Preview: supbind.py
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/opt/hc_python/lib/python3.12/site-packages/pyone/bindings/supbind.py
#!/usr/bin/env python
# -*- coding: utf-8 -*-
#
# Generated Tue Feb 18 17:07:19 2025 by generateDS.py version 2.44.3.
# Python 3.10.12 (main, Jan 17 2025, 14:35:34) [GCC 11.4.0]
#
# Command line options:
# ('-q', '')
# ('-f', '')
# ('-o', 'pyone/bindings/supbind.py')
# ('-s', 'pyone/bindings/__init__.py')
# ('--super', 'supbind')
# ('--external-encoding', 'utf-8')
# ('--silence', '')
#
# Command line arguments:
# ../../../share/doc/xsd/index.xsd
#
# Command line:
# /home/one/init-build-jenkins.4Ppvoe/one/src/oca/python/bin/generateDS -q -f -o "pyone/bindings/supbind.py" -s "pyone/bindings/__init__.py" --super="supbind" --external-encoding="utf-8" --silence ../../../share/doc/xsd/index.xsd
#
# Current working directory (os.getcwd()):
# python
#
import sys
try:
ModulenotfoundExp_ = ModuleNotFoundError
except NameError:
ModulenotfoundExp_ = ImportError
from six.moves import zip_longest
import os
import re as re_
import base64
import datetime as datetime_
import decimal as decimal_
from lxml import etree as etree_
Validate_simpletypes_ = True
SaveElementTreeNode = True
TagNamePrefix = ""
if sys.version_info.major == 2:
BaseStrType_ = basestring
else:
BaseStrType_ = str
def parsexml_(infile, parser=None, **kwargs):
if parser is None:
# Use the lxml ElementTree compatible parser so that, e.g.,
# we ignore comments.
try:
parser = etree_.ETCompatXMLParser()
except AttributeError:
# fallback to xml.etree
parser = etree_.XMLParser()
try:
if isinstance(infile, os.PathLike):
infile = os.path.join(infile)
except AttributeError:
pass
doc = etree_.parse(infile, parser=parser, **kwargs)
return doc
def parsexmlstring_(instring, parser=None, **kwargs):
if parser is None:
# Use the lxml ElementTree compatible parser so that, e.g.,
# we ignore comments.
try:
parser = etree_.ETCompatXMLParser()
except AttributeError:
# fallback to xml.etree
parser = etree_.XMLParser()
element = etree_.fromstring(instring, parser=parser, **kwargs)
return element
#
# Namespace prefix definition table (and other attributes, too)
#
# The module generatedsnamespaces, if it is importable, must contain
# a dictionary named GeneratedsNamespaceDefs. This Python dictionary
# should map element type names (strings) to XML schema namespace prefix
# definitions. The export method for any class for which there is
# a namespace prefix definition, will export that definition in the
# XML representation of that element. See the export method of
# any generated element type class for an example of the use of this
# table.
# A sample table is:
#
# # File: generatedsnamespaces.py
#
# GenerateDSNamespaceDefs = {
# "ElementtypeA": "http://www.xxx.com/namespaceA",
# "ElementtypeB": "http://www.xxx.com/namespaceB",
# }
#
# Additionally, the generatedsnamespaces module can contain a python
# dictionary named GenerateDSNamespaceTypePrefixes that associates element
# types with the namespace prefixes that are to be added to the
# "xsi:type" attribute value. See the _exportAttributes method of
# any generated element type and the generation of "xsi:type" for an
# example of the use of this table.
# An example table:
#
# # File: generatedsnamespaces.py
#
# GenerateDSNamespaceTypePrefixes = {
# "ElementtypeC": "aaa:",
# "ElementtypeD": "bbb:",
# }
#
try:
from generatedsnamespaces import GenerateDSNamespaceDefs as GenerateDSNamespaceDefs_
except ModulenotfoundExp_ :
GenerateDSNamespaceDefs_ = {}
try:
from generatedsnamespaces import GenerateDSNamespaceTypePrefixes as GenerateDSNamespaceTypePrefixes_
except ModulenotfoundExp_ :
GenerateDSNamespaceTypePrefixes_ = {}
#
# You can replace the following class definition by defining an
# importable module named "generatedscollector" containing a class
# named "GdsCollector". See the default class definition below for
# clues about the possible content of that class.
#
try:
from generatedscollector import GdsCollector as GdsCollector_
except ModulenotfoundExp_ :
class GdsCollector_(object):
def __init__(self, messages=None):
if messages is None:
self.messages = []
else:
self.messages = messages
def add_message(self, msg):
self.messages.append(msg)
def get_messages(self):
return self.messages
def clear_messages(self):
self.messages = []
def print_messages(self):
for msg in self.messages:
print("Warning: {}".format(msg))
def write_messages(self, outstream):
for msg in self.messages:
outstream.write("Warning: {}\n".format(msg))
#
# The super-class for enum types
#
try:
from enum import Enum
except ModulenotfoundExp_ :
Enum = object
#
# The root super-class for element type classes
#
# Calls to the methods in these classes are generated by generateDS.py.
# You can replace these methods by re-implementing the following class
# in a module named generatedssuper.py.
try:
from generatedssuper import GeneratedsSuper
except ModulenotfoundExp_ as exp:
try:
from generatedssupersuper import GeneratedsSuperSuper
except ModulenotfoundExp_ as exp:
class GeneratedsSuperSuper(object):
pass
class GeneratedsSuper(GeneratedsSuperSuper):
__hash__ = object.__hash__
tzoff_pattern = re_.compile('(\\+|-)((0[0-9]|1[0-3]):[0-5][0-9]|14:00)$')
class _FixedOffsetTZ(datetime_.tzinfo):
def __init__(self, offset, name):
self.__offset = datetime_.timedelta(minutes=offset)
self.__name = name
def utcoffset(self, dt):
return self.__offset
def tzname(self, dt):
return self.__name
def dst(self, dt):
return None
def __str__(self):
settings = {
'str_pretty_print': True,
'str_indent_level': 0,
'str_namespaceprefix': '',
'str_name': self.__class__.__name__,
'str_namespacedefs': '',
}
for n in settings:
if hasattr(self, n):
settings[n] = getattr(self, n)
if sys.version_info.major == 2:
from StringIO import StringIO
else:
from io import StringIO
output = StringIO()
self.export(
output,
settings['str_indent_level'],
pretty_print=settings['str_pretty_print'],
namespaceprefix_=settings['str_namespaceprefix'],
name_=settings['str_name'],
namespacedef_=settings['str_namespacedefs']
)
strval = output.getvalue()
output.close()
return strval
def gds_format_string(self, input_data, input_name=''):
return input_data
def gds_parse_string(self, input_data, node=None, input_name=''):
return input_data
def gds_validate_string(self, input_data, node=None, input_name=''):
if not input_data:
return ''
else:
return input_data
def gds_format_base64(self, input_data, input_name=''):
return base64.b64encode(input_data).decode('ascii')
def gds_validate_base64(self, input_data, node=None, input_name=''):
return input_data
def gds_format_integer(self, input_data, input_name=''):
return '%d' % int(input_data)
def gds_parse_integer(self, input_data, node=None, input_name=''):
try:
ival = int(input_data)
except (TypeError, ValueError) as exp:
raise_parse_error(node, 'Requires integer value: %s' % exp)
return ival
def gds_validate_integer(self, input_data, node=None, input_name=''):
try:
value = int(input_data)
except (TypeError, ValueError):
raise_parse_error(node, 'Requires integer value')
return value
def gds_format_integer_list(self, input_data, input_name=''):
if len(input_data) > 0 and not isinstance(input_data[0], BaseStrType_):
input_data = [str(s) for s in input_data]
return '%s' % ' '.join(input_data)
def gds_validate_integer_list(
self, input_data, node=None, input_name=''):
values = input_data.split()
for value in values:
try:
int(value)
except (TypeError, ValueError):
raise_parse_error(node, 'Requires sequence of integer values')
return values
def gds_format_float(self, input_data, input_name=''):
value = ('%.15f' % float(input_data)).rstrip('0')
if value.endswith('.'):
value += '0'
return value
def gds_parse_float(self, input_data, node=None, input_name=''):
try:
fval_ = float(input_data)
except (TypeError, ValueError) as exp:
raise_parse_error(node, 'Requires float or double value: %s' % exp)
return fval_
def gds_validate_float(self, input_data, node=None, input_name=''):
try:
value = float(input_data)
except (TypeError, ValueError):
raise_parse_error(node, 'Requires float value')
return value
def gds_format_float_list(self, input_data, input_name=''):
if len(input_data) > 0 and not isinstance(input_data[0], BaseStrType_):
input_data = [str(s) for s in input_data]
return '%s' % ' '.join(input_data)
def gds_validate_float_list(
self, input_data, node=None, input_name=''):
values = input_data.split()
for value in values:
try:
float(value)
except (TypeError, ValueError):
raise_parse_error(node, 'Requires sequence of float values')
return values
def gds_format_decimal(self, input_data, input_name=''):
return_value = '%s' % input_data
if '.' in return_value:
return_value = return_value.rstrip('0')
if return_value.endswith('.'):
return_value = return_value.rstrip('.')
return return_value
def gds_parse_decimal(self, input_data, node=None, input_name=''):
try:
decimal_value = decimal_.Decimal(input_data)
except (TypeError, ValueError):
raise_parse_error(node, 'Requires decimal value')
return decimal_value
def gds_validate_decimal(self, input_data, node=None, input_name=''):
try:
value = decimal_.Decimal(input_data)
except (TypeError, ValueError):
raise_parse_error(node, 'Requires decimal value')
return value
def gds_format_decimal_list(self, input_data, input_name=''):
if len(input_data) > 0 and not isinstance(input_data[0], BaseStrType_):
input_data = [str(s) for s in input_data]
return ' '.join([self.gds_format_decimal(item) for item in input_data])
def gds_validate_decimal_list(
self, input_data, node=None, input_name=''):
values = input_data.split()
for value in values:
try:
decimal_.Decimal(value)
except (TypeError, ValueError):
raise_parse_error(node, 'Requires sequence of decimal values')
return values
def gds_format_double(self, input_data, input_name=''):
return '%s' % input_data
def gds_parse_double(self, input_data, node=None, input_name=''):
try:
fval_ = float(input_data)
except (TypeError, ValueError) as exp:
raise_parse_error(node, 'Requires double or float value: %s' % exp)
return fval_
def gds_validate_double(self, input_data, node=None, input_name=''):
try:
value = float(input_data)
except (TypeError, ValueError):
raise_parse_error(node, 'Requires double or float value')
return value
def gds_format_double_list(self, input_data, input_name=''):
if len(input_data) > 0 and not isinstance(input_data[0], BaseStrType_):
input_data = [str(s) for s in input_data]
return '%s' % ' '.join(input_data)
def gds_validate_double_list(
self, input_data, node=None, input_name=''):
values = input_data.split()
for value in values:
try:
float(value)
except (TypeError, ValueError):
raise_parse_error(
node, 'Requires sequence of double or float values')
return values
def gds_format_boolean(self, input_data, input_name=''):
return ('%s' % input_data).lower()
def gds_parse_boolean(self, input_data, node=None, input_name=''):
input_data = input_data.strip()
if input_data in ('true', '1'):
bval = True
elif input_data in ('false', '0'):
bval = False
else:
raise_parse_error(node, 'Requires boolean value')
return bval
def gds_validate_boolean(self, input_data, node=None, input_name=''):
if input_data not in (True, 1, False, 0, ):
raise_parse_error(
node,
'Requires boolean value '
'(one of True, 1, False, 0)')
return input_data
def gds_format_boolean_list(self, input_data, input_name=''):
if len(input_data) > 0 and not isinstance(input_data[0], BaseStrType_):
input_data = [str(s) for s in input_data]
return '%s' % ' '.join(input_data)
def gds_validate_boolean_list(
self, input_data, node=None, input_name=''):
values = input_data.split()
for value in values:
value = self.gds_parse_boolean(value, node, input_name)
if value not in (True, 1, False, 0, ):
raise_parse_error(
node,
'Requires sequence of boolean values '
'(one of True, 1, False, 0)')
return values
def gds_validate_datetime(self, input_data, node=None, input_name=''):
return input_data
def gds_format_datetime(self, input_data, input_name=''):
if input_data.microsecond == 0:
_svalue = '%04d-%02d-%02dT%02d:%02d:%02d' % (
input_data.year,
input_data.month,
input_data.day,
input_data.hour,
input_data.minute,
input_data.second,
)
else:
_svalue = '%04d-%02d-%02dT%02d:%02d:%02d.%s' % (
input_data.year,
input_data.month,
input_data.day,
input_data.hour,
input_data.minute,
input_data.second,
('%f' % (float(input_data.microsecond) / 1000000))[2:],
)
if input_data.tzinfo is not None:
tzoff = input_data.tzinfo.utcoffset(input_data)
if tzoff is not None:
total_seconds = tzoff.seconds + (86400 * tzoff.days)
if total_seconds == 0:
_svalue += 'Z'
else:
if total_seconds < 0:
_svalue += '-'
total_seconds *= -1
else:
_svalue += '+'
hours = total_seconds // 3600
minutes = (total_seconds - (hours * 3600)) // 60
_svalue += '{0:02d}:{1:02d}'.format(hours, minutes)
return _svalue
@classmethod
def gds_parse_datetime(cls, input_data):
tz = None
if input_data[-1] == 'Z':
tz = GeneratedsSuper._FixedOffsetTZ(0, 'UTC')
input_data = input_data[:-1]
else:
results = GeneratedsSuper.tzoff_pattern.search(input_data)
if results is not None:
tzoff_parts = results.group(2).split(':')
tzoff = int(tzoff_parts[0]) * 60 + int(tzoff_parts[1])
if results.group(1) == '-':
tzoff *= -1
tz = GeneratedsSuper._FixedOffsetTZ(
tzoff, results.group(0))
input_data = input_data[:-6]
time_parts = input_data.split('.')
if len(time_parts) > 1:
micro_seconds = int(float('0.' + time_parts[1]) * 1000000)
input_data = '%s.%s' % (
time_parts[0], "{}".format(micro_seconds).rjust(6, "0"), )
dt = datetime_.datetime.strptime(
input_data, '%Y-%m-%dT%H:%M:%S.%f')
else:
dt = datetime_.datetime.strptime(
input_data, '%Y-%m-%dT%H:%M:%S')
dt = dt.replace(tzinfo=tz)
return dt
def gds_validate_date(self, input_data, node=None, input_name=''):
return input_data
def gds_format_date(self, input_data, input_name=''):
_svalue = '%04d-%02d-%02d' % (
input_data.year,
input_data.month,
input_data.day,
)
try:
if input_data.tzinfo is not None:
tzoff = input_data.tzinfo.utcoffset(input_data)
if tzoff is not None:
total_seconds = tzoff.seconds + (86400 * tzoff.days)
if total_seconds == 0:
_svalue += 'Z'
else:
if total_seconds < 0:
_svalue += '-'
total_seconds *= -1
else:
_svalue += '+'
hours = total_seconds // 3600
minutes = (total_seconds - (hours * 3600)) // 60
_svalue += '{0:02d}:{1:02d}'.format(
hours, minutes)
except AttributeError:
pass
return _svalue
@classmethod
def gds_parse_date(cls, input_data):
tz = None
if input_data[-1] == 'Z':
tz = GeneratedsSuper._FixedOffsetTZ(0, 'UTC')
input_data = input_data[:-1]
else:
results = GeneratedsSuper.tzoff_pattern.search(input_data)
if results is not None:
tzoff_parts = results.group(2).split(':')
tzoff = int(tzoff_parts[0]) * 60 + int(tzoff_parts[1])
if results.group(1) == '-':
tzoff *= -1
tz = GeneratedsSuper._FixedOffsetTZ(
tzoff, results.group(0))
input_data = input_data[:-6]
dt = datetime_.datetime.strptime(input_data, '%Y-%m-%d')
dt = dt.replace(tzinfo=tz)
return dt.date()
def gds_validate_time(self, input_data, node=None, input_name=''):
return input_data
def gds_format_time(self, input_data, input_name=''):
if input_data.microsecond == 0:
_svalue = '%02d:%02d:%02d' % (
input_data.hour,
input_data.minute,
input_data.second,
)
else:
_svalue = '%02d:%02d:%02d.%s' % (
input_data.hour,
input_data.minute,
input_data.second,
('%f' % (float(input_data.microsecond) / 1000000))[2:],
)
if input_data.tzinfo is not None:
tzoff = input_data.tzinfo.utcoffset(input_data)
if tzoff is not None:
total_seconds = tzoff.seconds + (86400 * tzoff.days)
if total_seconds == 0:
_svalue += 'Z'
else:
if total_seconds < 0:
_svalue += '-'
total_seconds *= -1
else:
_svalue += '+'
hours = total_seconds // 3600
minutes = (total_seconds - (hours * 3600)) // 60
_svalue += '{0:02d}:{1:02d}'.format(hours, minutes)
return _svalue
def gds_validate_simple_patterns(self, patterns, target):
# pat is a list of lists of strings/patterns.
# The target value must match at least one of the patterns
# in order for the test to succeed.
found1 = True
target = str(target)
for patterns1 in patterns:
found2 = False
for patterns2 in patterns1:
mo = re_.search(patterns2, target)
if mo is not None and len(mo.group(0)) == len(target):
found2 = True
break
if not found2:
found1 = False
break
return found1
@classmethod
def gds_parse_time(cls, input_data):
tz = None
if input_data[-1] == 'Z':
tz = GeneratedsSuper._FixedOffsetTZ(0, 'UTC')
input_data = input_data[:-1]
else:
results = GeneratedsSuper.tzoff_pattern.search(input_data)
if results is not None:
tzoff_parts = results.group(2).split(':')
tzoff = int(tzoff_parts[0]) * 60 + int(tzoff_parts[1])
if results.group(1) == '-':
tzoff *= -1
tz = GeneratedsSuper._FixedOffsetTZ(
tzoff, results.group(0))
input_data = input_data[:-6]
if len(input_data.split('.')) > 1:
dt = datetime_.datetime.strptime(input_data, '%H:%M:%S.%f')
else:
dt = datetime_.datetime.strptime(input_data, '%H:%M:%S')
dt = dt.replace(tzinfo=tz)
return dt.time()
def gds_check_cardinality_(
self, value, input_name,
min_occurs=0, max_occurs=1, required=None):
if value is None:
length = 0
elif isinstance(value, list):
length = len(value)
else:
length = 1
if required is not None :
if required and length < 1:
self.gds_collector_.add_message(
"Required value {}{} is missing".format(
input_name, self.gds_get_node_lineno_()))
if length < min_occurs:
self.gds_collector_.add_message(
"Number of values for {}{} is below "
"the minimum allowed, "
"expected at least {}, found {}".format(
input_name, self.gds_get_node_lineno_(),
min_occurs, length))
elif length > max_occurs:
self.gds_collector_.add_message(
"Number of values for {}{} is above "
"the maximum allowed, "
"expected at most {}, found {}".format(
input_name, self.gds_get_node_lineno_(),
max_occurs, length))
def gds_validate_builtin_ST_(
self, validator, value, input_name,
min_occurs=None, max_occurs=None, required=None):
if value is not None:
try:
validator(value, input_name=input_name)
except GDSParseError as parse_error:
self.gds_collector_.add_message(str(parse_error))
def gds_validate_defined_ST_(
self, validator, value, input_name,
min_occurs=None, max_occurs=None, required=None):
if value is not None:
try:
validator(value)
except GDSParseError as parse_error:
self.gds_collector_.add_message(str(parse_error))
def gds_str_lower(self, instring):
return instring.lower()
def get_path_(self, node):
path_list = []
self.get_path_list_(node, path_list)
path_list.reverse()
path = '/'.join(path_list)
return path
Tag_strip_pattern_ = re_.compile(r'{.*}')
def get_path_list_(self, node, path_list):
if node is None:
return
tag = GeneratedsSuper.Tag_strip_pattern_.sub('', node.tag)
if tag:
path_list.append(tag)
self.get_path_list_(node.getparent(), path_list)
def get_class_obj_(self, node, default_class=None):
class_obj1 = default_class
if 'xsi' in node.nsmap:
classname = node.get('{%s}type' % node.nsmap['xsi'])
if classname is not None:
names = classname.split(':')
if len(names) == 2:
classname = names[1]
class_obj2 = globals().get(classname)
if class_obj2 is not None:
class_obj1 = class_obj2
return class_obj1
def gds_build_any(self, node, type_name=None):
# provide default value in case option --disable-xml is used.
content = ""
content = etree_.tostring(node, encoding="unicode")
return content
@classmethod
def gds_reverse_node_mapping(cls, mapping):
return dict(((v, k) for k, v in mapping.items()))
@staticmethod
def gds_encode(instring):
if sys.version_info.major == 2:
if ExternalEncoding:
encoding = ExternalEncoding
else:
encoding = 'utf-8'
return instring.encode(encoding)
else:
return instring
@staticmethod
def convert_unicode(instring):
if isinstance(instring, str):
result = quote_xml(instring)
elif sys.version_info.major == 2 and isinstance(instring, unicode):
result = quote_xml(instring).encode('utf8')
else:
result = GeneratedsSuper.gds_encode(str(instring))
return result
def __eq__(self, other):
def excl_select_objs_(obj):
return (obj[0] != 'parent_object_' and
obj[0] != 'gds_collector_')
if type(self) != type(other):
return False
return all(x == y for x, y in zip_longest(
filter(excl_select_objs_, self.__dict__.items()),
filter(excl_select_objs_, other.__dict__.items())))
def __ne__(self, other):
return not self.__eq__(other)
# Django ETL transform hooks.
def gds_djo_etl_transform(self):
pass
def gds_djo_etl_transform_db_obj(self, dbobj):
pass
# SQLAlchemy ETL transform hooks.
def gds_sqa_etl_transform(self):
return 0, None
def gds_sqa_etl_transform_db_obj(self, dbobj):
pass
def gds_get_node_lineno_(self):
if (hasattr(self, "gds_elementtree_node_") and
self.gds_elementtree_node_ is not None):
return ' near line {}'.format(
self.gds_elementtree_node_.sourceline)
else:
return ""
def getSubclassFromModule_(module, class_):
'''Get the subclass of a class from a specific module.'''
name = class_.__name__ + 'Sub'
if hasattr(module, name):
return getattr(module, name)
else:
return None
#
# If you have installed IPython you can uncomment and use the following.
# IPython is available from http://ipython.scipy.org/.
#
## from IPython.Shell import IPShellEmbed
## args = ''
## ipshell = IPShellEmbed(args,
## banner = 'Dropping into IPython',
## exit_msg = 'Leaving Interpreter, back to program.')
# Then use the following line where and when you want to drop into the
# IPython shell:
# ipshell('<some message> -- Entering ipshell.\nHit Ctrl-D to exit')
#
# Globals
#
ExternalEncoding = 'utf-8'
# Set this to false in order to deactivate during export, the use of
# name space prefixes captured from the input document.
UseCapturedNS_ = True
CapturedNsmap_ = {}
Tag_pattern_ = re_.compile(r'({.*})?(.*)')
String_cleanup_pat_ = re_.compile(r"[\n\r\s]+")
Namespace_extract_pat_ = re_.compile(r'{(.*)}(.*)')
CDATA_pattern_ = re_.compile(r"<!\[CDATA\[.*?\]\]>", re_.DOTALL)
# Change this to redirect the generated superclass module to use a
# specific subclass module.
CurrentSubclassModule_ = None
#
# Support/utility functions.
#
def showIndent(outfile, level, pretty_print=True):
if pretty_print:
for idx in range(level):
outfile.write(' ')
def quote_xml(inStr):
"Escape markup chars, but do not modify CDATA sections."
if not inStr:
return ''
s1 = (isinstance(inStr, BaseStrType_) and inStr or '%s' % inStr)
s2 = ''
pos = 0
matchobjects = CDATA_pattern_.finditer(s1)
for mo in matchobjects:
s3 = s1[pos:mo.start()]
s2 += quote_xml_aux(s3)
s2 += s1[mo.start():mo.end()]
pos = mo.end()
s3 = s1[pos:]
s2 += quote_xml_aux(s3)
return s2
def quote_xml_aux(inStr):
s1 = inStr.replace('&', '&')
s1 = s1.replace('<', '<')
s1 = s1.replace('>', '>')
return s1
def quote_attrib(inStr):
s1 = (isinstance(inStr, BaseStrType_) and inStr or '%s' % inStr)
s1 = s1.replace('&', '&')
s1 = s1.replace('<', '<')
s1 = s1.replace('>', '>')
s1 = s1.replace('\n', ' ')
if '"' in s1:
if "'" in s1:
s1 = '"%s"' % s1.replace('"', """)
else:
s1 = "'%s'" % s1
else:
s1 = '"%s"' % s1
return s1
def quote_python(inStr):
s1 = inStr
if s1.find("'") == -1:
if s1.find('\n') == -1:
return "'%s'" % s1
else:
return "'''%s'''" % s1
else:
if s1.find('"') != -1:
s1 = s1.replace('"', '\\"')
if s1.find('\n') == -1:
return '"%s"' % s1
else:
return '"""%s"""' % s1
def get_all_text_(node):
if node.text is not None:
text = node.text
else:
text = ''
for child in node:
if child.tail is not None:
text += child.tail
return text
def find_attr_value_(attr_name, node):
attrs = node.attrib
attr_parts = attr_name.split(':')
value = None
if len(attr_parts) == 1:
value = attrs.get(attr_name)
elif len(attr_parts) == 2:
prefix, name = attr_parts
if prefix == 'xml':
namespace = 'http://www.w3.org/XML/1998/namespace'
else:
namespace = node.nsmap.get(prefix)
if namespace is not None:
value = attrs.get('{%s}%s' % (namespace, name, ))
return value
def encode_str_2_3(instr):
return instr
class GDSParseError(Exception):
pass
def raise_parse_error(node, msg):
if node is not None:
msg = '%s (element %s/line %d)' % (msg, node.tag, node.sourceline, )
raise GDSParseError(msg)
class MixedContainer:
# Constants for category:
CategoryNone = 0
CategoryText = 1
CategorySimple = 2
CategoryComplex = 3
# Constants for content_type:
TypeNone = 0
TypeText = 1
TypeString = 2
TypeInteger = 3
TypeFloat = 4
TypeDecimal = 5
TypeDouble = 6
TypeBoolean = 7
TypeBase64 = 8
def __init__(self, category, content_type, name, value):
self.category = category
self.content_type = content_type
self.name = name
self.value = value
def getCategory(self):
return self.category
def getContenttype(self, content_type):
return self.content_type
def getValue(self):
return self.value
def getName(self):
return self.name
def export(self, outfile, level, name, namespace,
pretty_print=True):
if self.category == MixedContainer.CategoryText:
# Prevent exporting empty content as empty lines.
if self.value.strip():
outfile.write(self.value)
elif self.category == MixedContainer.CategorySimple:
self.exportSimple(outfile, level, name)
else: # category == MixedContainer.CategoryComplex
self.value.export(
outfile, level, namespace, name_=name,
pretty_print=pretty_print)
def exportSimple(self, outfile, level, name):
if self.content_type == MixedContainer.TypeString:
outfile.write('<%s>%s</%s>' % (
self.name, self.value, self.name))
elif self.content_type == MixedContainer.TypeInteger or \
self.content_type == MixedContainer.TypeBoolean:
outfile.write('<%s>%d</%s>' % (
self.name, self.value, self.name))
elif self.content_type == MixedContainer.TypeFloat or \
self.content_type == MixedContainer.TypeDecimal:
outfile.write('<%s>%f</%s>' % (
self.name, self.value, self.name))
elif self.content_type == MixedContainer.TypeDouble:
outfile.write('<%s>%g</%s>' % (
self.name, self.value, self.name))
elif self.content_type == MixedContainer.TypeBase64:
outfile.write('<%s>%s</%s>' % (
self.name,
base64.b64encode(self.value),
self.name))
def to_etree(self, element, mapping_=None, reverse_mapping_=None, nsmap_=None):
if self.category == MixedContainer.CategoryText:
