken):
|
||||
token = self.get_token()
|
||||
if not self.check_token(KeyToken, ValueToken, BlockEndToken):
|
||||
self.states.append(self.parse_block_mapping_value)
|
||||
return self.parse_block_node_or_indentless_sequence()
|
||||
else:
|
||||
self.state = self.parse_block_mapping_value
|
||||
return self.process_empty_scalar(token.end_mark)
|
||||
if not self.check_token(BlockEndToken):
|
||||
token = self.peek_token()
|
||||
raise ParserError("while parsing a block mapping", self.marks[-1],
|
||||
"expected <block end>, but found %r" % token.id, token.start_mark)
|
||||
token = self.get_token()
|
||||
event = MappingEndEvent(token.start_mark, token.end_mark)
|
||||
self.state = self.states.pop()
|
||||
self.marks.pop()
|
||||
return event
|
||||
|
||||
def parse_block_mapping_value(self):
|
||||
if self.check_token(ValueToken):
|
||||
token = self.get_token()
|
||||
if not self.check_token(KeyToken, ValueToken, BlockEndToken):
|
||||
self.states.append(self.parse_block_mapping_key)
|
||||
return self.parse_block_node_or_indentless_sequence()
|
||||
else:
|
||||
self.state = self.parse_block_mapping_key
|
||||
return self.process_empty_scalar(token.end_mark)
|
||||
else:
|
||||
self.state = self.parse_block_mapping_key
|
||||
token = self.peek_token()
|
||||
return self.process_empty_scalar(token.start_mark)
|
||||
|
||||
# flow_sequence ::= FLOW-SEQUENCE-START
|
||||
# (flow_sequence_entry FLOW-ENTRY)*
|
||||
# flow_sequence_entry?
|
||||
# FLOW-SEQUENCE-END
|
||||
# flow_sequence_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)?
|
||||
#
|
||||
# Note that while production rules for both flow_sequence_entry and
|
||||
# flow_mapping_entry are equal, their interpretations are different.
|
||||
# For `flow_sequence_entry`, the part `KEY flow_node? (VALUE flow_node?)?`
|
||||
# generate an inline mapping (set syntax).
|
||||
|
||||
def parse_flow_sequence_first_entry(self):
|
||||
token = self.get_token()
|
||||
self.marks.append(token.start_mark)
|
||||
return self.parse_flow_sequence_entry(first=True)
|
||||
|
||||
def parse_flow_sequence_entry(self, first=False):
|
||||
if not self.check_token(FlowSequenceEndToken):
|
||||
if not first:
|
||||
if self.check_token(FlowEntryToken):
|
||||
self.get_token()
|
||||
else:
|
||||
token = self.peek_token()
|
||||
raise ParserError("while parsing a flow sequence", self.marks[-1],
|
||||
"expected ',' or ']', but got %r" % token.id, token.start_mark)
|
||||
|
||||
if self.check_token(KeyToken):
|
||||
token = self.peek_token()
|
||||
event = MappingStartEvent(None, None, True,
|
||||
token.start_mark, token.end_mark,
|
||||
flow_style=True)
|
||||
self.state = self.parse_flow_sequence_entry_mapping_key
|
||||
return event
|
||||
elif not self.check_token(FlowSequenceEndToken):
|
||||
self.states.append(self.parse_flow_sequence_entry)
|
||||
return self.parse_flow_node()
|
||||
token = self.get_token()
|
||||
event = SequenceEndEvent(token.start_mark, token.end_mark)
|
||||
self.state = self.states.pop()
|
||||
self.marks.pop()
|
||||
return event
|
||||
|
||||
def parse_flow_sequence_entry_mapping_key(self):
|
||||
token = self.get_token()
|
||||
if not self.check_token(ValueToken,
|
||||
FlowEntryToken, FlowSequenceEndToken):
|
||||
self.states.append(self.parse_flow_sequence_entry_mapping_value)
|
||||
return self.parse_flow_node()
|
||||
else:
|
||||
self.state = self.parse_flow_sequence_entry_mapping_value
|
||||
return self.process_empty_scalar(token.end_mark)
|
||||
|
||||
def parse_flow_sequence_entry_mapping_value(self):
|
||||
if self.check_token(ValueToken):
|
||||
token = self.get_token()
|
||||
if not self.check_token(FlowEntryToken, FlowSequenceEndToken):
|
||||
self.states.append(self.parse_flow_sequence_entry_mapping_end)
|
||||
return self.parse_flow_node()
|
||||
else:
|
||||
self.state = self.parse_flow_sequence_entry_mapping_end
|
||||
return self.process_empty_scalar(token.end_mark)
|
||||
else:
|
||||
self.state = self.parse_flow_sequence_entry_mapping_end
|
||||
token = self.peek_token()
|
||||
return self.process_empty_scalar(token.start_mark)
|
||||
|
||||
def parse_flow_sequence_entry_mapping_end(self):
|
||||
self.state = self.parse_flow_sequence_entry
|
||||
token = self.peek_token()
|
||||
return MappingEndEvent(token.start_mark, token.start_mark)
|
||||
|
||||
# flow_mapping ::= FLOW-MAPPING-START
|
||||
# (flow_mapping_entry FLOW-ENTRY)*
|
||||
# flow_mapping_entry?
|
||||
# FLOW-MAPPING-END
|
||||
# flow_mapping_entry ::= flow_node | KEY flow_node? (VALUE flow_node?)?
|
||||
|
||||
def parse_flow_mapping_first_key(self):
|
||||
token = self.get_token()
|
||||
self.marks.append(token.start_mark)
|
||||
return self.parse_flow_mapping_key(first=True)
|
||||
|
||||
def parse_flow_mapping_key(self, first=False):
|
||||
if not self.check_token(FlowMappingEndToken):
|
||||
if not first:
|
||||
if self.check_token(FlowEntryToken):
|
||||
self.get_token()
|
||||
else:
|
||||
token = self.peek_token()
|
||||
raise ParserError("while parsing a flow mapping", self.marks[-1],
|
||||
"expected ',' or '}', but got %r" % token.id, token.start_mark)
|
||||
if self.check_token(KeyToken):
|
||||
token = self.get_token()
|
||||
if not self.check_token(ValueToken,
|
||||
FlowEntryToken, FlowMappingEndToken):
|
||||
self.states.append(self.parse_flow_mapping_value)
|
||||
return self.parse_flow_node()
|
||||
else:
|
||||
self.state = self.parse_flow_mapping_value
|
||||
return self.process_empty_scalar(token.end_mark)
|
||||
elif not self.check_token(FlowMappingEndToken):
|
||||
self.states.append(self.parse_flow_mapping_empty_value)
|
||||
return self.parse_flow_node()
|
||||
token = self.get_token()
|
||||
event = MappingEndEvent(token.start_mark, token.end_mark)
|
||||
self.state = self.states.pop()
|
||||
self.marks.pop()
|
||||
return event
|
||||
|
||||
def parse_flow_mapping_value(self):
|
||||
if self.check_token(ValueToken):
|
||||
token = self.get_token()
|
||||
if not self.check_token(FlowEntryToken, FlowMappingEndToken):
|
||||
self.states.append(self.parse_flow_mapping_key)
|
||||
return self.parse_flow_node()
|
||||
else:
|
||||
self.state = self.parse_flow_mapping_key
|
||||
return self.process_empty_scalar(token.end_mark)
|
||||
else:
|
||||
self.state = self.parse_flow_mapping_key
|
||||
token = self.peek_token()
|
||||
return self.process_empty_scalar(token.start_mark)
|
||||
|
||||
def parse_flow_mapping_empty_value(self):
|
||||
self.state = self.parse_flow_mapping_key
|
||||
return self.process_empty_scalar(self.peek_token().start_mark)
|
||||
|
||||
def process_empty_scalar(self, mark):
|
||||
return ScalarEvent(None, None, (True, False), u'', mark, mark)
|
||||
|
||||
@@ -1,225 +0,0 @@
|
||||
# This module contains abstractions for the input stream. You don't have to
|
||||
# looks further, there are no pretty code.
|
||||
#
|
||||
# We define two classes here.
|
||||
#
|
||||
# Mark(source, line, column)
|
||||
# It's just a record and its only use is producing nice error messages.
|
||||
# Parser does not use it for any other purposes.
|
||||
#
|
||||
# Reader(source, data)
|
||||
# Reader determines the encoding of `data` and converts it to unicode.
|
||||
# Reader provides the following methods and attributes:
|
||||
# reader.peek(length=1) - return the next `length` characters
|
||||
# reader.forward(length=1) - move the current position to `length` characters.
|
||||
# reader.index - the number of the current character.
|
||||
# reader.line, stream.column - the line and the column of the current character.
|
||||
|
||||
__all__ = ['Reader', 'ReaderError']
|
||||
|
||||
from error import YAMLError, Mark
|
||||
|
||||
import codecs, re
|
||||
|
||||
# Unfortunately, codec functions in Python 2.3 does not support the `finish`
|
||||
# arguments, so we have to write our own wrappers.
|
||||
|
||||
try:
|
||||
codecs.utf_8_decode('', 'strict', False)
|
||||
from codecs import utf_8_decode, utf_16_le_decode, utf_16_be_decode
|
||||
|
||||
except TypeError:
|
||||
|
||||
def utf_16_le_decode(data, errors, finish=False):
|
||||
if not finish and len(data) % 2 == 1:
|
||||
data = data[:-1]
|
||||
return codecs.utf_16_le_decode(data, errors)
|
||||
|
||||
def utf_16_be_decode(data, errors, finish=False):
|
||||
if not finish and len(data) % 2 == 1:
|
||||
data = data[:-1]
|
||||
return codecs.utf_16_be_decode(data, errors)
|
||||
|
||||
def utf_8_decode(data, errors, finish=False):
|
||||
if not finish:
|
||||
# We are trying to remove a possible incomplete multibyte character
|
||||
# from the suffix of the data.
|
||||
# The first byte of a multi-byte sequence is in the range 0xc0 to 0xfd.
|
||||
# All further bytes are in the range 0x80 to 0xbf.
|
||||
# UTF-8 encoded UCS characters may be up to six bytes long.
|
||||
count = 0
|
||||
while count < 5 and count < len(data) \
|
||||
and '\x80' <= data[-count-1] <= '\xBF':
|
||||
count -= 1
|
||||
if count < 5 and count < len(data) \
|
||||
and '\xC0' <= data[-count-1] <= '\xFD':
|
||||
data = data[:-count-1]
|
||||
return codecs.utf_8_decode(data, errors)
|
||||
|
||||
class ReaderError(YAMLError):
|
||||
|
||||
def __init__(self, name, position, character, encoding, reason):
|
||||
self.name = name
|
||||
self.character = character
|
||||
self.position = position
|
||||
self.encoding = encoding
|
||||
self.reason = reason
|
||||
|
||||
def __str__(self):
|
||||
if isinstance(self.character, str):
|
||||
return "'%s' codec can't decode byte #x%02x: %s\n" \
|
||||
" in \"%s\", position %d" \
|
||||
% (self.encoding, ord(self.character), self.reason,
|
||||
self.name, self.position)
|
||||
else:
|
||||
return "unacceptable character #x%04x: %s\n" \
|
||||
" in \"%s\", position %d" \
|
||||
% (self.character, self.reason,
|
||||
self.name, self.position)
|
||||
|
||||
class Reader(object):
|
||||
# Reader:
|
||||
# - determines the data encoding and converts it to unicode,
|
||||
# - checks if characters are in allowed range,
|
||||
# - adds '\0' to the end.
|
||||
|
||||
# Reader accepts
|
||||
# - a `str` object,
|
||||
# - a `unicode` object,
|
||||
# - a file-like object with its `read` method returning `str`,
|
||||
# - a file-like object with its `read` method returning `unicode`.
|
||||
|
||||
# Yeah, it's ugly and slow.
|
||||
|
||||
def __init__(self, stream):
|
||||
self.name = None
|
||||
self.stream = None
|
||||
self.stream_pointer = 0
|
||||
self.eof = True
|
||||
self.buffer = u''
|
||||
self.pointer = 0
|
||||
self.raw_buffer = None
|
||||
self.raw_decode = None
|
||||
self.encoding = None
|
||||
self.index = 0
|
||||
self.line = 0
|
||||
self.column = 0
|
||||
if isinstance(stream, unicode):
|
||||
self.name = "<unicode string>"
|
||||
self.check_printable(stream)
|
||||
self.buffer = stream+u'\0'
|
||||
elif isinstance(stream, str):
|
||||
self.name = "<string>"
|
||||
self.raw_buffer = stream
|
||||
self.determine_encoding()
|
||||
else:
|
||||
self.stream = stream
|
||||
self.name = getattr(stream, 'name', "<file>")
|
||||
self.eof = False
|
||||
self.raw_buffer = ''
|
||||
self.determine_encoding()
|
||||
|
||||
def peek(self, index=0):
|
||||
try:
|
||||
return self.buffer[self.pointer+index]
|
||||
except IndexError:
|
||||
self.update(index+1)
|
||||
return self.buffer[self.pointer+index]
|
||||
|
||||
def prefix(self, length=1):
|
||||
if self.pointer+length >= len(self.buffer):
|
||||
self.update(length)
|
||||
return self.buffer[self.pointer:self.pointer+length]
|
||||
|
||||
def forward(self, length=1):
|
||||
if self.pointer+length+1 >= len(self.buffer):
|
||||
self.update(length+1)
|
||||
while length:
|
||||
ch = self.buffer[self.pointer]
|
||||
self.pointer += 1
|
||||
self.index += 1
|
||||
if ch in u'\n\x85\u2028\u2029' \
|
||||
or (ch == u'\r' and self.buffer[self.pointer] != u'\n'):
|
||||
self.line += 1
|
||||
self.column = 0
|
||||
elif ch != u'\uFEFF':
|
||||
self.column += 1
|
||||
length -= 1
|
||||
|
||||
def get_mark(self):
|
||||
if self.stream is None:
|
||||
return Mark(self.name, self.index, self.line, self.column,
|
||||
self.buffer, self.pointer)
|
||||
else:
|
||||
return Mark(self.name, self.index, self.line, self.column,