# Prevent exporting empty content as empty lines.
if self.value.strip():
if len(element) > 0:
if element[-1].tail is None:
element[-1].tail = self.value
else:
element[-1].tail += self.value
else:
if element.text is None:
element.text = self.value
else:
element.text += self.value
elif self.category == MixedContainer.CategorySimple:
subelement = etree_.SubElement(
element, '%s' % self.name)
subelement.text = self.to_etree_simple()
else: # category == MixedContainer.CategoryComplex
self.value.to_etree(element)
def to_etree_simple(self, mapping_=None, reverse_mapping_=None, nsmap_=None):
if self.content_type == MixedContainer.TypeString:
text = self.value
elif (self.content_type == MixedContainer.TypeInteger or
self.content_type == MixedContainer.TypeBoolean):
text = '%d' % self.value
elif (self.content_type == MixedContainer.TypeFloat or
self.content_type == MixedContainer.TypeDecimal):
text = '%f' % self.value
elif self.content_type == MixedContainer.TypeDouble:
text = '%g' % self.value
elif self.content_type == MixedContainer.TypeBase64:
text = '%s' % base64.b64encode(self.value)
return text
def exportLiteral(self, outfile, level, name):
if self.category == MixedContainer.CategoryText:
showIndent(outfile, level)
outfile.write(
'model_.MixedContainer(%d, %d, "%s", "%s"),\n' % (
self.category, self.content_type,
self.name, self.value))
elif self.category == MixedContainer.CategorySimple:
showIndent(outfile, level)
outfile.write(
'model_.MixedContainer(%d, %d, "%s", "%s"),\n' % (
self.category, self.content_type,
self.name, self.value))
else: # category == MixedContainer.CategoryComplex
showIndent(outfile, level)
outfile.write(
'model_.MixedContainer(%d, %d, "%s",\n' % (
self.category, self.content_type, self.name,))
self.value.exportLiteral(outfile, level + 1)
showIndent(outfile, level)
outfile.write(')\n')
class MemberSpec_(object):
def __init__(self, name='', data_type='', container=0,
optional=0, child_attrs=None, choice=None):
self.name = name
self.data_type = data_type
self.container = container
self.child_attrs = child_attrs
self.choice = choice
self.optional = optional
def set_name(self, name): self.name = name
def get_name(self): return self.name
def set_data_type(self, data_type): self.data_type = data_type
def get_data_type_chain(self): return self.data_type
def get_data_type(self):
if isinstance(self.data_type, list):
if len(self.data_type) > 0:
return self.data_type[-1]
else:
return 'xs:string'
else:
return self.data_type
def set_container(self, container): self.container = container
def get_container(self): return self.container
def set_child_attrs(self, child_attrs): self.child_attrs = child_attrs
def get_child_attrs(self): return self.child_attrs
def set_choice(self, choice): self.choice = choice
def get_choice(self): return self.choice
def set_optional(self, optional): self.optional = optional
def get_optional(self): return self.optional
def _cast(typ, value):
if typ is None or value is None:
return value
return typ(value)
#
# Start enum classes
#
class BACKENDType(str, Enum):
MYSQL='mysql'
SQLITE='sqlite'
class MODEType(str, Enum):
STANDALONE='STANDALONE'
MASTER='MASTER'
SLAVE='SLAVE'
class TYPEType(str, Enum):
IN='IN'
OUT='OUT'
#
# Start data representation classes
#
class HISTORY_RECORDS(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, HISTORY=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if HISTORY is None:
self.HISTORY = []
else:
self.HISTORY = HISTORY
self.HISTORY_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, HISTORY_RECORDS)
if subclass is not None:
return subclass(*args_, **kwargs_)
if HISTORY_RECORDS.subclass:
return HISTORY_RECORDS.subclass(*args_, **kwargs_)
else:
return HISTORY_RECORDS(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_HISTORY(self):
return self.HISTORY
def set_HISTORY(self, HISTORY):
self.HISTORY = HISTORY
def add_HISTORY(self, value):
self.HISTORY.append(value)
def insert_HISTORY_at(self, index, value):
self.HISTORY.insert(index, value)
def replace_HISTORY_at(self, index, value):
self.HISTORY[index] = value
def has__content(self):
if (
self.HISTORY
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HISTORY_RECORDS', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('HISTORY_RECORDS')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'HISTORY_RECORDS':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='HISTORY_RECORDS')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='HISTORY_RECORDS', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='HISTORY_RECORDS'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HISTORY_RECORDS', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for HISTORY_ in self.HISTORY:
namespaceprefix_ = self.HISTORY_nsprefix_ + ':' if (UseCapturedNS_ and self.HISTORY_nsprefix_) else ''
HISTORY_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='HISTORY', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'HISTORY':
obj_ = HISTORY.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.HISTORY.append(obj_)
obj_.original_tagname_ = 'HISTORY'
# end class HISTORY_RECORDS
class HISTORY(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, OID=None, SEQ=None, HOSTNAME=None, HID=None, CID=None, STIME=None, ETIME=None, VM_MAD=None, TM_MAD=None, DS_ID=None, PSTIME=None, PETIME=None, RSTIME=None, RETIME=None, ESTIME=None, EETIME=None, ACTION=None, UID=None, GID=None, REQUEST_ID=None, VM=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.OID = OID
self.OID_nsprefix_ = None
self.SEQ = SEQ
self.SEQ_nsprefix_ = None
self.HOSTNAME = HOSTNAME
self.HOSTNAME_nsprefix_ = None
self.HID = HID
self.HID_nsprefix_ = None
self.CID = CID
self.CID_nsprefix_ = None
self.STIME = STIME
self.STIME_nsprefix_ = None
self.ETIME = ETIME
self.ETIME_nsprefix_ = None
self.VM_MAD = VM_MAD
self.VM_MAD_nsprefix_ = None
self.TM_MAD = TM_MAD
self.TM_MAD_nsprefix_ = None
self.DS_ID = DS_ID
self.DS_ID_nsprefix_ = None
self.PSTIME = PSTIME
self.PSTIME_nsprefix_ = None
self.PETIME = PETIME
self.PETIME_nsprefix_ = None
self.RSTIME = RSTIME
self.RSTIME_nsprefix_ = None
self.RETIME = RETIME
self.RETIME_nsprefix_ = None
self.ESTIME = ESTIME
self.ESTIME_nsprefix_ = None
self.EETIME = EETIME
self.EETIME_nsprefix_ = None
self.ACTION = ACTION
self.ACTION_nsprefix_ = None
self.UID = UID
self.UID_nsprefix_ = None
self.GID = GID
self.GID_nsprefix_ = None
self.REQUEST_ID = REQUEST_ID
self.REQUEST_ID_nsprefix_ = None
self.VM = VM
self.VM_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, HISTORY)
if subclass is not None:
return subclass(*args_, **kwargs_)
if HISTORY.subclass:
return HISTORY.subclass(*args_, **kwargs_)
else:
return HISTORY(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_OID(self):
return self.OID
def set_OID(self, OID):
self.OID = OID
def get_SEQ(self):
return self.SEQ
def set_SEQ(self, SEQ):
self.SEQ = SEQ
def get_HOSTNAME(self):
return self.HOSTNAME
def set_HOSTNAME(self, HOSTNAME):
self.HOSTNAME = HOSTNAME
def get_HID(self):
return self.HID
def set_HID(self, HID):
self.HID = HID
def get_CID(self):
return self.CID
def set_CID(self, CID):
self.CID = CID
def get_STIME(self):
return self.STIME
def set_STIME(self, STIME):
self.STIME = STIME
def get_ETIME(self):
return self.ETIME
def set_ETIME(self, ETIME):
self.ETIME = ETIME
def get_VM_MAD(self):
return self.VM_MAD
def set_VM_MAD(self, VM_MAD):
self.VM_MAD = VM_MAD
def get_TM_MAD(self):
return self.TM_MAD
def set_TM_MAD(self, TM_MAD):
self.TM_MAD = TM_MAD
def get_DS_ID(self):
return self.DS_ID
def set_DS_ID(self, DS_ID):
self.DS_ID = DS_ID
def get_PSTIME(self):
return self.PSTIME
def set_PSTIME(self, PSTIME):
self.PSTIME = PSTIME
def get_PETIME(self):
return self.PETIME
def set_PETIME(self, PETIME):
self.PETIME = PETIME
def get_RSTIME(self):
return self.RSTIME
def set_RSTIME(self, RSTIME):
self.RSTIME = RSTIME
def get_RETIME(self):
return self.RETIME
def set_RETIME(self, RETIME):
self.RETIME = RETIME
def get_ESTIME(self):
return self.ESTIME
def set_ESTIME(self, ESTIME):
self.ESTIME = ESTIME
def get_EETIME(self):
return self.EETIME
def set_EETIME(self, EETIME):
self.EETIME = EETIME
def get_ACTION(self):
return self.ACTION
def set_ACTION(self, ACTION):
self.ACTION = ACTION
def get_UID(self):
return self.UID
def set_UID(self, UID):
self.UID = UID
def get_GID(self):
return self.GID
def set_GID(self, GID):
self.GID = GID
def get_REQUEST_ID(self):
return self.REQUEST_ID
def set_REQUEST_ID(self, REQUEST_ID):
self.REQUEST_ID = REQUEST_ID
def get_VM(self):
return self.VM
def set_VM(self, VM):
self.VM = VM
def has__content(self):
if (
self.OID is not None or
self.SEQ is not None or
self.HOSTNAME is not None or
self.HID is not None or
self.CID is not None or
self.STIME is not None or
self.ETIME is not None or
self.VM_MAD is not None or
self.TM_MAD is not None or
self.DS_ID is not None or
self.PSTIME is not None or
self.PETIME is not None or
self.RSTIME is not None or
self.RETIME is not None or
self.ESTIME is not None or
self.EETIME is not None or
self.ACTION is not None or
self.UID is not None or
self.GID is not None or
self.REQUEST_ID is not None or
self.VM is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HISTORY', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('HISTORY')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'HISTORY':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='HISTORY')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='HISTORY', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='HISTORY'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HISTORY', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.OID is not None:
namespaceprefix_ = self.OID_nsprefix_ + ':' if (UseCapturedNS_ and self.OID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sOID>%s</%sOID>%s' % (namespaceprefix_ , self.gds_format_integer(self.OID, input_name='OID'), namespaceprefix_ , eol_))
if self.SEQ is not None:
namespaceprefix_ = self.SEQ_nsprefix_ + ':' if (UseCapturedNS_ and self.SEQ_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSEQ>%s</%sSEQ>%s' % (namespaceprefix_ , self.gds_format_integer(self.SEQ, input_name='SEQ'), namespaceprefix_ , eol_))
if self.HOSTNAME is not None:
namespaceprefix_ = self.HOSTNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.HOSTNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sHOSTNAME>%s</%sHOSTNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.HOSTNAME), input_name='HOSTNAME')), namespaceprefix_ , eol_))
if self.HID is not None:
namespaceprefix_ = self.HID_nsprefix_ + ':' if (UseCapturedNS_ and self.HID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sHID>%s</%sHID>%s' % (namespaceprefix_ , self.gds_format_integer(self.HID, input_name='HID'), namespaceprefix_ , eol_))
if self.CID is not None:
namespaceprefix_ = self.CID_nsprefix_ + ':' if (UseCapturedNS_ and self.CID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sCID>%s</%sCID>%s' % (namespaceprefix_ , self.gds_format_integer(self.CID, input_name='CID'), namespaceprefix_ , eol_))
if self.STIME is not None:
namespaceprefix_ = self.STIME_nsprefix_ + ':' if (UseCapturedNS_ and self.STIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSTIME>%s</%sSTIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.STIME, input_name='STIME'), namespaceprefix_ , eol_))
if self.ETIME is not None:
namespaceprefix_ = self.ETIME_nsprefix_ + ':' if (UseCapturedNS_ and self.ETIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sETIME>%s</%sETIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.ETIME, input_name='ETIME'), namespaceprefix_ , eol_))
if self.VM_MAD is not None:
namespaceprefix_ = self.VM_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_MAD_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVM_MAD>%s</%sVM_MAD>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.VM_MAD), input_name='VM_MAD')), namespaceprefix_ , eol_))
if self.TM_MAD is not None:
namespaceprefix_ = self.TM_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.TM_MAD_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTM_MAD>%s</%sTM_MAD>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TM_MAD), input_name='TM_MAD')), namespaceprefix_ , eol_))
if self.DS_ID is not None:
namespaceprefix_ = self.DS_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.DS_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDS_ID>%s</%sDS_ID>%s' % (namespaceprefix_ , self.gds_format_integer(self.DS_ID, input_name='DS_ID'), namespaceprefix_ , eol_))
if self.PSTIME is not None:
namespaceprefix_ = self.PSTIME_nsprefix_ + ':' if (UseCapturedNS_ and self.PSTIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sPSTIME>%s</%sPSTIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.PSTIME, input_name='PSTIME'), namespaceprefix_ , eol_))
if self.PETIME is not None:
namespaceprefix_ = self.PETIME_nsprefix_ + ':' if (UseCapturedNS_ and self.PETIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sPETIME>%s</%sPETIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.PETIME, input_name='PETIME'), namespaceprefix_ , eol_))
if self.RSTIME is not None:
namespaceprefix_ = self.RSTIME_nsprefix_ + ':' if (UseCapturedNS_ and self.RSTIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sRSTIME>%s</%sRSTIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.RSTIME, input_name='RSTIME'), namespaceprefix_ , eol_))
if self.RETIME is not None:
namespaceprefix_ = self.RETIME_nsprefix_ + ':' if (UseCapturedNS_ and self.RETIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sRETIME>%s</%sRETIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.RETIME, input_name='RETIME'), namespaceprefix_ , eol_))
if self.ESTIME is not None:
namespaceprefix_ = self.ESTIME_nsprefix_ + ':' if (UseCapturedNS_ and self.ESTIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sESTIME>%s</%sESTIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.ESTIME, input_name='ESTIME'), namespaceprefix_ , eol_))
if self.EETIME is not None:
namespaceprefix_ = self.EETIME_nsprefix_ + ':' if (UseCapturedNS_ and self.EETIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sEETIME>%s</%sEETIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.EETIME, input_name='EETIME'), namespaceprefix_ , eol_))
if self.ACTION is not None:
namespaceprefix_ = self.ACTION_nsprefix_ + ':' if (UseCapturedNS_ and self.ACTION_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sACTION>%s</%sACTION>%s' % (namespaceprefix_ , self.gds_format_integer(self.ACTION, input_name='ACTION'), namespaceprefix_ , eol_))
if self.UID is not None:
namespaceprefix_ = self.UID_nsprefix_ + ':' if (UseCapturedNS_ and self.UID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUID>%s</%sUID>%s' % (namespaceprefix_ , self.gds_format_integer(self.UID, input_name='UID'), namespaceprefix_ , eol_))
if self.GID is not None:
namespaceprefix_ = self.GID_nsprefix_ + ':' if (UseCapturedNS_ and self.GID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGID>%s</%sGID>%s' % (namespaceprefix_ , self.gds_format_integer(self.GID, input_name='GID'), namespaceprefix_ , eol_))
if self.REQUEST_ID is not None:
namespaceprefix_ = self.REQUEST_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.REQUEST_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sREQUEST_ID>%s</%sREQUEST_ID>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.REQUEST_ID), input_name='REQUEST_ID')), namespaceprefix_ , eol_))
if self.VM is not None:
namespaceprefix_ = self.VM_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_nsprefix_) else ''
self.VM.export(outfile, level, namespaceprefix_, namespacedef_='', name_='VM', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'OID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'OID')
ival_ = self.gds_validate_integer(ival_, node, 'OID')
self.OID = ival_
self.OID_nsprefix_ = child_.prefix
elif nodeName_ == 'SEQ' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'SEQ')
ival_ = self.gds_validate_integer(ival_, node, 'SEQ')
self.SEQ = ival_
self.SEQ_nsprefix_ = child_.prefix
elif nodeName_ == 'HOSTNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'HOSTNAME')
value_ = self.gds_validate_string(value_, node, 'HOSTNAME')
self.HOSTNAME = value_
self.HOSTNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'HID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'HID')
ival_ = self.gds_validate_integer(ival_, node, 'HID')
self.HID = ival_
self.HID_nsprefix_ = child_.prefix
elif nodeName_ == 'CID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'CID')
ival_ = self.gds_validate_integer(ival_, node, 'CID')
self.CID = ival_
self.CID_nsprefix_ = child_.prefix
elif nodeName_ == 'STIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'STIME')
ival_ = self.gds_validate_integer(ival_, node, 'STIME')
self.STIME = ival_
self.STIME_nsprefix_ = child_.prefix
elif nodeName_ == 'ETIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ETIME')
ival_ = self.gds_validate_integer(ival_, node, 'ETIME')
self.ETIME = ival_
self.ETIME_nsprefix_ = child_.prefix
elif nodeName_ == 'VM_MAD':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VM_MAD')
value_ = self.gds_validate_string(value_, node, 'VM_MAD')
self.VM_MAD = value_
self.VM_MAD_nsprefix_ = child_.prefix
elif nodeName_ == 'TM_MAD':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TM_MAD')
value_ = self.gds_validate_string(value_, node, 'TM_MAD')
self.TM_MAD = value_
self.TM_MAD_nsprefix_ = child_.prefix
elif nodeName_ == 'DS_ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'DS_ID')
ival_ = self.gds_validate_integer(ival_, node, 'DS_ID')
self.DS_ID = ival_
self.DS_ID_nsprefix_ = child_.prefix
elif nodeName_ == 'PSTIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'PSTIME')
ival_ = self.gds_validate_integer(ival_, node, 'PSTIME')
self.PSTIME = ival_
self.PSTIME_nsprefix_ = child_.prefix
elif nodeName_ == 'PETIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'PETIME')
ival_ = self.gds_validate_integer(ival_, node, 'PETIME')
self.PETIME = ival_
self.PETIME_nsprefix_ = child_.prefix
elif nodeName_ == 'RSTIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'RSTIME')
ival_ = self.gds_validate_integer(ival_, node, 'RSTIME')
self.RSTIME = ival_
self.RSTIME_nsprefix_ = child_.prefix
elif nodeName_ == 'RETIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'RETIME')
ival_ = self.gds_validate_integer(ival_, node, 'RETIME')
self.RETIME = ival_
self.RETIME_nsprefix_ = child_.prefix
elif nodeName_ == 'ESTIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ESTIME')
ival_ = self.gds_validate_integer(ival_, node, 'ESTIME')
self.ESTIME = ival_
self.ESTIME_nsprefix_ = child_.prefix
elif nodeName_ == 'EETIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'EETIME')
ival_ = self.gds_validate_integer(ival_, node, 'EETIME')
self.EETIME = ival_
self.EETIME_nsprefix_ = child_.prefix
elif nodeName_ == 'ACTION' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ACTION')
ival_ = self.gds_validate_integer(ival_, node, 'ACTION')
self.ACTION = ival_
self.ACTION_nsprefix_ = child_.prefix
elif nodeName_ == 'UID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'UID')
ival_ = self.gds_validate_integer(ival_, node, 'UID')
self.UID = ival_
self.UID_nsprefix_ = child_.prefix
elif nodeName_ == 'GID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GID')
ival_ = self.gds_validate_integer(ival_, node, 'GID')
self.GID = ival_
self.GID_nsprefix_ = child_.prefix
elif nodeName_ == 'REQUEST_ID':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'REQUEST_ID')
value_ = self.gds_validate_string(value_, node, 'REQUEST_ID')
self.REQUEST_ID = value_
self.REQUEST_ID_nsprefix_ = child_.prefix
elif nodeName_ == 'VM':
obj_ = VMType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.VM = obj_
obj_.original_tagname_ = 'VM'
# end class HISTORY
class ACL_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ACL=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if ACL is None:
self.ACL = []
else:
self.ACL = ACL
self.ACL_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, ACL_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if ACL_POOL.subclass:
return ACL_POOL.subclass(*args_, **kwargs_)
else:
return ACL_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ACL(self):
return self.ACL
def set_ACL(self, ACL):
self.ACL = ACL
def add_ACL(self, value):
self.ACL.append(value)
def insert_ACL_at(self, index, value):
self.ACL.insert(index, value)
def replace_ACL_at(self, index, value):
self.ACL[index] = value
def has__content(self):
if (
self.ACL
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='ACL_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('ACL_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'ACL_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='ACL_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='ACL_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='ACL_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='ACL_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for ACL_ in self.ACL:
namespaceprefix_ = self.ACL_nsprefix_ + ':' if (UseCapturedNS_ and self.ACL_nsprefix_) else ''
ACL_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='ACL', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ACL':
obj_ = ACLType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.ACL.append(obj_)
obj_.original_tagname_ = 'ACL'
# end class ACL_POOL
class CALL_INFO(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, RESULT=None, PARAMETERS=None, EXTRA=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.RESULT = RESULT
self.RESULT_nsprefix_ = None
self.PARAMETERS = PARAMETERS
self.PARAMETERS_nsprefix_ = None
self.EXTRA = EXTRA
self.EXTRA_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, CALL_INFO)
if subclass is not None:
return subclass(*args_, **kwargs_)
if CALL_INFO.subclass:
return CALL_INFO.subclass(*args_, **kwargs_)
else:
return CALL_INFO(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_RESULT(self):
return self.RESULT
def set_RESULT(self, RESULT):
self.RESULT = RESULT
def get_PARAMETERS(self):
return self.PARAMETERS
def set_PARAMETERS(self, PARAMETERS):
self.PARAMETERS = PARAMETERS
def get_EXTRA(self):
return self.EXTRA
def set_EXTRA(self, EXTRA):
self.EXTRA = EXTRA
def has__content(self):
if (
self.RESULT is not None or
self.PARAMETERS is not None or
self.EXTRA is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='CALL_INFO', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('CALL_INFO')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'CALL_INFO':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='CALL_INFO')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='CALL_INFO', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='CALL_INFO'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='CALL_INFO', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.RESULT is not None:
namespaceprefix_ = self.RESULT_nsprefix_ + ':' if (UseCapturedNS_ and self.RESULT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sRESULT>%s</%sRESULT>%s' % (namespaceprefix_ , self.gds_format_integer(self.RESULT, input_name='RESULT'), namespaceprefix_ , eol_))
if self.PARAMETERS is not None:
namespaceprefix_ = self.PARAMETERS_nsprefix_ + ':' if (UseCapturedNS_ and self.PARAMETERS_nsprefix_) else ''
self.PARAMETERS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='PARAMETERS', pretty_print=pretty_print)
if self.EXTRA is not None:
namespaceprefix_ = self.EXTRA_nsprefix_ + ':' if (UseCapturedNS_ and self.EXTRA_nsprefix_) else ''
self.EXTRA.export(outfile, level, namespaceprefix_, namespacedef_='', name_='EXTRA', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'RESULT' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'RESULT')
ival_ = self.gds_validate_integer(ival_, node, 'RESULT')
self.RESULT = ival_
self.RESULT_nsprefix_ = child_.prefix
elif nodeName_ == 'PARAMETERS':
obj_ = PARAMETERSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.PARAMETERS = obj_
obj_.original_tagname_ = 'PARAMETERS'
elif nodeName_ == 'EXTRA':
obj_ = EXTRAType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.EXTRA = obj_
obj_.original_tagname_ = 'EXTRA'
# end class CALL_INFO
class BACKUPJOB_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, BACKUPJOB=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if BACKUPJOB is None:
self.BACKUPJOB = []
else:
self.BACKUPJOB = BACKUPJOB
self.BACKUPJOB_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, BACKUPJOB_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if BACKUPJOB_POOL.subclass:
return BACKUPJOB_POOL.subclass(*args_, **kwargs_)
else:
return BACKUPJOB_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_BACKUPJOB(self):
return self.BACKUPJOB
def set_BACKUPJOB(self, BACKUPJOB):
self.BACKUPJOB = BACKUPJOB
def add_BACKUPJOB(self, value):
self.BACKUPJOB.append(value)
def insert_BACKUPJOB_at(self, index, value):
self.BACKUPJOB.insert(index, value)
def replace_BACKUPJOB_at(self, index, value):
self.BACKUPJOB[index] = value
def has__content(self):
if (
self.BACKUPJOB
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='BACKUPJOB_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('BACKUPJOB_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'BACKUPJOB_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='BACKUPJOB_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='BACKUPJOB_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='BACKUPJOB_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='BACKUPJOB_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for BACKUPJOB_ in self.BACKUPJOB:
namespaceprefix_ = self.BACKUPJOB_nsprefix_ + ':' if (UseCapturedNS_ and self.BACKUPJOB_nsprefix_) else ''
BACKUPJOB_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='BACKUPJOB', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'BACKUPJOB':
obj_ = BACKUPJOB.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.BACKUPJOB.append(obj_)
obj_.original_tagname_ = 'BACKUPJOB'
# end class BACKUPJOB_POOL
class BACKUPJOB(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, UID=None, GID=None, UNAME=None, GNAME=None, NAME=None, LOCK=None, PERMISSIONS=None, PRIORITY=None, LAST_BACKUP_TIME=None, LAST_BACKUP_DURATION=None, SCHED_ACTIONS=None, UPDATED_VMS=None, OUTDATED_VMS=None, BACKING_UP_VMS=None, ERROR_VMS=None, TEMPLATE=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.UID = UID
self.UID_nsprefix_ = None
self.GID = GID
self.GID_nsprefix_ = None
self.UNAME = UNAME
self.UNAME_nsprefix_ = None
self.GNAME = GNAME
self.GNAME_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.LOCK = LOCK
self.LOCK_nsprefix_ = None
self.PERMISSIONS = PERMISSIONS
self.PERMISSIONS_nsprefix_ = None
self.PRIORITY = PRIORITY
self.PRIORITY_nsprefix_ = None
self.LAST_BACKUP_TIME = LAST_BACKUP_TIME
self.LAST_BACKUP_TIME_nsprefix_ = None
self.LAST_BACKUP_DURATION = LAST_BACKUP_DURATION
self.LAST_BACKUP_DURATION_nsprefix_ = None
self.SCHED_ACTIONS = SCHED_ACTIONS
self.SCHED_ACTIONS_nsprefix_ = None
self.UPDATED_VMS = UPDATED_VMS
self.UPDATED_VMS_nsprefix_ = None
self.OUTDATED_VMS = OUTDATED_VMS
self.OUTDATED_VMS_nsprefix_ = None
self.BACKING_UP_VMS = BACKING_UP_VMS
self.BACKING_UP_VMS_nsprefix_ = None
self.ERROR_VMS = ERROR_VMS
self.ERROR_VMS_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, BACKUPJOB)
if subclass is not None:
return subclass(*args_, **kwargs_)
if BACKUPJOB.subclass:
return BACKUPJOB.subclass(*args_, **kwargs_)
else:
return BACKUPJOB(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_UID(self):
return self.UID
def set_UID(self, UID):
self.UID = UID
def get_GID(self):
return self.GID
def set_GID(self, GID):
self.GID = GID
def get_UNAME(self):
return self.UNAME
def set_UNAME(self, UNAME):
self.UNAME = UNAME
def get_GNAME(self):
return self.GNAME
def set_GNAME(self, GNAME):
self.GNAME = GNAME
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_LOCK(self):
return self.LOCK
def set_LOCK(self, LOCK):
self.LOCK = LOCK
def get_PERMISSIONS(self):
return self.PERMISSIONS
def set_PERMISSIONS(self, PERMISSIONS):
self.PERMISSIONS = PERMISSIONS
def get_PRIORITY(self):
return self.PRIORITY
def set_PRIORITY(self, PRIORITY):
self.PRIORITY = PRIORITY
def get_LAST_BACKUP_TIME(self):
return self.LAST_BACKUP_TIME
def set_LAST_BACKUP_TIME(self, LAST_BACKUP_TIME):
self.LAST_BACKUP_TIME = LAST_BACKUP_TIME
def get_LAST_BACKUP_DURATION(self):
return self.LAST_BACKUP_DURATION
def set_LAST_BACKUP_DURATION(self, LAST_BACKUP_DURATION):
self.LAST_BACKUP_DURATION = LAST_BACKUP_DURATION
def get_SCHED_ACTIONS(self):
return self.SCHED_ACTIONS
def set_SCHED_ACTIONS(self, SCHED_ACTIONS):
self.SCHED_ACTIONS = SCHED_ACTIONS
def get_UPDATED_VMS(self):
return self.UPDATED_VMS
def set_UPDATED_VMS(self, UPDATED_VMS):
self.UPDATED_VMS = UPDATED_VMS
def get_OUTDATED_VMS(self):
return self.OUTDATED_VMS
def set_OUTDATED_VMS(self, OUTDATED_VMS):
self.OUTDATED_VMS = OUTDATED_VMS
def get_BACKING_UP_VMS(self):
return self.BACKING_UP_VMS
def set_BACKING_UP_VMS(self, BACKING_UP_VMS):
self.BACKING_UP_VMS = BACKING_UP_VMS
def get_ERROR_VMS(self):
return self.ERROR_VMS
def set_ERROR_VMS(self, ERROR_VMS):
self.ERROR_VMS = ERROR_VMS
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def has__content(self):
if (
self.ID is not None or
self.UID is not None or
self.GID is not None or
self.UNAME is not None or
self.GNAME is not None or
self.NAME is not None or
self.LOCK is not None or
self.PERMISSIONS is not None or
self.PRIORITY is not None or
self.LAST_BACKUP_TIME is not None or
self.LAST_BACKUP_DURATION is not None or
self.SCHED_ACTIONS is not None or
self.UPDATED_VMS is not None or
self.OUTDATED_VMS is not None or
self.BACKING_UP_VMS is not None or
self.ERROR_VMS is not None or
self.TEMPLATE is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='BACKUPJOB', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('BACKUPJOB')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'BACKUPJOB':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='BACKUPJOB')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='BACKUPJOB', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='BACKUPJOB'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='BACKUPJOB', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.UID is not None:
namespaceprefix_ = self.UID_nsprefix_ + ':' if (UseCapturedNS_ and self.UID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUID>%s</%sUID>%s' % (namespaceprefix_ , self.gds_format_integer(self.UID, input_name='UID'), namespaceprefix_ , eol_))
if self.GID is not None:
namespaceprefix_ = self.GID_nsprefix_ + ':' if (UseCapturedNS_ and self.GID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGID>%s</%sGID>%s' % (namespaceprefix_ , self.gds_format_integer(self.GID, input_name='GID'), namespaceprefix_ , eol_))
if self.UNAME is not None:
namespaceprefix_ = self.UNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.UNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUNAME>%s</%sUNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.UNAME), input_name='UNAME')), namespaceprefix_ , eol_))
if self.GNAME is not None:
namespaceprefix_ = self.GNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.GNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGNAME>%s</%sGNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.GNAME), input_name='GNAME')), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.LOCK is not None:
namespaceprefix_ = self.LOCK_nsprefix_ + ':' if (UseCapturedNS_ and self.LOCK_nsprefix_) else ''
self.LOCK.export(outfile, level, namespaceprefix_, namespacedef_='', name_='LOCK', pretty_print=pretty_print)
if self.PERMISSIONS is not None:
namespaceprefix_ = self.PERMISSIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.PERMISSIONS_nsprefix_) else ''
self.PERMISSIONS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='PERMISSIONS', pretty_print=pretty_print)
if self.PRIORITY is not None:
namespaceprefix_ = self.PRIORITY_nsprefix_ + ':' if (UseCapturedNS_ and self.PRIORITY_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sPRIORITY>%s</%sPRIORITY>%s' % (namespaceprefix_ , self.gds_format_integer(self.PRIORITY, input_name='PRIORITY'), namespaceprefix_ , eol_))
if self.LAST_BACKUP_TIME is not None:
namespaceprefix_ = self.LAST_BACKUP_TIME_nsprefix_ + ':' if (UseCapturedNS_ and self.LAST_BACKUP_TIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sLAST_BACKUP_TIME>%s</%sLAST_BACKUP_TIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.LAST_BACKUP_TIME, input_name='LAST_BACKUP_TIME'), namespaceprefix_ , eol_))
if self.LAST_BACKUP_DURATION is not None:
namespaceprefix_ = self.LAST_BACKUP_DURATION_nsprefix_ + ':' if (UseCapturedNS_ and self.LAST_BACKUP_DURATION_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sLAST_BACKUP_DURATION>%s</%sLAST_BACKUP_DURATION>%s' % (namespaceprefix_ , self.gds_format_integer(self.LAST_BACKUP_DURATION, input_name='LAST_BACKUP_DURATION'), namespaceprefix_ , eol_))
if self.SCHED_ACTIONS is not None:
namespaceprefix_ = self.SCHED_ACTIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.SCHED_ACTIONS_nsprefix_) else ''
self.SCHED_ACTIONS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='SCHED_ACTIONS', pretty_print=pretty_print)
if self.UPDATED_VMS is not None:
namespaceprefix_ = self.UPDATED_VMS_nsprefix_ + ':' if (UseCapturedNS_ and self.UPDATED_VMS_nsprefix_) else ''
self.UPDATED_VMS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='UPDATED_VMS', pretty_print=pretty_print)
if self.OUTDATED_VMS is not None:
namespaceprefix_ = self.OUTDATED_VMS_nsprefix_ + ':' if (UseCapturedNS_ and self.OUTDATED_VMS_nsprefix_) else ''
self.OUTDATED_VMS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='OUTDATED_VMS', pretty_print=pretty_print)
if self.BACKING_UP_VMS is not None:
namespaceprefix_ = self.BACKING_UP_VMS_nsprefix_ + ':' if (UseCapturedNS_ and self.BACKING_UP_VMS_nsprefix_) else ''
self.BACKING_UP_VMS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='BACKING_UP_VMS', pretty_print=pretty_print)
if self.ERROR_VMS is not None:
namespaceprefix_ = self.ERROR_VMS_nsprefix_ + ':' if (UseCapturedNS_ and self.ERROR_VMS_nsprefix_) else ''
self.ERROR_VMS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='ERROR_VMS', pretty_print=pretty_print)
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
self.TEMPLATE.export(outfile, level, namespaceprefix_, namespacedef_='', name_='TEMPLATE', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'UID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'UID')
ival_ = self.gds_validate_integer(ival_, node, 'UID')
self.UID = ival_
self.UID_nsprefix_ = child_.prefix
elif nodeName_ == 'GID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GID')
ival_ = self.gds_validate_integer(ival_, node, 'GID')
self.GID = ival_
self.GID_nsprefix_ = child_.prefix
elif nodeName_ == 'UNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'UNAME')
value_ = self.gds_validate_string(value_, node, 'UNAME')
self.UNAME = value_
self.UNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'GNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'GNAME')
value_ = self.gds_validate_string(value_, node, 'GNAME')
self.GNAME = value_
self.GNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'LOCK':
obj_ = LOCK.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.LOCK = obj_
obj_.original_tagname_ = 'LOCK'
elif nodeName_ == 'PERMISSIONS':
obj_ = PERMISSIONS.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.PERMISSIONS = obj_
obj_.original_tagname_ = 'PERMISSIONS'
elif nodeName_ == 'PRIORITY' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'PRIORITY')
ival_ = self.gds_validate_integer(ival_, node, 'PRIORITY')
self.PRIORITY = ival_
self.PRIORITY_nsprefix_ = child_.prefix
elif nodeName_ == 'LAST_BACKUP_TIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'LAST_BACKUP_TIME')
ival_ = self.gds_validate_integer(ival_, node, 'LAST_BACKUP_TIME')
self.LAST_BACKUP_TIME = ival_
self.LAST_BACKUP_TIME_nsprefix_ = child_.prefix
elif nodeName_ == 'LAST_BACKUP_DURATION' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'LAST_BACKUP_DURATION')
ival_ = self.gds_validate_integer(ival_, node, 'LAST_BACKUP_DURATION')
self.LAST_BACKUP_DURATION = ival_
self.LAST_BACKUP_DURATION_nsprefix_ = child_.prefix
elif nodeName_ == 'SCHED_ACTIONS':
obj_ = IDS.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.SCHED_ACTIONS = obj_
obj_.original_tagname_ = 'SCHED_ACTIONS'
elif nodeName_ == 'UPDATED_VMS':
obj_ = IDS.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.UPDATED_VMS = obj_
obj_.original_tagname_ = 'UPDATED_VMS'
elif nodeName_ == 'OUTDATED_VMS':
obj_ = IDS.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.OUTDATED_VMS = obj_
obj_.original_tagname_ = 'OUTDATED_VMS'
elif nodeName_ == 'BACKING_UP_VMS':
obj_ = IDS.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.BACKING_UP_VMS = obj_
obj_.original_tagname_ = 'BACKING_UP_VMS'
elif nodeName_ == 'ERROR_VMS':
obj_ = IDS.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.ERROR_VMS = obj_
obj_.original_tagname_ = 'ERROR_VMS'
elif nodeName_ == 'TEMPLATE':
obj_ = TEMPLATEType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.TEMPLATE = obj_
obj_.original_tagname_ = 'TEMPLATE'
# end class BACKUPJOB
class LOCK(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, LOCKED=None, OWNER=None, TIME=None, REQ_ID=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.LOCKED = LOCKED
self.LOCKED_nsprefix_ = None
self.OWNER = OWNER
self.OWNER_nsprefix_ = None
self.TIME = TIME
self.TIME_nsprefix_ = None
self.REQ_ID = REQ_ID
self.REQ_ID_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, LOCK)
if subclass is not None:
return subclass(*args_, **kwargs_)
if LOCK.subclass:
return LOCK.subclass(*args_, **kwargs_)
else:
return LOCK(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_LOCKED(self):
return self.LOCKED
def set_LOCKED(self, LOCKED):
self.LOCKED = LOCKED
def get_OWNER(self):
return self.OWNER
def set_OWNER(self, OWNER):
self.OWNER = OWNER
def get_TIME(self):
return self.TIME
def set_TIME(self, TIME):
self.TIME = TIME
def get_REQ_ID(self):
return self.REQ_ID
def set_REQ_ID(self, REQ_ID):
self.REQ_ID = REQ_ID
def has__content(self):
if (
self.LOCKED is not None or
self.OWNER is not None or
self.TIME is not None or
self.REQ_ID is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='LOCK', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('LOCK')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'LOCK':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='LOCK')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='LOCK', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='LOCK'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='LOCK', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.LOCKED is not None:
namespaceprefix_ = self.LOCKED_nsprefix_ + ':' if (UseCapturedNS_ and self.LOCKED_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sLOCKED>%s</%sLOCKED>%s' % (namespaceprefix_ , self.gds_format_integer(self.LOCKED, input_name='LOCKED'), namespaceprefix_ , eol_))
if self.OWNER is not None:
namespaceprefix_ = self.OWNER_nsprefix_ + ':' if (UseCapturedNS_ and self.OWNER_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sOWNER>%s</%sOWNER>%s' % (namespaceprefix_ , self.gds_format_integer(self.OWNER, input_name='OWNER'), namespaceprefix_ , eol_))
if self.TIME is not None:
namespaceprefix_ = self.TIME_nsprefix_ + ':' if (UseCapturedNS_ and self.TIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTIME>%s</%sTIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.TIME, input_name='TIME'), namespaceprefix_ , eol_))
if self.REQ_ID is not None:
namespaceprefix_ = self.REQ_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.REQ_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sREQ_ID>%s</%sREQ_ID>%s' % (namespaceprefix_ , self.gds_format_integer(self.REQ_ID, input_name='REQ_ID'), namespaceprefix_ , eol_))
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'LOCKED' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'LOCKED')
ival_ = self.gds_validate_integer(ival_, node, 'LOCKED')
self.LOCKED = ival_
self.LOCKED_nsprefix_ = child_.prefix
elif nodeName_ == 'OWNER' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'OWNER')
ival_ = self.gds_validate_integer(ival_, node, 'OWNER')
self.OWNER = ival_
self.OWNER_nsprefix_ = child_.prefix
elif nodeName_ == 'TIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'TIME')
ival_ = self.gds_validate_integer(ival_, node, 'TIME')
self.TIME = ival_
self.TIME_nsprefix_ = child_.prefix
elif nodeName_ == 'REQ_ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'REQ_ID')
ival_ = self.gds_validate_integer(ival_, node, 'REQ_ID')
self.REQ_ID = ival_
self.REQ_ID_nsprefix_ = child_.prefix
# end class LOCK
class PERMISSIONS(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, OWNER_U=None, OWNER_M=None, OWNER_A=None, GROUP_U=None, GROUP_M=None, GROUP_A=None, OTHER_U=None, OTHER_M=None, OTHER_A=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.OWNER_U = OWNER_U
self.OWNER_U_nsprefix_ = None
self.OWNER_M = OWNER_M
self.OWNER_M_nsprefix_ = None
self.OWNER_A = OWNER_A
self.OWNER_A_nsprefix_ = None
self.GROUP_U = GROUP_U
self.GROUP_U_nsprefix_ = None
self.GROUP_M = GROUP_M
self.GROUP_M_nsprefix_ = None
self.GROUP_A = GROUP_A
self.GROUP_A_nsprefix_ = None
self.OTHER_U = OTHER_U
self.OTHER_U_nsprefix_ = None
self.OTHER_M = OTHER_M
self.OTHER_M_nsprefix_ = None
self.OTHER_A = OTHER_A
self.OTHER_A_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, PERMISSIONS)
if subclass is not None:
return subclass(*args_, **kwargs_)
if PERMISSIONS.subclass:
return PERMISSIONS.subclass(*args_, **kwargs_)
else:
return PERMISSIONS(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_OWNER_U(self):
return self.OWNER_U
def set_OWNER_U(self, OWNER_U):
self.OWNER_U = OWNER_U
def get_OWNER_M(self):
return self.OWNER_M
def set_OWNER_M(self, OWNER_M):
self.OWNER_M = OWNER_M
def get_OWNER_A(self):
return self.OWNER_A
def set_OWNER_A(self, OWNER_A):
self.OWNER_A = OWNER_A
def get_GROUP_U(self):
return self.GROUP_U
def set_GROUP_U(self, GROUP_U):
self.GROUP_U = GROUP_U
def get_GROUP_M(self):
return self.GROUP_M
def set_GROUP_M(self, GROUP_M):
self.GROUP_M = GROUP_M
def get_GROUP_A(self):
return self.GROUP_A
def set_GROUP_A(self, GROUP_A):
self.GROUP_A = GROUP_A
def get_OTHER_U(self):
return self.OTHER_U
def set_OTHER_U(self, OTHER_U):
self.OTHER_U = OTHER_U
def get_OTHER_M(self):
return self.OTHER_M
def set_OTHER_M(self, OTHER_M):
self.OTHER_M = OTHER_M
def get_OTHER_A(self):
return self.OTHER_A
def set_OTHER_A(self, OTHER_A):
self.OTHER_A = OTHER_A
def has__content(self):
if (
self.OWNER_U is not None or
self.OWNER_M is not None or
self.OWNER_A is not None or
self.GROUP_U is not None or
self.GROUP_M is not None or
self.GROUP_A is not None or
self.OTHER_U is not None or
self.OTHER_M is not None or
self.OTHER_A is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='PERMISSIONS', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('PERMISSIONS')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'PERMISSIONS':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='PERMISSIONS')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='PERMISSIONS', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='PERMISSIONS'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='PERMISSIONS', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.OWNER_U is not None:
namespaceprefix_ = self.OWNER_U_nsprefix_ + ':' if (UseCapturedNS_ and self.OWNER_U_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sOWNER_U>%s</%sOWNER_U>%s' % (namespaceprefix_ , self.gds_format_integer(self.OWNER_U, input_name='OWNER_U'), namespaceprefix_ , eol_))
if self.OWNER_M is not None:
namespaceprefix_ = self.OWNER_M_nsprefix_ + ':' if (UseCapturedNS_ and self.OWNER_M_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sOWNER_M>%s</%sOWNER_M>%s' % (namespaceprefix_ , self.gds_format_integer(self.OWNER_M, input_name='OWNER_M'), namespaceprefix_ , eol_))
if self.OWNER_A is not None:
namespaceprefix_ = self.OWNER_A_nsprefix_ + ':' if (UseCapturedNS_ and self.OWNER_A_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sOWNER_A>%s</%sOWNER_A>%s' % (namespaceprefix_ , self.gds_format_integer(self.OWNER_A, input_name='OWNER_A'), namespaceprefix_ , eol_))
if self.GROUP_U is not None:
namespaceprefix_ = self.GROUP_U_nsprefix_ + ':' if (UseCapturedNS_ and self.GROUP_U_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGROUP_U>%s</%sGROUP_U>%s' % (namespaceprefix_ , self.gds_format_integer(self.GROUP_U, input_name='GROUP_U'), namespaceprefix_ , eol_))
if self.GROUP_M is not None:
namespaceprefix_ = self.GROUP_M_nsprefix_ + ':' if (UseCapturedNS_ and self.GROUP_M_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGROUP_M>%s</%sGROUP_M>%s' % (namespaceprefix_ , self.gds_format_integer(self.GROUP_M, input_name='GROUP_M'), namespaceprefix_ , eol_))
if self.GROUP_A is not None:
namespaceprefix_ = self.GROUP_A_nsprefix_ + ':' if (UseCapturedNS_ and self.GROUP_A_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGROUP_A>%s</%sGROUP_A>%s' % (namespaceprefix_ , self.gds_format_integer(self.GROUP_A, input_name='GROUP_A'), namespaceprefix_ , eol_))
if self.OTHER_U is not None:
namespaceprefix_ = self.OTHER_U_nsprefix_ + ':' if (UseCapturedNS_ and self.OTHER_U_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sOTHER_U>%s</%sOTHER_U>%s' % (namespaceprefix_ , self.gds_format_integer(self.OTHER_U, input_name='OTHER_U'), namespaceprefix_ , eol_))
if self.OTHER_M is not None:
namespaceprefix_ = self.OTHER_M_nsprefix_ + ':' if (UseCapturedNS_ and self.OTHER_M_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sOTHER_M>%s</%sOTHER_M>%s' % (namespaceprefix_ , self.gds_format_integer(self.OTHER_M, input_name='OTHER_M'), namespaceprefix_ , eol_))
if self.OTHER_A is not None:
namespaceprefix_ = self.OTHER_A_nsprefix_ + ':' if (UseCapturedNS_ and self.OTHER_A_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sOTHER_A>%s</%sOTHER_A>%s' % (namespaceprefix_ , self.gds_format_integer(self.OTHER_A, input_name='OTHER_A'), namespaceprefix_ , eol_))
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'OWNER_U' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'OWNER_U')
ival_ = self.gds_validate_integer(ival_, node, 'OWNER_U')
self.OWNER_U = ival_
self.OWNER_U_nsprefix_ = child_.prefix
elif nodeName_ == 'OWNER_M' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'OWNER_M')
ival_ = self.gds_validate_integer(ival_, node, 'OWNER_M')
self.OWNER_M = ival_
self.OWNER_M_nsprefix_ = child_.prefix
elif nodeName_ == 'OWNER_A' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'OWNER_A')
ival_ = self.gds_validate_integer(ival_, node, 'OWNER_A')
self.OWNER_A = ival_
self.OWNER_A_nsprefix_ = child_.prefix
elif nodeName_ == 'GROUP_U' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GROUP_U')
ival_ = self.gds_validate_integer(ival_, node, 'GROUP_U')
self.GROUP_U = ival_
self.GROUP_U_nsprefix_ = child_.prefix
elif nodeName_ == 'GROUP_M' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GROUP_M')
ival_ = self.gds_validate_integer(ival_, node, 'GROUP_M')
self.GROUP_M = ival_
self.GROUP_M_nsprefix_ = child_.prefix
elif nodeName_ == 'GROUP_A' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GROUP_A')
ival_ = self.gds_validate_integer(ival_, node, 'GROUP_A')
self.GROUP_A = ival_
self.GROUP_A_nsprefix_ = child_.prefix
elif nodeName_ == 'OTHER_U' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'OTHER_U')
ival_ = self.gds_validate_integer(ival_, node, 'OTHER_U')
self.OTHER_U = ival_
self.OTHER_U_nsprefix_ = child_.prefix
elif nodeName_ == 'OTHER_M' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'OTHER_M')
ival_ = self.gds_validate_integer(ival_, node, 'OTHER_M')
self.OTHER_M = ival_
self.OTHER_M_nsprefix_ = child_.prefix
elif nodeName_ == 'OTHER_A' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'OTHER_A')
ival_ = self.gds_validate_integer(ival_, node, 'OTHER_A')
self.OTHER_A = ival_
self.OTHER_A_nsprefix_ = child_.prefix
# end class PERMISSIONS
class IDS(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if ID is None:
self.ID = []
else:
self.ID = ID
self.ID_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, IDS)
if subclass is not None:
return subclass(*args_, **kwargs_)
if IDS.subclass:
return IDS.subclass(*args_, **kwargs_)
else:
return IDS(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def add_ID(self, value):
self.ID.append(value)
def insert_ID_at(self, index, value):
self.ID.insert(index, value)
def replace_ID_at(self, index, value):
self.ID[index] = value
def has__content(self):
if (
self.ID
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='IDS', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('IDS')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'IDS':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='IDS')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='IDS', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='IDS'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='IDS', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for ID_ in self.ID:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(ID_, input_name='ID'), namespaceprefix_ , eol_))
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID.append(ival_)
self.ID_nsprefix_ = child_.prefix
# end class IDS
class SCHED_ACTION(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, PARENT_ID=None, TYPE=None, ACTION=None, ARGS=None, TIME=None, REPEAT=None, DAYS=None, END_TYPE=None, END_VALUE=None, DONE=None, MESSAGE=None, WARNING=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.PARENT_ID = PARENT_ID
self.PARENT_ID_nsprefix_ = None
self.TYPE = TYPE
self.TYPE_nsprefix_ = None
self.ACTION = ACTION
self.ACTION_nsprefix_ = None
self.ARGS = ARGS
self.ARGS_nsprefix_ = None
self.TIME = TIME
self.TIME_nsprefix_ = None
self.REPEAT = REPEAT
self.REPEAT_nsprefix_ = None
self.DAYS = DAYS
self.DAYS_nsprefix_ = None
self.END_TYPE = END_TYPE
self.END_TYPE_nsprefix_ = None
self.END_VALUE = END_VALUE
self.END_VALUE_nsprefix_ = None
self.DONE = DONE
self.DONE_nsprefix_ = None
self.MESSAGE = MESSAGE
self.MESSAGE_nsprefix_ = None
self.WARNING = WARNING
self.WARNING_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, SCHED_ACTION)
if subclass is not None:
return subclass(*args_, **kwargs_)
if SCHED_ACTION.subclass:
return SCHED_ACTION.subclass(*args_, **kwargs_)
else:
return SCHED_ACTION(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_PARENT_ID(self):
return self.PARENT_ID
def set_PARENT_ID(self, PARENT_ID):
self.PARENT_ID = PARENT_ID
def get_TYPE(self):
return self.TYPE
def set_TYPE(self, TYPE):
self.TYPE = TYPE
def get_ACTION(self):
return self.ACTION
def set_ACTION(self, ACTION):
self.ACTION = ACTION
def get_ARGS(self):
return self.ARGS
def set_ARGS(self, ARGS):
self.ARGS = ARGS
def get_TIME(self):
return self.TIME
def set_TIME(self, TIME):
self.TIME = TIME
def get_REPEAT(self):
return self.REPEAT
def set_REPEAT(self, REPEAT):
self.REPEAT = REPEAT
def get_DAYS(self):
return self.DAYS
def set_DAYS(self, DAYS):
self.DAYS = DAYS
def get_END_TYPE(self):
return self.END_TYPE
def set_END_TYPE(self, END_TYPE):
self.END_TYPE = END_TYPE
def get_END_VALUE(self):
return self.END_VALUE
def set_END_VALUE(self, END_VALUE):
self.END_VALUE = END_VALUE
def get_DONE(self):
return self.DONE
def set_DONE(self, DONE):
self.DONE = DONE
def get_MESSAGE(self):
return self.MESSAGE
def set_MESSAGE(self, MESSAGE):
self.MESSAGE = MESSAGE
def get_WARNING(self):
return self.WARNING
def set_WARNING(self, WARNING):
self.WARNING = WARNING
def has__content(self):
if (
self.ID is not None or
self.PARENT_ID is not None or
self.TYPE is not None or
self.ACTION is not None or
self.ARGS is not None or
self.TIME is not None or
self.REPEAT is not None or
self.DAYS is not None or
self.END_TYPE is not None or
self.END_VALUE is not None or
self.DONE is not None or
self.MESSAGE is not None or
self.WARNING is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='SCHED_ACTION', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('SCHED_ACTION')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'SCHED_ACTION':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='SCHED_ACTION')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='SCHED_ACTION', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='SCHED_ACTION'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='SCHED_ACTION', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.PARENT_ID is not None:
namespaceprefix_ = self.PARENT_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.PARENT_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sPARENT_ID>%s</%sPARENT_ID>%s' % (namespaceprefix_ , self.gds_format_integer(self.PARENT_ID, input_name='PARENT_ID'), namespaceprefix_ , eol_))
if self.TYPE is not None:
namespaceprefix_ = self.TYPE_nsprefix_ + ':' if (UseCapturedNS_ and self.TYPE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTYPE>%s</%sTYPE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TYPE), input_name='TYPE')), namespaceprefix_ , eol_))
if self.ACTION is not None:
namespaceprefix_ = self.ACTION_nsprefix_ + ':' if (UseCapturedNS_ and self.ACTION_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sACTION>%s</%sACTION>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.ACTION), input_name='ACTION')), namespaceprefix_ , eol_))
if self.ARGS is not None:
namespaceprefix_ = self.ARGS_nsprefix_ + ':' if (UseCapturedNS_ and self.ARGS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sARGS>%s</%sARGS>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.ARGS), input_name='ARGS')), namespaceprefix_ , eol_))
if self.TIME is not None:
namespaceprefix_ = self.TIME_nsprefix_ + ':' if (UseCapturedNS_ and self.TIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTIME>%s</%sTIME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TIME), input_name='TIME')), namespaceprefix_ , eol_))
if self.REPEAT is not None:
namespaceprefix_ = self.REPEAT_nsprefix_ + ':' if (UseCapturedNS_ and self.REPEAT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sREPEAT>%s</%sREPEAT>%s' % (namespaceprefix_ , self.gds_format_integer(self.REPEAT, input_name='REPEAT'), namespaceprefix_ , eol_))
if self.DAYS is not None:
namespaceprefix_ = self.DAYS_nsprefix_ + ':' if (UseCapturedNS_ and self.DAYS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDAYS>%s</%sDAYS>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.DAYS), input_name='DAYS')), namespaceprefix_ , eol_))
if self.END_TYPE is not None:
namespaceprefix_ = self.END_TYPE_nsprefix_ + ':' if (UseCapturedNS_ and self.END_TYPE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sEND_TYPE>%s</%sEND_TYPE>%s' % (namespaceprefix_ , self.gds_format_integer(self.END_TYPE, input_name='END_TYPE'), namespaceprefix_ , eol_))
if self.END_VALUE is not None:
namespaceprefix_ = self.END_VALUE_nsprefix_ + ':' if (UseCapturedNS_ and self.END_VALUE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sEND_VALUE>%s</%sEND_VALUE>%s' % (namespaceprefix_ , self.gds_format_integer(self.END_VALUE, input_name='END_VALUE'), namespaceprefix_ , eol_))
if self.DONE is not None:
namespaceprefix_ = self.DONE_nsprefix_ + ':' if (UseCapturedNS_ and self.DONE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDONE>%s</%sDONE>%s' % (namespaceprefix_ , self.gds_format_integer(self.DONE, input_name='DONE'), namespaceprefix_ , eol_))
if self.MESSAGE is not None:
namespaceprefix_ = self.MESSAGE_nsprefix_ + ':' if (UseCapturedNS_ and self.MESSAGE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMESSAGE>%s</%sMESSAGE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.MESSAGE), input_name='MESSAGE')), namespaceprefix_ , eol_))
if self.WARNING is not None:
namespaceprefix_ = self.WARNING_nsprefix_ + ':' if (UseCapturedNS_ and self.WARNING_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sWARNING>%s</%sWARNING>%s' % (namespaceprefix_ , self.gds_format_integer(self.WARNING, input_name='WARNING'), namespaceprefix_ , eol_))
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'PARENT_ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'PARENT_ID')
ival_ = self.gds_validate_integer(ival_, node, 'PARENT_ID')
self.PARENT_ID = ival_
self.PARENT_ID_nsprefix_ = child_.prefix
elif nodeName_ == 'TYPE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TYPE')
value_ = self.gds_validate_string(value_, node, 'TYPE')
self.TYPE = value_
self.TYPE_nsprefix_ = child_.prefix
elif nodeName_ == 'ACTION':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'ACTION')
value_ = self.gds_validate_string(value_, node, 'ACTION')
self.ACTION = value_
self.ACTION_nsprefix_ = child_.prefix
elif nodeName_ == 'ARGS':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'ARGS')
value_ = self.gds_validate_string(value_, node, 'ARGS')
self.ARGS = value_
self.ARGS_nsprefix_ = child_.prefix
elif nodeName_ == 'TIME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TIME')
value_ = self.gds_validate_string(value_, node, 'TIME')
self.TIME = value_
self.TIME_nsprefix_ = child_.prefix
elif nodeName_ == 'REPEAT' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'REPEAT')
ival_ = self.gds_validate_integer(ival_, node, 'REPEAT')
self.REPEAT = ival_
self.REPEAT_nsprefix_ = child_.prefix
elif nodeName_ == 'DAYS':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DAYS')
value_ = self.gds_validate_string(value_, node, 'DAYS')
self.DAYS = value_
self.DAYS_nsprefix_ = child_.prefix
elif nodeName_ == 'END_TYPE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'END_TYPE')
ival_ = self.gds_validate_integer(ival_, node, 'END_TYPE')
self.END_TYPE = ival_
self.END_TYPE_nsprefix_ = child_.prefix
elif nodeName_ == 'END_VALUE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'END_VALUE')
ival_ = self.gds_validate_integer(ival_, node, 'END_VALUE')
self.END_VALUE = ival_
self.END_VALUE_nsprefix_ = child_.prefix
elif nodeName_ == 'DONE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'DONE')
ival_ = self.gds_validate_integer(ival_, node, 'DONE')
self.DONE = ival_
self.DONE_nsprefix_ = child_.prefix
elif nodeName_ == 'MESSAGE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'MESSAGE')
value_ = self.gds_validate_string(value_, node, 'MESSAGE')
self.MESSAGE = value_
self.MESSAGE_nsprefix_ = child_.prefix
elif nodeName_ == 'WARNING' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'WARNING')
ival_ = self.gds_validate_integer(ival_, node, 'WARNING')
self.WARNING = ival_
self.WARNING_nsprefix_ = child_.prefix
# end class SCHED_ACTION
class CLUSTER_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, CLUSTER=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if CLUSTER is None:
self.CLUSTER = []
else:
self.CLUSTER = CLUSTER
self.CLUSTER_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, CLUSTER_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if CLUSTER_POOL.subclass:
return CLUSTER_POOL.subclass(*args_, **kwargs_)
else:
return CLUSTER_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_CLUSTER(self):
return self.CLUSTER
def set_CLUSTER(self, CLUSTER):
self.CLUSTER = CLUSTER
def add_CLUSTER(self, value):
self.CLUSTER.append(value)
def insert_CLUSTER_at(self, index, value):
self.CLUSTER.insert(index, value)
def replace_CLUSTER_at(self, index, value):
self.CLUSTER[index] = value
def has__content(self):
if (
self.CLUSTER
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='CLUSTER_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('CLUSTER_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'CLUSTER_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='CLUSTER_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='CLUSTER_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='CLUSTER_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='CLUSTER_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for CLUSTER_ in self.CLUSTER:
namespaceprefix_ = self.CLUSTER_nsprefix_ + ':' if (UseCapturedNS_ and self.CLUSTER_nsprefix_) else ''
CLUSTER_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='CLUSTER', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'CLUSTER':
obj_ = CLUSTER.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.CLUSTER.append(obj_)
obj_.original_tagname_ = 'CLUSTER'
# end class CLUSTER_POOL
class CLUSTER(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, NAME=None, HOSTS=None, DATASTORES=None, VNETS=None, TEMPLATE=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.HOSTS = HOSTS
self.HOSTS_nsprefix_ = None
self.DATASTORES = DATASTORES
self.DATASTORES_nsprefix_ = None
self.VNETS = VNETS
self.VNETS_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, CLUSTER)
if subclass is not None:
return subclass(*args_, **kwargs_)
if CLUSTER.subclass:
return CLUSTER.subclass(*args_, **kwargs_)
else:
return CLUSTER(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_HOSTS(self):
return self.HOSTS
def set_HOSTS(self, HOSTS):
self.HOSTS = HOSTS
def get_DATASTORES(self):
return self.DATASTORES
def set_DATASTORES(self, DATASTORES):
self.DATASTORES = DATASTORES
def get_VNETS(self):
return self.VNETS
def set_VNETS(self, VNETS):
self.VNETS = VNETS
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def has__content(self):
if (
self.ID is not None or
self.NAME is not None or
self.HOSTS is not None or
self.DATASTORES is not None or
self.VNETS is not None or
self.TEMPLATE is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='CLUSTER', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('CLUSTER')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'CLUSTER':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='CLUSTER')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='CLUSTER', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='CLUSTER'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='CLUSTER', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.HOSTS is not None:
namespaceprefix_ = self.HOSTS_nsprefix_ + ':' if (UseCapturedNS_ and self.HOSTS_nsprefix_) else ''
self.HOSTS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='HOSTS', pretty_print=pretty_print)
if self.DATASTORES is not None:
namespaceprefix_ = self.DATASTORES_nsprefix_ + ':' if (UseCapturedNS_ and self.DATASTORES_nsprefix_) else ''
self.DATASTORES.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DATASTORES', pretty_print=pretty_print)
if self.VNETS is not None:
namespaceprefix_ = self.VNETS_nsprefix_ + ':' if (UseCapturedNS_ and self.VNETS_nsprefix_) else ''
self.VNETS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='VNETS', pretty_print=pretty_print)
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTEMPLATE>%s</%sTEMPLATE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TEMPLATE), input_name='TEMPLATE')), namespaceprefix_ , eol_))
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'HOSTS':
obj_ = HOSTSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.HOSTS = obj_
obj_.original_tagname_ = 'HOSTS'
elif nodeName_ == 'DATASTORES':
obj_ = DATASTORESType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DATASTORES = obj_
obj_.original_tagname_ = 'DATASTORES'
elif nodeName_ == 'VNETS':
obj_ = VNETSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.VNETS = obj_
obj_.original_tagname_ = 'VNETS'
elif nodeName_ == 'TEMPLATE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TEMPLATE')
value_ = self.gds_validate_string(value_, node, 'TEMPLATE')
self.TEMPLATE = value_
self.TEMPLATE_nsprefix_ = child_.prefix
# end class CLUSTER
class DATASTORE_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, DATASTORE=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if DATASTORE is None:
self.DATASTORE = []
else:
self.DATASTORE = DATASTORE
self.DATASTORE_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, DATASTORE_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if DATASTORE_POOL.subclass:
return DATASTORE_POOL.subclass(*args_, **kwargs_)
else:
return DATASTORE_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_DATASTORE(self):
return self.DATASTORE
def set_DATASTORE(self, DATASTORE):
self.DATASTORE = DATASTORE
def add_DATASTORE(self, value):
self.DATASTORE.append(value)
def insert_DATASTORE_at(self, index, value):
self.DATASTORE.insert(index, value)
def replace_DATASTORE_at(self, index, value):
self.DATASTORE[index] = value
def has__content(self):
if (
self.DATASTORE