|
||||
None, None)
|
||||
|
||||
def determine_encoding(self):
|
||||
while not self.eof and len(self.raw_buffer) < 2:
|
||||
self.update_raw()
|
||||
if not isinstance(self.raw_buffer, unicode):
|
||||
if self.raw_buffer.startswith(codecs.BOM_UTF16_LE):
|
||||
self.raw_decode = utf_16_le_decode
|
||||
self.encoding = 'utf-16-le'
|
||||
elif self.raw_buffer.startswith(codecs.BOM_UTF16_BE):
|
||||
self.raw_decode = utf_16_be_decode
|
||||
self.encoding = 'utf-16-be'
|
||||
else:
|
||||
self.raw_decode = utf_8_decode
|
||||
self.encoding = 'utf-8'
|
||||
self.update(1)
|
||||
|
||||
NON_PRINTABLE = re.compile(u'[^\x09\x0A\x0D\x20-\x7E\x85\xA0-\uD7FF\uE000-\uFFFD]')
|
||||
def check_printable(self, data):
|
||||
match = self.NON_PRINTABLE.search(data)
|
||||
if match:
|
||||
character = match.group()
|
||||
position = self.index+(len(self.buffer)-self.pointer)+match.start()
|
||||
raise ReaderError(self.name, position, ord(character),
|
||||
'unicode', "special characters are not allowed")
|
||||
|
||||
def update(self, length):
|
||||
if self.raw_buffer is None:
|
||||
return
|
||||
self.buffer = self.buffer[self.pointer:]
|
||||
self.pointer = 0
|
||||
while len(self.buffer) < length:
|
||||
if not self.eof:
|
||||
self.update_raw()
|
||||
if self.raw_decode is not None:
|
||||
try:
|
||||
data, converted = self.raw_decode(self.raw_buffer,
|
||||
'strict', self.eof)
|
||||
except UnicodeDecodeError, exc:
|
||||
character = exc.object[exc.start]
|
||||
if self.stream is not None:
|
||||
position = self.stream_pointer-len(self.raw_buffer)+exc.start
|
||||
else:
|
||||
position = exc.start
|
||||
raise ReaderError(self.name, position, character,
|
||||
exc.encoding, exc.reason)
|
||||
else:
|
||||
data = self.raw_buffer
|
||||
converted = len(data)
|
||||
self.check_printable(data)
|
||||
self.buffer += data
|
||||
self.raw_buffer = self.raw_buffer[converted:]
|
||||
if self.eof:
|
||||
self.buffer += u'\0'
|
||||
self.raw_buffer = None
|
||||
break
|
||||
|
||||
def update_raw(self, size=1024):
|
||||
data = self.stream.read(size)
|
||||
if data:
|
||||
self.raw_buffer += data
|
||||
self.stream_pointer += len(data)
|
||||
else:
|
||||
self.eof = True
|
||||
|
||||
#try:
|
||||
# import psyco
|
||||
# psyco.bind(Reader)
|
||||
#except ImportError:
|
||||
# pass
|
||||
|
||||
@@ -1,489 +0,0 @@
|
||||
|
||||
__all__ = ['BaseRepresenter', 'SafeRepresenter', 'Representer',
|
||||
'RepresenterError']
|
||||
|
||||
from error import *
|
||||
from nodes import *
|
||||
|
||||
import datetime
|
||||
|
||||
try:
|
||||
set
|
||||
except NameError:
|
||||
from sets import Set as set
|
||||
|
||||
import sys, copy_reg, types
|
||||
|
||||
class RepresenterError(YAMLError):
|
||||
pass
|
||||
|
||||
class BaseRepresenter(object):
|
||||
|
||||
yaml_representers = {}
|
||||
yaml_multi_representers = {}
|
||||
|
||||
def __init__(self, default_style=None, default_flow_style=None):
|
||||
self.default_style = default_style
|
||||
self.default_flow_style = default_flow_style
|
||||
self.represented_objects = {}
|
||||
self.object_keeper = []
|
||||
self.alias_key = None
|
||||
|
||||
def represent(self, data):
|
||||
node = self.represent_data(data)
|
||||
self.serialize(node)
|
||||
self.represented_objects = {}
|
||||
self.object_keeper = []
|
||||
self.alias_key = None
|
||||
|
||||
def get_classobj_bases(self, cls):
|
||||
bases = [cls]
|
||||
for base in cls.__bases__:
|
||||
bases.extend(self.get_classobj_bases(base))
|
||||
return bases
|
||||
|
||||
def represent_data(self, data):
|
||||
if self.ignore_aliases(data):
|
||||
self.alias_key = None
|
||||
else:
|
||||
self.alias_key = id(data)
|
||||
if self.alias_key is not None:
|
||||
if self.alias_key in self.represented_objects:
|
||||
node = self.represented_objects[self.alias_key]
|
||||
#if node is None:
|
||||
# raise RepresenterError("recursive objects are not allowed: %r" % data)
|
||||
return node
|
||||
#self.represented_objects[alias_key] = None
|
||||
self.object_keeper.append(data)
|
||||
data_types = type(data).__mro__
|
||||
if type(data) is types.InstanceType:
|
||||
data_types = self.get_classobj_bases(data.__class__)+list(data_types)
|
||||
if data_types[0] in self.yaml_representers:
|
||||
node = self.yaml_representers[data_types[0]](self, data)
|
||||
else:
|
||||
for data_type in data_types:
|
||||
if data_type in self.yaml_multi_representers:
|
||||
node = self.yaml_multi_representers[data_type](self, data)
|
||||
break
|
||||
else:
|
||||
if None in self.yaml_multi_representers:
|
||||
node = self.yaml_multi_representers[None](self, data)
|
||||
elif None in self.yaml_representers:
|
||||
node = self.yaml_representers[None](self, data)
|
||||
else:
|
||||
node = ScalarNode(None, unicode(data))
|
||||
#if alias_key is not None:
|
||||
# self.represented_objects[alias_key] = node
|
||||
return node
|
||||
|
||||
def add_representer(cls, data_type, representer):
|
||||
if not 'yaml_representers' in cls.__dict__:
|
||||
cls.yaml_representers = cls.yaml_representers.copy()
|
||||
cls.yaml_representers[data_type] = representer
|
||||
add_representer = classmethod(add_representer)
|
||||
|
||||
def add_multi_representer(cls, data_type, representer):
|
||||
if not 'yaml_multi_representers' in cls.__dict__:
|
||||
cls.yaml_multi_representers = cls.yaml_multi_representers.copy()
|
||||
cls.yaml_multi_representers[data_type] = representer
|
||||
add_multi_representer = classmethod(add_multi_representer)
|
||||
|
||||
def represent_scalar(self, tag, value, style=None):
|
||||
if style is None:
|
||||
style = self.default_style
|
||||
node = ScalarNode(tag, value, style=style)
|
||||
if self.alias_key is not None:
|
||||
self.represented_objects[self.alias_key] = node
|
||||
return node
|
||||
|
||||
def represent_sequence(self, tag, sequence, flow_style=None):
|
||||
value = []
|
||||
node = SequenceNode(tag, value, flow_style=flow_style)
|
||||
if self.alias_key is not None:
|
||||
self.represented_objects[self.alias_key] = node
|
||||
best_style = True
|
||||
for item in sequence:
|
||||
node_item = self.represent_data(item)
|
||||
if not (isinstance(node_item, ScalarNode) and not node_item.style):
|
||||
best_style = False
|
||||
value.append(node_item)
|
||||
if flow_style is None:
|
||||
if self.default_flow_style is not None:
|
||||
node.flow_style = self.default_flow_style
|
||||
else:
|
||||
node.flow_style = best_style
|
||||
return node
|
||||
|
||||
def represent_mapping(self, tag, mapping, flow_style=None):
|
||||
value = []
|
||||
node = MappingNode(tag, value, flow_style=flow_style)
|
||||
if self.alias_key is not None:
|
||||
self.represented_objects[self.alias_key] = node
|
||||
best_style = True
|
||||
if hasattr(mapping, 'items'):
|
||||
mapping = mapping.items()
|
||||
mapping.sort()
|
||||
for item_key, item_value in mapping:
|
||||
node_key = self.represent_data(item_key)
|
||||
node_value = self.represent_data(item_value)
|
||||
if not (isinstance(node_key, ScalarNode) and not node_key.style):
|
||||
best_style = False
|
||||
if not (isinstance(node_value, ScalarNode) and not node_value.style):
|
||||
best_style = False
|
||||
value.append((node_key, node_value))
|
||||
if flow_style is None:
|
||||
if self.default_flow_style is not None:
|
||||
node.flow_style = self.default_flow_style
|
||||
else:
|
||||
node.flow_style = best_style
|
||||
return node
|
||||
|
||||
def ignore_aliases(self, data):
|
||||
return False
|
||||
|
||||
class SafeRepresenter(BaseRepresenter):
|
||||
|
||||
def ignore_aliases(self, data):
|
||||
if data in [None, ()]:
|
||||
return True
|
||||
if isinstance(data, (str, unicode, bool, int, float)):
|
||||
return True
|
||||
|
||||
def represent_none(self, data):
|
||||
return self.represent_scalar(u'tag:yaml.org,2002:null',
|
||||
u'null')
|
||||
|
||||
def represent_str(self, data):
|
||||
tag = None
|
||||
style = None
|
||||
try:
|
||||
data = unicode(data, 'ascii')
|
||||
tag = u'tag:yaml.org,2002:str'
|
||||
except UnicodeDecodeError:
|
||||
try:
|
||||
data = unicode(data, 'utf-8')
|
||||
tag = u'tag:yaml.org,2002:str'
|
||||
except UnicodeDecodeError:
|
||||
data = data.encode('base64')
|
||||
tag = u'tag:yaml.org,2002:binary'
|
||||
style = '|'
|
||||
return self.represent_scalar(tag, data, style=style)
|
||||
|
||||
def represent_unicode(self, data):
|
||||
return self.represent_scalar(u'tag:yaml.org,2002:str', data)
|
||||
|
||||
def represent_bool(self, data):
|
||||
if data:
|
||||
value = u'true'
|
||||
else:
|
||||
value = u'false'
|
||||
return self.represent_scalar(u'tag:yaml.org,2002:bool', value)
|
||||
|
||||
def represent_int(self, data):
|
||||
return self.represent_scalar(u'tag:yaml.org,2002:int', unicode(data))
|
||||
|
||||
def represent_long(self, data):
|
||||
return self.represent_scalar(u'tag:yaml.org,2002:int', unicode(data))
|
||||
|
||||
inf_value = 1e300
|
||||
while repr(inf_value) != repr(inf_value*inf_value):
|
||||
inf_value *= inf_value
|
||||
|
||||
def represent_float(self, data):
|
||||
if data != data or (data == 0.0 and data == 1.0):
|
||||
value = u'.nan'
|
||||
elif data == self.inf_value:
|
||||
value = u'.inf'
|
||||
elif data == -self.inf_value:
|
||||
value = u'-.inf'
|
||||
else:
|
||||
value = unicode(repr(data)).lower()
|
||||
# Note that in some cases `repr(data)` represents a float number
|
||||
# without the decimal parts. For instance:
|
||||
# >>> repr(1e17)
|
||||
# '1e17'
|
||||
# Unfortunately, this is not a valid float representation according
|
||||
# to the definition of the `!!float` tag. We fix this by adding
|
||||
# '.0' before the 'e' symbol.
|
||||
if u'.' not in value and u'e' in value:
|
||||
value = value.replace(u'e', u'.0e', 1)
|
||||
return self.represent_scalar(u'tag:yaml.org,2002:float', value)
|
||||
|
||||
def represent_list(self, data):
|
||||
#pairs = (len(data) > 0 and isinstance(data, list))
|
||||
#if pairs:
|
||||
# for item in data:
|
||||
# if not isinstance(item, tuple) or len(item) != 2:
|
||||
# pairs = False
|
||||
# break
|
||||
#if not pairs:
|
||||
return self.represent_sequence(u'tag:yaml.org,2002:seq', data)
|
||||
#value = []
|
||||
#for item_key, item_value in data:
|
||||
# value.append(self.represent_mapping(u'tag:yaml.org,2002:map',
|
||||
# [(item_key, item_value)]))
|
||||
#return SequenceNode(u'tag:yaml.org,2002:pairs', value)
|
||||
|
||||
def represent_dict(self, data):
|
||||
return self.represent_mapping(u'tag:yaml.org,2002:map', data)
|
||||
|
||||
def represent_set(self, data):
|
||||
value = {}
|
||||
for key in data:
|
||||
value[key] = None
|
||||
return self.represent_mapping(u'tag:yaml.org,2002:set', value)
|
||||
|
||||
def represent_date(self, data):
|
||||
value = unicode(data.isoformat())
|
||||
return self.represent_scalar(u'tag:yaml.org,2002:timestamp', value)
|
||||
|
||||
def represent_datetime(self, data):
|
||||
value = unicode(data.isoformat(' '))
|
||||