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='DATASTORE_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('DATASTORE_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'DATASTORE_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='DATASTORE_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='DATASTORE_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='DATASTORE_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='DATASTORE_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for DATASTORE_ in self.DATASTORE:
namespaceprefix_ = self.DATASTORE_nsprefix_ + ':' if (UseCapturedNS_ and self.DATASTORE_nsprefix_) else ''
DATASTORE_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DATASTORE', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'DATASTORE':
obj_ = DATASTORE.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DATASTORE.append(obj_)
obj_.original_tagname_ = 'DATASTORE'
# end class DATASTORE_POOL
class DATASTORE(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, UID=None, GID=None, UNAME=None, GNAME=None, NAME=None, PERMISSIONS=None, DS_MAD=None, TM_MAD=None, BASE_PATH=None, TYPE=None, DISK_TYPE=None, STATE=None, CLUSTERS=None, TOTAL_MB=None, FREE_MB=None, USED_MB=None, IMAGES=None, TEMPLATE=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.UID = UID
self.UID_nsprefix_ = None
self.GID = GID
self.GID_nsprefix_ = None
self.UNAME = UNAME
self.UNAME_nsprefix_ = None
self.GNAME = GNAME
self.GNAME_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.PERMISSIONS = PERMISSIONS
self.PERMISSIONS_nsprefix_ = None
self.DS_MAD = DS_MAD
self.DS_MAD_nsprefix_ = None
self.TM_MAD = TM_MAD
self.TM_MAD_nsprefix_ = None
self.BASE_PATH = BASE_PATH
self.BASE_PATH_nsprefix_ = None
self.TYPE = TYPE
self.TYPE_nsprefix_ = None
self.DISK_TYPE = DISK_TYPE
self.DISK_TYPE_nsprefix_ = None
self.STATE = STATE
self.STATE_nsprefix_ = None
self.CLUSTERS = CLUSTERS
self.CLUSTERS_nsprefix_ = None
self.TOTAL_MB = TOTAL_MB
self.TOTAL_MB_nsprefix_ = None
self.FREE_MB = FREE_MB
self.FREE_MB_nsprefix_ = None
self.USED_MB = USED_MB
self.USED_MB_nsprefix_ = None
self.IMAGES = IMAGES
self.IMAGES_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, DATASTORE)
if subclass is not None:
return subclass(*args_, **kwargs_)
if DATASTORE.subclass:
return DATASTORE.subclass(*args_, **kwargs_)
else:
return DATASTORE(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_UID(self):
return self.UID
def set_UID(self, UID):
self.UID = UID
def get_GID(self):
return self.GID
def set_GID(self, GID):
self.GID = GID
def get_UNAME(self):
return self.UNAME
def set_UNAME(self, UNAME):
self.UNAME = UNAME
def get_GNAME(self):
return self.GNAME
def set_GNAME(self, GNAME):
self.GNAME = GNAME
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_PERMISSIONS(self):
return self.PERMISSIONS
def set_PERMISSIONS(self, PERMISSIONS):
self.PERMISSIONS = PERMISSIONS
def get_DS_MAD(self):
return self.DS_MAD
def set_DS_MAD(self, DS_MAD):
self.DS_MAD = DS_MAD
def get_TM_MAD(self):
return self.TM_MAD
def set_TM_MAD(self, TM_MAD):
self.TM_MAD = TM_MAD
def get_BASE_PATH(self):
return self.BASE_PATH
def set_BASE_PATH(self, BASE_PATH):
self.BASE_PATH = BASE_PATH
def get_TYPE(self):
return self.TYPE
def set_TYPE(self, TYPE):
self.TYPE = TYPE
def get_DISK_TYPE(self):
return self.DISK_TYPE
def set_DISK_TYPE(self, DISK_TYPE):
self.DISK_TYPE = DISK_TYPE
def get_STATE(self):
return self.STATE
def set_STATE(self, STATE):
self.STATE = STATE
def get_CLUSTERS(self):
return self.CLUSTERS
def set_CLUSTERS(self, CLUSTERS):
self.CLUSTERS = CLUSTERS
def get_TOTAL_MB(self):
return self.TOTAL_MB
def set_TOTAL_MB(self, TOTAL_MB):
self.TOTAL_MB = TOTAL_MB
def get_FREE_MB(self):
return self.FREE_MB
def set_FREE_MB(self, FREE_MB):
self.FREE_MB = FREE_MB
def get_USED_MB(self):
return self.USED_MB
def set_USED_MB(self, USED_MB):
self.USED_MB = USED_MB
def get_IMAGES(self):
return self.IMAGES
def set_IMAGES(self, IMAGES):
self.IMAGES = IMAGES
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def has__content(self):
if (
self.ID is not None or
self.UID is not None or
self.GID is not None or
self.UNAME is not None or
self.GNAME is not None or
self.NAME is not None or
self.PERMISSIONS is not None or
self.DS_MAD is not None or
self.TM_MAD is not None or
self.BASE_PATH is not None or
self.TYPE is not None or
self.DISK_TYPE is not None or
self.STATE is not None or
self.CLUSTERS is not None or
self.TOTAL_MB is not None or
self.FREE_MB is not None or
self.USED_MB is not None or
self.IMAGES is not None or
self.TEMPLATE is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='DATASTORE', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('DATASTORE')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'DATASTORE':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='DATASTORE')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='DATASTORE', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='DATASTORE'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='DATASTORE', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.UID is not None:
namespaceprefix_ = self.UID_nsprefix_ + ':' if (UseCapturedNS_ and self.UID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUID>%s</%sUID>%s' % (namespaceprefix_ , self.gds_format_integer(self.UID, input_name='UID'), namespaceprefix_ , eol_))
if self.GID is not None:
namespaceprefix_ = self.GID_nsprefix_ + ':' if (UseCapturedNS_ and self.GID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGID>%s</%sGID>%s' % (namespaceprefix_ , self.gds_format_integer(self.GID, input_name='GID'), namespaceprefix_ , eol_))
if self.UNAME is not None:
namespaceprefix_ = self.UNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.UNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUNAME>%s</%sUNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.UNAME), input_name='UNAME')), namespaceprefix_ , eol_))
if self.GNAME is not None:
namespaceprefix_ = self.GNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.GNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGNAME>%s</%sGNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.GNAME), input_name='GNAME')), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.PERMISSIONS is not None:
namespaceprefix_ = self.PERMISSIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.PERMISSIONS_nsprefix_) else ''
self.PERMISSIONS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='PERMISSIONS', pretty_print=pretty_print)
if self.DS_MAD is not None:
namespaceprefix_ = self.DS_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.DS_MAD_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDS_MAD>%s</%sDS_MAD>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.DS_MAD), input_name='DS_MAD')), namespaceprefix_ , eol_))
if self.TM_MAD is not None:
namespaceprefix_ = self.TM_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.TM_MAD_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTM_MAD>%s</%sTM_MAD>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TM_MAD), input_name='TM_MAD')), namespaceprefix_ , eol_))
if self.BASE_PATH is not None:
namespaceprefix_ = self.BASE_PATH_nsprefix_ + ':' if (UseCapturedNS_ and self.BASE_PATH_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sBASE_PATH>%s</%sBASE_PATH>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.BASE_PATH), input_name='BASE_PATH')), namespaceprefix_ , eol_))
if self.TYPE is not None:
namespaceprefix_ = self.TYPE_nsprefix_ + ':' if (UseCapturedNS_ and self.TYPE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTYPE>%s</%sTYPE>%s' % (namespaceprefix_ , self.gds_format_integer(self.TYPE, input_name='TYPE'), namespaceprefix_ , eol_))
if self.DISK_TYPE is not None:
namespaceprefix_ = self.DISK_TYPE_nsprefix_ + ':' if (UseCapturedNS_ and self.DISK_TYPE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDISK_TYPE>%s</%sDISK_TYPE>%s' % (namespaceprefix_ , self.gds_format_integer(self.DISK_TYPE, input_name='DISK_TYPE'), namespaceprefix_ , eol_))
if self.STATE is not None:
namespaceprefix_ = self.STATE_nsprefix_ + ':' if (UseCapturedNS_ and self.STATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSTATE>%s</%sSTATE>%s' % (namespaceprefix_ , self.gds_format_integer(self.STATE, input_name='STATE'), namespaceprefix_ , eol_))
if self.CLUSTERS is not None:
namespaceprefix_ = self.CLUSTERS_nsprefix_ + ':' if (UseCapturedNS_ and self.CLUSTERS_nsprefix_) else ''
self.CLUSTERS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='CLUSTERS', pretty_print=pretty_print)
if self.TOTAL_MB is not None:
namespaceprefix_ = self.TOTAL_MB_nsprefix_ + ':' if (UseCapturedNS_ and self.TOTAL_MB_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTOTAL_MB>%s</%sTOTAL_MB>%s' % (namespaceprefix_ , self.gds_format_integer(self.TOTAL_MB, input_name='TOTAL_MB'), namespaceprefix_ , eol_))
if self.FREE_MB is not None:
namespaceprefix_ = self.FREE_MB_nsprefix_ + ':' if (UseCapturedNS_ and self.FREE_MB_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sFREE_MB>%s</%sFREE_MB>%s' % (namespaceprefix_ , self.gds_format_integer(self.FREE_MB, input_name='FREE_MB'), namespaceprefix_ , eol_))
if self.USED_MB is not None:
namespaceprefix_ = self.USED_MB_nsprefix_ + ':' if (UseCapturedNS_ and self.USED_MB_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUSED_MB>%s</%sUSED_MB>%s' % (namespaceprefix_ , self.gds_format_integer(self.USED_MB, input_name='USED_MB'), namespaceprefix_ , eol_))
if self.IMAGES is not None:
namespaceprefix_ = self.IMAGES_nsprefix_ + ':' if (UseCapturedNS_ and self.IMAGES_nsprefix_) else ''
self.IMAGES.export(outfile, level, namespaceprefix_, namespacedef_='', name_='IMAGES', pretty_print=pretty_print)
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
self.TEMPLATE.export(outfile, level, namespaceprefix_, namespacedef_='', name_='TEMPLATE', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'UID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'UID')
ival_ = self.gds_validate_integer(ival_, node, 'UID')
self.UID = ival_
self.UID_nsprefix_ = child_.prefix
elif nodeName_ == 'GID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GID')
ival_ = self.gds_validate_integer(ival_, node, 'GID')
self.GID = ival_
self.GID_nsprefix_ = child_.prefix
elif nodeName_ == 'UNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'UNAME')
value_ = self.gds_validate_string(value_, node, 'UNAME')
self.UNAME = value_
self.UNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'GNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'GNAME')
value_ = self.gds_validate_string(value_, node, 'GNAME')
self.GNAME = value_
self.GNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'PERMISSIONS':
obj_ = PERMISSIONSType1.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.PERMISSIONS = obj_
obj_.original_tagname_ = 'PERMISSIONS'
elif nodeName_ == 'DS_MAD':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DS_MAD')
value_ = self.gds_validate_string(value_, node, 'DS_MAD')
self.DS_MAD = value_
self.DS_MAD_nsprefix_ = child_.prefix
elif nodeName_ == 'TM_MAD':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TM_MAD')
value_ = self.gds_validate_string(value_, node, 'TM_MAD')
self.TM_MAD = value_
self.TM_MAD_nsprefix_ = child_.prefix
elif nodeName_ == 'BASE_PATH':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'BASE_PATH')
value_ = self.gds_validate_string(value_, node, 'BASE_PATH')
self.BASE_PATH = value_
self.BASE_PATH_nsprefix_ = child_.prefix
elif nodeName_ == 'TYPE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'TYPE')
ival_ = self.gds_validate_integer(ival_, node, 'TYPE')
self.TYPE = ival_
self.TYPE_nsprefix_ = child_.prefix
elif nodeName_ == 'DISK_TYPE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'DISK_TYPE')
ival_ = self.gds_validate_integer(ival_, node, 'DISK_TYPE')
self.DISK_TYPE = ival_
self.DISK_TYPE_nsprefix_ = child_.prefix
elif nodeName_ == 'STATE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'STATE')
ival_ = self.gds_validate_integer(ival_, node, 'STATE')
self.STATE = ival_
self.STATE_nsprefix_ = child_.prefix
elif nodeName_ == 'CLUSTERS':
obj_ = CLUSTERSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.CLUSTERS = obj_
obj_.original_tagname_ = 'CLUSTERS'
elif nodeName_ == 'TOTAL_MB' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'TOTAL_MB')
ival_ = self.gds_validate_integer(ival_, node, 'TOTAL_MB')
self.TOTAL_MB = ival_
self.TOTAL_MB_nsprefix_ = child_.prefix
elif nodeName_ == 'FREE_MB' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'FREE_MB')
ival_ = self.gds_validate_integer(ival_, node, 'FREE_MB')
self.FREE_MB = ival_
self.FREE_MB_nsprefix_ = child_.prefix
elif nodeName_ == 'USED_MB' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'USED_MB')
ival_ = self.gds_validate_integer(ival_, node, 'USED_MB')
self.USED_MB = ival_
self.USED_MB_nsprefix_ = child_.prefix
elif nodeName_ == 'IMAGES':
obj_ = IMAGESType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.IMAGES = obj_
obj_.original_tagname_ = 'IMAGES'
elif nodeName_ == 'TEMPLATE':
obj_ = TEMPLATEType2.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.TEMPLATE = obj_
obj_.original_tagname_ = 'TEMPLATE'
# end class DATASTORE
class DOCUMENT_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, DOCUMENT=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if DOCUMENT is None:
self.DOCUMENT = []
else:
self.DOCUMENT = DOCUMENT
self.DOCUMENT_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, DOCUMENT_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if DOCUMENT_POOL.subclass:
return DOCUMENT_POOL.subclass(*args_, **kwargs_)
else:
return DOCUMENT_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_DOCUMENT(self):
return self.DOCUMENT
def set_DOCUMENT(self, DOCUMENT):
self.DOCUMENT = DOCUMENT
def add_DOCUMENT(self, value):
self.DOCUMENT.append(value)
def insert_DOCUMENT_at(self, index, value):
self.DOCUMENT.insert(index, value)
def replace_DOCUMENT_at(self, index, value):
self.DOCUMENT[index] = value
def has__content(self):
if (
self.DOCUMENT
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='DOCUMENT_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('DOCUMENT_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'DOCUMENT_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='DOCUMENT_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='DOCUMENT_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='DOCUMENT_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='DOCUMENT_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for DOCUMENT_ in self.DOCUMENT:
namespaceprefix_ = self.DOCUMENT_nsprefix_ + ':' if (UseCapturedNS_ and self.DOCUMENT_nsprefix_) else ''
DOCUMENT_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DOCUMENT', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'DOCUMENT':
obj_ = DOCUMENT.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DOCUMENT.append(obj_)
obj_.original_tagname_ = 'DOCUMENT'
# end class DOCUMENT_POOL
class DOCUMENT(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, UID=None, GID=None, UNAME=None, GNAME=None, NAME=None, TYPE=None, PERMISSIONS=None, LOCK=None, TEMPLATE=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.UID = UID
self.UID_nsprefix_ = None
self.GID = GID
self.GID_nsprefix_ = None
self.UNAME = UNAME
self.UNAME_nsprefix_ = None
self.GNAME = GNAME
self.GNAME_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.TYPE = TYPE
self.TYPE_nsprefix_ = None
self.PERMISSIONS = PERMISSIONS
self.PERMISSIONS_nsprefix_ = None
self.LOCK = LOCK
self.LOCK_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, DOCUMENT)
if subclass is not None:
return subclass(*args_, **kwargs_)
if DOCUMENT.subclass:
return DOCUMENT.subclass(*args_, **kwargs_)
else:
return DOCUMENT(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_UID(self):
return self.UID
def set_UID(self, UID):
self.UID = UID
def get_GID(self):
return self.GID
def set_GID(self, GID):
self.GID = GID
def get_UNAME(self):
return self.UNAME
def set_UNAME(self, UNAME):
self.UNAME = UNAME
def get_GNAME(self):
return self.GNAME
def set_GNAME(self, GNAME):
self.GNAME = GNAME
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_TYPE(self):
return self.TYPE
def set_TYPE(self, TYPE):
self.TYPE = TYPE
def get_PERMISSIONS(self):
return self.PERMISSIONS
def set_PERMISSIONS(self, PERMISSIONS):
self.PERMISSIONS = PERMISSIONS
def get_LOCK(self):
return self.LOCK
def set_LOCK(self, LOCK):
self.LOCK = LOCK
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def has__content(self):
if (
self.ID is not None or
self.UID is not None or
self.GID is not None or
self.UNAME is not None or
self.GNAME is not None or
self.NAME is not None or
self.TYPE is not None or
self.PERMISSIONS is not None or
self.LOCK is not None or
self.TEMPLATE is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='DOCUMENT', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('DOCUMENT')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'DOCUMENT':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='DOCUMENT')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='DOCUMENT', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='DOCUMENT'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='DOCUMENT', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.UID is not None:
namespaceprefix_ = self.UID_nsprefix_ + ':' if (UseCapturedNS_ and self.UID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUID>%s</%sUID>%s' % (namespaceprefix_ , self.gds_format_integer(self.UID, input_name='UID'), namespaceprefix_ , eol_))
if self.GID is not None:
namespaceprefix_ = self.GID_nsprefix_ + ':' if (UseCapturedNS_ and self.GID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGID>%s</%sGID>%s' % (namespaceprefix_ , self.gds_format_integer(self.GID, input_name='GID'), namespaceprefix_ , eol_))
if self.UNAME is not None:
namespaceprefix_ = self.UNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.UNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUNAME>%s</%sUNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.UNAME), input_name='UNAME')), namespaceprefix_ , eol_))
if self.GNAME is not None:
namespaceprefix_ = self.GNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.GNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGNAME>%s</%sGNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.GNAME), input_name='GNAME')), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.TYPE is not None:
namespaceprefix_ = self.TYPE_nsprefix_ + ':' if (UseCapturedNS_ and self.TYPE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTYPE>%s</%sTYPE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TYPE), input_name='TYPE')), namespaceprefix_ , eol_))
if self.PERMISSIONS is not None:
namespaceprefix_ = self.PERMISSIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.PERMISSIONS_nsprefix_) else ''
self.PERMISSIONS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='PERMISSIONS', pretty_print=pretty_print)
if self.LOCK is not None:
namespaceprefix_ = self.LOCK_nsprefix_ + ':' if (UseCapturedNS_ and self.LOCK_nsprefix_) else ''
self.LOCK.export(outfile, level, namespaceprefix_, namespacedef_='', name_='LOCK', pretty_print=pretty_print)
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTEMPLATE>%s</%sTEMPLATE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TEMPLATE), input_name='TEMPLATE')), namespaceprefix_ , eol_))
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'UID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'UID')
ival_ = self.gds_validate_integer(ival_, node, 'UID')
self.UID = ival_
self.UID_nsprefix_ = child_.prefix
elif nodeName_ == 'GID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GID')
ival_ = self.gds_validate_integer(ival_, node, 'GID')
self.GID = ival_
self.GID_nsprefix_ = child_.prefix
elif nodeName_ == 'UNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'UNAME')
value_ = self.gds_validate_string(value_, node, 'UNAME')
self.UNAME = value_
self.UNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'GNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'GNAME')
value_ = self.gds_validate_string(value_, node, 'GNAME')
self.GNAME = value_
self.GNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'TYPE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TYPE')
value_ = self.gds_validate_string(value_, node, 'TYPE')
self.TYPE = value_
self.TYPE_nsprefix_ = child_.prefix
elif nodeName_ == 'PERMISSIONS':
obj_ = PERMISSIONSType3.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.PERMISSIONS = obj_
obj_.original_tagname_ = 'PERMISSIONS'
elif nodeName_ == 'LOCK':
obj_ = LOCKType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.LOCK = obj_
obj_.original_tagname_ = 'LOCK'
elif nodeName_ == 'TEMPLATE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TEMPLATE')
value_ = self.gds_validate_string(value_, node, 'TEMPLATE')
self.TEMPLATE = value_
self.TEMPLATE_nsprefix_ = child_.prefix
# end class DOCUMENT
class GROUP_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, GROUP=None, QUOTAS=None, DEFAULT_GROUP_QUOTAS=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if GROUP is None:
self.GROUP = []
else:
self.GROUP = GROUP
self.GROUP_nsprefix_ = None
if QUOTAS is None:
self.QUOTAS = []
else:
self.QUOTAS = QUOTAS
self.QUOTAS_nsprefix_ = None
self.DEFAULT_GROUP_QUOTAS = DEFAULT_GROUP_QUOTAS
self.DEFAULT_GROUP_QUOTAS_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, GROUP_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if GROUP_POOL.subclass:
return GROUP_POOL.subclass(*args_, **kwargs_)
else:
return GROUP_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_GROUP(self):
return self.GROUP
def set_GROUP(self, GROUP):
self.GROUP = GROUP
def add_GROUP(self, value):
self.GROUP.append(value)
def insert_GROUP_at(self, index, value):
self.GROUP.insert(index, value)
def replace_GROUP_at(self, index, value):
self.GROUP[index] = value
def get_QUOTAS(self):
return self.QUOTAS
def set_QUOTAS(self, QUOTAS):
self.QUOTAS = QUOTAS
def add_QUOTAS(self, value):
self.QUOTAS.append(value)
def insert_QUOTAS_at(self, index, value):
self.QUOTAS.insert(index, value)
def replace_QUOTAS_at(self, index, value):
self.QUOTAS[index] = value
def get_DEFAULT_GROUP_QUOTAS(self):
return self.DEFAULT_GROUP_QUOTAS
def set_DEFAULT_GROUP_QUOTAS(self, DEFAULT_GROUP_QUOTAS):
self.DEFAULT_GROUP_QUOTAS = DEFAULT_GROUP_QUOTAS
def has__content(self):
if (
self.GROUP or
self.QUOTAS or
self.DEFAULT_GROUP_QUOTAS is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='GROUP_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('GROUP_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'GROUP_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='GROUP_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='GROUP_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='GROUP_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='GROUP_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for GROUP_ in self.GROUP:
namespaceprefix_ = self.GROUP_nsprefix_ + ':' if (UseCapturedNS_ and self.GROUP_nsprefix_) else ''
GROUP_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='GROUP', pretty_print=pretty_print)
for QUOTAS_ in self.QUOTAS:
namespaceprefix_ = self.QUOTAS_nsprefix_ + ':' if (UseCapturedNS_ and self.QUOTAS_nsprefix_) else ''
QUOTAS_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='QUOTAS', pretty_print=pretty_print)
if self.DEFAULT_GROUP_QUOTAS is not None:
namespaceprefix_ = self.DEFAULT_GROUP_QUOTAS_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_GROUP_QUOTAS_nsprefix_) else ''
self.DEFAULT_GROUP_QUOTAS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DEFAULT_GROUP_QUOTAS', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'GROUP':
obj_ = GROUPType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.GROUP.append(obj_)
obj_.original_tagname_ = 'GROUP'
elif nodeName_ == 'QUOTAS':
obj_ = QUOTASType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.QUOTAS.append(obj_)
obj_.original_tagname_ = 'QUOTAS'
elif nodeName_ == 'DEFAULT_GROUP_QUOTAS':
obj_ = DEFAULT_GROUP_QUOTASType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DEFAULT_GROUP_QUOTAS = obj_
obj_.original_tagname_ = 'DEFAULT_GROUP_QUOTAS'
# end class GROUP_POOL
class GROUP(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, NAME=None, TEMPLATE=None, USERS=None, ADMINS=None, DATASTORE_QUOTA=None, NETWORK_QUOTA=None, VM_QUOTA=None, IMAGE_QUOTA=None, DEFAULT_GROUP_QUOTAS=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
self.USERS = USERS
self.USERS_nsprefix_ = None
self.ADMINS = ADMINS
self.ADMINS_nsprefix_ = None
self.DATASTORE_QUOTA = DATASTORE_QUOTA
self.DATASTORE_QUOTA_nsprefix_ = None
self.NETWORK_QUOTA = NETWORK_QUOTA
self.NETWORK_QUOTA_nsprefix_ = None
self.VM_QUOTA = VM_QUOTA
self.VM_QUOTA_nsprefix_ = None
self.IMAGE_QUOTA = IMAGE_QUOTA
self.IMAGE_QUOTA_nsprefix_ = None
self.DEFAULT_GROUP_QUOTAS = DEFAULT_GROUP_QUOTAS
self.DEFAULT_GROUP_QUOTAS_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, GROUP)
if subclass is not None:
return subclass(*args_, **kwargs_)
if GROUP.subclass:
return GROUP.subclass(*args_, **kwargs_)
else:
return GROUP(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def get_USERS(self):
return self.USERS
def set_USERS(self, USERS):
self.USERS = USERS
def get_ADMINS(self):
return self.ADMINS
def set_ADMINS(self, ADMINS):
self.ADMINS = ADMINS
def get_DATASTORE_QUOTA(self):
return self.DATASTORE_QUOTA
def set_DATASTORE_QUOTA(self, DATASTORE_QUOTA):
self.DATASTORE_QUOTA = DATASTORE_QUOTA
def get_NETWORK_QUOTA(self):
return self.NETWORK_QUOTA
def set_NETWORK_QUOTA(self, NETWORK_QUOTA):
self.NETWORK_QUOTA = NETWORK_QUOTA
def get_VM_QUOTA(self):
return self.VM_QUOTA
def set_VM_QUOTA(self, VM_QUOTA):
self.VM_QUOTA = VM_QUOTA
def get_IMAGE_QUOTA(self):
return self.IMAGE_QUOTA
def set_IMAGE_QUOTA(self, IMAGE_QUOTA):
self.IMAGE_QUOTA = IMAGE_QUOTA
def get_DEFAULT_GROUP_QUOTAS(self):
return self.DEFAULT_GROUP_QUOTAS
def set_DEFAULT_GROUP_QUOTAS(self, DEFAULT_GROUP_QUOTAS):
self.DEFAULT_GROUP_QUOTAS = DEFAULT_GROUP_QUOTAS
def has__content(self):
if (
self.ID is not None or
self.NAME is not None or
self.TEMPLATE is not None or
self.USERS is not None or
self.ADMINS is not None or
self.DATASTORE_QUOTA is not None or
self.NETWORK_QUOTA is not None or
self.VM_QUOTA is not None or
self.IMAGE_QUOTA is not None or
self.DEFAULT_GROUP_QUOTAS is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='GROUP', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('GROUP')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'GROUP':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='GROUP')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='GROUP', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='GROUP'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='GROUP', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTEMPLATE>%s</%sTEMPLATE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TEMPLATE), input_name='TEMPLATE')), namespaceprefix_ , eol_))
if self.USERS is not None:
namespaceprefix_ = self.USERS_nsprefix_ + ':' if (UseCapturedNS_ and self.USERS_nsprefix_) else ''
self.USERS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='USERS', pretty_print=pretty_print)
if self.ADMINS is not None:
namespaceprefix_ = self.ADMINS_nsprefix_ + ':' if (UseCapturedNS_ and self.ADMINS_nsprefix_) else ''
self.ADMINS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='ADMINS', pretty_print=pretty_print)
if self.DATASTORE_QUOTA is not None:
namespaceprefix_ = self.DATASTORE_QUOTA_nsprefix_ + ':' if (UseCapturedNS_ and self.DATASTORE_QUOTA_nsprefix_) else ''
self.DATASTORE_QUOTA.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DATASTORE_QUOTA', pretty_print=pretty_print)
if self.NETWORK_QUOTA is not None:
namespaceprefix_ = self.NETWORK_QUOTA_nsprefix_ + ':' if (UseCapturedNS_ and self.NETWORK_QUOTA_nsprefix_) else ''
self.NETWORK_QUOTA.export(outfile, level, namespaceprefix_, namespacedef_='', name_='NETWORK_QUOTA', pretty_print=pretty_print)
if self.VM_QUOTA is not None:
namespaceprefix_ = self.VM_QUOTA_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_QUOTA_nsprefix_) else ''
self.VM_QUOTA.export(outfile, level, namespaceprefix_, namespacedef_='', name_='VM_QUOTA', pretty_print=pretty_print)
if self.IMAGE_QUOTA is not None:
namespaceprefix_ = self.IMAGE_QUOTA_nsprefix_ + ':' if (UseCapturedNS_ and self.IMAGE_QUOTA_nsprefix_) else ''
self.IMAGE_QUOTA.export(outfile, level, namespaceprefix_, namespacedef_='', name_='IMAGE_QUOTA', pretty_print=pretty_print)
if self.DEFAULT_GROUP_QUOTAS is not None:
namespaceprefix_ = self.DEFAULT_GROUP_QUOTAS_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_GROUP_QUOTAS_nsprefix_) else ''
self.DEFAULT_GROUP_QUOTAS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DEFAULT_GROUP_QUOTAS', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'TEMPLATE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TEMPLATE')
value_ = self.gds_validate_string(value_, node, 'TEMPLATE')
self.TEMPLATE = value_
self.TEMPLATE_nsprefix_ = child_.prefix
elif nodeName_ == 'USERS':
obj_ = USERSType13.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.USERS = obj_
obj_.original_tagname_ = 'USERS'
elif nodeName_ == 'ADMINS':
obj_ = ADMINSType14.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.ADMINS = obj_
obj_.original_tagname_ = 'ADMINS'
elif nodeName_ == 'DATASTORE_QUOTA':
obj_ = DATASTORE_QUOTAType15.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DATASTORE_QUOTA = obj_
obj_.original_tagname_ = 'DATASTORE_QUOTA'
elif nodeName_ == 'NETWORK_QUOTA':
obj_ = NETWORK_QUOTAType17.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.NETWORK_QUOTA = obj_
obj_.original_tagname_ = 'NETWORK_QUOTA'
elif nodeName_ == 'VM_QUOTA':
obj_ = VM_QUOTAType19.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.VM_QUOTA = obj_
obj_.original_tagname_ = 'VM_QUOTA'
elif nodeName_ == 'IMAGE_QUOTA':
obj_ = IMAGE_QUOTAType21.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.IMAGE_QUOTA = obj_
obj_.original_tagname_ = 'IMAGE_QUOTA'
elif nodeName_ == 'DEFAULT_GROUP_QUOTAS':
obj_ = DEFAULT_GROUP_QUOTASType23.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DEFAULT_GROUP_QUOTAS = obj_
obj_.original_tagname_ = 'DEFAULT_GROUP_QUOTAS'
# end class GROUP
class HOOK_MESSAGE(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, HOOK_TYPE=None, CALL=None, CALL_INFO=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.HOOK_TYPE = HOOK_TYPE
self.HOOK_TYPE_nsprefix_ = None
self.CALL = CALL
self.CALL_nsprefix_ = None
if CALL_INFO is None:
self.CALL_INFO = []
else:
self.CALL_INFO = CALL_INFO
self.CALL_INFO_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, HOOK_MESSAGE)
if subclass is not None:
return subclass(*args_, **kwargs_)
if HOOK_MESSAGE.subclass:
return HOOK_MESSAGE.subclass(*args_, **kwargs_)
else:
return HOOK_MESSAGE(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_HOOK_TYPE(self):
return self.HOOK_TYPE
def set_HOOK_TYPE(self, HOOK_TYPE):
self.HOOK_TYPE = HOOK_TYPE
def get_CALL(self):
return self.CALL
def set_CALL(self, CALL):
self.CALL = CALL
def get_CALL_INFO(self):
return self.CALL_INFO
def set_CALL_INFO(self, CALL_INFO):
self.CALL_INFO = CALL_INFO
def add_CALL_INFO(self, value):
self.CALL_INFO.append(value)
def insert_CALL_INFO_at(self, index, value):
self.CALL_INFO.insert(index, value)
def replace_CALL_INFO_at(self, index, value):
self.CALL_INFO[index] = value
def has__content(self):
if (
self.HOOK_TYPE is not None or
self.CALL is not None or
self.CALL_INFO
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HOOK_MESSAGE', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('HOOK_MESSAGE')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'HOOK_MESSAGE':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='HOOK_MESSAGE')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='HOOK_MESSAGE', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='HOOK_MESSAGE'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HOOK_MESSAGE', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.HOOK_TYPE is not None:
namespaceprefix_ = self.HOOK_TYPE_nsprefix_ + ':' if (UseCapturedNS_ and self.HOOK_TYPE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sHOOK_TYPE>%s</%sHOOK_TYPE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.HOOK_TYPE), input_name='HOOK_TYPE')), namespaceprefix_ , eol_))
if self.CALL is not None:
namespaceprefix_ = self.CALL_nsprefix_ + ':' if (UseCapturedNS_ and self.CALL_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sCALL>%s</%sCALL>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.CALL), input_name='CALL')), namespaceprefix_ , eol_))
for CALL_INFO_ in self.CALL_INFO:
namespaceprefix_ = self.CALL_INFO_nsprefix_ + ':' if (UseCapturedNS_ and self.CALL_INFO_nsprefix_) else ''
CALL_INFO_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='CALL_INFO', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'HOOK_TYPE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'HOOK_TYPE')
value_ = self.gds_validate_string(value_, node, 'HOOK_TYPE')
self.HOOK_TYPE = value_
self.HOOK_TYPE_nsprefix_ = child_.prefix
elif nodeName_ == 'CALL':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'CALL')
value_ = self.gds_validate_string(value_, node, 'CALL')
self.CALL = value_
self.CALL_nsprefix_ = child_.prefix
elif nodeName_ == 'CALL_INFO':
obj_ = CALL_INFO.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.CALL_INFO.append(obj_)
obj_.original_tagname_ = 'CALL_INFO'
# end class HOOK_MESSAGE
class HOOK_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, HOOK=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if HOOK is None:
self.HOOK = []
else:
self.HOOK = HOOK
self.HOOK_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, HOOK_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if HOOK_POOL.subclass:
return HOOK_POOL.subclass(*args_, **kwargs_)
else:
return HOOK_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_HOOK(self):
return self.HOOK
def set_HOOK(self, HOOK):
self.HOOK = HOOK
def add_HOOK(self, value):
self.HOOK.append(value)
def insert_HOOK_at(self, index, value):
self.HOOK.insert(index, value)
def replace_HOOK_at(self, index, value):
self.HOOK[index] = value
def has__content(self):
if (
self.HOOK
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HOOK_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('HOOK_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'HOOK_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='HOOK_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='HOOK_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='HOOK_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HOOK_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for HOOK_ in self.HOOK:
namespaceprefix_ = self.HOOK_nsprefix_ + ':' if (UseCapturedNS_ and self.HOOK_nsprefix_) else ''
HOOK_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='HOOK', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'HOOK':
obj_ = HOOK.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.HOOK.append(obj_)
obj_.original_tagname_ = 'HOOK'
# end class HOOK_POOL
class HOOK(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, NAME=None, TYPE=None, TEMPLATE=None, HOOKLOG=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.TYPE = TYPE
self.TYPE_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
self.HOOKLOG = HOOKLOG
self.HOOKLOG_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, HOOK)
if subclass is not None:
return subclass(*args_, **kwargs_)
if HOOK.subclass:
return HOOK.subclass(*args_, **kwargs_)
else:
return HOOK(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_TYPE(self):
return self.TYPE
def set_TYPE(self, TYPE):
self.TYPE = TYPE
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def get_HOOKLOG(self):
return self.HOOKLOG
def set_HOOKLOG(self, HOOKLOG):
self.HOOKLOG = HOOKLOG
def has__content(self):
if (
self.ID is not None or
self.NAME is not None or
self.TYPE is not None or
self.TEMPLATE is not None or
self.HOOKLOG is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HOOK', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('HOOK')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'HOOK':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='HOOK')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='HOOK', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='HOOK'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HOOK', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.TYPE is not None:
namespaceprefix_ = self.TYPE_nsprefix_ + ':' if (UseCapturedNS_ and self.TYPE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTYPE>%s</%sTYPE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TYPE), input_name='TYPE')), namespaceprefix_ , eol_))
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
self.TEMPLATE.export(outfile, level, namespaceprefix_, namespacedef_='', name_='TEMPLATE', pretty_print=pretty_print)
if self.HOOKLOG is not None:
namespaceprefix_ = self.HOOKLOG_nsprefix_ + ':' if (UseCapturedNS_ and self.HOOKLOG_nsprefix_) else ''
self.HOOKLOG.export(outfile, level, namespaceprefix_, namespacedef_='', name_='HOOKLOG', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'TYPE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TYPE')
value_ = self.gds_validate_string(value_, node, 'TYPE')
self.TYPE = value_
self.TYPE_nsprefix_ = child_.prefix
elif nodeName_ == 'TEMPLATE':
obj_ = TEMPLATEType32.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.TEMPLATE = obj_
obj_.original_tagname_ = 'TEMPLATE'
elif nodeName_ == 'HOOKLOG':
obj_ = HOOKLOGType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.HOOKLOG = obj_
obj_.original_tagname_ = 'HOOKLOG'
# end class HOOK
class HOST_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, HOST=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if HOST is None:
self.HOST = []
else:
self.HOST = HOST
self.HOST_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, HOST_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if HOST_POOL.subclass:
return HOST_POOL.subclass(*args_, **kwargs_)
else:
return HOST_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_HOST(self):
return self.HOST
def set_HOST(self, HOST):
self.HOST = HOST
def add_HOST(self, value):
self.HOST.append(value)
def insert_HOST_at(self, index, value):
self.HOST.insert(index, value)
def replace_HOST_at(self, index, value):
self.HOST[index] = value
def has__content(self):
if (
self.HOST
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HOST_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('HOST_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'HOST_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='HOST_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='HOST_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='HOST_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HOST_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for HOST_ in self.HOST:
namespaceprefix_ = self.HOST_nsprefix_ + ':' if (UseCapturedNS_ and self.HOST_nsprefix_) else ''
HOST_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='HOST', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'HOST':
obj_ = HOST.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.HOST.append(obj_)
obj_.original_tagname_ = 'HOST'
# end class HOST_POOL
class HOST(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, NAME=None, STATE=None, PREV_STATE=None, IM_MAD=None, VM_MAD=None, CLUSTER_ID=None, CLUSTER=None, HOST_SHARE=None, VMS=None, TEMPLATE=None, MONITORING=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.STATE = STATE
self.STATE_nsprefix_ = None
self.PREV_STATE = PREV_STATE
self.PREV_STATE_nsprefix_ = None
self.IM_MAD = IM_MAD
self.IM_MAD_nsprefix_ = None
self.VM_MAD = VM_MAD
self.VM_MAD_nsprefix_ = None
self.CLUSTER_ID = CLUSTER_ID
self.CLUSTER_ID_nsprefix_ = None
self.CLUSTER = CLUSTER
self.CLUSTER_nsprefix_ = None
self.HOST_SHARE = HOST_SHARE
self.HOST_SHARE_nsprefix_ = None
self.VMS = VMS
self.VMS_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
self.MONITORING = MONITORING
self.MONITORING_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, HOST)
if subclass is not None:
return subclass(*args_, **kwargs_)
if HOST.subclass:
return HOST.subclass(*args_, **kwargs_)
else:
return HOST(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_STATE(self):
return self.STATE
def set_STATE(self, STATE):
self.STATE = STATE
def get_PREV_STATE(self):
return self.PREV_STATE
def set_PREV_STATE(self, PREV_STATE):
self.PREV_STATE = PREV_STATE
def get_IM_MAD(self):
return self.IM_MAD
def set_IM_MAD(self, IM_MAD):
self.IM_MAD = IM_MAD
def get_VM_MAD(self):
return self.VM_MAD
def set_VM_MAD(self, VM_MAD):
self.VM_MAD = VM_MAD
def get_CLUSTER_ID(self):
return self.CLUSTER_ID
def set_CLUSTER_ID(self, CLUSTER_ID):
self.CLUSTER_ID = CLUSTER_ID
def get_CLUSTER(self):
return self.CLUSTER
def set_CLUSTER(self, CLUSTER):
self.CLUSTER = CLUSTER
def get_HOST_SHARE(self):
return self.HOST_SHARE
def set_HOST_SHARE(self, HOST_SHARE):
self.HOST_SHARE = HOST_SHARE
def get_VMS(self):
return self.VMS
def set_VMS(self, VMS):
self.VMS = VMS
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def get_MONITORING(self):
return self.MONITORING
def set_MONITORING(self, MONITORING):
self.MONITORING = MONITORING
def has__content(self):
if (
self.ID is not None or
self.NAME is not None or
self.STATE is not None or
self.PREV_STATE is not None or
self.IM_MAD is not None or
self.VM_MAD is not None or
self.CLUSTER_ID is not None or
self.CLUSTER is not None or
self.HOST_SHARE is not None or
self.VMS is not None or
self.TEMPLATE is not None or
self.MONITORING is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HOST', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('HOST')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'HOST':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='HOST')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='HOST', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='HOST'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='HOST', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.STATE is not None:
namespaceprefix_ = self.STATE_nsprefix_ + ':' if (UseCapturedNS_ and self.STATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSTATE>%s</%sSTATE>%s' % (namespaceprefix_ , self.gds_format_integer(self.STATE, input_name='STATE'), namespaceprefix_ , eol_))
if self.PREV_STATE is not None:
namespaceprefix_ = self.PREV_STATE_nsprefix_ + ':' if (UseCapturedNS_ and self.PREV_STATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sPREV_STATE>%s</%sPREV_STATE>%s' % (namespaceprefix_ , self.gds_format_integer(self.PREV_STATE, input_name='PREV_STATE'), namespaceprefix_ , eol_))
if self.IM_MAD is not None:
namespaceprefix_ = self.IM_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.IM_MAD_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sIM_MAD>%s</%sIM_MAD>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.IM_MAD), input_name='IM_MAD')), namespaceprefix_ , eol_))
if self.VM_MAD is not None:
namespaceprefix_ = self.VM_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_MAD_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVM_MAD>%s</%sVM_MAD>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.VM_MAD), input_name='VM_MAD')), namespaceprefix_ , eol_))
if self.CLUSTER_ID is not None:
namespaceprefix_ = self.CLUSTER_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.CLUSTER_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sCLUSTER_ID>%s</%sCLUSTER_ID>%s' % (namespaceprefix_ , self.gds_format_integer(self.CLUSTER_ID, input_name='CLUSTER_ID'), namespaceprefix_ , eol_))
if self.CLUSTER is not None:
namespaceprefix_ = self.CLUSTER_nsprefix_ + ':' if (UseCapturedNS_ and self.CLUSTER_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sCLUSTER>%s</%sCLUSTER>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.CLUSTER), input_name='CLUSTER')), namespaceprefix_ , eol_))
if self.HOST_SHARE is not None:
namespaceprefix_ = self.HOST_SHARE_nsprefix_ + ':' if (UseCapturedNS_ and self.HOST_SHARE_nsprefix_) else ''
self.HOST_SHARE.export(outfile, level, namespaceprefix_, namespacedef_='', name_='HOST_SHARE', pretty_print=pretty_print)
if self.VMS is not None:
namespaceprefix_ = self.VMS_nsprefix_ + ':' if (UseCapturedNS_ and self.VMS_nsprefix_) else ''
self.VMS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='VMS', pretty_print=pretty_print)
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
self.TEMPLATE.export(outfile, level, namespaceprefix_, namespacedef_='', name_='TEMPLATE', pretty_print=pretty_print)
if self.MONITORING is not None:
namespaceprefix_ = self.MONITORING_nsprefix_ + ':' if (UseCapturedNS_ and self.MONITORING_nsprefix_) else ''
self.MONITORING.export(outfile, level, namespaceprefix_, namespacedef_='', name_='MONITORING', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'STATE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'STATE')
ival_ = self.gds_validate_integer(ival_, node, 'STATE')
self.STATE = ival_
self.STATE_nsprefix_ = child_.prefix
elif nodeName_ == 'PREV_STATE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'PREV_STATE')
ival_ = self.gds_validate_integer(ival_, node, 'PREV_STATE')
self.PREV_STATE = ival_
self.PREV_STATE_nsprefix_ = child_.prefix
elif nodeName_ == 'IM_MAD':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'IM_MAD')
value_ = self.gds_validate_string(value_, node, 'IM_MAD')
self.IM_MAD = value_
self.IM_MAD_nsprefix_ = child_.prefix
elif nodeName_ == 'VM_MAD':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VM_MAD')
value_ = self.gds_validate_string(value_, node, 'VM_MAD')
self.VM_MAD = value_
self.VM_MAD_nsprefix_ = child_.prefix
elif nodeName_ == 'CLUSTER_ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'CLUSTER_ID')
ival_ = self.gds_validate_integer(ival_, node, 'CLUSTER_ID')
self.CLUSTER_ID = ival_
self.CLUSTER_ID_nsprefix_ = child_.prefix
elif nodeName_ == 'CLUSTER':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'CLUSTER')
value_ = self.gds_validate_string(value_, node, 'CLUSTER')
self.CLUSTER = value_
self.CLUSTER_nsprefix_ = child_.prefix
elif nodeName_ == 'HOST_SHARE':
obj_ = HOST_SHAREType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.HOST_SHARE = obj_
obj_.original_tagname_ = 'HOST_SHARE'
elif nodeName_ == 'VMS':
obj_ = VMSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.VMS = obj_
obj_.original_tagname_ = 'VMS'
elif nodeName_ == 'TEMPLATE':
obj_ = TEMPLATEType34.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.TEMPLATE = obj_
obj_.original_tagname_ = 'TEMPLATE'
elif nodeName_ == 'MONITORING':
obj_ = MONITORINGType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.MONITORING = obj_
obj_.original_tagname_ = 'MONITORING'
# end class HOST
class IMAGE_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, IMAGE=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if IMAGE is None:
self.IMAGE = []
else:
self.IMAGE = IMAGE
self.IMAGE_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, IMAGE_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if IMAGE_POOL.subclass:
return IMAGE_POOL.subclass(*args_, **kwargs_)
else:
return IMAGE_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_IMAGE(self):
return self.IMAGE
def set_IMAGE(self, IMAGE):
self.IMAGE = IMAGE
def add_IMAGE(self, value):
self.IMAGE.append(value)
def insert_IMAGE_at(self, index, value):
self.IMAGE.insert(index, value)
def replace_IMAGE_at(self, index, value):
self.IMAGE[index] = value
def has__content(self):
if (
self.IMAGE
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='IMAGE_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('IMAGE_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'IMAGE_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='IMAGE_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='IMAGE_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='IMAGE_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='IMAGE_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for IMAGE_ in self.IMAGE:
namespaceprefix_ = self.IMAGE_nsprefix_ + ':' if (UseCapturedNS_ and self.IMAGE_nsprefix_) else ''
IMAGE_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='IMAGE', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'IMAGE':
obj_ = IMAGE.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.IMAGE.append(obj_)
obj_.original_tagname_ = 'IMAGE'
# end class IMAGE_POOL
class IMAGE(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, UID=None, GID=None, UNAME=None, GNAME=None, NAME=None, LOCK=None, PERMISSIONS=None, TYPE=None, DISK_TYPE=None, PERSISTENT=None, REGTIME=None, SOURCE=None, PATH=None, FORMAT=None, FS=None, SIZE=None, STATE=None, PREV_STATE=None, RUNNING_VMS=None, CLONING_OPS=None, CLONING_ID=None, TARGET_SNAPSHOT=None, DATASTORE_ID=None, DATASTORE=None, VMS=None, CLONES=None, APP_CLONES=None, TEMPLATE=None, SNAPSHOTS=None, BACKUP_INCREMENTS=None, BACKUP_DISK_IDS=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.UID = UID
self.UID_nsprefix_ = None
self.GID = GID
self.GID_nsprefix_ = None
self.UNAME = UNAME
self.UNAME_nsprefix_ = None
self.GNAME = GNAME
self.GNAME_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.LOCK = LOCK
self.LOCK_nsprefix_ = None
self.PERMISSIONS = PERMISSIONS
self.PERMISSIONS_nsprefix_ = None
self.TYPE = TYPE
self.TYPE_nsprefix_ = None
self.DISK_TYPE = DISK_TYPE
self.DISK_TYPE_nsprefix_ = None
self.PERSISTENT = PERSISTENT
self.PERSISTENT_nsprefix_ = None
self.REGTIME = REGTIME
self.REGTIME_nsprefix_ = None
self.SOURCE = SOURCE
self.SOURCE_nsprefix_ = None
self.PATH = PATH
self.PATH_nsprefix_ = None
self.FORMAT = FORMAT
self.FORMAT_nsprefix_ = None
self.FS = FS
self.FS_nsprefix_ = None
self.SIZE = SIZE
self.SIZE_nsprefix_ = None
self.STATE = STATE
self.STATE_nsprefix_ = None
self.PREV_STATE = PREV_STATE
self.PREV_STATE_nsprefix_ = None
self.RUNNING_VMS = RUNNING_VMS
self.RUNNING_VMS_nsprefix_ = None
self.CLONING_OPS = CLONING_OPS
self.CLONING_OPS_nsprefix_ = None
self.CLONING_ID = CLONING_ID
self.CLONING_ID_nsprefix_ = None
self.TARGET_SNAPSHOT = TARGET_SNAPSHOT
self.TARGET_SNAPSHOT_nsprefix_ = None
self.DATASTORE_ID = DATASTORE_ID
self.DATASTORE_ID_nsprefix_ = None
self.DATASTORE = DATASTORE
self.DATASTORE_nsprefix_ = None
self.VMS = VMS
self.VMS_nsprefix_ = None
self.CLONES = CLONES
self.CLONES_nsprefix_ = None
self.APP_CLONES = APP_CLONES
self.APP_CLONES_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
self.SNAPSHOTS = SNAPSHOTS
self.SNAPSHOTS_nsprefix_ = None
self.BACKUP_INCREMENTS = BACKUP_INCREMENTS
self.BACKUP_INCREMENTS_nsprefix_ = None
self.BACKUP_DISK_IDS = BACKUP_DISK_IDS
self.BACKUP_DISK_IDS_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, IMAGE)
if subclass is not None:
return subclass(*args_, **kwargs_)
if IMAGE.subclass:
return IMAGE.subclass(*args_, **kwargs_)
else:
return IMAGE(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_UID(self):
return self.UID
def set_UID(self, UID):
self.UID = UID
def get_GID(self):
return self.GID
def set_GID(self, GID):
self.GID = GID
def get_UNAME(self):
return self.UNAME
def set_UNAME(self, UNAME):
self.UNAME = UNAME
def get_GNAME(self):
return self.GNAME
def set_GNAME(self, GNAME):
self.GNAME = GNAME
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_LOCK(self):
return self.LOCK
def set_LOCK(self, LOCK):
self.LOCK = LOCK
def get_PERMISSIONS(self):
return self.PERMISSIONS
def set_PERMISSIONS(self, PERMISSIONS):
self.PERMISSIONS = PERMISSIONS
def get_TYPE(self):
return self.TYPE
def set_TYPE(self, TYPE):
self.TYPE = TYPE
def get_DISK_TYPE(self):
return self.DISK_TYPE
def set_DISK_TYPE(self, DISK_TYPE):
self.DISK_TYPE = DISK_TYPE
def get_PERSISTENT(self):
return self.PERSISTENT
def set_PERSISTENT(self, PERSISTENT):
self.PERSISTENT = PERSISTENT
def get_REGTIME(self):
return self.REGTIME
def set_REGTIME(self, REGTIME):
self.REGTIME = REGTIME
def get_SOURCE(self):
return self.SOURCE
def set_SOURCE(self, SOURCE):
self.SOURCE = SOURCE
def get_PATH(self):
return self.PATH
def set_PATH(self, PATH):
self.PATH = PATH
def get_FORMAT(self):
return self.FORMAT
def set_FORMAT(self, FORMAT):
self.FORMAT = FORMAT
def get_FS(self):
return self.FS
def set_FS(self, FS):
self.FS = FS
def get_SIZE(self):
return self.SIZE
def set_SIZE(self, SIZE):
self.SIZE = SIZE
def get_STATE(self):
return self.STATE
def set_STATE(self, STATE):
self.STATE = STATE
def get_PREV_STATE(self):
return self.PREV_STATE
def set_PREV_STATE(self, PREV_STATE):
self.PREV_STATE = PREV_STATE
def get_RUNNING_VMS(self):
return self.RUNNING_VMS
def set_RUNNING_VMS(self, RUNNING_VMS):
self.RUNNING_VMS = RUNNING_VMS
def get_CLONING_OPS(self):
return self.CLONING_OPS
def set_CLONING_OPS(self, CLONING_OPS):
self.CLONING_OPS = CLONING_OPS
def get_CLONING_ID(self):
return self.CLONING_ID
def set_CLONING_ID(self, CLONING_ID):
self.CLONING_ID = CLONING_ID
def get_TARGET_SNAPSHOT(self):
return self.TARGET_SNAPSHOT
def set_TARGET_SNAPSHOT(self, TARGET_SNAPSHOT):
self.TARGET_SNAPSHOT = TARGET_SNAPSHOT
def get_DATASTORE_ID(self):
return self.DATASTORE_ID
def set_DATASTORE_ID(self, DATASTORE_ID):
self.DATASTORE_ID = DATASTORE_ID
def get_DATASTORE(self):
return self.DATASTORE
def set_DATASTORE(self, DATASTORE):
self.DATASTORE = DATASTORE
def get_VMS(self):
return self.VMS
def set_VMS(self, VMS):
self.VMS = VMS
def get_CLONES(self):
return self.CLONES
def set_CLONES(self, CLONES):
self.CLONES = CLONES
def get_APP_CLONES(self):
return self.APP_CLONES
def set_APP_CLONES(self, APP_CLONES):
self.APP_CLONES = APP_CLONES
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def get_SNAPSHOTS(self):
return self.SNAPSHOTS
def set_SNAPSHOTS(self, SNAPSHOTS):
self.SNAPSHOTS = SNAPSHOTS
def get_BACKUP_INCREMENTS(self):
return self.BACKUP_INCREMENTS
def set_BACKUP_INCREMENTS(self, BACKUP_INCREMENTS):
self.BACKUP_INCREMENTS = BACKUP_INCREMENTS
def get_BACKUP_DISK_IDS(self):
return self.BACKUP_DISK_IDS
def set_BACKUP_DISK_IDS(self, BACKUP_DISK_IDS):
self.BACKUP_DISK_IDS = BACKUP_DISK_IDS
def has__content(self):
if (
self.ID is not None or
self.UID is not None or
self.GID is not None or
self.UNAME is not None or
self.GNAME is not None or
self.NAME is not None or
self.LOCK is not None or
self.PERMISSIONS is not None or
self.TYPE is not None or
self.DISK_TYPE is not None or
self.PERSISTENT is not None or
self.REGTIME is not None or
self.SOURCE is not None or
self.PATH is not None or
self.FORMAT is not None or
self.FS is not None or
self.SIZE is not None or
self.STATE is not None or
self.PREV_STATE is not None or
self.RUNNING_VMS is not None or
self.CLONING_OPS is not None or
self.CLONING_ID is not None or
self.TARGET_SNAPSHOT is not None or
self.DATASTORE_ID is not None or
self.DATASTORE is not None or
self.VMS is not None or
self.CLONES is not None or
self.APP_CLONES is not None or
self.TEMPLATE is not None or
self.SNAPSHOTS is not None or
self.BACKUP_INCREMENTS is not None or
self.BACKUP_DISK_IDS is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='IMAGE', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('IMAGE')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'IMAGE':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='IMAGE')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='IMAGE', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='IMAGE'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='IMAGE', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.UID is not None:
namespaceprefix_ = self.UID_nsprefix_ + ':' if (UseCapturedNS_ and self.UID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUID>%s</%sUID>%s' % (namespaceprefix_ , self.gds_format_integer(self.UID, input_name='UID'), namespaceprefix_ , eol_))
if self.GID is not None:
namespaceprefix_ = self.GID_nsprefix_ + ':' if (UseCapturedNS_ and self.GID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGID>%s</%sGID>%s' % (namespaceprefix_ , self.gds_format_integer(self.GID, input_name='GID'), namespaceprefix_ , eol_))
if self.UNAME is not None:
namespaceprefix_ = self.UNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.UNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUNAME>%s</%sUNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.UNAME), input_name='UNAME')), namespaceprefix_ , eol_))
if self.GNAME is not None:
namespaceprefix_ = self.GNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.GNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGNAME>%s</%sGNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.GNAME), input_name='GNAME')), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.LOCK is not None:
namespaceprefix_ = self.LOCK_nsprefix_ + ':' if (UseCapturedNS_ and self.LOCK_nsprefix_) else ''
self.LOCK.export(outfile, level, namespaceprefix_, namespacedef_='', name_='LOCK', pretty_print=pretty_print)
if self.PERMISSIONS is not None:
namespaceprefix_ = self.PERMISSIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.PERMISSIONS_nsprefix_) else ''
self.PERMISSIONS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='PERMISSIONS', pretty_print=pretty_print)
if self.TYPE is not None:
namespaceprefix_ = self.TYPE_nsprefix_ + ':' if (UseCapturedNS_ and self.TYPE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTYPE>%s</%sTYPE>%s' % (namespaceprefix_ , self.gds_format_integer(self.TYPE, input_name='TYPE'), namespaceprefix_ , eol_))
if self.DISK_TYPE is not None:
namespaceprefix_ = self.DISK_TYPE_nsprefix_ + ':' if (UseCapturedNS_ and self.DISK_TYPE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDISK_TYPE>%s</%sDISK_TYPE>%s' % (namespaceprefix_ , self.gds_format_integer(self.DISK_TYPE, input_name='DISK_TYPE'), namespaceprefix_ , eol_))
if self.PERSISTENT is not None:
namespaceprefix_ = self.PERSISTENT_nsprefix_ + ':' if (UseCapturedNS_ and self.PERSISTENT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sPERSISTENT>%s</%sPERSISTENT>%s' % (namespaceprefix_ , self.gds_format_integer(self.PERSISTENT, input_name='PERSISTENT'), namespaceprefix_ , eol_))
if self.REGTIME is not None:
namespaceprefix_ = self.REGTIME_nsprefix_ + ':' if (UseCapturedNS_ and self.REGTIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sREGTIME>%s</%sREGTIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.REGTIME, input_name='REGTIME'), namespaceprefix_ , eol_))
if self.SOURCE is not None:
namespaceprefix_ = self.SOURCE_nsprefix_ + ':' if (UseCapturedNS_ and self.SOURCE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSOURCE>%s</%sSOURCE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.SOURCE), input_name='SOURCE')), namespaceprefix_ , eol_))
if self.PATH is not None:
namespaceprefix_ = self.PATH_nsprefix_ + ':' if (UseCapturedNS_ and self.PATH_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sPATH>%s</%sPATH>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.PATH), input_name='PATH')), namespaceprefix_ , eol_))
if self.FORMAT is not None:
namespaceprefix_ = self.FORMAT_nsprefix_ + ':' if (UseCapturedNS_ and self.FORMAT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sFORMAT>%s</%sFORMAT>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.FORMAT), input_name='FORMAT')), namespaceprefix_ , eol_))
if self.FS is not None:
namespaceprefix_ = self.FS_nsprefix_ + ':' if (UseCapturedNS_ and self.FS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sFS>%s</%sFS>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.FS), input_name='FS')), namespaceprefix_ , eol_))
if self.SIZE is not None:
namespaceprefix_ = self.SIZE_nsprefix_ + ':' if (UseCapturedNS_ and self.SIZE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSIZE>%s</%sSIZE>%s' % (namespaceprefix_ , self.gds_format_integer(self.SIZE, input_name='SIZE'), namespaceprefix_ , eol_))
if self.STATE is not None:
namespaceprefix_ = self.STATE_nsprefix_ + ':' if (UseCapturedNS_ and self.STATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSTATE>%s</%sSTATE>%s' % (namespaceprefix_ , self.gds_format_integer(self.STATE, input_name='STATE'), namespaceprefix_ , eol_))
if self.PREV_STATE is not None:
namespaceprefix_ = self.PREV_STATE_nsprefix_ + ':' if (UseCapturedNS_ and self.PREV_STATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sPREV_STATE>%s</%sPREV_STATE>%s' % (namespaceprefix_ , self.gds_format_integer(self.PREV_STATE, input_name='PREV_STATE'), namespaceprefix_ , eol_))
if self.RUNNING_VMS is not None:
namespaceprefix_ = self.RUNNING_VMS_nsprefix_ + ':' if (UseCapturedNS_ and self.RUNNING_VMS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sRUNNING_VMS>%s</%sRUNNING_VMS>%s' % (namespaceprefix_ , self.gds_format_integer(self.RUNNING_VMS, input_name='RUNNING_VMS'), namespaceprefix_ , eol_))
if self.CLONING_OPS is not None:
namespaceprefix_ = self.CLONING_OPS_nsprefix_ + ':' if (UseCapturedNS_ and self.CLONING_OPS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sCLONING_OPS>%s</%sCLONING_OPS>%s' % (namespaceprefix_ , self.gds_format_integer(self.CLONING_OPS, input_name='CLONING_OPS'), namespaceprefix_ , eol_))
if self.CLONING_ID is not None:
namespaceprefix_ = self.CLONING_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.CLONING_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sCLONING_ID>%s</%sCLONING_ID>%s' % (namespaceprefix_ , self.gds_format_integer(self.CLONING_ID, input_name='CLONING_ID'), namespaceprefix_ , eol_))
if self.TARGET_SNAPSHOT is not None:
namespaceprefix_ = self.TARGET_SNAPSHOT_nsprefix_ + ':' if (UseCapturedNS_ and self.TARGET_SNAPSHOT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTARGET_SNAPSHOT>%s</%sTARGET_SNAPSHOT>%s' % (namespaceprefix_ , self.gds_format_integer(self.TARGET_SNAPSHOT, input_name='TARGET_SNAPSHOT'), namespaceprefix_ , eol_))
if self.DATASTORE_ID is not None:
namespaceprefix_ = self.DATASTORE_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.DATASTORE_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDATASTORE_ID>%s</%sDATASTORE_ID>%s' % (namespaceprefix_ , self.gds_format_integer(self.DATASTORE_ID, input_name='DATASTORE_ID'), namespaceprefix_ , eol_))
if self.DATASTORE is not None:
namespaceprefix_ = self.DATASTORE_nsprefix_ + ':' if (UseCapturedNS_ and self.DATASTORE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDATASTORE>%s</%sDATASTORE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.DATASTORE), input_name='DATASTORE')), namespaceprefix_ , eol_))
if self.VMS is not None:
namespaceprefix_ = self.VMS_nsprefix_ + ':' if (UseCapturedNS_ and self.VMS_nsprefix_) else ''
self.VMS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='VMS', pretty_print=pretty_print)
if self.CLONES is not None:
namespaceprefix_ = self.CLONES_nsprefix_ + ':' if (UseCapturedNS_ and self.CLONES_nsprefix_) else ''
self.CLONES.export(outfile, level, namespaceprefix_, namespacedef_='', name_='CLONES', pretty_print=pretty_print)
if self.APP_CLONES is not None:
namespaceprefix_ = self.APP_CLONES_nsprefix_ + ':' if (UseCapturedNS_ and self.APP_CLONES_nsprefix_) else ''
self.APP_CLONES.export(outfile, level, namespaceprefix_, namespacedef_='', name_='APP_CLONES', pretty_print=pretty_print)
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
self.TEMPLATE.export(outfile, level, namespaceprefix_, namespacedef_='', name_='TEMPLATE', pretty_print=pretty_print)
if self.SNAPSHOTS is not None:
namespaceprefix_ = self.SNAPSHOTS_nsprefix_ + ':' if (UseCapturedNS_ and self.SNAPSHOTS_nsprefix_) else ''
self.SNAPSHOTS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='SNAPSHOTS', pretty_print=pretty_print)
if self.BACKUP_INCREMENTS is not None:
namespaceprefix_ = self.BACKUP_INCREMENTS_nsprefix_ + ':' if (UseCapturedNS_ and self.BACKUP_INCREMENTS_nsprefix_) else ''
self.BACKUP_INCREMENTS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='BACKUP_INCREMENTS', pretty_print=pretty_print)
if self.BACKUP_DISK_IDS is not None:
namespaceprefix_ = self.BACKUP_DISK_IDS_nsprefix_ + ':' if (UseCapturedNS_ and self.BACKUP_DISK_IDS_nsprefix_) else ''
self.BACKUP_DISK_IDS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='BACKUP_DISK_IDS', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'UID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'UID')
ival_ = self.gds_validate_integer(ival_, node, 'UID')
self.UID = ival_
self.UID_nsprefix_ = child_.prefix
elif nodeName_ == 'GID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GID')
ival_ = self.gds_validate_integer(ival_, node, 'GID')
self.GID = ival_
self.GID_nsprefix_ = child_.prefix
elif nodeName_ == 'UNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'UNAME')
value_ = self.gds_validate_string(value_, node, 'UNAME')
self.UNAME = value_
self.UNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'GNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'GNAME')
value_ = self.gds_validate_string(value_, node, 'GNAME')