return self.represent_scalar(u'tag:yaml.org,2002:timestamp', value)
|
||||
|
||||
def represent_yaml_object(self, tag, data, cls, flow_style=None):
|
||||
if hasattr(data, '__getstate__'):
|
||||
state = data.__getstate__()
|
||||
else:
|
||||
state = data.__dict__.copy()
|
||||
return self.represent_mapping(tag, state, flow_style=flow_style)
|
||||
|
||||
def represent_undefined(self, data):
|
||||
raise RepresenterError("cannot represent an object: %s" % data)
|
||||
|
||||
SafeRepresenter.add_representer(type(None),
|
||||
SafeRepresenter.represent_none)
|
||||
|
||||
SafeRepresenter.add_representer(str,
|
||||
SafeRepresenter.represent_str)
|
||||
|
||||
SafeRepresenter.add_representer(unicode,
|
||||
SafeRepresenter.represent_unicode)
|
||||
|
||||
SafeRepresenter.add_representer(bool,
|
||||
SafeRepresenter.represent_bool)
|
||||
|
||||
SafeRepresenter.add_representer(int,
|
||||
SafeRepresenter.represent_int)
|
||||
|
||||
SafeRepresenter.add_representer(long,
|
||||
SafeRepresenter.represent_long)
|
||||
|
||||
SafeRepresenter.add_representer(float,
|
||||
SafeRepresenter.represent_float)
|
||||
|
||||
SafeRepresenter.add_representer(list,
|
||||
SafeRepresenter.represent_list)
|
||||
|
||||
SafeRepresenter.add_representer(tuple,
|
||||
SafeRepresenter.represent_list)
|
||||
|
||||
SafeRepresenter.add_representer(dict,
|
||||
SafeRepresenter.represent_dict)
|
||||
|
||||
SafeRepresenter.add_representer(set,
|
||||
SafeRepresenter.represent_set)
|
||||
|
||||
SafeRepresenter.add_representer(datetime.date,
|
||||
SafeRepresenter.represent_date)
|
||||
|
||||
SafeRepresenter.add_representer(datetime.datetime,
|
||||
SafeRepresenter.represent_datetime)
|
||||
|
||||
SafeRepresenter.add_representer(None,
|
||||
SafeRepresenter.represent_undefined)
|
||||
|
||||
class Representer(SafeRepresenter):
|
||||
|
||||
def represent_str(self, data):
|
||||
tag = None
|
||||
style = None
|
||||
try:
|
||||
data = unicode(data, 'ascii')
|
||||
tag = u'tag:yaml.org,2002:str'
|
||||
except UnicodeDecodeError:
|
||||
try:
|
||||
data = unicode(data, 'utf-8')
|
||||
tag = u'tag:yaml.org,2002:python/str'
|
||||
except UnicodeDecodeError:
|
||||
data = data.encode('base64')
|
||||
tag = u'tag:yaml.org,2002:binary'
|
||||
style = '|'
|
||||
return self.represent_scalar(tag, data, style=style)
|
||||
|
||||
def represent_unicode(self, data):
|
||||
tag = None
|
||||
try:
|
||||
data.encode('ascii')
|
||||
tag = u'tag:yaml.org,2002:python/unicode'
|
||||
except UnicodeEncodeError:
|
||||
tag = u'tag:yaml.org,2002:str'
|
||||
return self.represent_scalar(tag, data)
|
||||
|
||||
def represent_long(self, data):
|
||||
tag = u'tag:yaml.org,2002:int'
|
||||
if int(data) is not data:
|
||||
tag = u'tag:yaml.org,2002:python/long'
|
||||
return self.represent_scalar(tag, unicode(data))
|
||||
|
||||
def represent_complex(self, data):
|
||||
if data.imag == 0.0:
|
||||
data = u'%r' % data.real
|
||||
elif data.real == 0.0:
|
||||
data = u'%rj' % data.imag
|
||||
elif data.imag > 0:
|
||||
data = u'%r+%rj' % (data.real, data.imag)
|
||||
else:
|
||||
data = u'%r%rj' % (data.real, data.imag)
|
||||
return self.represent_scalar(u'tag:yaml.org,2002:python/complex', data)
|
||||
|
||||
def represent_tuple(self, data):
|
||||
return self.represent_sequence(u'tag:yaml.org,2002:python/tuple', data)
|
||||
|
||||
def represent_name(self, data):
|
||||
name = u'%s.%s' % (data.__module__, data.__name__)
|
||||
return self.represent_scalar(u'tag:yaml.org,2002:python/name:'+name, u'')
|
||||
|
||||
def represent_module(self, data):
|
||||
return self.represent_scalar(
|
||||
u'tag:yaml.org,2002:python/module:'+data.__name__, u'')
|
||||
|
||||
def represent_instance(self, data):
|
||||
# For instances of classic classes, we use __getinitargs__ and
|
||||
# __getstate__ to serialize the data.
|
||||
|
||||
# If data.__getinitargs__ exists, the object must be reconstructed by
|
||||
# calling cls(**args), where args is a tuple returned by
|
||||
# __getinitargs__. Otherwise, the cls.__init__ method should never be
|
||||
# called and the class instance is created by instantiating a trivial
|
||||
# class and assigning to the instance's __class__ variable.
|
||||
|
||||
# If data.__getstate__ exists, it returns the state of the object.
|
||||
# Otherwise, the state of the object is data.__dict__.
|
||||
|
||||
# We produce either a !!python/object or !!python/object/new node.
|
||||
# If data.__getinitargs__ does not exist and state is a dictionary, we
|
||||
# produce a !!python/object node . Otherwise we produce a
|
||||
# !!python/object/new node.
|
||||
|
||||
cls = data.__class__
|
||||
class_name = u'%s.%s' % (cls.__module__, cls.__name__)
|
||||
args = None
|
||||
state = None
|
||||
if hasattr(data, '__getinitargs__'):
|
||||
args = list(data.__getinitargs__())
|
||||
if hasattr(data, '__getstate__'):
|
||||
state = data.__getstate__()
|
||||
else:
|
||||
state = data.__dict__
|
||||
if args is None and isinstance(state, dict):
|
||||
return self.represent_mapping(
|
||||
u'tag:yaml.org,2002:python/object:'+class_name, state)
|
||||
if isinstance(state, dict) and not state:
|
||||
return self.represent_sequence(
|
||||
u'tag:yaml.org,2002:python/object/new:'+class_name, args)
|
||||
value = {}
|
||||
if args:
|
||||
value['args'] = args
|
||||
value['state'] = state
|
||||
return self.represent_mapping(
|
||||
u'tag:yaml.org,2002:python/object/new:'+class_name, value)
|
||||
|
||||
def represent_object(self, data):
|
||||
# We use __reduce__ API to save the data. data.__reduce__ returns
|
||||
# a tuple of length 2-5:
|
||||
# (function, args, state, listitems, dictitems)
|
||||
|
||||
# For reconstructing, we calls function(*args), then set its state,
|
||||
# listitems, and dictitems if they are not None.
|
||||
|
||||
# A special case is when function.__name__ == '__newobj__'. In this
|
||||
# case we create the object with args[0].__new__(*args).
|
||||
|
||||
# Another special case is when __reduce__ returns a string - we don't
|
||||
# support it.
|
||||
|
||||
# We produce a !!python/object, !!python/object/new or
|
||||
# !!python/object/apply node.
|
||||
|
||||
cls = type(data)
|
||||
if cls in copy_reg.dispatch_table:
|
||||
reduce = copy_reg.dispatch_table[cls](data)
|
||||
elif hasattr(data, '__reduce_ex__'):
|
||||
reduce = data.__reduce_ex__(2)
|
||||
elif hasattr(data, '__reduce__'):
|
||||
reduce = data.__reduce__()
|
||||
else:
|
||||
raise RepresenterError("cannot represent object: %r" % data)
|
||||
reduce = (list(reduce)+[None]*5)[:5]
|
||||
function, args, state, listitems, dictitems = reduce
|
||||
args = list(args)
|
||||
if state is None:
|
||||
state = {}
|
||||
if listitems is not None:
|
||||
listitems = list(listitems)
|
||||
if dictitems is not None:
|
||||
dictitems = dict(dictitems)
|
||||
if function.__name__ == '__newobj__':
|
||||
function = args[0]
|
||||
args = args[1:]
|
||||
tag = u'tag:yaml.org,2002:python/object/new:'
|
||||
newobj = True
|
||||
else:
|
||||
tag = u'tag:yaml.org,2002:python/object/apply:'
|
||||
newobj = False
|
||||
function_name = u'%s.%s' % (function.__module__, function.__name__)
|
||||
if not args and not listitems and not dictitems \
|
||||
and isinstance(state, dict) and newobj:
|
||||
return self.represent_mapping(
|
||||
u'tag:yaml.org,2002:python/object:'+function_name, state)
|
||||
if not listitems and not dictitems \
|
||||
and isinstance(state, dict) and not state:
|
||||
return self.represent_sequence(tag+function_name, args)
|
||||
value = {}
|
||||
if args:
|
||||
value['args'] = args
|
||||
if state or not isinstance(state, dict):
|
||||
value['state'] = state
|
||||
if listitems:
|
||||
value['listitems'] = listitems
|
||||
if dictitems:
|
||||
value['dictitems'] = dictitems
|
||||
return self.represent_mapping(tag+function_name, value)
|
||||
|
||||
Representer.add_representer(str,
|
||||
Representer.represent_str)
|
||||
|
||||
Representer.add_representer(unicode,
|
||||
Representer.represent_unicode)
|
||||
|
||||
Representer.add_representer(long,
|
||||
Representer.represent_long)
|
||||
|
||||
Representer.add_representer(complex,
|
||||
Representer.represent_complex)
|
||||
|
||||
Representer.add_representer(tuple,
|
||||
Representer.represent_tuple)
|
||||
|
||||
Representer.add_representer(type,
|
||||
Representer.represent_name)
|
||||
|
||||
Representer.add_representer(types.ClassType,
|
||||
Representer.represent_name)
|
||||
|
||||
Representer.add_representer(types.FunctionType,
|
||||
Representer.represent_name)
|
||||
|
||||
Representer.add_representer(types.BuiltinFunctionType,
|
||||
Representer.represent_name)
|
||||
|
||||
Representer.add_representer(types.ModuleType,
|
||||
Representer.represent_module)
|
||||
|
||||
Representer.add_multi_representer(types.InstanceType,
|
||||
Representer.represent_instance)
|
||||
|
||||
Representer.add_multi_representer(object,
|
||||
Representer.represent_object)
|
||||
|
||||
@@ -1,224 +0,0 @@
|
||||
|
||||
__all__ = ['BaseResolver', 'Resolver']
|
||||
|
||||
from error import *
|
||||
from nodes import *
|
||||
|
||||
import re
|
||||
|
||||
class ResolverError(YAMLError):
|
||||
pass
|
||||
|
||||
class BaseResolver(object):
|
||||
|
||||
DEFAULT_SCALAR_TAG = u'tag:yaml.org,2002:str'
|
||||
DEFAULT_SEQUENCE_TAG = u'tag:yaml.org,2002:seq'
|
||||
DEFAULT_MAPPING_TAG = u'tag:yaml.org,2002:map'
|
||||
|
||||
yaml_implicit_resolvers = {}
|
||||
yaml_path_resolvers = {}
|
||||
|
||||
def __init__(self):
|
||||
self.resolver_exact_paths = []
|
||||
self.resolver_prefix_paths = []
|
||||
|
||||
def add_implicit_resolver(cls, tag, regexp, first):
|
||||
if not 'yaml_implicit_resolvers' in cls.__dict__:
|
||||
cls.yaml_implicit_resolvers = cls.yaml_implicit_resolvers.copy()
|
||||
if first is None:
|
||||
first = [None]
|
||||
for ch in first:
|
||||
cls.yaml_implicit_resolvers.setdefault(ch, []).append((tag, regexp))
|
||||
add_implicit_resolver = classmethod(add_implicit_resolver)
|
||||
|
||||
def add_path_resolver(cls, tag, path, kind=None):
|
||||
# Note: `add_path_resolver` is experimental. The API could be changed.
|
||||
# `new_path` is a pattern that is matched against the path from the
|
||||
# root to the node that is being considered. `node_path` elements are
|
||||
# tuples `(node_check, index_check)`. `node_check` is a node class:
|
||||
# `ScalarNode`, `SequenceNode`, `MappingNode` or `None`. `None`
|
||||
# matches any kind of a node. `index_check` could be `None`, a boolean
|
||||
# value, a string value, or a number. `None` and `False` match against
|
||||
# any _value_ of sequence and mapping nodes. `True` matches against
|
||||
# any _key_ of a mapping node. A string `index_check` matches against
|
||||
# a mapping value that corresponds to a scalar key which content is
|
||||
# equal to the `index_check` value. An integer `index_check` matches
|
||||
# against a sequence value with the index equal to `index_check`.
|
||||
if not 'yaml_path_resolvers' in cls.__dict__:
|
||||
cls.yaml_path_resolvers = cls.yaml_path_resolvers.copy()
|
||||
new_path = []
|
||||
for element in path:
|
||||
if isinstance(element, (list, tuple)):
|
||||
if len(element) == 2:
|
||||
node_check, index_check = element
|
||||
elif len(element) == 1:
|
||||
node_check = element[0]
|
||||
index_check = True
|
||||
else:
|
||||
raise ResolverError("Invalid path element: %s" % element)
|
||||
else:
|
||||
node_check = None
|
||||
index_check = element
|
||||
if node_check is str:
|
||||
node_check = ScalarNode
|
||||
elif node_check is list:
|
||||
node_check = SequenceNode
|
||||
elif node_check is dict:
|
||||
node_check = MappingNode
|
||||
elif node_check not in [ScalarNode, SequenceNode, MappingNode] \
|
||||
and not isinstance(node_check, basestring) \
|
||||
and node_check is not None:
|
||||
raise ResolverError("Invalid node checker: %s" % node_check)
|
||||
if not isinstance(index_check, (basestring, int)) \
|
||||
and index_check is not None:
|
||||
raise ResolverError("Invalid index checker: %s" % index_check)
|
||||
new_path.append((node_check, index_check))