self.GNAME = value_
self.GNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'LOCK':
obj_ = LOCKType37.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.LOCK = obj_
obj_.original_tagname_ = 'LOCK'
elif nodeName_ == 'PERMISSIONS':
obj_ = PERMISSIONSType38.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.PERMISSIONS = obj_
obj_.original_tagname_ = 'PERMISSIONS'
elif nodeName_ == 'TYPE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'TYPE')
ival_ = self.gds_validate_integer(ival_, node, 'TYPE')
self.TYPE = ival_
self.TYPE_nsprefix_ = child_.prefix
elif nodeName_ == 'DISK_TYPE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'DISK_TYPE')
ival_ = self.gds_validate_integer(ival_, node, 'DISK_TYPE')
self.DISK_TYPE = ival_
self.DISK_TYPE_nsprefix_ = child_.prefix
elif nodeName_ == 'PERSISTENT' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'PERSISTENT')
ival_ = self.gds_validate_integer(ival_, node, 'PERSISTENT')
self.PERSISTENT = ival_
self.PERSISTENT_nsprefix_ = child_.prefix
elif nodeName_ == 'REGTIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'REGTIME')
ival_ = self.gds_validate_integer(ival_, node, 'REGTIME')
self.REGTIME = ival_
self.REGTIME_nsprefix_ = child_.prefix
elif nodeName_ == 'SOURCE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'SOURCE')
value_ = self.gds_validate_string(value_, node, 'SOURCE')
self.SOURCE = value_
self.SOURCE_nsprefix_ = child_.prefix
elif nodeName_ == 'PATH':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'PATH')
value_ = self.gds_validate_string(value_, node, 'PATH')
self.PATH = value_
self.PATH_nsprefix_ = child_.prefix
elif nodeName_ == 'FORMAT':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'FORMAT')
value_ = self.gds_validate_string(value_, node, 'FORMAT')
self.FORMAT = value_
self.FORMAT_nsprefix_ = child_.prefix
elif nodeName_ == 'FS':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'FS')
value_ = self.gds_validate_string(value_, node, 'FS')
self.FS = value_
self.FS_nsprefix_ = child_.prefix
elif nodeName_ == 'SIZE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'SIZE')
ival_ = self.gds_validate_integer(ival_, node, 'SIZE')
self.SIZE = ival_
self.SIZE_nsprefix_ = child_.prefix
elif nodeName_ == 'STATE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'STATE')
ival_ = self.gds_validate_integer(ival_, node, 'STATE')
self.STATE = ival_
self.STATE_nsprefix_ = child_.prefix
elif nodeName_ == 'PREV_STATE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'PREV_STATE')
ival_ = self.gds_validate_integer(ival_, node, 'PREV_STATE')
self.PREV_STATE = ival_
self.PREV_STATE_nsprefix_ = child_.prefix
elif nodeName_ == 'RUNNING_VMS' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'RUNNING_VMS')
ival_ = self.gds_validate_integer(ival_, node, 'RUNNING_VMS')
self.RUNNING_VMS = ival_
self.RUNNING_VMS_nsprefix_ = child_.prefix
elif nodeName_ == 'CLONING_OPS' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'CLONING_OPS')
ival_ = self.gds_validate_integer(ival_, node, 'CLONING_OPS')
self.CLONING_OPS = ival_
self.CLONING_OPS_nsprefix_ = child_.prefix
elif nodeName_ == 'CLONING_ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'CLONING_ID')
ival_ = self.gds_validate_integer(ival_, node, 'CLONING_ID')
self.CLONING_ID = ival_
self.CLONING_ID_nsprefix_ = child_.prefix
elif nodeName_ == 'TARGET_SNAPSHOT' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'TARGET_SNAPSHOT')
ival_ = self.gds_validate_integer(ival_, node, 'TARGET_SNAPSHOT')
self.TARGET_SNAPSHOT = ival_
self.TARGET_SNAPSHOT_nsprefix_ = child_.prefix
elif nodeName_ == 'DATASTORE_ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'DATASTORE_ID')
ival_ = self.gds_validate_integer(ival_, node, 'DATASTORE_ID')
self.DATASTORE_ID = ival_
self.DATASTORE_ID_nsprefix_ = child_.prefix
elif nodeName_ == 'DATASTORE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DATASTORE')
value_ = self.gds_validate_string(value_, node, 'DATASTORE')
self.DATASTORE = value_
self.DATASTORE_nsprefix_ = child_.prefix
elif nodeName_ == 'VMS':
obj_ = IDS.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.VMS = obj_
obj_.original_tagname_ = 'VMS'
elif nodeName_ == 'CLONES':
obj_ = IDS.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.CLONES = obj_
obj_.original_tagname_ = 'CLONES'
elif nodeName_ == 'APP_CLONES':
obj_ = IDS.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.APP_CLONES = obj_
obj_.original_tagname_ = 'APP_CLONES'
elif nodeName_ == 'TEMPLATE':
obj_ = TEMPLATEType39.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.TEMPLATE = obj_
obj_.original_tagname_ = 'TEMPLATE'
elif nodeName_ == 'SNAPSHOTS':
obj_ = SNAPSHOTSType40.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.SNAPSHOTS = obj_
obj_.original_tagname_ = 'SNAPSHOTS'
elif nodeName_ == 'BACKUP_INCREMENTS':
obj_ = BACKUP_INCREMENTSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.BACKUP_INCREMENTS = obj_
obj_.original_tagname_ = 'BACKUP_INCREMENTS'
elif nodeName_ == 'BACKUP_DISK_IDS':
obj_ = IDS.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.BACKUP_DISK_IDS = obj_
obj_.original_tagname_ = 'BACKUP_DISK_IDS'
# end class IMAGE
class MARKETPLACEAPP_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, MARKETPLACEAPP=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if MARKETPLACEAPP is None:
self.MARKETPLACEAPP = []
else:
self.MARKETPLACEAPP = MARKETPLACEAPP
self.MARKETPLACEAPP_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, MARKETPLACEAPP_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if MARKETPLACEAPP_POOL.subclass:
return MARKETPLACEAPP_POOL.subclass(*args_, **kwargs_)
else:
return MARKETPLACEAPP_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_MARKETPLACEAPP(self):
return self.MARKETPLACEAPP
def set_MARKETPLACEAPP(self, MARKETPLACEAPP):
self.MARKETPLACEAPP = MARKETPLACEAPP
def add_MARKETPLACEAPP(self, value):
self.MARKETPLACEAPP.append(value)
def insert_MARKETPLACEAPP_at(self, index, value):
self.MARKETPLACEAPP.insert(index, value)
def replace_MARKETPLACEAPP_at(self, index, value):
self.MARKETPLACEAPP[index] = value
def has__content(self):
if (
self.MARKETPLACEAPP
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='MARKETPLACEAPP_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('MARKETPLACEAPP_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'MARKETPLACEAPP_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='MARKETPLACEAPP_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='MARKETPLACEAPP_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='MARKETPLACEAPP_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='MARKETPLACEAPP_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for MARKETPLACEAPP_ in self.MARKETPLACEAPP:
namespaceprefix_ = self.MARKETPLACEAPP_nsprefix_ + ':' if (UseCapturedNS_ and self.MARKETPLACEAPP_nsprefix_) else ''
MARKETPLACEAPP_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='MARKETPLACEAPP', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'MARKETPLACEAPP':
obj_ = MARKETPLACEAPP.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.MARKETPLACEAPP.append(obj_)
obj_.original_tagname_ = 'MARKETPLACEAPP'
# end class MARKETPLACEAPP_POOL
class MARKETPLACEAPP(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, UID=None, GID=None, UNAME=None, GNAME=None, LOCK=None, REGTIME=None, NAME=None, ZONE_ID=None, ORIGIN_ID=None, SOURCE=None, MD5=None, SIZE=None, DESCRIPTION=None, VERSION=None, FORMAT=None, APPTEMPLATE64=None, MARKETPLACE_ID=None, MARKETPLACE=None, STATE=None, TYPE=None, PERMISSIONS=None, TEMPLATE=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.UID = UID
self.UID_nsprefix_ = None
self.GID = GID
self.GID_nsprefix_ = None
self.UNAME = UNAME
self.UNAME_nsprefix_ = None
self.GNAME = GNAME
self.GNAME_nsprefix_ = None
self.LOCK = LOCK
self.LOCK_nsprefix_ = None
self.REGTIME = REGTIME
self.REGTIME_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.ZONE_ID = ZONE_ID
self.ZONE_ID_nsprefix_ = None
self.ORIGIN_ID = ORIGIN_ID
self.ORIGIN_ID_nsprefix_ = None
self.SOURCE = SOURCE
self.SOURCE_nsprefix_ = None
self.MD5 = MD5
self.MD5_nsprefix_ = None
self.SIZE = SIZE
self.SIZE_nsprefix_ = None
self.DESCRIPTION = DESCRIPTION
self.DESCRIPTION_nsprefix_ = None
self.VERSION = VERSION
self.VERSION_nsprefix_ = None
self.FORMAT = FORMAT
self.FORMAT_nsprefix_ = None
self.APPTEMPLATE64 = APPTEMPLATE64
self.APPTEMPLATE64_nsprefix_ = None
self.MARKETPLACE_ID = MARKETPLACE_ID
self.MARKETPLACE_ID_nsprefix_ = None
self.MARKETPLACE = MARKETPLACE
self.MARKETPLACE_nsprefix_ = None
self.STATE = STATE
self.STATE_nsprefix_ = None
self.TYPE = TYPE
self.TYPE_nsprefix_ = None
self.PERMISSIONS = PERMISSIONS
self.PERMISSIONS_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, MARKETPLACEAPP)
if subclass is not None:
return subclass(*args_, **kwargs_)
if MARKETPLACEAPP.subclass:
return MARKETPLACEAPP.subclass(*args_, **kwargs_)
else:
return MARKETPLACEAPP(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_UID(self):
return self.UID
def set_UID(self, UID):
self.UID = UID
def get_GID(self):
return self.GID
def set_GID(self, GID):
self.GID = GID
def get_UNAME(self):
return self.UNAME
def set_UNAME(self, UNAME):
self.UNAME = UNAME
def get_GNAME(self):
return self.GNAME
def set_GNAME(self, GNAME):
self.GNAME = GNAME
def get_LOCK(self):
return self.LOCK
def set_LOCK(self, LOCK):
self.LOCK = LOCK
def get_REGTIME(self):
return self.REGTIME
def set_REGTIME(self, REGTIME):
self.REGTIME = REGTIME
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_ZONE_ID(self):
return self.ZONE_ID
def set_ZONE_ID(self, ZONE_ID):
self.ZONE_ID = ZONE_ID
def get_ORIGIN_ID(self):
return self.ORIGIN_ID
def set_ORIGIN_ID(self, ORIGIN_ID):
self.ORIGIN_ID = ORIGIN_ID
def get_SOURCE(self):
return self.SOURCE
def set_SOURCE(self, SOURCE):
self.SOURCE = SOURCE
def get_MD5(self):
return self.MD5
def set_MD5(self, MD5):
self.MD5 = MD5
def get_SIZE(self):
return self.SIZE
def set_SIZE(self, SIZE):
self.SIZE = SIZE
def get_DESCRIPTION(self):
return self.DESCRIPTION
def set_DESCRIPTION(self, DESCRIPTION):
self.DESCRIPTION = DESCRIPTION
def get_VERSION(self):
return self.VERSION
def set_VERSION(self, VERSION):
self.VERSION = VERSION
def get_FORMAT(self):
return self.FORMAT
def set_FORMAT(self, FORMAT):
self.FORMAT = FORMAT
def get_APPTEMPLATE64(self):
return self.APPTEMPLATE64
def set_APPTEMPLATE64(self, APPTEMPLATE64):
self.APPTEMPLATE64 = APPTEMPLATE64
def get_MARKETPLACE_ID(self):
return self.MARKETPLACE_ID
def set_MARKETPLACE_ID(self, MARKETPLACE_ID):
self.MARKETPLACE_ID = MARKETPLACE_ID
def get_MARKETPLACE(self):
return self.MARKETPLACE
def set_MARKETPLACE(self, MARKETPLACE):
self.MARKETPLACE = MARKETPLACE
def get_STATE(self):
return self.STATE
def set_STATE(self, STATE):
self.STATE = STATE
def get_TYPE(self):
return self.TYPE
def set_TYPE(self, TYPE):
self.TYPE = TYPE
def get_PERMISSIONS(self):
return self.PERMISSIONS
def set_PERMISSIONS(self, PERMISSIONS):
self.PERMISSIONS = PERMISSIONS
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def has__content(self):
if (
self.ID is not None or
self.UID is not None or
self.GID is not None or
self.UNAME is not None or
self.GNAME is not None or
self.LOCK is not None or
self.REGTIME is not None or
self.NAME is not None or
self.ZONE_ID is not None or
self.ORIGIN_ID is not None or
self.SOURCE is not None or
self.MD5 is not None or
self.SIZE is not None or
self.DESCRIPTION is not None or
self.VERSION is not None or
self.FORMAT is not None or
self.APPTEMPLATE64 is not None or
self.MARKETPLACE_ID is not None or
self.MARKETPLACE is not None or
self.STATE is not None or
self.TYPE is not None or
self.PERMISSIONS is not None or
self.TEMPLATE is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='MARKETPLACEAPP', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('MARKETPLACEAPP')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'MARKETPLACEAPP':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='MARKETPLACEAPP')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='MARKETPLACEAPP', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='MARKETPLACEAPP'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='MARKETPLACEAPP', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.UID is not None:
namespaceprefix_ = self.UID_nsprefix_ + ':' if (UseCapturedNS_ and self.UID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUID>%s</%sUID>%s' % (namespaceprefix_ , self.gds_format_integer(self.UID, input_name='UID'), namespaceprefix_ , eol_))
if self.GID is not None:
namespaceprefix_ = self.GID_nsprefix_ + ':' if (UseCapturedNS_ and self.GID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGID>%s</%sGID>%s' % (namespaceprefix_ , self.gds_format_integer(self.GID, input_name='GID'), namespaceprefix_ , eol_))
if self.UNAME is not None:
namespaceprefix_ = self.UNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.UNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUNAME>%s</%sUNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.UNAME), input_name='UNAME')), namespaceprefix_ , eol_))
if self.GNAME is not None:
namespaceprefix_ = self.GNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.GNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGNAME>%s</%sGNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.GNAME), input_name='GNAME')), namespaceprefix_ , eol_))
if self.LOCK is not None:
namespaceprefix_ = self.LOCK_nsprefix_ + ':' if (UseCapturedNS_ and self.LOCK_nsprefix_) else ''
self.LOCK.export(outfile, level, namespaceprefix_, namespacedef_='', name_='LOCK', pretty_print=pretty_print)
if self.REGTIME is not None:
namespaceprefix_ = self.REGTIME_nsprefix_ + ':' if (UseCapturedNS_ and self.REGTIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sREGTIME>%s</%sREGTIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.REGTIME, input_name='REGTIME'), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.ZONE_ID is not None:
namespaceprefix_ = self.ZONE_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ZONE_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sZONE_ID>%s</%sZONE_ID>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.ZONE_ID), input_name='ZONE_ID')), namespaceprefix_ , eol_))
if self.ORIGIN_ID is not None:
namespaceprefix_ = self.ORIGIN_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ORIGIN_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sORIGIN_ID>%s</%sORIGIN_ID>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.ORIGIN_ID), input_name='ORIGIN_ID')), namespaceprefix_ , eol_))
if self.SOURCE is not None:
namespaceprefix_ = self.SOURCE_nsprefix_ + ':' if (UseCapturedNS_ and self.SOURCE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSOURCE>%s</%sSOURCE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.SOURCE), input_name='SOURCE')), namespaceprefix_ , eol_))
if self.MD5 is not None:
namespaceprefix_ = self.MD5_nsprefix_ + ':' if (UseCapturedNS_ and self.MD5_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMD5>%s</%sMD5>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.MD5), input_name='MD5')), namespaceprefix_ , eol_))
if self.SIZE is not None:
namespaceprefix_ = self.SIZE_nsprefix_ + ':' if (UseCapturedNS_ and self.SIZE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSIZE>%s</%sSIZE>%s' % (namespaceprefix_ , self.gds_format_integer(self.SIZE, input_name='SIZE'), namespaceprefix_ , eol_))
if self.DESCRIPTION is not None:
namespaceprefix_ = self.DESCRIPTION_nsprefix_ + ':' if (UseCapturedNS_ and self.DESCRIPTION_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDESCRIPTION>%s</%sDESCRIPTION>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.DESCRIPTION), input_name='DESCRIPTION')), namespaceprefix_ , eol_))
if self.VERSION is not None:
namespaceprefix_ = self.VERSION_nsprefix_ + ':' if (UseCapturedNS_ and self.VERSION_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVERSION>%s</%sVERSION>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.VERSION), input_name='VERSION')), namespaceprefix_ , eol_))
if self.FORMAT is not None:
namespaceprefix_ = self.FORMAT_nsprefix_ + ':' if (UseCapturedNS_ and self.FORMAT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sFORMAT>%s</%sFORMAT>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.FORMAT), input_name='FORMAT')), namespaceprefix_ , eol_))
if self.APPTEMPLATE64 is not None:
namespaceprefix_ = self.APPTEMPLATE64_nsprefix_ + ':' if (UseCapturedNS_ and self.APPTEMPLATE64_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sAPPTEMPLATE64>%s</%sAPPTEMPLATE64>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.APPTEMPLATE64), input_name='APPTEMPLATE64')), namespaceprefix_ , eol_))
if self.MARKETPLACE_ID is not None:
namespaceprefix_ = self.MARKETPLACE_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.MARKETPLACE_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMARKETPLACE_ID>%s</%sMARKETPLACE_ID>%s' % (namespaceprefix_ , self.gds_format_integer(self.MARKETPLACE_ID, input_name='MARKETPLACE_ID'), namespaceprefix_ , eol_))
if self.MARKETPLACE is not None:
namespaceprefix_ = self.MARKETPLACE_nsprefix_ + ':' if (UseCapturedNS_ and self.MARKETPLACE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMARKETPLACE>%s</%sMARKETPLACE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.MARKETPLACE), input_name='MARKETPLACE')), namespaceprefix_ , eol_))
if self.STATE is not None:
namespaceprefix_ = self.STATE_nsprefix_ + ':' if (UseCapturedNS_ and self.STATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSTATE>%s</%sSTATE>%s' % (namespaceprefix_ , self.gds_format_integer(self.STATE, input_name='STATE'), namespaceprefix_ , eol_))
if self.TYPE is not None:
namespaceprefix_ = self.TYPE_nsprefix_ + ':' if (UseCapturedNS_ and self.TYPE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTYPE>%s</%sTYPE>%s' % (namespaceprefix_ , self.gds_format_integer(self.TYPE, input_name='TYPE'), namespaceprefix_ , eol_))
if self.PERMISSIONS is not None:
namespaceprefix_ = self.PERMISSIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.PERMISSIONS_nsprefix_) else ''
self.PERMISSIONS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='PERMISSIONS', pretty_print=pretty_print)
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTEMPLATE>%s</%sTEMPLATE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TEMPLATE), input_name='TEMPLATE')), namespaceprefix_ , eol_))
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'UID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'UID')
ival_ = self.gds_validate_integer(ival_, node, 'UID')
self.UID = ival_
self.UID_nsprefix_ = child_.prefix
elif nodeName_ == 'GID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GID')
ival_ = self.gds_validate_integer(ival_, node, 'GID')
self.GID = ival_
self.GID_nsprefix_ = child_.prefix
elif nodeName_ == 'UNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'UNAME')
value_ = self.gds_validate_string(value_, node, 'UNAME')
self.UNAME = value_
self.UNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'GNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'GNAME')
value_ = self.gds_validate_string(value_, node, 'GNAME')
self.GNAME = value_
self.GNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'LOCK':
obj_ = LOCKType42.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.LOCK = obj_
obj_.original_tagname_ = 'LOCK'
elif nodeName_ == 'REGTIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'REGTIME')
ival_ = self.gds_validate_integer(ival_, node, 'REGTIME')
self.REGTIME = ival_
self.REGTIME_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'ZONE_ID':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'ZONE_ID')
value_ = self.gds_validate_string(value_, node, 'ZONE_ID')
self.ZONE_ID = value_
self.ZONE_ID_nsprefix_ = child_.prefix
elif nodeName_ == 'ORIGIN_ID':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'ORIGIN_ID')
value_ = self.gds_validate_string(value_, node, 'ORIGIN_ID')
self.ORIGIN_ID = value_
self.ORIGIN_ID_nsprefix_ = child_.prefix
elif nodeName_ == 'SOURCE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'SOURCE')
value_ = self.gds_validate_string(value_, node, 'SOURCE')
self.SOURCE = value_
self.SOURCE_nsprefix_ = child_.prefix
elif nodeName_ == 'MD5':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'MD5')
value_ = self.gds_validate_string(value_, node, 'MD5')
self.MD5 = value_
self.MD5_nsprefix_ = child_.prefix
elif nodeName_ == 'SIZE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'SIZE')
ival_ = self.gds_validate_integer(ival_, node, 'SIZE')
self.SIZE = ival_
self.SIZE_nsprefix_ = child_.prefix
elif nodeName_ == 'DESCRIPTION':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DESCRIPTION')
value_ = self.gds_validate_string(value_, node, 'DESCRIPTION')
self.DESCRIPTION = value_
self.DESCRIPTION_nsprefix_ = child_.prefix
elif nodeName_ == 'VERSION':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VERSION')
value_ = self.gds_validate_string(value_, node, 'VERSION')
self.VERSION = value_
self.VERSION_nsprefix_ = child_.prefix
elif nodeName_ == 'FORMAT':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'FORMAT')
value_ = self.gds_validate_string(value_, node, 'FORMAT')
self.FORMAT = value_
self.FORMAT_nsprefix_ = child_.prefix
elif nodeName_ == 'APPTEMPLATE64':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'APPTEMPLATE64')
value_ = self.gds_validate_string(value_, node, 'APPTEMPLATE64')
self.APPTEMPLATE64 = value_
self.APPTEMPLATE64_nsprefix_ = child_.prefix
elif nodeName_ == 'MARKETPLACE_ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'MARKETPLACE_ID')
ival_ = self.gds_validate_integer(ival_, node, 'MARKETPLACE_ID')
self.MARKETPLACE_ID = ival_
self.MARKETPLACE_ID_nsprefix_ = child_.prefix
elif nodeName_ == 'MARKETPLACE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'MARKETPLACE')
value_ = self.gds_validate_string(value_, node, 'MARKETPLACE')
self.MARKETPLACE = value_
self.MARKETPLACE_nsprefix_ = child_.prefix
elif nodeName_ == 'STATE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'STATE')
ival_ = self.gds_validate_integer(ival_, node, 'STATE')
self.STATE = ival_
self.STATE_nsprefix_ = child_.prefix
elif nodeName_ == 'TYPE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'TYPE')
ival_ = self.gds_validate_integer(ival_, node, 'TYPE')
self.TYPE = ival_
self.TYPE_nsprefix_ = child_.prefix
elif nodeName_ == 'PERMISSIONS':
obj_ = PERMISSIONSType43.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.PERMISSIONS = obj_
obj_.original_tagname_ = 'PERMISSIONS'
elif nodeName_ == 'TEMPLATE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TEMPLATE')
value_ = self.gds_validate_string(value_, node, 'TEMPLATE')
self.TEMPLATE = value_
self.TEMPLATE_nsprefix_ = child_.prefix
# end class MARKETPLACEAPP
class MARKETPLACE_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, MARKETPLACE=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if MARKETPLACE is None:
self.MARKETPLACE = []
else:
self.MARKETPLACE = MARKETPLACE
self.MARKETPLACE_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, MARKETPLACE_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if MARKETPLACE_POOL.subclass:
return MARKETPLACE_POOL.subclass(*args_, **kwargs_)
else:
return MARKETPLACE_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_MARKETPLACE(self):
return self.MARKETPLACE
def set_MARKETPLACE(self, MARKETPLACE):
self.MARKETPLACE = MARKETPLACE
def add_MARKETPLACE(self, value):
self.MARKETPLACE.append(value)
def insert_MARKETPLACE_at(self, index, value):
self.MARKETPLACE.insert(index, value)
def replace_MARKETPLACE_at(self, index, value):
self.MARKETPLACE[index] = value
def has__content(self):
if (
self.MARKETPLACE
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='MARKETPLACE_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('MARKETPLACE_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'MARKETPLACE_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='MARKETPLACE_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='MARKETPLACE_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='MARKETPLACE_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='MARKETPLACE_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for MARKETPLACE_ in self.MARKETPLACE:
namespaceprefix_ = self.MARKETPLACE_nsprefix_ + ':' if (UseCapturedNS_ and self.MARKETPLACE_nsprefix_) else ''
MARKETPLACE_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='MARKETPLACE', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'MARKETPLACE':
obj_ = MARKETPLACE.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.MARKETPLACE.append(obj_)
obj_.original_tagname_ = 'MARKETPLACE'
# end class MARKETPLACE_POOL
class MARKETPLACE(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, UID=None, GID=None, UNAME=None, GNAME=None, NAME=None, STATE=None, MARKET_MAD=None, ZONE_ID=None, TOTAL_MB=None, FREE_MB=None, USED_MB=None, MARKETPLACEAPPS=None, PERMISSIONS=None, TEMPLATE=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.UID = UID
self.UID_nsprefix_ = None
self.GID = GID
self.GID_nsprefix_ = None
self.UNAME = UNAME
self.UNAME_nsprefix_ = None
self.GNAME = GNAME
self.GNAME_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.STATE = STATE
self.STATE_nsprefix_ = None
self.MARKET_MAD = MARKET_MAD
self.MARKET_MAD_nsprefix_ = None
self.ZONE_ID = ZONE_ID
self.ZONE_ID_nsprefix_ = None
self.TOTAL_MB = TOTAL_MB
self.TOTAL_MB_nsprefix_ = None
self.FREE_MB = FREE_MB
self.FREE_MB_nsprefix_ = None
self.USED_MB = USED_MB
self.USED_MB_nsprefix_ = None
self.MARKETPLACEAPPS = MARKETPLACEAPPS
self.MARKETPLACEAPPS_nsprefix_ = None
self.PERMISSIONS = PERMISSIONS
self.PERMISSIONS_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, MARKETPLACE)
if subclass is not None:
return subclass(*args_, **kwargs_)
if MARKETPLACE.subclass:
return MARKETPLACE.subclass(*args_, **kwargs_)
else:
return MARKETPLACE(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_UID(self):
return self.UID
def set_UID(self, UID):
self.UID = UID
def get_GID(self):
return self.GID
def set_GID(self, GID):
self.GID = GID
def get_UNAME(self):
return self.UNAME
def set_UNAME(self, UNAME):
self.UNAME = UNAME
def get_GNAME(self):
return self.GNAME
def set_GNAME(self, GNAME):
self.GNAME = GNAME
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_STATE(self):
return self.STATE
def set_STATE(self, STATE):
self.STATE = STATE
def get_MARKET_MAD(self):
return self.MARKET_MAD
def set_MARKET_MAD(self, MARKET_MAD):
self.MARKET_MAD = MARKET_MAD
def get_ZONE_ID(self):
return self.ZONE_ID
def set_ZONE_ID(self, ZONE_ID):
self.ZONE_ID = ZONE_ID
def get_TOTAL_MB(self):
return self.TOTAL_MB
def set_TOTAL_MB(self, TOTAL_MB):
self.TOTAL_MB = TOTAL_MB
def get_FREE_MB(self):
return self.FREE_MB
def set_FREE_MB(self, FREE_MB):
self.FREE_MB = FREE_MB
def get_USED_MB(self):
return self.USED_MB
def set_USED_MB(self, USED_MB):
self.USED_MB = USED_MB
def get_MARKETPLACEAPPS(self):
return self.MARKETPLACEAPPS
def set_MARKETPLACEAPPS(self, MARKETPLACEAPPS):
self.MARKETPLACEAPPS = MARKETPLACEAPPS
def get_PERMISSIONS(self):
return self.PERMISSIONS
def set_PERMISSIONS(self, PERMISSIONS):
self.PERMISSIONS = PERMISSIONS
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def has__content(self):
if (
self.ID is not None or
self.UID is not None or
self.GID is not None or
self.UNAME is not None or
self.GNAME is not None or
self.NAME is not None or
self.STATE is not None or
self.MARKET_MAD is not None or
self.ZONE_ID is not None or
self.TOTAL_MB is not None or
self.FREE_MB is not None or
self.USED_MB is not None or
self.MARKETPLACEAPPS is not None or
self.PERMISSIONS is not None or
self.TEMPLATE is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='MARKETPLACE', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('MARKETPLACE')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'MARKETPLACE':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='MARKETPLACE')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='MARKETPLACE', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='MARKETPLACE'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='MARKETPLACE', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.UID is not None:
namespaceprefix_ = self.UID_nsprefix_ + ':' if (UseCapturedNS_ and self.UID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUID>%s</%sUID>%s' % (namespaceprefix_ , self.gds_format_integer(self.UID, input_name='UID'), namespaceprefix_ , eol_))
if self.GID is not None:
namespaceprefix_ = self.GID_nsprefix_ + ':' if (UseCapturedNS_ and self.GID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGID>%s</%sGID>%s' % (namespaceprefix_ , self.gds_format_integer(self.GID, input_name='GID'), namespaceprefix_ , eol_))
if self.UNAME is not None:
namespaceprefix_ = self.UNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.UNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUNAME>%s</%sUNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.UNAME), input_name='UNAME')), namespaceprefix_ , eol_))
if self.GNAME is not None:
namespaceprefix_ = self.GNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.GNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGNAME>%s</%sGNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.GNAME), input_name='GNAME')), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.STATE is not None:
namespaceprefix_ = self.STATE_nsprefix_ + ':' if (UseCapturedNS_ and self.STATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSTATE>%s</%sSTATE>%s' % (namespaceprefix_ , self.gds_format_integer(self.STATE, input_name='STATE'), namespaceprefix_ , eol_))
if self.MARKET_MAD is not None:
namespaceprefix_ = self.MARKET_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.MARKET_MAD_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMARKET_MAD>%s</%sMARKET_MAD>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.MARKET_MAD), input_name='MARKET_MAD')), namespaceprefix_ , eol_))
if self.ZONE_ID is not None:
namespaceprefix_ = self.ZONE_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ZONE_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sZONE_ID>%s</%sZONE_ID>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.ZONE_ID), input_name='ZONE_ID')), namespaceprefix_ , eol_))
if self.TOTAL_MB is not None:
namespaceprefix_ = self.TOTAL_MB_nsprefix_ + ':' if (UseCapturedNS_ and self.TOTAL_MB_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTOTAL_MB>%s</%sTOTAL_MB>%s' % (namespaceprefix_ , self.gds_format_integer(self.TOTAL_MB, input_name='TOTAL_MB'), namespaceprefix_ , eol_))
if self.FREE_MB is not None:
namespaceprefix_ = self.FREE_MB_nsprefix_ + ':' if (UseCapturedNS_ and self.FREE_MB_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sFREE_MB>%s</%sFREE_MB>%s' % (namespaceprefix_ , self.gds_format_integer(self.FREE_MB, input_name='FREE_MB'), namespaceprefix_ , eol_))
if self.USED_MB is not None:
namespaceprefix_ = self.USED_MB_nsprefix_ + ':' if (UseCapturedNS_ and self.USED_MB_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUSED_MB>%s</%sUSED_MB>%s' % (namespaceprefix_ , self.gds_format_integer(self.USED_MB, input_name='USED_MB'), namespaceprefix_ , eol_))
if self.MARKETPLACEAPPS is not None:
namespaceprefix_ = self.MARKETPLACEAPPS_nsprefix_ + ':' if (UseCapturedNS_ and self.MARKETPLACEAPPS_nsprefix_) else ''
self.MARKETPLACEAPPS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='MARKETPLACEAPPS', pretty_print=pretty_print)
if self.PERMISSIONS is not None:
namespaceprefix_ = self.PERMISSIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.PERMISSIONS_nsprefix_) else ''
self.PERMISSIONS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='PERMISSIONS', pretty_print=pretty_print)
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTEMPLATE>%s</%sTEMPLATE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TEMPLATE), input_name='TEMPLATE')), namespaceprefix_ , eol_))
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'UID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'UID')
ival_ = self.gds_validate_integer(ival_, node, 'UID')
self.UID = ival_
self.UID_nsprefix_ = child_.prefix
elif nodeName_ == 'GID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GID')
ival_ = self.gds_validate_integer(ival_, node, 'GID')
self.GID = ival_
self.GID_nsprefix_ = child_.prefix