|
||||
if kind is str:
|
||||
kind = ScalarNode
|
||||
elif kind is list:
|
||||
kind = SequenceNode
|
||||
elif kind is dict:
|
||||
kind = MappingNode
|
||||
elif kind not in [ScalarNode, SequenceNode, MappingNode] \
|
||||
and kind is not None:
|
||||
raise ResolverError("Invalid node kind: %s" % kind)
|
||||
cls.yaml_path_resolvers[tuple(new_path), kind] = tag
|
||||
add_path_resolver = classmethod(add_path_resolver)
|
||||
|
||||
def descend_resolver(self, current_node, current_index):
|
||||
if not self.yaml_path_resolvers:
|
||||
return
|
||||
exact_paths = {}
|
||||
prefix_paths = []
|
||||
if current_node:
|
||||
depth = len(self.resolver_prefix_paths)
|
||||
for path, kind in self.resolver_prefix_paths[-1]:
|
||||
if self.check_resolver_prefix(depth, path, kind,
|
||||
current_node, current_index):
|
||||
if len(path) > depth:
|
||||
prefix_paths.append((path, kind))
|
||||
else:
|
||||
exact_paths[kind] = self.yaml_path_resolvers[path, kind]
|
||||
else:
|
||||
for path, kind in self.yaml_path_resolvers:
|
||||
if not path:
|
||||
exact_paths[kind] = self.yaml_path_resolvers[path, kind]
|
||||
else:
|
||||
prefix_paths.append((path, kind))
|
||||
self.resolver_exact_paths.append(exact_paths)
|
||||
self.resolver_prefix_paths.append(prefix_paths)
|
||||
|
||||
def ascend_resolver(self):
|
||||
if not self.yaml_path_resolvers:
|
||||
return
|
||||
self.resolver_exact_paths.pop()
|
||||
self.resolver_prefix_paths.pop()
|
||||
|
||||
def check_resolver_prefix(self, depth, path, kind,
|
||||
current_node, current_index):
|
||||
node_check, index_check = path[depth-1]
|
||||
if isinstance(node_check, basestring):
|
||||
if current_node.tag != node_check:
|
||||
return
|
||||
elif node_check is not None:
|
||||
if not isinstance(current_node, node_check):
|
||||
return
|
||||
if index_check is True and current_index is not None:
|
||||
return
|
||||
if (index_check is False or index_check is None) \
|
||||
and current_index is None:
|
||||
return
|
||||
if isinstance(index_check, basestring):
|
||||
if not (isinstance(current_index, ScalarNode)
|
||||
and index_check == current_index.value):
|
||||
return
|
||||
elif isinstance(index_check, int) and not isinstance(index_check, bool):
|
||||
if index_check != current_index:
|
||||
return
|
||||
return True
|
||||
|
||||
def resolve(self, kind, value, implicit):
|
||||
if kind is ScalarNode and implicit[0]:
|
||||
if value == u'':
|
||||
resolvers = self.yaml_implicit_resolvers.get(u'', [])
|
||||
else:
|
||||
resolvers = self.yaml_implicit_resolvers.get(value[0], [])
|
||||
resolvers += self.yaml_implicit_resolvers.get(None, [])
|
||||
for tag, regexp in resolvers:
|
||||
if regexp.match(value):
|
||||
return tag
|
||||
implicit = implicit[1]
|
||||
if self.yaml_path_resolvers:
|
||||
exact_paths = self.resolver_exact_paths[-1]
|
||||
if kind in exact_paths:
|
||||
return exact_paths[kind]
|
||||
if None in exact_paths:
|
||||
return exact_paths[None]
|
||||
if kind is ScalarNode:
|
||||
return self.DEFAULT_SCALAR_TAG
|
||||
elif kind is SequenceNode:
|
||||
return self.DEFAULT_SEQUENCE_TAG
|
||||
elif kind is MappingNode:
|
||||
return self.DEFAULT_MAPPING_TAG
|
||||
|
||||
class Resolver(BaseResolver):
|
||||
pass
|
||||
|
||||
Resolver.add_implicit_resolver(
|
||||
u'tag:yaml.org,2002:bool',
|
||||
re.compile(ur'''^(?:yes|Yes|YES|no|No|NO
|
||||
|true|True|TRUE|false|False|FALSE
|
||||
|on|On|ON|off|Off|OFF)$''', re.X),
|
||||
list(u'yYnNtTfFoO'))
|
||||
|
||||
Resolver.add_implicit_resolver(
|
||||
u'tag:yaml.org,2002:float',
|
||||
re.compile(ur'''^(?:[-+]?(?:[0-9][0-9_]*)\.[0-9_]*(?:[eE][-+][0-9]+)?
|
||||
|\.[0-9_]+(?:[eE][-+][0-9]+)?
|
||||
|[-+]?[0-9][0-9_]*(?::[0-5]?[0-9])+\.[0-9_]*
|
||||
|[-+]?\.(?:inf|Inf|INF)
|
||||
|\.(?:nan|NaN|NAN))$''', re.X),
|
||||
list(u'-+0123456789.'))
|
||||
|
||||
Resolver.add_implicit_resolver(
|
||||
u'tag:yaml.org,2002:int',
|
||||
re.compile(ur'''^(?:[-+]?0b[0-1_]+
|
||||
|[-+]?0[0-7_]+
|
||||
|[-+]?(?:0|[1-9][0-9_]*)
|
||||
|[-+]?0x[0-9a-fA-F_]+
|
||||
|[-+]?[1-9][0-9_]*(?::[0-5]?[0-9])+)$''', re.X),
|
||||
list(u'-+0123456789'))
|
||||
|
||||
Resolver.add_implicit_resolver(
|
||||
u'tag:yaml.org,2002:merge',
|
||||
re.compile(ur'^(?:<<)$'),
|
||||
[u'<'])
|
||||
|
||||
Resolver.add_implicit_resolver(
|
||||
u'tag:yaml.org,2002:null',
|
||||
re.compile(ur'''^(?: ~
|
||||
|null|Null|NULL
|
||||
| )$''', re.X),
|
||||
[u'~', u'n', u'N', u''])
|
||||
|
||||
Resolver.add_implicit_resolver(
|
||||
u'tag:yaml.org,2002:timestamp',
|
||||
re.compile(ur'''^(?:[0-9][0-9][0-9][0-9]-[0-9][0-9]-[0-9][0-9]
|
||||
|[0-9][0-9][0-9][0-9] -[0-9][0-9]? -[0-9][0-9]?
|
||||
(?:[Tt]|[ \t]+)[0-9][0-9]?
|
||||
:[0-9][0-9] :[0-9][0-9] (?:\.[0-9]*)?
|
||||
(?:[ \t]*(?:Z|[-+][0-9][0-9]?(?::[0-9][0-9])?))?)$''', re.X),
|
||||
list(u'0123456789'))
|
||||
|
||||
Resolver.add_implicit_resolver(
|
||||
u'tag:yaml.org,2002:value',
|
||||
re.compile(ur'^(?:=)$'),
|
||||
[u'='])
|
||||
|
||||
# The following resolver is only for documentation purposes. It cannot work
|
||||
# because plain scalars cannot start with '!', '&', or '*'.
|
||||
Resolver.add_implicit_resolver(
|
||||
u'tag:yaml.org,2002:yaml',
|
||||
re.compile(ur'^(?:!|&|\*)$'),
|
||||
list(u'!&*'))
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -1,111 +0,0 @@
|
||||
|
||||
__all__ = ['Serializer', 'SerializerError']
|
||||
|
||||
from error import YAMLError
|
||||
from events import *
|
||||
from nodes import *
|
||||
|
||||
class SerializerError(YAMLError):
|
||||
pass
|
||||
|
||||
class Serializer(object):
|
||||
|
||||
ANCHOR_TEMPLATE = u'id%03d'
|
||||
|
||||
def __init__(self, encoding=None,
|
||||
explicit_start=None, explicit_end=None, version=None, tags=None):
|
||||
self.use_encoding = encoding
|
||||
self.use_explicit_start = explicit_start
|
||||
self.use_explicit_end = explicit_end
|
||||
self.use_version = version
|
||||
self.use_tags = tags
|
||||
self.serialized_nodes = {}
|
||||
self.anchors = {}
|
||||
self.last_anchor_id = 0
|
||||
self.closed = None
|
||||
|
||||
def open(self):
|
||||
if self.closed is None:
|
||||
self.emit(StreamStartEvent(encoding=self.use_encoding))
|
||||
self.closed = False
|
||||
elif self.closed:
|
||||
raise SerializerError("serializer is closed")
|
||||
else:
|
||||
raise SerializerError("serializer is already opened")
|
||||
|
||||
def close(self):
|
||||
if self.closed is None:
|
||||
raise SerializerError("serializer is not opened")
|
||||
elif not self.closed:
|
||||
self.emit(StreamEndEvent())
|
||||
self.closed = True
|
||||
|
||||
#def __del__(self):
|
||||