elif nodeName_ == 'UNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'UNAME')
value_ = self.gds_validate_string(value_, node, 'UNAME')
self.UNAME = value_
self.UNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'GNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'GNAME')
value_ = self.gds_validate_string(value_, node, 'GNAME')
self.GNAME = value_
self.GNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'STATE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'STATE')
ival_ = self.gds_validate_integer(ival_, node, 'STATE')
self.STATE = ival_
self.STATE_nsprefix_ = child_.prefix
elif nodeName_ == 'MARKET_MAD':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'MARKET_MAD')
value_ = self.gds_validate_string(value_, node, 'MARKET_MAD')
self.MARKET_MAD = value_
self.MARKET_MAD_nsprefix_ = child_.prefix
elif nodeName_ == 'ZONE_ID':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'ZONE_ID')
value_ = self.gds_validate_string(value_, node, 'ZONE_ID')
self.ZONE_ID = value_
self.ZONE_ID_nsprefix_ = child_.prefix
elif nodeName_ == 'TOTAL_MB' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'TOTAL_MB')
ival_ = self.gds_validate_integer(ival_, node, 'TOTAL_MB')
self.TOTAL_MB = ival_
self.TOTAL_MB_nsprefix_ = child_.prefix
elif nodeName_ == 'FREE_MB' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'FREE_MB')
ival_ = self.gds_validate_integer(ival_, node, 'FREE_MB')
self.FREE_MB = ival_
self.FREE_MB_nsprefix_ = child_.prefix
elif nodeName_ == 'USED_MB' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'USED_MB')
ival_ = self.gds_validate_integer(ival_, node, 'USED_MB')
self.USED_MB = ival_
self.USED_MB_nsprefix_ = child_.prefix
elif nodeName_ == 'MARKETPLACEAPPS':
obj_ = MARKETPLACEAPPSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.MARKETPLACEAPPS = obj_
obj_.original_tagname_ = 'MARKETPLACEAPPS'
elif nodeName_ == 'PERMISSIONS':
obj_ = PERMISSIONSType44.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.PERMISSIONS = obj_
obj_.original_tagname_ = 'PERMISSIONS'
elif nodeName_ == 'TEMPLATE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TEMPLATE')
value_ = self.gds_validate_string(value_, node, 'TEMPLATE')
self.TEMPLATE = value_
self.TEMPLATE_nsprefix_ = child_.prefix
# end class MARKETPLACE
class MONITORING_DATA(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, MONITORING=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if MONITORING is None:
self.MONITORING = []
else:
self.MONITORING = MONITORING
self.MONITORING_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, MONITORING_DATA)
if subclass is not None:
return subclass(*args_, **kwargs_)
if MONITORING_DATA.subclass:
return MONITORING_DATA.subclass(*args_, **kwargs_)
else:
return MONITORING_DATA(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_MONITORING(self):
return self.MONITORING
def set_MONITORING(self, MONITORING):
self.MONITORING = MONITORING
def add_MONITORING(self, value):
self.MONITORING.append(value)
def insert_MONITORING_at(self, index, value):
self.MONITORING.insert(index, value)
def replace_MONITORING_at(self, index, value):
self.MONITORING[index] = value
def has__content(self):
if (
self.MONITORING
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='MONITORING_DATA', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('MONITORING_DATA')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'MONITORING_DATA':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='MONITORING_DATA')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='MONITORING_DATA', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='MONITORING_DATA'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='MONITORING_DATA', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for MONITORING_ in self.MONITORING:
namespaceprefix_ = self.MONITORING_nsprefix_ + ':' if (UseCapturedNS_ and self.MONITORING_nsprefix_) else ''
MONITORING_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='MONITORING', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'MONITORING':
obj_ = MONITORINGType45.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.MONITORING.append(obj_)
obj_.original_tagname_ = 'MONITORING'
# end class MONITORING_DATA
class OPENNEBULA_CONFIGURATION(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, API_LIST_ORDER=None, AUTH_MAD=None, AUTH_MAD_CONF=None, CLUSTER_ENCRYPTED_ATTR=None, CONTEXT_RESTRICTED_DIRS=None, CONTEXT_SAFE_DIRS=None, DATASTORE_CAPACITY_CHECK=None, DATASTORE_ENCRYPTED_ATTR=None, DATASTORE_LOCATION=None, DATASTORE_MAD=None, DB=None, DEFAULT_AUTH=None, DEFAULT_CDROM_DEVICE_PREFIX=None, DEFAULT_COST=None, DEFAULT_DEVICE_PREFIX=None, DEFAULT_IMAGE_PERSISTENT=None, DEFAULT_IMAGE_PERSISTENT_NEW=None, DEFAULT_IMAGE_TYPE=None, DEFAULT_UMASK=None, DEFAULT_VDC_CLUSTER_DATASTORE_ACL=None, DEFAULT_VDC_CLUSTER_HOST_ACL=None, DEFAULT_VDC_CLUSTER_NET_ACL=None, DEFAULT_VDC_DATASTORE_ACL=None, DEFAULT_VDC_HOST_ACL=None, DEFAULT_VDC_VNET_ACL=None, DOCUMENT_ENCRYPTED_ATTR=None, DS_MAD_CONF=None, DS_MONITOR_VM_DISK=None, ENABLE_OTHER_PERMISSIONS=None, FEDERATION=None, GROUP_RESTRICTED_ATTR=None, HM_MAD=None, HOOK_LOG_CONF=None, HOST_ENCRYPTED_ATTR=None, IMAGE_ENCRYPTED_ATTR=None, IMAGE_RESTRICTED_ATTR=None, IM_MAD=None, INHERIT_DATASTORE_ATTR=None, INHERIT_IMAGE_ATTR=None, INHERIT_VNET_ATTR=None, IPAM_MAD=None, KEEPALIVE_MAX_CONN=None, KEEPALIVE_TIMEOUT=None, LISTEN_ADDRESS=None, LOG=None, LOG_CALL_FORMAT=None, MAC_PREFIX=None, MANAGER_TIMER=None, MARKET_MAD=None, MARKET_MAD_CONF=None, MAX_BACKUPS=None, MAX_BACKUPS_HOST=None, MAX_CONN=None, MAX_CONN_BACKLOG=None, MESSAGE_SIZE=None, MONITORING_INTERVAL_DATASTORE=None, MONITORING_INTERVAL_HOST=None, MONITORING_INTERVAL_MARKET=None, MONITORING_INTERVAL_VM=None, NETWORK_SIZE=None, ONE_KEY=None, PCI_PASSTHROUGH_BUS=None, PORT=None, RAFT=None, RPC_LOG=None, SCRIPTS_REMOTE_DIR=None, SESSION_EXPIRATION_TIME=None, SHOWBACK_ONLY_RUNNING=None, TIMEOUT=None, TM_MAD=None, TM_MAD_CONF=None, USER_ENCRYPTED_ATTR=None, USER_RESTRICTED_ATTR=None, VLAN_IDS=None, VM_ADMIN_OPERATIONS=None, VM_ENCRYPTED_ATTR=None, VM_MAD=None, VM_MANAGE_OPERATIONS=None, VM_MONITORING_EXPIRATION_TIME=None, VM_RESTRICTED_ATTR=None, VM_SNAPSHOT_FACTOR=None, VM_SUBMIT_ON_HOLD=None, VM_USE_OPERATIONS=None, VNC_PORTS=None, VNET_ENCRYPTED_ATTR=None, VNET_RESTRICTED_ATTR=None, VN_MAD_CONF=None, VXLAN_IDS=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if API_LIST_ORDER is None:
self.API_LIST_ORDER = []
else:
self.API_LIST_ORDER = API_LIST_ORDER
self.API_LIST_ORDER_nsprefix_ = None
if AUTH_MAD is None:
self.AUTH_MAD = []
else:
self.AUTH_MAD = AUTH_MAD
self.AUTH_MAD_nsprefix_ = None
if AUTH_MAD_CONF is None:
self.AUTH_MAD_CONF = []
else:
self.AUTH_MAD_CONF = AUTH_MAD_CONF
self.AUTH_MAD_CONF_nsprefix_ = None
if CLUSTER_ENCRYPTED_ATTR is None:
self.CLUSTER_ENCRYPTED_ATTR = []
else:
self.CLUSTER_ENCRYPTED_ATTR = CLUSTER_ENCRYPTED_ATTR
self.CLUSTER_ENCRYPTED_ATTR_nsprefix_ = None
self.CONTEXT_RESTRICTED_DIRS = CONTEXT_RESTRICTED_DIRS
self.CONTEXT_RESTRICTED_DIRS_nsprefix_ = None
self.CONTEXT_SAFE_DIRS = CONTEXT_SAFE_DIRS
self.CONTEXT_SAFE_DIRS_nsprefix_ = None
if DATASTORE_CAPACITY_CHECK is None:
self.DATASTORE_CAPACITY_CHECK = []
else:
self.DATASTORE_CAPACITY_CHECK = DATASTORE_CAPACITY_CHECK
self.DATASTORE_CAPACITY_CHECK_nsprefix_ = None
if DATASTORE_ENCRYPTED_ATTR is None:
self.DATASTORE_ENCRYPTED_ATTR = []
else:
self.DATASTORE_ENCRYPTED_ATTR = DATASTORE_ENCRYPTED_ATTR
self.DATASTORE_ENCRYPTED_ATTR_nsprefix_ = None
if DATASTORE_LOCATION is None:
self.DATASTORE_LOCATION = []
else:
self.DATASTORE_LOCATION = DATASTORE_LOCATION
self.DATASTORE_LOCATION_nsprefix_ = None
if DATASTORE_MAD is None:
self.DATASTORE_MAD = []
else:
self.DATASTORE_MAD = DATASTORE_MAD
self.DATASTORE_MAD_nsprefix_ = None
self.DB = DB
self.DB_nsprefix_ = None
if DEFAULT_AUTH is None:
self.DEFAULT_AUTH = []
else:
self.DEFAULT_AUTH = DEFAULT_AUTH
self.DEFAULT_AUTH_nsprefix_ = None
if DEFAULT_CDROM_DEVICE_PREFIX is None:
self.DEFAULT_CDROM_DEVICE_PREFIX = []
else:
self.DEFAULT_CDROM_DEVICE_PREFIX = DEFAULT_CDROM_DEVICE_PREFIX
self.DEFAULT_CDROM_DEVICE_PREFIX_nsprefix_ = None
if DEFAULT_COST is None:
self.DEFAULT_COST = []
else:
self.DEFAULT_COST = DEFAULT_COST
self.DEFAULT_COST_nsprefix_ = None
if DEFAULT_DEVICE_PREFIX is None:
self.DEFAULT_DEVICE_PREFIX = []
else:
self.DEFAULT_DEVICE_PREFIX = DEFAULT_DEVICE_PREFIX
self.DEFAULT_DEVICE_PREFIX_nsprefix_ = None
if DEFAULT_IMAGE_PERSISTENT is None:
self.DEFAULT_IMAGE_PERSISTENT = []
else:
self.DEFAULT_IMAGE_PERSISTENT = DEFAULT_IMAGE_PERSISTENT
self.DEFAULT_IMAGE_PERSISTENT_nsprefix_ = None
if DEFAULT_IMAGE_PERSISTENT_NEW is None:
self.DEFAULT_IMAGE_PERSISTENT_NEW = []
else:
self.DEFAULT_IMAGE_PERSISTENT_NEW = DEFAULT_IMAGE_PERSISTENT_NEW
self.DEFAULT_IMAGE_PERSISTENT_NEW_nsprefix_ = None
if DEFAULT_IMAGE_TYPE is None:
self.DEFAULT_IMAGE_TYPE = []
else:
self.DEFAULT_IMAGE_TYPE = DEFAULT_IMAGE_TYPE
self.DEFAULT_IMAGE_TYPE_nsprefix_ = None
if DEFAULT_UMASK is None:
self.DEFAULT_UMASK = []
else:
self.DEFAULT_UMASK = DEFAULT_UMASK
self.DEFAULT_UMASK_nsprefix_ = None
if DEFAULT_VDC_CLUSTER_DATASTORE_ACL is None:
self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL = []
else:
self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL = DEFAULT_VDC_CLUSTER_DATASTORE_ACL
self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL_nsprefix_ = None
if DEFAULT_VDC_CLUSTER_HOST_ACL is None:
self.DEFAULT_VDC_CLUSTER_HOST_ACL = []
else:
self.DEFAULT_VDC_CLUSTER_HOST_ACL = DEFAULT_VDC_CLUSTER_HOST_ACL
self.DEFAULT_VDC_CLUSTER_HOST_ACL_nsprefix_ = None
if DEFAULT_VDC_CLUSTER_NET_ACL is None:
self.DEFAULT_VDC_CLUSTER_NET_ACL = []
else:
self.DEFAULT_VDC_CLUSTER_NET_ACL = DEFAULT_VDC_CLUSTER_NET_ACL
self.DEFAULT_VDC_CLUSTER_NET_ACL_nsprefix_ = None
if DEFAULT_VDC_DATASTORE_ACL is None:
self.DEFAULT_VDC_DATASTORE_ACL = []
else:
self.DEFAULT_VDC_DATASTORE_ACL = DEFAULT_VDC_DATASTORE_ACL
self.DEFAULT_VDC_DATASTORE_ACL_nsprefix_ = None
if DEFAULT_VDC_HOST_ACL is None:
self.DEFAULT_VDC_HOST_ACL = []
else:
self.DEFAULT_VDC_HOST_ACL = DEFAULT_VDC_HOST_ACL
self.DEFAULT_VDC_HOST_ACL_nsprefix_ = None
if DEFAULT_VDC_VNET_ACL is None:
self.DEFAULT_VDC_VNET_ACL = []
else:
self.DEFAULT_VDC_VNET_ACL = DEFAULT_VDC_VNET_ACL
self.DEFAULT_VDC_VNET_ACL_nsprefix_ = None
if DOCUMENT_ENCRYPTED_ATTR is None:
self.DOCUMENT_ENCRYPTED_ATTR = []
else:
self.DOCUMENT_ENCRYPTED_ATTR = DOCUMENT_ENCRYPTED_ATTR
self.DOCUMENT_ENCRYPTED_ATTR_nsprefix_ = None
if DS_MAD_CONF is None:
self.DS_MAD_CONF = []
else:
self.DS_MAD_CONF = DS_MAD_CONF
self.DS_MAD_CONF_nsprefix_ = None
self.DS_MONITOR_VM_DISK = DS_MONITOR_VM_DISK
self.DS_MONITOR_VM_DISK_nsprefix_ = None
self.ENABLE_OTHER_PERMISSIONS = ENABLE_OTHER_PERMISSIONS
self.validate_ENABLE_OTHER_PERMISSIONSType(self.ENABLE_OTHER_PERMISSIONS)
self.ENABLE_OTHER_PERMISSIONS_nsprefix_ = None
self.FEDERATION = FEDERATION
self.FEDERATION_nsprefix_ = None
if GROUP_RESTRICTED_ATTR is None:
self.GROUP_RESTRICTED_ATTR = []
else:
self.GROUP_RESTRICTED_ATTR = GROUP_RESTRICTED_ATTR
self.GROUP_RESTRICTED_ATTR_nsprefix_ = None
self.HM_MAD = HM_MAD
self.HM_MAD_nsprefix_ = None
self.HOOK_LOG_CONF = HOOK_LOG_CONF
self.HOOK_LOG_CONF_nsprefix_ = None
if HOST_ENCRYPTED_ATTR is None:
self.HOST_ENCRYPTED_ATTR = []
else:
self.HOST_ENCRYPTED_ATTR = HOST_ENCRYPTED_ATTR
self.HOST_ENCRYPTED_ATTR_nsprefix_ = None
if IMAGE_ENCRYPTED_ATTR is None:
self.IMAGE_ENCRYPTED_ATTR = []
else:
self.IMAGE_ENCRYPTED_ATTR = IMAGE_ENCRYPTED_ATTR
self.IMAGE_ENCRYPTED_ATTR_nsprefix_ = None
if IMAGE_RESTRICTED_ATTR is None:
self.IMAGE_RESTRICTED_ATTR = []
else:
self.IMAGE_RESTRICTED_ATTR = IMAGE_RESTRICTED_ATTR
self.IMAGE_RESTRICTED_ATTR_nsprefix_ = None
if IM_MAD is None:
self.IM_MAD = []
else:
self.IM_MAD = IM_MAD
self.IM_MAD_nsprefix_ = None
if INHERIT_DATASTORE_ATTR is None:
self.INHERIT_DATASTORE_ATTR = []
else:
self.INHERIT_DATASTORE_ATTR = INHERIT_DATASTORE_ATTR
self.INHERIT_DATASTORE_ATTR_nsprefix_ = None
if INHERIT_IMAGE_ATTR is None:
self.INHERIT_IMAGE_ATTR = []
else:
self.INHERIT_IMAGE_ATTR = INHERIT_IMAGE_ATTR
self.INHERIT_IMAGE_ATTR_nsprefix_ = None
if INHERIT_VNET_ATTR is None:
self.INHERIT_VNET_ATTR = []
else:
self.INHERIT_VNET_ATTR = INHERIT_VNET_ATTR
self.INHERIT_VNET_ATTR_nsprefix_ = None
if IPAM_MAD is None:
self.IPAM_MAD = []
else:
self.IPAM_MAD = IPAM_MAD
self.IPAM_MAD_nsprefix_ = None
if KEEPALIVE_MAX_CONN is None:
self.KEEPALIVE_MAX_CONN = []
else:
self.KEEPALIVE_MAX_CONN = KEEPALIVE_MAX_CONN
self.KEEPALIVE_MAX_CONN_nsprefix_ = None
if KEEPALIVE_TIMEOUT is None:
self.KEEPALIVE_TIMEOUT = []
else:
self.KEEPALIVE_TIMEOUT = KEEPALIVE_TIMEOUT
self.KEEPALIVE_TIMEOUT_nsprefix_ = None
if LISTEN_ADDRESS is None:
self.LISTEN_ADDRESS = []
else:
self.LISTEN_ADDRESS = LISTEN_ADDRESS
self.LISTEN_ADDRESS_nsprefix_ = None
if LOG is None:
self.LOG = []
else:
self.LOG = LOG
self.LOG_nsprefix_ = None
if LOG_CALL_FORMAT is None:
self.LOG_CALL_FORMAT = []
else:
self.LOG_CALL_FORMAT = LOG_CALL_FORMAT
self.LOG_CALL_FORMAT_nsprefix_ = None
if MAC_PREFIX is None:
self.MAC_PREFIX = []
else:
self.MAC_PREFIX = MAC_PREFIX
self.MAC_PREFIX_nsprefix_ = None
if MANAGER_TIMER is None:
self.MANAGER_TIMER = []
else:
self.MANAGER_TIMER = MANAGER_TIMER
self.MANAGER_TIMER_nsprefix_ = None
if MARKET_MAD is None:
self.MARKET_MAD = []
else:
self.MARKET_MAD = MARKET_MAD
self.MARKET_MAD_nsprefix_ = None
if MARKET_MAD_CONF is None:
self.MARKET_MAD_CONF = []
else:
self.MARKET_MAD_CONF = MARKET_MAD_CONF
self.MARKET_MAD_CONF_nsprefix_ = None
self.MAX_BACKUPS = MAX_BACKUPS
self.MAX_BACKUPS_nsprefix_ = None
self.MAX_BACKUPS_HOST = MAX_BACKUPS_HOST
self.MAX_BACKUPS_HOST_nsprefix_ = None
self.MAX_CONN = MAX_CONN
self.MAX_CONN_nsprefix_ = None
self.MAX_CONN_BACKLOG = MAX_CONN_BACKLOG
self.MAX_CONN_BACKLOG_nsprefix_ = None
self.MESSAGE_SIZE = MESSAGE_SIZE
self.MESSAGE_SIZE_nsprefix_ = None
self.MONITORING_INTERVAL_DATASTORE = MONITORING_INTERVAL_DATASTORE
self.MONITORING_INTERVAL_DATASTORE_nsprefix_ = None
self.MONITORING_INTERVAL_HOST = MONITORING_INTERVAL_HOST
self.MONITORING_INTERVAL_HOST_nsprefix_ = None
self.MONITORING_INTERVAL_MARKET = MONITORING_INTERVAL_MARKET
self.MONITORING_INTERVAL_MARKET_nsprefix_ = None
self.MONITORING_INTERVAL_VM = MONITORING_INTERVAL_VM
self.MONITORING_INTERVAL_VM_nsprefix_ = None
self.NETWORK_SIZE = NETWORK_SIZE
self.NETWORK_SIZE_nsprefix_ = None
if ONE_KEY is None:
self.ONE_KEY = []
else:
self.ONE_KEY = ONE_KEY
self.ONE_KEY_nsprefix_ = None
self.PCI_PASSTHROUGH_BUS = PCI_PASSTHROUGH_BUS
self.PCI_PASSTHROUGH_BUS_nsprefix_ = None
self.PORT = PORT
self.PORT_nsprefix_ = None
self.RAFT = RAFT
self.RAFT_nsprefix_ = None
self.RPC_LOG = RPC_LOG
self.RPC_LOG_nsprefix_ = None
self.SCRIPTS_REMOTE_DIR = SCRIPTS_REMOTE_DIR
self.SCRIPTS_REMOTE_DIR_nsprefix_ = None
self.SESSION_EXPIRATION_TIME = SESSION_EXPIRATION_TIME
self.SESSION_EXPIRATION_TIME_nsprefix_ = None
self.SHOWBACK_ONLY_RUNNING = SHOWBACK_ONLY_RUNNING
self.SHOWBACK_ONLY_RUNNING_nsprefix_ = None
self.TIMEOUT = TIMEOUT
self.TIMEOUT_nsprefix_ = None
if TM_MAD is None:
self.TM_MAD = []
else:
self.TM_MAD = TM_MAD
self.TM_MAD_nsprefix_ = None
if TM_MAD_CONF is None:
self.TM_MAD_CONF = []
else:
self.TM_MAD_CONF = TM_MAD_CONF
self.TM_MAD_CONF_nsprefix_ = None
if USER_ENCRYPTED_ATTR is None:
self.USER_ENCRYPTED_ATTR = []
else:
self.USER_ENCRYPTED_ATTR = USER_ENCRYPTED_ATTR
self.USER_ENCRYPTED_ATTR_nsprefix_ = None
if USER_RESTRICTED_ATTR is None:
self.USER_RESTRICTED_ATTR = []
else:
self.USER_RESTRICTED_ATTR = USER_RESTRICTED_ATTR
self.USER_RESTRICTED_ATTR_nsprefix_ = None
self.VLAN_IDS = VLAN_IDS
self.VLAN_IDS_nsprefix_ = None
self.VM_ADMIN_OPERATIONS = VM_ADMIN_OPERATIONS
self.VM_ADMIN_OPERATIONS_nsprefix_ = None
if VM_ENCRYPTED_ATTR is None:
self.VM_ENCRYPTED_ATTR = []
else:
self.VM_ENCRYPTED_ATTR = VM_ENCRYPTED_ATTR
self.VM_ENCRYPTED_ATTR_nsprefix_ = None
if VM_MAD is None:
self.VM_MAD = []
else:
self.VM_MAD = VM_MAD
self.VM_MAD_nsprefix_ = None
self.VM_MANAGE_OPERATIONS = VM_MANAGE_OPERATIONS
self.VM_MANAGE_OPERATIONS_nsprefix_ = None
if VM_MONITORING_EXPIRATION_TIME is None:
self.VM_MONITORING_EXPIRATION_TIME = []
else:
self.VM_MONITORING_EXPIRATION_TIME = VM_MONITORING_EXPIRATION_TIME
self.VM_MONITORING_EXPIRATION_TIME_nsprefix_ = None
if VM_RESTRICTED_ATTR is None:
self.VM_RESTRICTED_ATTR = []
else:
self.VM_RESTRICTED_ATTR = VM_RESTRICTED_ATTR
self.VM_RESTRICTED_ATTR_nsprefix_ = None
self.VM_SNAPSHOT_FACTOR = VM_SNAPSHOT_FACTOR
self.VM_SNAPSHOT_FACTOR_nsprefix_ = None
self.VM_SUBMIT_ON_HOLD = VM_SUBMIT_ON_HOLD
self.validate_VM_SUBMIT_ON_HOLDType(self.VM_SUBMIT_ON_HOLD)
self.VM_SUBMIT_ON_HOLD_nsprefix_ = None
if VM_USE_OPERATIONS is None:
self.VM_USE_OPERATIONS = []
else:
self.VM_USE_OPERATIONS = VM_USE_OPERATIONS
self.VM_USE_OPERATIONS_nsprefix_ = None
self.VNC_PORTS = VNC_PORTS
self.VNC_PORTS_nsprefix_ = None
if VNET_ENCRYPTED_ATTR is None:
self.VNET_ENCRYPTED_ATTR = []
else:
self.VNET_ENCRYPTED_ATTR = VNET_ENCRYPTED_ATTR
self.VNET_ENCRYPTED_ATTR_nsprefix_ = None
if VNET_RESTRICTED_ATTR is None:
self.VNET_RESTRICTED_ATTR = []
else:
self.VNET_RESTRICTED_ATTR = VNET_RESTRICTED_ATTR
self.VNET_RESTRICTED_ATTR_nsprefix_ = None
if VN_MAD_CONF is None:
self.VN_MAD_CONF = []
else:
self.VN_MAD_CONF = VN_MAD_CONF
self.VN_MAD_CONF_nsprefix_ = None
self.VXLAN_IDS = VXLAN_IDS
self.VXLAN_IDS_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, OPENNEBULA_CONFIGURATION)
if subclass is not None:
return subclass(*args_, **kwargs_)
if OPENNEBULA_CONFIGURATION.subclass:
return OPENNEBULA_CONFIGURATION.subclass(*args_, **kwargs_)
else:
return OPENNEBULA_CONFIGURATION(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_API_LIST_ORDER(self):
return self.API_LIST_ORDER
def set_API_LIST_ORDER(self, API_LIST_ORDER):
self.API_LIST_ORDER = API_LIST_ORDER
def add_API_LIST_ORDER(self, value):
self.API_LIST_ORDER.append(value)
def insert_API_LIST_ORDER_at(self, index, value):
self.API_LIST_ORDER.insert(index, value)
def replace_API_LIST_ORDER_at(self, index, value):
self.API_LIST_ORDER[index] = value
def get_AUTH_MAD(self):
return self.AUTH_MAD
def set_AUTH_MAD(self, AUTH_MAD):
self.AUTH_MAD = AUTH_MAD
def add_AUTH_MAD(self, value):
self.AUTH_MAD.append(value)
def insert_AUTH_MAD_at(self, index, value):
self.AUTH_MAD.insert(index, value)
def replace_AUTH_MAD_at(self, index, value):
self.AUTH_MAD[index] = value
def get_AUTH_MAD_CONF(self):
return self.AUTH_MAD_CONF
def set_AUTH_MAD_CONF(self, AUTH_MAD_CONF):
self.AUTH_MAD_CONF = AUTH_MAD_CONF
def add_AUTH_MAD_CONF(self, value):
self.AUTH_MAD_CONF.append(value)
def insert_AUTH_MAD_CONF_at(self, index, value):
self.AUTH_MAD_CONF.insert(index, value)
def replace_AUTH_MAD_CONF_at(self, index, value):
self.AUTH_MAD_CONF[index] = value
def get_CLUSTER_ENCRYPTED_ATTR(self):
return self.CLUSTER_ENCRYPTED_ATTR
def set_CLUSTER_ENCRYPTED_ATTR(self, CLUSTER_ENCRYPTED_ATTR):
self.CLUSTER_ENCRYPTED_ATTR = CLUSTER_ENCRYPTED_ATTR
def add_CLUSTER_ENCRYPTED_ATTR(self, value):
self.CLUSTER_ENCRYPTED_ATTR.append(value)
def insert_CLUSTER_ENCRYPTED_ATTR_at(self, index, value):
self.CLUSTER_ENCRYPTED_ATTR.insert(index, value)
def replace_CLUSTER_ENCRYPTED_ATTR_at(self, index, value):
self.CLUSTER_ENCRYPTED_ATTR[index] = value
def get_CONTEXT_RESTRICTED_DIRS(self):
return self.CONTEXT_RESTRICTED_DIRS
def set_CONTEXT_RESTRICTED_DIRS(self, CONTEXT_RESTRICTED_DIRS):
self.CONTEXT_RESTRICTED_DIRS = CONTEXT_RESTRICTED_DIRS
def get_CONTEXT_SAFE_DIRS(self):
return self.CONTEXT_SAFE_DIRS
def set_CONTEXT_SAFE_DIRS(self, CONTEXT_SAFE_DIRS):
self.CONTEXT_SAFE_DIRS = CONTEXT_SAFE_DIRS
def get_DATASTORE_CAPACITY_CHECK(self):
return self.DATASTORE_CAPACITY_CHECK
def set_DATASTORE_CAPACITY_CHECK(self, DATASTORE_CAPACITY_CHECK):
self.DATASTORE_CAPACITY_CHECK = DATASTORE_CAPACITY_CHECK
def add_DATASTORE_CAPACITY_CHECK(self, value):
self.DATASTORE_CAPACITY_CHECK.append(value)
def insert_DATASTORE_CAPACITY_CHECK_at(self, index, value):
self.DATASTORE_CAPACITY_CHECK.insert(index, value)
def replace_DATASTORE_CAPACITY_CHECK_at(self, index, value):
self.DATASTORE_CAPACITY_CHECK[index] = value
def get_DATASTORE_ENCRYPTED_ATTR(self):
return self.DATASTORE_ENCRYPTED_ATTR
def set_DATASTORE_ENCRYPTED_ATTR(self, DATASTORE_ENCRYPTED_ATTR):
self.DATASTORE_ENCRYPTED_ATTR = DATASTORE_ENCRYPTED_ATTR
def add_DATASTORE_ENCRYPTED_ATTR(self, value):
self.DATASTORE_ENCRYPTED_ATTR.append(value)
def insert_DATASTORE_ENCRYPTED_ATTR_at(self, index, value):
self.DATASTORE_ENCRYPTED_ATTR.insert(index, value)
def replace_DATASTORE_ENCRYPTED_ATTR_at(self, index, value):
self.DATASTORE_ENCRYPTED_ATTR[index] = value
def get_DATASTORE_LOCATION(self):
return self.DATASTORE_LOCATION
def set_DATASTORE_LOCATION(self, DATASTORE_LOCATION):
self.DATASTORE_LOCATION = DATASTORE_LOCATION
def add_DATASTORE_LOCATION(self, value):
self.DATASTORE_LOCATION.append(value)
def insert_DATASTORE_LOCATION_at(self, index, value):
self.DATASTORE_LOCATION.insert(index, value)
def replace_DATASTORE_LOCATION_at(self, index, value):
self.DATASTORE_LOCATION[index] = value
def get_DATASTORE_MAD(self):
return self.DATASTORE_MAD
def set_DATASTORE_MAD(self, DATASTORE_MAD):
self.DATASTORE_MAD = DATASTORE_MAD
def add_DATASTORE_MAD(self, value):
self.DATASTORE_MAD.append(value)
def insert_DATASTORE_MAD_at(self, index, value):
self.DATASTORE_MAD.insert(index, value)
def replace_DATASTORE_MAD_at(self, index, value):
self.DATASTORE_MAD[index] = value
def get_DB(self):
return self.DB
def set_DB(self, DB):
self.DB = DB
def get_DEFAULT_AUTH(self):
return self.DEFAULT_AUTH
def set_DEFAULT_AUTH(self, DEFAULT_AUTH):
self.DEFAULT_AUTH = DEFAULT_AUTH
def add_DEFAULT_AUTH(self, value):
self.DEFAULT_AUTH.append(value)
def insert_DEFAULT_AUTH_at(self, index, value):
self.DEFAULT_AUTH.insert(index, value)
def replace_DEFAULT_AUTH_at(self, index, value):
self.DEFAULT_AUTH[index] = value
def get_DEFAULT_CDROM_DEVICE_PREFIX(self):
return self.DEFAULT_CDROM_DEVICE_PREFIX
def set_DEFAULT_CDROM_DEVICE_PREFIX(self, DEFAULT_CDROM_DEVICE_PREFIX):
self.DEFAULT_CDROM_DEVICE_PREFIX = DEFAULT_CDROM_DEVICE_PREFIX
def add_DEFAULT_CDROM_DEVICE_PREFIX(self, value):
self.DEFAULT_CDROM_DEVICE_PREFIX.append(value)
def insert_DEFAULT_CDROM_DEVICE_PREFIX_at(self, index, value):
self.DEFAULT_CDROM_DEVICE_PREFIX.insert(index, value)
def replace_DEFAULT_CDROM_DEVICE_PREFIX_at(self, index, value):
self.DEFAULT_CDROM_DEVICE_PREFIX[index] = value
def get_DEFAULT_COST(self):
return self.DEFAULT_COST
def set_DEFAULT_COST(self, DEFAULT_COST):
self.DEFAULT_COST = DEFAULT_COST
def add_DEFAULT_COST(self, value):
self.DEFAULT_COST.append(value)
def insert_DEFAULT_COST_at(self, index, value):
self.DEFAULT_COST.insert(index, value)
def replace_DEFAULT_COST_at(self, index, value):
self.DEFAULT_COST[index] = value
def get_DEFAULT_DEVICE_PREFIX(self):
return self.DEFAULT_DEVICE_PREFIX
def set_DEFAULT_DEVICE_PREFIX(self, DEFAULT_DEVICE_PREFIX):
self.DEFAULT_DEVICE_PREFIX = DEFAULT_DEVICE_PREFIX
def add_DEFAULT_DEVICE_PREFIX(self, value):
self.DEFAULT_DEVICE_PREFIX.append(value)
def insert_DEFAULT_DEVICE_PREFIX_at(self, index, value):
self.DEFAULT_DEVICE_PREFIX.insert(index, value)
def replace_DEFAULT_DEVICE_PREFIX_at(self, index, value):
self.DEFAULT_DEVICE_PREFIX[index] = value
def get_DEFAULT_IMAGE_PERSISTENT(self):
return self.DEFAULT_IMAGE_PERSISTENT
def set_DEFAULT_IMAGE_PERSISTENT(self, DEFAULT_IMAGE_PERSISTENT):
self.DEFAULT_IMAGE_PERSISTENT = DEFAULT_IMAGE_PERSISTENT
def add_DEFAULT_IMAGE_PERSISTENT(self, value):
self.DEFAULT_IMAGE_PERSISTENT.append(value)
def insert_DEFAULT_IMAGE_PERSISTENT_at(self, index, value):
self.DEFAULT_IMAGE_PERSISTENT.insert(index, value)
def replace_DEFAULT_IMAGE_PERSISTENT_at(self, index, value):
self.DEFAULT_IMAGE_PERSISTENT[index] = value
def get_DEFAULT_IMAGE_PERSISTENT_NEW(self):
return self.DEFAULT_IMAGE_PERSISTENT_NEW
def set_DEFAULT_IMAGE_PERSISTENT_NEW(self, DEFAULT_IMAGE_PERSISTENT_NEW):
self.DEFAULT_IMAGE_PERSISTENT_NEW = DEFAULT_IMAGE_PERSISTENT_NEW
def add_DEFAULT_IMAGE_PERSISTENT_NEW(self, value):
self.DEFAULT_IMAGE_PERSISTENT_NEW.append(value)
def insert_DEFAULT_IMAGE_PERSISTENT_NEW_at(self, index, value):
self.DEFAULT_IMAGE_PERSISTENT_NEW.insert(index, value)
def replace_DEFAULT_IMAGE_PERSISTENT_NEW_at(self, index, value):
self.DEFAULT_IMAGE_PERSISTENT_NEW[index] = value
def get_DEFAULT_IMAGE_TYPE(self):
return self.DEFAULT_IMAGE_TYPE
def set_DEFAULT_IMAGE_TYPE(self, DEFAULT_IMAGE_TYPE):
self.DEFAULT_IMAGE_TYPE = DEFAULT_IMAGE_TYPE
def add_DEFAULT_IMAGE_TYPE(self, value):
self.DEFAULT_IMAGE_TYPE.append(value)
def insert_DEFAULT_IMAGE_TYPE_at(self, index, value):
self.DEFAULT_IMAGE_TYPE.insert(index, value)
def replace_DEFAULT_IMAGE_TYPE_at(self, index, value):
self.DEFAULT_IMAGE_TYPE[index] = value
def get_DEFAULT_UMASK(self):
return self.DEFAULT_UMASK
def set_DEFAULT_UMASK(self, DEFAULT_UMASK):
self.DEFAULT_UMASK = DEFAULT_UMASK
def add_DEFAULT_UMASK(self, value):
self.DEFAULT_UMASK.append(value)
def insert_DEFAULT_UMASK_at(self, index, value):
self.DEFAULT_UMASK.insert(index, value)
def replace_DEFAULT_UMASK_at(self, index, value):
self.DEFAULT_UMASK[index] = value
def get_DEFAULT_VDC_CLUSTER_DATASTORE_ACL(self):
return self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL
def set_DEFAULT_VDC_CLUSTER_DATASTORE_ACL(self, DEFAULT_VDC_CLUSTER_DATASTORE_ACL):
self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL = DEFAULT_VDC_CLUSTER_DATASTORE_ACL
def add_DEFAULT_VDC_CLUSTER_DATASTORE_ACL(self, value):
self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL.append(value)
def insert_DEFAULT_VDC_CLUSTER_DATASTORE_ACL_at(self, index, value):
self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL.insert(index, value)
def replace_DEFAULT_VDC_CLUSTER_DATASTORE_ACL_at(self, index, value):
self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL[index] = value
def get_DEFAULT_VDC_CLUSTER_HOST_ACL(self):
return self.DEFAULT_VDC_CLUSTER_HOST_ACL
def set_DEFAULT_VDC_CLUSTER_HOST_ACL(self, DEFAULT_VDC_CLUSTER_HOST_ACL):
self.DEFAULT_VDC_CLUSTER_HOST_ACL = DEFAULT_VDC_CLUSTER_HOST_ACL
def add_DEFAULT_VDC_CLUSTER_HOST_ACL(self, value):
self.DEFAULT_VDC_CLUSTER_HOST_ACL.append(value)
def insert_DEFAULT_VDC_CLUSTER_HOST_ACL_at(self, index, value):
self.DEFAULT_VDC_CLUSTER_HOST_ACL.insert(index, value)
def replace_DEFAULT_VDC_CLUSTER_HOST_ACL_at(self, index, value):
self.DEFAULT_VDC_CLUSTER_HOST_ACL[index] = value
def get_DEFAULT_VDC_CLUSTER_NET_ACL(self):
return self.DEFAULT_VDC_CLUSTER_NET_ACL
def set_DEFAULT_VDC_CLUSTER_NET_ACL(self, DEFAULT_VDC_CLUSTER_NET_ACL):
self.DEFAULT_VDC_CLUSTER_NET_ACL = DEFAULT_VDC_CLUSTER_NET_ACL
def add_DEFAULT_VDC_CLUSTER_NET_ACL(self, value):
self.DEFAULT_VDC_CLUSTER_NET_ACL.append(value)
def insert_DEFAULT_VDC_CLUSTER_NET_ACL_at(self, index, value):
self.DEFAULT_VDC_CLUSTER_NET_ACL.insert(index, value)
def replace_DEFAULT_VDC_CLUSTER_NET_ACL_at(self, index, value):
self.DEFAULT_VDC_CLUSTER_NET_ACL[index] = value
def get_DEFAULT_VDC_DATASTORE_ACL(self):
return self.DEFAULT_VDC_DATASTORE_ACL
def set_DEFAULT_VDC_DATASTORE_ACL(self, DEFAULT_VDC_DATASTORE_ACL):
self.DEFAULT_VDC_DATASTORE_ACL = DEFAULT_VDC_DATASTORE_ACL
def add_DEFAULT_VDC_DATASTORE_ACL(self, value):
self.DEFAULT_VDC_DATASTORE_ACL.append(value)
def insert_DEFAULT_VDC_DATASTORE_ACL_at(self, index, value):
self.DEFAULT_VDC_DATASTORE_ACL.insert(index, value)
def replace_DEFAULT_VDC_DATASTORE_ACL_at(self, index, value):
self.DEFAULT_VDC_DATASTORE_ACL[index] = value
def get_DEFAULT_VDC_HOST_ACL(self):
return self.DEFAULT_VDC_HOST_ACL
def set_DEFAULT_VDC_HOST_ACL(self, DEFAULT_VDC_HOST_ACL):
self.DEFAULT_VDC_HOST_ACL = DEFAULT_VDC_HOST_ACL
def add_DEFAULT_VDC_HOST_ACL(self, value):
self.DEFAULT_VDC_HOST_ACL.append(value)
def insert_DEFAULT_VDC_HOST_ACL_at(self, index, value):
self.DEFAULT_VDC_HOST_ACL.insert(index, value)
def replace_DEFAULT_VDC_HOST_ACL_at(self, index, value):
self.DEFAULT_VDC_HOST_ACL[index] = value
def get_DEFAULT_VDC_VNET_ACL(self):
return self.DEFAULT_VDC_VNET_ACL
def set_DEFAULT_VDC_VNET_ACL(self, DEFAULT_VDC_VNET_ACL):
self.DEFAULT_VDC_VNET_ACL = DEFAULT_VDC_VNET_ACL
def add_DEFAULT_VDC_VNET_ACL(self, value):
self.DEFAULT_VDC_VNET_ACL.append(value)
def insert_DEFAULT_VDC_VNET_ACL_at(self, index, value):
self.DEFAULT_VDC_VNET_ACL.insert(index, value)
def replace_DEFAULT_VDC_VNET_ACL_at(self, index, value):
self.DEFAULT_VDC_VNET_ACL[index] = value
def get_DOCUMENT_ENCRYPTED_ATTR(self):
return self.DOCUMENT_ENCRYPTED_ATTR
def set_DOCUMENT_ENCRYPTED_ATTR(self, DOCUMENT_ENCRYPTED_ATTR):
self.DOCUMENT_ENCRYPTED_ATTR = DOCUMENT_ENCRYPTED_ATTR
def add_DOCUMENT_ENCRYPTED_ATTR(self, value):
self.DOCUMENT_ENCRYPTED_ATTR.append(value)
def insert_DOCUMENT_ENCRYPTED_ATTR_at(self, index, value):
self.DOCUMENT_ENCRYPTED_ATTR.insert(index, value)
def replace_DOCUMENT_ENCRYPTED_ATTR_at(self, index, value):
self.DOCUMENT_ENCRYPTED_ATTR[index] = value
def get_DS_MAD_CONF(self):
return self.DS_MAD_CONF
def set_DS_MAD_CONF(self, DS_MAD_CONF):
self.DS_MAD_CONF = DS_MAD_CONF
def add_DS_MAD_CONF(self, value):
self.DS_MAD_CONF.append(value)
def insert_DS_MAD_CONF_at(self, index, value):
self.DS_MAD_CONF.insert(index, value)
def replace_DS_MAD_CONF_at(self, index, value):
self.DS_MAD_CONF[index] = value
def get_DS_MONITOR_VM_DISK(self):
return self.DS_MONITOR_VM_DISK
def set_DS_MONITOR_VM_DISK(self, DS_MONITOR_VM_DISK):
self.DS_MONITOR_VM_DISK = DS_MONITOR_VM_DISK
def get_ENABLE_OTHER_PERMISSIONS(self):
return self.ENABLE_OTHER_PERMISSIONS
def set_ENABLE_OTHER_PERMISSIONS(self, ENABLE_OTHER_PERMISSIONS):
self.ENABLE_OTHER_PERMISSIONS = ENABLE_OTHER_PERMISSIONS
def get_FEDERATION(self):
return self.FEDERATION
def set_FEDERATION(self, FEDERATION):
self.FEDERATION = FEDERATION
def get_GROUP_RESTRICTED_ATTR(self):
return self.GROUP_RESTRICTED_ATTR
def set_GROUP_RESTRICTED_ATTR(self, GROUP_RESTRICTED_ATTR):
self.GROUP_RESTRICTED_ATTR = GROUP_RESTRICTED_ATTR
def add_GROUP_RESTRICTED_ATTR(self, value):
self.GROUP_RESTRICTED_ATTR.append(value)
def insert_GROUP_RESTRICTED_ATTR_at(self, index, value):
self.GROUP_RESTRICTED_ATTR.insert(index, value)
def replace_GROUP_RESTRICTED_ATTR_at(self, index, value):
self.GROUP_RESTRICTED_ATTR[index] = value
def get_HM_MAD(self):
return self.HM_MAD
def set_HM_MAD(self, HM_MAD):
self.HM_MAD = HM_MAD
def get_HOOK_LOG_CONF(self):
return self.HOOK_LOG_CONF
def set_HOOK_LOG_CONF(self, HOOK_LOG_CONF):
self.HOOK_LOG_CONF = HOOK_LOG_CONF
def get_HOST_ENCRYPTED_ATTR(self):
return self.HOST_ENCRYPTED_ATTR
def set_HOST_ENCRYPTED_ATTR(self, HOST_ENCRYPTED_ATTR):
self.HOST_ENCRYPTED_ATTR = HOST_ENCRYPTED_ATTR
def add_HOST_ENCRYPTED_ATTR(self, value):
self.HOST_ENCRYPTED_ATTR.append(value)
def insert_HOST_ENCRYPTED_ATTR_at(self, index, value):
self.HOST_ENCRYPTED_ATTR.insert(index, value)
def replace_HOST_ENCRYPTED_ATTR_at(self, index, value):
self.HOST_ENCRYPTED_ATTR[index] = value
def get_IMAGE_ENCRYPTED_ATTR(self):
return self.IMAGE_ENCRYPTED_ATTR
def set_IMAGE_ENCRYPTED_ATTR(self, IMAGE_ENCRYPTED_ATTR):
self.IMAGE_ENCRYPTED_ATTR = IMAGE_ENCRYPTED_ATTR
def add_IMAGE_ENCRYPTED_ATTR(self, value):
self.IMAGE_ENCRYPTED_ATTR.append(value)
def insert_IMAGE_ENCRYPTED_ATTR_at(self, index, value):
self.IMAGE_ENCRYPTED_ATTR.insert(index, value)
def replace_IMAGE_ENCRYPTED_ATTR_at(self, index, value):
self.IMAGE_ENCRYPTED_ATTR[index] = value
def get_IMAGE_RESTRICTED_ATTR(self):
return self.IMAGE_RESTRICTED_ATTR
def set_IMAGE_RESTRICTED_ATTR(self, IMAGE_RESTRICTED_ATTR):
self.IMAGE_RESTRICTED_ATTR = IMAGE_RESTRICTED_ATTR
def add_IMAGE_RESTRICTED_ATTR(self, value):
self.IMAGE_RESTRICTED_ATTR.append(value)
def insert_IMAGE_RESTRICTED_ATTR_at(self, index, value):
self.IMAGE_RESTRICTED_ATTR.insert(index, value)
def replace_IMAGE_RESTRICTED_ATTR_at(self, index, value):
self.IMAGE_RESTRICTED_ATTR[index] = value
def get_IM_MAD(self):
return self.IM_MAD
def set_IM_MAD(self, IM_MAD):
self.IM_MAD = IM_MAD
def add_IM_MAD(self, value):
self.IM_MAD.append(value)
def insert_IM_MAD_at(self, index, value):
self.IM_MAD.insert(index, value)
def replace_IM_MAD_at(self, index, value):
self.IM_MAD[index] = value
def get_INHERIT_DATASTORE_ATTR(self):
return self.INHERIT_DATASTORE_ATTR
def set_INHERIT_DATASTORE_ATTR(self, INHERIT_DATASTORE_ATTR):
self.INHERIT_DATASTORE_ATTR = INHERIT_DATASTORE_ATTR