# self.close()
|
||||
|
||||
def serialize(self, node):
|
||||
if self.closed is None:
|
||||
raise SerializerError("serializer is not opened")
|
||||
elif self.closed:
|
||||
raise SerializerError("serializer is closed")
|
||||
self.emit(DocumentStartEvent(explicit=self.use_explicit_start,
|
||||
version=self.use_version, tags=self.use_tags))
|
||||
self.anchor_node(node)
|
||||
self.serialize_node(node, None, None)
|
||||
self.emit(DocumentEndEvent(explicit=self.use_explicit_end))
|
||||
self.serialized_nodes = {}
|
||||
self.anchors = {}
|
||||
self.last_anchor_id = 0
|
||||
|
||||
def anchor_node(self, node):
|
||||
if node in self.anchors:
|
||||
if self.anchors[node] is None:
|
||||
self.anchors[node] = self.generate_anchor(node)
|
||||
else:
|
||||
self.anchors[node] = None
|
||||
if isinstance(node, SequenceNode):
|
||||
for item in node.value:
|
||||
self.anchor_node(item)
|
||||
elif isinstance(node, MappingNode):
|
||||
for key, value in node.value:
|
||||
self.anchor_node(key)
|
||||
self.anchor_node(value)
|
||||
|
||||
def generate_anchor(self, node):
|
||||
self.last_anchor_id += 1
|
||||
return self.ANCHOR_TEMPLATE % self.last_anchor_id
|
||||
|
||||
def serialize_node(self, node, parent, index):
|
||||
alias = self.anchors[node]
|
||||
if node in self.serialized_nodes:
|
||||
self.emit(AliasEvent(alias))
|
||||
else:
|
||||
self.serialized_nodes[node] = True
|
||||
self.descend_resolver(parent, index)
|
||||
if isinstance(node, ScalarNode):
|
||||
detected_tag = self.resolve(ScalarNode, node.value, (True, False))
|
||||
default_tag = self.resolve(ScalarNode, node.value, (False, True))
|
||||
implicit = (node.tag == detected_tag), (node.tag == default_tag)
|
||||
self.emit(ScalarEvent(alias, node.tag, implicit, node.value,
|
||||
style=node.style))
|
||||
elif isinstance(node, SequenceNode):
|
||||
implicit = (node.tag
|
||||
== self.resolve(SequenceNode, node.value, True))
|
||||
self.emit(SequenceStartEvent(alias, node.tag, implicit,
|
||||
flow_style=node.flow_style))
|
||||
index = 0
|
||||
for item in node.value:
|
||||
self.serialize_node(item, node, index)
|
||||
index += 1
|
||||
self.emit(SequenceEndEvent())
|
||||
elif isinstance(node, MappingNode):
|
||||
implicit = (node.tag
|
||||
== self.resolve(MappingNode, node.value, True))
|
||||
self.emit(MappingStartEvent(alias, node.tag, implicit,
|
||||
flow_style=node.flow_style))
|
||||
for key, value in node.value:
|
||||
self.serialize_node(key, node, None)
|
||||
self.serialize_node(value, node, key)
|
||||
self.emit(MappingEndEvent())
|
||||
self.ascend_resolver()
|
||||
|
||||
@@ -1,104 +0,0 @@
|
||||
|
||||
class Token(object):
|
||||
def __init__(self, start_mark, end_mark):
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
def __repr__(self):
|
||||
attributes = [key for key in self.__dict__
|
||||
if not key.endswith('_mark')]
|
||||
attributes.sort()
|
||||
arguments = ', '.join(['%s=%r' % (key, getattr(self, key))
|
||||
for key in attributes])
|
||||
return '%s(%s)' % (self.__class__.__name__, arguments)
|
||||
|
||||
#class BOMToken(Token):
|
||||
# id = '<byte order mark>'
|
||||
|
||||
class DirectiveToken(Token):
|
||||
id = '<directive>'
|
||||
def __init__(self, name, value, start_mark, end_mark):
|
||||
self.name = name
|
||||
self.value = value
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
|
||||
class DocumentStartToken(Token):
|
||||
id = '<document start>'
|
||||
|
||||
class DocumentEndToken(Token):
|
||||
id = '<document end>'
|
||||
|
||||
class StreamStartToken(Token):
|
||||
id = '<stream start>'
|
||||
def __init__(self, start_mark=None, end_mark=None,
|
||||
encoding=None):
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
self.encoding = encoding
|
||||
|
||||
class StreamEndToken(Token):
|
||||
id = '<stream end>'
|
||||
|
||||
class BlockSequenceStartToken(Token):
|
||||
id = '<block sequence start>'
|
||||
|
||||
class BlockMappingStartToken(Token):
|
||||
id = '<block mapping start>'
|
||||
|
||||
class BlockEndToken(Token):
|
||||
id = '<block end>'
|
||||
|
||||
class FlowSequenceStartToken(Token):
|
||||
id = '['
|
||||
|
||||
class FlowMappingStartToken(Token):
|
||||
id = '{'
|
||||
|
||||
class FlowSequenceEndToken(Token):
|
||||
id = ']'
|
||||
|
||||
class FlowMappingEndToken(Token):
|
||||
id = '}'
|
||||
|
||||
class KeyToken(Token):
|
||||
id = '?'
|
||||
|
||||
class ValueToken(Token):
|
||||
id = ':'
|
||||
|
||||
class BlockEntryToken(Token):
|
||||
id = '-'
|
||||
|
||||
class FlowEntryToken(Token):
|
||||
id = ','
|
||||
|
||||
class AliasToken(Token):
|
||||
id = '<alias>'
|
||||
def __init__(self, value, start_mark, end_mark):
|
||||
self.value = value
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
|
||||
class AnchorToken(Token):
|
||||
id = '<anchor>'
|
||||
def __init__(self, value, start_mark, end_mark):
|
||||
self.value = value
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
|
||||
class TagToken(Token):
|
||||
id = '<tag>'
|
||||
def __init__(self, value, start_mark, end_mark):
|
||||
self.value = value
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
|
||||
class ScalarToken(Token):
|
||||
id = '<scalar>'
|
||||
def __init__(self, value, plain, start_mark, end_mark, style=None):
|
||||
self.value = value
|
||||
self.plain = plain
|
||||
self.start_mark = start_mark
|
||||
self.end_mark = end_mark
|
||||
self.style = style
|
||||
|
||||
@@ -1 +0,0 @@
|
||||
# example: md5(csv) == md5(Data(csv).export(to='json'))
|
||||
@@ -1 +0,0 @@
|
||||
import tablib
|
||||
@@ -1,49 +0,0 @@
|
||||
import tablib
|
||||
|
||||
headers = ('first_name', 'last_name', 'gpa')
|
||||
|
||||
data = [
|
||||
('John', 'Adams', 4.0),
|
||||
('George', 'Washington', 2.6),
|
||||
('Henry', 'Ford', 2.3)
|
||||
]
|
||||
|
||||
data = tablib.Dataset(*data, headers=headers)
|
||||
|
||||
data.append(['Kenneth' ,'Reitz', 4.3])
|
||||
|
||||
#print '***WITH HEADERS***'
|
||||
|
||||
#print 'First Names:\n',
|
||||
#print data['first_name']
|
||||
|
||||
#print '\nYAML:'
|
||||
#print data.yaml
|
||||
#
|
||||
#print 'JSON:'
|
||||
#print data.json
|
||||
#
|
||||
#print '\nCSV:'
|
||||
#print data.csv
|
||||
#
|
||||
#
|
||||
#print '***AND WITHOUT HEADERS***'
|
||||
#
|
||||
#data.headers = None
|
||||
#
|
||||
#print '\nYAML:'
|
||||
#print data.yaml
|
||||
#
|
||||
#print 'JSON:'
|
||||
#print data.json
|
||||
#
|
||||
#print '\nCSV:'
|
||||
#print data.csv
|
||||
|
||||
book = tablib.DataBook()
|
||||
book.add_sheet(data)
|
||||
book.add_sheet(data)
|
||||
|
||||
print book.json
|
||||
|
||||
|
||||
Reference in New Issue
Block a user