def add_INHERIT_DATASTORE_ATTR(self, value):
self.INHERIT_DATASTORE_ATTR.append(value)
def insert_INHERIT_DATASTORE_ATTR_at(self, index, value):
self.INHERIT_DATASTORE_ATTR.insert(index, value)
def replace_INHERIT_DATASTORE_ATTR_at(self, index, value):
self.INHERIT_DATASTORE_ATTR[index] = value
def get_INHERIT_IMAGE_ATTR(self):
return self.INHERIT_IMAGE_ATTR
def set_INHERIT_IMAGE_ATTR(self, INHERIT_IMAGE_ATTR):
self.INHERIT_IMAGE_ATTR = INHERIT_IMAGE_ATTR
def add_INHERIT_IMAGE_ATTR(self, value):
self.INHERIT_IMAGE_ATTR.append(value)
def insert_INHERIT_IMAGE_ATTR_at(self, index, value):
self.INHERIT_IMAGE_ATTR.insert(index, value)
def replace_INHERIT_IMAGE_ATTR_at(self, index, value):
self.INHERIT_IMAGE_ATTR[index] = value
def get_INHERIT_VNET_ATTR(self):
return self.INHERIT_VNET_ATTR
def set_INHERIT_VNET_ATTR(self, INHERIT_VNET_ATTR):
self.INHERIT_VNET_ATTR = INHERIT_VNET_ATTR
def add_INHERIT_VNET_ATTR(self, value):
self.INHERIT_VNET_ATTR.append(value)
def insert_INHERIT_VNET_ATTR_at(self, index, value):
self.INHERIT_VNET_ATTR.insert(index, value)
def replace_INHERIT_VNET_ATTR_at(self, index, value):
self.INHERIT_VNET_ATTR[index] = value
def get_IPAM_MAD(self):
return self.IPAM_MAD
def set_IPAM_MAD(self, IPAM_MAD):
self.IPAM_MAD = IPAM_MAD
def add_IPAM_MAD(self, value):
self.IPAM_MAD.append(value)
def insert_IPAM_MAD_at(self, index, value):
self.IPAM_MAD.insert(index, value)
def replace_IPAM_MAD_at(self, index, value):
self.IPAM_MAD[index] = value
def get_KEEPALIVE_MAX_CONN(self):
return self.KEEPALIVE_MAX_CONN
def set_KEEPALIVE_MAX_CONN(self, KEEPALIVE_MAX_CONN):
self.KEEPALIVE_MAX_CONN = KEEPALIVE_MAX_CONN
def add_KEEPALIVE_MAX_CONN(self, value):
self.KEEPALIVE_MAX_CONN.append(value)
def insert_KEEPALIVE_MAX_CONN_at(self, index, value):
self.KEEPALIVE_MAX_CONN.insert(index, value)
def replace_KEEPALIVE_MAX_CONN_at(self, index, value):
self.KEEPALIVE_MAX_CONN[index] = value
def get_KEEPALIVE_TIMEOUT(self):
return self.KEEPALIVE_TIMEOUT
def set_KEEPALIVE_TIMEOUT(self, KEEPALIVE_TIMEOUT):
self.KEEPALIVE_TIMEOUT = KEEPALIVE_TIMEOUT
def add_KEEPALIVE_TIMEOUT(self, value):
self.KEEPALIVE_TIMEOUT.append(value)
def insert_KEEPALIVE_TIMEOUT_at(self, index, value):
self.KEEPALIVE_TIMEOUT.insert(index, value)
def replace_KEEPALIVE_TIMEOUT_at(self, index, value):
self.KEEPALIVE_TIMEOUT[index] = value
def get_LISTEN_ADDRESS(self):
return self.LISTEN_ADDRESS
def set_LISTEN_ADDRESS(self, LISTEN_ADDRESS):
self.LISTEN_ADDRESS = LISTEN_ADDRESS
def add_LISTEN_ADDRESS(self, value):
self.LISTEN_ADDRESS.append(value)
def insert_LISTEN_ADDRESS_at(self, index, value):
self.LISTEN_ADDRESS.insert(index, value)
def replace_LISTEN_ADDRESS_at(self, index, value):
self.LISTEN_ADDRESS[index] = value
def get_LOG(self):
return self.LOG
def set_LOG(self, LOG):
self.LOG = LOG
def add_LOG(self, value):
self.LOG.append(value)
def insert_LOG_at(self, index, value):
self.LOG.insert(index, value)
def replace_LOG_at(self, index, value):
self.LOG[index] = value
def get_LOG_CALL_FORMAT(self):
return self.LOG_CALL_FORMAT
def set_LOG_CALL_FORMAT(self, LOG_CALL_FORMAT):
self.LOG_CALL_FORMAT = LOG_CALL_FORMAT
def add_LOG_CALL_FORMAT(self, value):
self.LOG_CALL_FORMAT.append(value)
def insert_LOG_CALL_FORMAT_at(self, index, value):
self.LOG_CALL_FORMAT.insert(index, value)
def replace_LOG_CALL_FORMAT_at(self, index, value):
self.LOG_CALL_FORMAT[index] = value
def get_MAC_PREFIX(self):
return self.MAC_PREFIX
def set_MAC_PREFIX(self, MAC_PREFIX):
self.MAC_PREFIX = MAC_PREFIX
def add_MAC_PREFIX(self, value):
self.MAC_PREFIX.append(value)
def insert_MAC_PREFIX_at(self, index, value):
self.MAC_PREFIX.insert(index, value)
def replace_MAC_PREFIX_at(self, index, value):
self.MAC_PREFIX[index] = value
def get_MANAGER_TIMER(self):
return self.MANAGER_TIMER
def set_MANAGER_TIMER(self, MANAGER_TIMER):
self.MANAGER_TIMER = MANAGER_TIMER
def add_MANAGER_TIMER(self, value):
self.MANAGER_TIMER.append(value)
def insert_MANAGER_TIMER_at(self, index, value):
self.MANAGER_TIMER.insert(index, value)
def replace_MANAGER_TIMER_at(self, index, value):
self.MANAGER_TIMER[index] = value
def get_MARKET_MAD(self):
return self.MARKET_MAD
def set_MARKET_MAD(self, MARKET_MAD):
self.MARKET_MAD = MARKET_MAD
def add_MARKET_MAD(self, value):
self.MARKET_MAD.append(value)
def insert_MARKET_MAD_at(self, index, value):
self.MARKET_MAD.insert(index, value)
def replace_MARKET_MAD_at(self, index, value):
self.MARKET_MAD[index] = value
def get_MARKET_MAD_CONF(self):
return self.MARKET_MAD_CONF
def set_MARKET_MAD_CONF(self, MARKET_MAD_CONF):
self.MARKET_MAD_CONF = MARKET_MAD_CONF
def add_MARKET_MAD_CONF(self, value):
self.MARKET_MAD_CONF.append(value)
def insert_MARKET_MAD_CONF_at(self, index, value):
self.MARKET_MAD_CONF.insert(index, value)
def replace_MARKET_MAD_CONF_at(self, index, value):
self.MARKET_MAD_CONF[index] = value
def get_MAX_BACKUPS(self):
return self.MAX_BACKUPS
def set_MAX_BACKUPS(self, MAX_BACKUPS):
self.MAX_BACKUPS = MAX_BACKUPS
def get_MAX_BACKUPS_HOST(self):
return self.MAX_BACKUPS_HOST
def set_MAX_BACKUPS_HOST(self, MAX_BACKUPS_HOST):
self.MAX_BACKUPS_HOST = MAX_BACKUPS_HOST
def get_MAX_CONN(self):
return self.MAX_CONN
def set_MAX_CONN(self, MAX_CONN):
self.MAX_CONN = MAX_CONN
def get_MAX_CONN_BACKLOG(self):
return self.MAX_CONN_BACKLOG
def set_MAX_CONN_BACKLOG(self, MAX_CONN_BACKLOG):
self.MAX_CONN_BACKLOG = MAX_CONN_BACKLOG
def get_MESSAGE_SIZE(self):
return self.MESSAGE_SIZE
def set_MESSAGE_SIZE(self, MESSAGE_SIZE):
self.MESSAGE_SIZE = MESSAGE_SIZE
def get_MONITORING_INTERVAL_DATASTORE(self):
return self.MONITORING_INTERVAL_DATASTORE
def set_MONITORING_INTERVAL_DATASTORE(self, MONITORING_INTERVAL_DATASTORE):
self.MONITORING_INTERVAL_DATASTORE = MONITORING_INTERVAL_DATASTORE
def get_MONITORING_INTERVAL_HOST(self):
return self.MONITORING_INTERVAL_HOST
def set_MONITORING_INTERVAL_HOST(self, MONITORING_INTERVAL_HOST):
self.MONITORING_INTERVAL_HOST = MONITORING_INTERVAL_HOST
def get_MONITORING_INTERVAL_MARKET(self):
return self.MONITORING_INTERVAL_MARKET
def set_MONITORING_INTERVAL_MARKET(self, MONITORING_INTERVAL_MARKET):
self.MONITORING_INTERVAL_MARKET = MONITORING_INTERVAL_MARKET
def get_MONITORING_INTERVAL_VM(self):
return self.MONITORING_INTERVAL_VM
def set_MONITORING_INTERVAL_VM(self, MONITORING_INTERVAL_VM):
self.MONITORING_INTERVAL_VM = MONITORING_INTERVAL_VM
def get_NETWORK_SIZE(self):
return self.NETWORK_SIZE
def set_NETWORK_SIZE(self, NETWORK_SIZE):
self.NETWORK_SIZE = NETWORK_SIZE
def get_ONE_KEY(self):
return self.ONE_KEY
def set_ONE_KEY(self, ONE_KEY):
self.ONE_KEY = ONE_KEY
def add_ONE_KEY(self, value):
self.ONE_KEY.append(value)
def insert_ONE_KEY_at(self, index, value):
self.ONE_KEY.insert(index, value)
def replace_ONE_KEY_at(self, index, value):
self.ONE_KEY[index] = value
def get_PCI_PASSTHROUGH_BUS(self):
return self.PCI_PASSTHROUGH_BUS
def set_PCI_PASSTHROUGH_BUS(self, PCI_PASSTHROUGH_BUS):
self.PCI_PASSTHROUGH_BUS = PCI_PASSTHROUGH_BUS
def get_PORT(self):
return self.PORT
def set_PORT(self, PORT):
self.PORT = PORT
def get_RAFT(self):
return self.RAFT
def set_RAFT(self, RAFT):
self.RAFT = RAFT
def get_RPC_LOG(self):
return self.RPC_LOG
def set_RPC_LOG(self, RPC_LOG):
self.RPC_LOG = RPC_LOG
def get_SCRIPTS_REMOTE_DIR(self):
return self.SCRIPTS_REMOTE_DIR
def set_SCRIPTS_REMOTE_DIR(self, SCRIPTS_REMOTE_DIR):
self.SCRIPTS_REMOTE_DIR = SCRIPTS_REMOTE_DIR
def get_SESSION_EXPIRATION_TIME(self):
return self.SESSION_EXPIRATION_TIME
def set_SESSION_EXPIRATION_TIME(self, SESSION_EXPIRATION_TIME):
self.SESSION_EXPIRATION_TIME = SESSION_EXPIRATION_TIME
def get_SHOWBACK_ONLY_RUNNING(self):
return self.SHOWBACK_ONLY_RUNNING
def set_SHOWBACK_ONLY_RUNNING(self, SHOWBACK_ONLY_RUNNING):
self.SHOWBACK_ONLY_RUNNING = SHOWBACK_ONLY_RUNNING
def get_TIMEOUT(self):
return self.TIMEOUT
def set_TIMEOUT(self, TIMEOUT):
self.TIMEOUT = TIMEOUT
def get_TM_MAD(self):
return self.TM_MAD
def set_TM_MAD(self, TM_MAD):
self.TM_MAD = TM_MAD
def add_TM_MAD(self, value):
self.TM_MAD.append(value)
def insert_TM_MAD_at(self, index, value):
self.TM_MAD.insert(index, value)
def replace_TM_MAD_at(self, index, value):
self.TM_MAD[index] = value
def get_TM_MAD_CONF(self):
return self.TM_MAD_CONF
def set_TM_MAD_CONF(self, TM_MAD_CONF):
self.TM_MAD_CONF = TM_MAD_CONF
def add_TM_MAD_CONF(self, value):
self.TM_MAD_CONF.append(value)
def insert_TM_MAD_CONF_at(self, index, value):
self.TM_MAD_CONF.insert(index, value)
def replace_TM_MAD_CONF_at(self, index, value):
self.TM_MAD_CONF[index] = value
def get_USER_ENCRYPTED_ATTR(self):
return self.USER_ENCRYPTED_ATTR
def set_USER_ENCRYPTED_ATTR(self, USER_ENCRYPTED_ATTR):
self.USER_ENCRYPTED_ATTR = USER_ENCRYPTED_ATTR
def add_USER_ENCRYPTED_ATTR(self, value):
self.USER_ENCRYPTED_ATTR.append(value)
def insert_USER_ENCRYPTED_ATTR_at(self, index, value):
self.USER_ENCRYPTED_ATTR.insert(index, value)
def replace_USER_ENCRYPTED_ATTR_at(self, index, value):
self.USER_ENCRYPTED_ATTR[index] = value
def get_USER_RESTRICTED_ATTR(self):
return self.USER_RESTRICTED_ATTR
def set_USER_RESTRICTED_ATTR(self, USER_RESTRICTED_ATTR):
self.USER_RESTRICTED_ATTR = USER_RESTRICTED_ATTR
def add_USER_RESTRICTED_ATTR(self, value):
self.USER_RESTRICTED_ATTR.append(value)
def insert_USER_RESTRICTED_ATTR_at(self, index, value):
self.USER_RESTRICTED_ATTR.insert(index, value)
def replace_USER_RESTRICTED_ATTR_at(self, index, value):
self.USER_RESTRICTED_ATTR[index] = value
def get_VLAN_IDS(self):
return self.VLAN_IDS
def set_VLAN_IDS(self, VLAN_IDS):
self.VLAN_IDS = VLAN_IDS
def get_VM_ADMIN_OPERATIONS(self):
return self.VM_ADMIN_OPERATIONS
def set_VM_ADMIN_OPERATIONS(self, VM_ADMIN_OPERATIONS):
self.VM_ADMIN_OPERATIONS = VM_ADMIN_OPERATIONS
def get_VM_ENCRYPTED_ATTR(self):
return self.VM_ENCRYPTED_ATTR
def set_VM_ENCRYPTED_ATTR(self, VM_ENCRYPTED_ATTR):
self.VM_ENCRYPTED_ATTR = VM_ENCRYPTED_ATTR
def add_VM_ENCRYPTED_ATTR(self, value):
self.VM_ENCRYPTED_ATTR.append(value)
def insert_VM_ENCRYPTED_ATTR_at(self, index, value):
self.VM_ENCRYPTED_ATTR.insert(index, value)
def replace_VM_ENCRYPTED_ATTR_at(self, index, value):
self.VM_ENCRYPTED_ATTR[index] = value
def get_VM_MAD(self):
return self.VM_MAD
def set_VM_MAD(self, VM_MAD):
self.VM_MAD = VM_MAD
def add_VM_MAD(self, value):
self.VM_MAD.append(value)
def insert_VM_MAD_at(self, index, value):
self.VM_MAD.insert(index, value)
def replace_VM_MAD_at(self, index, value):
self.VM_MAD[index] = value
def get_VM_MANAGE_OPERATIONS(self):
return self.VM_MANAGE_OPERATIONS
def set_VM_MANAGE_OPERATIONS(self, VM_MANAGE_OPERATIONS):
self.VM_MANAGE_OPERATIONS = VM_MANAGE_OPERATIONS
def get_VM_MONITORING_EXPIRATION_TIME(self):
return self.VM_MONITORING_EXPIRATION_TIME
def set_VM_MONITORING_EXPIRATION_TIME(self, VM_MONITORING_EXPIRATION_TIME):
self.VM_MONITORING_EXPIRATION_TIME = VM_MONITORING_EXPIRATION_TIME
def add_VM_MONITORING_EXPIRATION_TIME(self, value):
self.VM_MONITORING_EXPIRATION_TIME.append(value)
def insert_VM_MONITORING_EXPIRATION_TIME_at(self, index, value):
self.VM_MONITORING_EXPIRATION_TIME.insert(index, value)
def replace_VM_MONITORING_EXPIRATION_TIME_at(self, index, value):
self.VM_MONITORING_EXPIRATION_TIME[index] = value
def get_VM_RESTRICTED_ATTR(self):
return self.VM_RESTRICTED_ATTR
def set_VM_RESTRICTED_ATTR(self, VM_RESTRICTED_ATTR):
self.VM_RESTRICTED_ATTR = VM_RESTRICTED_ATTR
def add_VM_RESTRICTED_ATTR(self, value):
self.VM_RESTRICTED_ATTR.append(value)
def insert_VM_RESTRICTED_ATTR_at(self, index, value):
self.VM_RESTRICTED_ATTR.insert(index, value)
def replace_VM_RESTRICTED_ATTR_at(self, index, value):
self.VM_RESTRICTED_ATTR[index] = value
def get_VM_SNAPSHOT_FACTOR(self):
return self.VM_SNAPSHOT_FACTOR
def set_VM_SNAPSHOT_FACTOR(self, VM_SNAPSHOT_FACTOR):
self.VM_SNAPSHOT_FACTOR = VM_SNAPSHOT_FACTOR
def get_VM_SUBMIT_ON_HOLD(self):
return self.VM_SUBMIT_ON_HOLD
def set_VM_SUBMIT_ON_HOLD(self, VM_SUBMIT_ON_HOLD):
self.VM_SUBMIT_ON_HOLD = VM_SUBMIT_ON_HOLD
def get_VM_USE_OPERATIONS(self):
return self.VM_USE_OPERATIONS
def set_VM_USE_OPERATIONS(self, VM_USE_OPERATIONS):
self.VM_USE_OPERATIONS = VM_USE_OPERATIONS
def add_VM_USE_OPERATIONS(self, value):
self.VM_USE_OPERATIONS.append(value)
def insert_VM_USE_OPERATIONS_at(self, index, value):
self.VM_USE_OPERATIONS.insert(index, value)
def replace_VM_USE_OPERATIONS_at(self, index, value):
self.VM_USE_OPERATIONS[index] = value
def get_VNC_PORTS(self):
return self.VNC_PORTS
def set_VNC_PORTS(self, VNC_PORTS):
self.VNC_PORTS = VNC_PORTS
def get_VNET_ENCRYPTED_ATTR(self):
return self.VNET_ENCRYPTED_ATTR
def set_VNET_ENCRYPTED_ATTR(self, VNET_ENCRYPTED_ATTR):
self.VNET_ENCRYPTED_ATTR = VNET_ENCRYPTED_ATTR
def add_VNET_ENCRYPTED_ATTR(self, value):
self.VNET_ENCRYPTED_ATTR.append(value)
def insert_VNET_ENCRYPTED_ATTR_at(self, index, value):
self.VNET_ENCRYPTED_ATTR.insert(index, value)
def replace_VNET_ENCRYPTED_ATTR_at(self, index, value):
self.VNET_ENCRYPTED_ATTR[index] = value
def get_VNET_RESTRICTED_ATTR(self):
return self.VNET_RESTRICTED_ATTR
def set_VNET_RESTRICTED_ATTR(self, VNET_RESTRICTED_ATTR):
self.VNET_RESTRICTED_ATTR = VNET_RESTRICTED_ATTR
def add_VNET_RESTRICTED_ATTR(self, value):
self.VNET_RESTRICTED_ATTR.append(value)
def insert_VNET_RESTRICTED_ATTR_at(self, index, value):
self.VNET_RESTRICTED_ATTR.insert(index, value)
def replace_VNET_RESTRICTED_ATTR_at(self, index, value):
self.VNET_RESTRICTED_ATTR[index] = value
def get_VN_MAD_CONF(self):
return self.VN_MAD_CONF
def set_VN_MAD_CONF(self, VN_MAD_CONF):
self.VN_MAD_CONF = VN_MAD_CONF
def add_VN_MAD_CONF(self, value):
self.VN_MAD_CONF.append(value)
def insert_VN_MAD_CONF_at(self, index, value):
self.VN_MAD_CONF.insert(index, value)
def replace_VN_MAD_CONF_at(self, index, value):
self.VN_MAD_CONF[index] = value
def get_VXLAN_IDS(self):
return self.VXLAN_IDS
def set_VXLAN_IDS(self, VXLAN_IDS):
self.VXLAN_IDS = VXLAN_IDS
def validate_ENABLE_OTHER_PERMISSIONSType(self, value):
result = True
# Validate type ENABLE_OTHER_PERMISSIONSType, a restriction on xs:string.
if value is not None and Validate_simpletypes_ and self.gds_collector_ is not None:
if not isinstance(value, str):
lineno = self.gds_get_node_lineno_()
self.gds_collector_.add_message('Value "%(value)s"%(lineno)s is not of the correct base simple type (str)' % {"value": value, "lineno": lineno, })
return False
if not self.gds_validate_simple_patterns(
self.validate_ENABLE_OTHER_PERMISSIONSType_patterns_, value):
self.gds_collector_.add_message('Value "%s" does not match xsd pattern restrictions: %s' % (encode_str_2_3(value), self.validate_ENABLE_OTHER_PERMISSIONSType_patterns_, ))
result = False
return result
validate_ENABLE_OTHER_PERMISSIONSType_patterns_ = [['^([yY][eE][sS])$', '^([nN][oO])$']]
def validate_VM_SUBMIT_ON_HOLDType(self, value):
result = True
# Validate type VM_SUBMIT_ON_HOLDType, a restriction on xs:string.
if value is not None and Validate_simpletypes_ and self.gds_collector_ is not None:
if not isinstance(value, str):
lineno = self.gds_get_node_lineno_()
self.gds_collector_.add_message('Value "%(value)s"%(lineno)s is not of the correct base simple type (str)' % {"value": value, "lineno": lineno, })
return False
if not self.gds_validate_simple_patterns(
self.validate_VM_SUBMIT_ON_HOLDType_patterns_, value):
self.gds_collector_.add_message('Value "%s" does not match xsd pattern restrictions: %s' % (encode_str_2_3(value), self.validate_VM_SUBMIT_ON_HOLDType_patterns_, ))
result = False
return result
validate_VM_SUBMIT_ON_HOLDType_patterns_ = [['^([yY][eE][sS])$', '^([nN][oO])$']]
def has__content(self):
if (
self.API_LIST_ORDER or
self.AUTH_MAD or
self.AUTH_MAD_CONF or
self.CLUSTER_ENCRYPTED_ATTR or
self.CONTEXT_RESTRICTED_DIRS is not None or
self.CONTEXT_SAFE_DIRS is not None or
self.DATASTORE_CAPACITY_CHECK or
self.DATASTORE_ENCRYPTED_ATTR or
self.DATASTORE_LOCATION or
self.DATASTORE_MAD or
self.DB is not None or
self.DEFAULT_AUTH or
self.DEFAULT_CDROM_DEVICE_PREFIX or
self.DEFAULT_COST or
self.DEFAULT_DEVICE_PREFIX or
self.DEFAULT_IMAGE_PERSISTENT or
self.DEFAULT_IMAGE_PERSISTENT_NEW or
self.DEFAULT_IMAGE_TYPE or
self.DEFAULT_UMASK or
self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL or
self.DEFAULT_VDC_CLUSTER_HOST_ACL or
self.DEFAULT_VDC_CLUSTER_NET_ACL or
self.DEFAULT_VDC_DATASTORE_ACL or
self.DEFAULT_VDC_HOST_ACL or
self.DEFAULT_VDC_VNET_ACL or
self.DOCUMENT_ENCRYPTED_ATTR or
self.DS_MAD_CONF or
self.DS_MONITOR_VM_DISK is not None or
self.ENABLE_OTHER_PERMISSIONS is not None or
self.FEDERATION is not None or
self.GROUP_RESTRICTED_ATTR or
self.HM_MAD is not None or
self.HOOK_LOG_CONF is not None or
self.HOST_ENCRYPTED_ATTR or
self.IMAGE_ENCRYPTED_ATTR or
self.IMAGE_RESTRICTED_ATTR or
self.IM_MAD or
self.INHERIT_DATASTORE_ATTR or
self.INHERIT_IMAGE_ATTR or
self.INHERIT_VNET_ATTR or
self.IPAM_MAD or
self.KEEPALIVE_MAX_CONN or
self.KEEPALIVE_TIMEOUT or
self.LISTEN_ADDRESS or
self.LOG or
self.LOG_CALL_FORMAT or
self.MAC_PREFIX or
self.MANAGER_TIMER or
self.MARKET_MAD or
self.MARKET_MAD_CONF or
self.MAX_BACKUPS is not None or
self.MAX_BACKUPS_HOST is not None or
self.MAX_CONN is not None or
self.MAX_CONN_BACKLOG is not None or
self.MESSAGE_SIZE is not None or
self.MONITORING_INTERVAL_DATASTORE is not None or
self.MONITORING_INTERVAL_HOST is not None or
self.MONITORING_INTERVAL_MARKET is not None or
self.MONITORING_INTERVAL_VM is not None or
self.NETWORK_SIZE is not None or
self.ONE_KEY or
self.PCI_PASSTHROUGH_BUS is not None or
self.PORT is not None or
self.RAFT is not None or
self.RPC_LOG is not None or
self.SCRIPTS_REMOTE_DIR is not None or
self.SESSION_EXPIRATION_TIME is not None or
self.SHOWBACK_ONLY_RUNNING is not None or
self.TIMEOUT is not None or
self.TM_MAD or
self.TM_MAD_CONF or
self.USER_ENCRYPTED_ATTR or
self.USER_RESTRICTED_ATTR or
self.VLAN_IDS is not None or
self.VM_ADMIN_OPERATIONS is not None or
self.VM_ENCRYPTED_ATTR or
self.VM_MAD or
self.VM_MANAGE_OPERATIONS is not None or
self.VM_MONITORING_EXPIRATION_TIME or
self.VM_RESTRICTED_ATTR or
self.VM_SNAPSHOT_FACTOR is not None or
self.VM_SUBMIT_ON_HOLD is not None or
self.VM_USE_OPERATIONS or
self.VNC_PORTS is not None or
self.VNET_ENCRYPTED_ATTR or
self.VNET_RESTRICTED_ATTR or
self.VN_MAD_CONF or
self.VXLAN_IDS is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='OPENNEBULA_CONFIGURATION', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('OPENNEBULA_CONFIGURATION')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'OPENNEBULA_CONFIGURATION':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='OPENNEBULA_CONFIGURATION')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='OPENNEBULA_CONFIGURATION', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='OPENNEBULA_CONFIGURATION'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='OPENNEBULA_CONFIGURATION', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for API_LIST_ORDER_ in self.API_LIST_ORDER:
namespaceprefix_ = self.API_LIST_ORDER_nsprefix_ + ':' if (UseCapturedNS_ and self.API_LIST_ORDER_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sAPI_LIST_ORDER>%s</%sAPI_LIST_ORDER>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(API_LIST_ORDER_), input_name='API_LIST_ORDER')), namespaceprefix_ , eol_))
for AUTH_MAD_ in self.AUTH_MAD:
namespaceprefix_ = self.AUTH_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.AUTH_MAD_nsprefix_) else ''
AUTH_MAD_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='AUTH_MAD', pretty_print=pretty_print)
for AUTH_MAD_CONF_ in self.AUTH_MAD_CONF:
namespaceprefix_ = self.AUTH_MAD_CONF_nsprefix_ + ':' if (UseCapturedNS_ and self.AUTH_MAD_CONF_nsprefix_) else ''
AUTH_MAD_CONF_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='AUTH_MAD_CONF', pretty_print=pretty_print)
for CLUSTER_ENCRYPTED_ATTR_ in self.CLUSTER_ENCRYPTED_ATTR:
namespaceprefix_ = self.CLUSTER_ENCRYPTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.CLUSTER_ENCRYPTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sCLUSTER_ENCRYPTED_ATTR>%s</%sCLUSTER_ENCRYPTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(CLUSTER_ENCRYPTED_ATTR_), input_name='CLUSTER_ENCRYPTED_ATTR')), namespaceprefix_ , eol_))
if self.CONTEXT_RESTRICTED_DIRS is not None:
namespaceprefix_ = self.CONTEXT_RESTRICTED_DIRS_nsprefix_ + ':' if (UseCapturedNS_ and self.CONTEXT_RESTRICTED_DIRS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sCONTEXT_RESTRICTED_DIRS>%s</%sCONTEXT_RESTRICTED_DIRS>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.CONTEXT_RESTRICTED_DIRS), input_name='CONTEXT_RESTRICTED_DIRS')), namespaceprefix_ , eol_))
if self.CONTEXT_SAFE_DIRS is not None:
namespaceprefix_ = self.CONTEXT_SAFE_DIRS_nsprefix_ + ':' if (UseCapturedNS_ and self.CONTEXT_SAFE_DIRS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sCONTEXT_SAFE_DIRS>%s</%sCONTEXT_SAFE_DIRS>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.CONTEXT_SAFE_DIRS), input_name='CONTEXT_SAFE_DIRS')), namespaceprefix_ , eol_))
for DATASTORE_CAPACITY_CHECK_ in self.DATASTORE_CAPACITY_CHECK:
namespaceprefix_ = self.DATASTORE_CAPACITY_CHECK_nsprefix_ + ':' if (UseCapturedNS_ and self.DATASTORE_CAPACITY_CHECK_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDATASTORE_CAPACITY_CHECK>%s</%sDATASTORE_CAPACITY_CHECK>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DATASTORE_CAPACITY_CHECK_), input_name='DATASTORE_CAPACITY_CHECK')), namespaceprefix_ , eol_))
for DATASTORE_ENCRYPTED_ATTR_ in self.DATASTORE_ENCRYPTED_ATTR:
namespaceprefix_ = self.DATASTORE_ENCRYPTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.DATASTORE_ENCRYPTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDATASTORE_ENCRYPTED_ATTR>%s</%sDATASTORE_ENCRYPTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DATASTORE_ENCRYPTED_ATTR_), input_name='DATASTORE_ENCRYPTED_ATTR')), namespaceprefix_ , eol_))
for DATASTORE_LOCATION_ in self.DATASTORE_LOCATION:
namespaceprefix_ = self.DATASTORE_LOCATION_nsprefix_ + ':' if (UseCapturedNS_ and self.DATASTORE_LOCATION_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDATASTORE_LOCATION>%s</%sDATASTORE_LOCATION>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DATASTORE_LOCATION_), input_name='DATASTORE_LOCATION')), namespaceprefix_ , eol_))
for DATASTORE_MAD_ in self.DATASTORE_MAD:
namespaceprefix_ = self.DATASTORE_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.DATASTORE_MAD_nsprefix_) else ''
DATASTORE_MAD_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DATASTORE_MAD', pretty_print=pretty_print)
if self.DB is not None:
namespaceprefix_ = self.DB_nsprefix_ + ':' if (UseCapturedNS_ and self.DB_nsprefix_) else ''
self.DB.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DB', pretty_print=pretty_print)
for DEFAULT_AUTH_ in self.DEFAULT_AUTH:
namespaceprefix_ = self.DEFAULT_AUTH_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_AUTH_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_AUTH>%s</%sDEFAULT_AUTH>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_AUTH_), input_name='DEFAULT_AUTH')), namespaceprefix_ , eol_))
for DEFAULT_CDROM_DEVICE_PREFIX_ in self.DEFAULT_CDROM_DEVICE_PREFIX:
namespaceprefix_ = self.DEFAULT_CDROM_DEVICE_PREFIX_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_CDROM_DEVICE_PREFIX_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_CDROM_DEVICE_PREFIX>%s</%sDEFAULT_CDROM_DEVICE_PREFIX>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_CDROM_DEVICE_PREFIX_), input_name='DEFAULT_CDROM_DEVICE_PREFIX')), namespaceprefix_ , eol_))
for DEFAULT_COST_ in self.DEFAULT_COST:
namespaceprefix_ = self.DEFAULT_COST_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_COST_nsprefix_) else ''
DEFAULT_COST_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DEFAULT_COST', pretty_print=pretty_print)
for DEFAULT_DEVICE_PREFIX_ in self.DEFAULT_DEVICE_PREFIX:
namespaceprefix_ = self.DEFAULT_DEVICE_PREFIX_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_DEVICE_PREFIX_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_DEVICE_PREFIX>%s</%sDEFAULT_DEVICE_PREFIX>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_DEVICE_PREFIX_), input_name='DEFAULT_DEVICE_PREFIX')), namespaceprefix_ , eol_))
for DEFAULT_IMAGE_PERSISTENT_ in self.DEFAULT_IMAGE_PERSISTENT:
namespaceprefix_ = self.DEFAULT_IMAGE_PERSISTENT_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_IMAGE_PERSISTENT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_IMAGE_PERSISTENT>%s</%sDEFAULT_IMAGE_PERSISTENT>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_IMAGE_PERSISTENT_), input_name='DEFAULT_IMAGE_PERSISTENT')), namespaceprefix_ , eol_))
for DEFAULT_IMAGE_PERSISTENT_NEW_ in self.DEFAULT_IMAGE_PERSISTENT_NEW:
namespaceprefix_ = self.DEFAULT_IMAGE_PERSISTENT_NEW_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_IMAGE_PERSISTENT_NEW_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_IMAGE_PERSISTENT_NEW>%s</%sDEFAULT_IMAGE_PERSISTENT_NEW>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_IMAGE_PERSISTENT_NEW_), input_name='DEFAULT_IMAGE_PERSISTENT_NEW')), namespaceprefix_ , eol_))
for DEFAULT_IMAGE_TYPE_ in self.DEFAULT_IMAGE_TYPE:
namespaceprefix_ = self.DEFAULT_IMAGE_TYPE_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_IMAGE_TYPE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_IMAGE_TYPE>%s</%sDEFAULT_IMAGE_TYPE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_IMAGE_TYPE_), input_name='DEFAULT_IMAGE_TYPE')), namespaceprefix_ , eol_))
for DEFAULT_UMASK_ in self.DEFAULT_UMASK:
namespaceprefix_ = self.DEFAULT_UMASK_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_UMASK_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_UMASK>%s</%sDEFAULT_UMASK>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_UMASK_), input_name='DEFAULT_UMASK')), namespaceprefix_ , eol_))
for DEFAULT_VDC_CLUSTER_DATASTORE_ACL_ in self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL:
namespaceprefix_ = self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_VDC_CLUSTER_DATASTORE_ACL>%s</%sDEFAULT_VDC_CLUSTER_DATASTORE_ACL>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_VDC_CLUSTER_DATASTORE_ACL_), input_name='DEFAULT_VDC_CLUSTER_DATASTORE_ACL')), namespaceprefix_ , eol_))
for DEFAULT_VDC_CLUSTER_HOST_ACL_ in self.DEFAULT_VDC_CLUSTER_HOST_ACL:
namespaceprefix_ = self.DEFAULT_VDC_CLUSTER_HOST_ACL_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_VDC_CLUSTER_HOST_ACL_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_VDC_CLUSTER_HOST_ACL>%s</%sDEFAULT_VDC_CLUSTER_HOST_ACL>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_VDC_CLUSTER_HOST_ACL_), input_name='DEFAULT_VDC_CLUSTER_HOST_ACL')), namespaceprefix_ , eol_))
for DEFAULT_VDC_CLUSTER_NET_ACL_ in self.DEFAULT_VDC_CLUSTER_NET_ACL:
namespaceprefix_ = self.DEFAULT_VDC_CLUSTER_NET_ACL_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_VDC_CLUSTER_NET_ACL_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_VDC_CLUSTER_NET_ACL>%s</%sDEFAULT_VDC_CLUSTER_NET_ACL>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_VDC_CLUSTER_NET_ACL_), input_name='DEFAULT_VDC_CLUSTER_NET_ACL')), namespaceprefix_ , eol_))
for DEFAULT_VDC_DATASTORE_ACL_ in self.DEFAULT_VDC_DATASTORE_ACL:
namespaceprefix_ = self.DEFAULT_VDC_DATASTORE_ACL_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_VDC_DATASTORE_ACL_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_VDC_DATASTORE_ACL>%s</%sDEFAULT_VDC_DATASTORE_ACL>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_VDC_DATASTORE_ACL_), input_name='DEFAULT_VDC_DATASTORE_ACL')), namespaceprefix_ , eol_))
for DEFAULT_VDC_HOST_ACL_ in self.DEFAULT_VDC_HOST_ACL:
namespaceprefix_ = self.DEFAULT_VDC_HOST_ACL_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_VDC_HOST_ACL_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_VDC_HOST_ACL>%s</%sDEFAULT_VDC_HOST_ACL>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_VDC_HOST_ACL_), input_name='DEFAULT_VDC_HOST_ACL')), namespaceprefix_ , eol_))
for DEFAULT_VDC_VNET_ACL_ in self.DEFAULT_VDC_VNET_ACL:
namespaceprefix_ = self.DEFAULT_VDC_VNET_ACL_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_VDC_VNET_ACL_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDEFAULT_VDC_VNET_ACL>%s</%sDEFAULT_VDC_VNET_ACL>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DEFAULT_VDC_VNET_ACL_), input_name='DEFAULT_VDC_VNET_ACL')), namespaceprefix_ , eol_))
for DOCUMENT_ENCRYPTED_ATTR_ in self.DOCUMENT_ENCRYPTED_ATTR:
namespaceprefix_ = self.DOCUMENT_ENCRYPTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.DOCUMENT_ENCRYPTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDOCUMENT_ENCRYPTED_ATTR>%s</%sDOCUMENT_ENCRYPTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(DOCUMENT_ENCRYPTED_ATTR_), input_name='DOCUMENT_ENCRYPTED_ATTR')), namespaceprefix_ , eol_))
for DS_MAD_CONF_ in self.DS_MAD_CONF:
namespaceprefix_ = self.DS_MAD_CONF_nsprefix_ + ':' if (UseCapturedNS_ and self.DS_MAD_CONF_nsprefix_) else ''
DS_MAD_CONF_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DS_MAD_CONF', pretty_print=pretty_print)
if self.DS_MONITOR_VM_DISK is not None:
namespaceprefix_ = self.DS_MONITOR_VM_DISK_nsprefix_ + ':' if (UseCapturedNS_ and self.DS_MONITOR_VM_DISK_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sDS_MONITOR_VM_DISK>%s</%sDS_MONITOR_VM_DISK>%s' % (namespaceprefix_ , self.gds_format_integer(self.DS_MONITOR_VM_DISK, input_name='DS_MONITOR_VM_DISK'), namespaceprefix_ , eol_))
if self.ENABLE_OTHER_PERMISSIONS is not None:
namespaceprefix_ = self.ENABLE_OTHER_PERMISSIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.ENABLE_OTHER_PERMISSIONS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sENABLE_OTHER_PERMISSIONS>%s</%sENABLE_OTHER_PERMISSIONS>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.ENABLE_OTHER_PERMISSIONS), input_name='ENABLE_OTHER_PERMISSIONS')), namespaceprefix_ , eol_))
if self.FEDERATION is not None:
namespaceprefix_ = self.FEDERATION_nsprefix_ + ':' if (UseCapturedNS_ and self.FEDERATION_nsprefix_) else ''
self.FEDERATION.export(outfile, level, namespaceprefix_, namespacedef_='', name_='FEDERATION', pretty_print=pretty_print)
for GROUP_RESTRICTED_ATTR_ in self.GROUP_RESTRICTED_ATTR:
namespaceprefix_ = self.GROUP_RESTRICTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.GROUP_RESTRICTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGROUP_RESTRICTED_ATTR>%s</%sGROUP_RESTRICTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(GROUP_RESTRICTED_ATTR_), input_name='GROUP_RESTRICTED_ATTR')), namespaceprefix_ , eol_))
if self.HM_MAD is not None:
namespaceprefix_ = self.HM_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.HM_MAD_nsprefix_) else ''
self.HM_MAD.export(outfile, level, namespaceprefix_, namespacedef_='', name_='HM_MAD', pretty_print=pretty_print)
if self.HOOK_LOG_CONF is not None:
namespaceprefix_ = self.HOOK_LOG_CONF_nsprefix_ + ':' if (UseCapturedNS_ and self.HOOK_LOG_CONF_nsprefix_) else ''
self.HOOK_LOG_CONF.export(outfile, level, namespaceprefix_, namespacedef_='', name_='HOOK_LOG_CONF', pretty_print=pretty_print)
for HOST_ENCRYPTED_ATTR_ in self.HOST_ENCRYPTED_ATTR:
namespaceprefix_ = self.HOST_ENCRYPTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.HOST_ENCRYPTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sHOST_ENCRYPTED_ATTR>%s</%sHOST_ENCRYPTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(HOST_ENCRYPTED_ATTR_), input_name='HOST_ENCRYPTED_ATTR')), namespaceprefix_ , eol_))
for IMAGE_ENCRYPTED_ATTR_ in self.IMAGE_ENCRYPTED_ATTR:
namespaceprefix_ = self.IMAGE_ENCRYPTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.IMAGE_ENCRYPTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sIMAGE_ENCRYPTED_ATTR>%s</%sIMAGE_ENCRYPTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(IMAGE_ENCRYPTED_ATTR_), input_name='IMAGE_ENCRYPTED_ATTR')), namespaceprefix_ , eol_))
for IMAGE_RESTRICTED_ATTR_ in self.IMAGE_RESTRICTED_ATTR:
namespaceprefix_ = self.IMAGE_RESTRICTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.IMAGE_RESTRICTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sIMAGE_RESTRICTED_ATTR>%s</%sIMAGE_RESTRICTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(IMAGE_RESTRICTED_ATTR_), input_name='IMAGE_RESTRICTED_ATTR')), namespaceprefix_ , eol_))
for IM_MAD_ in self.IM_MAD:
namespaceprefix_ = self.IM_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.IM_MAD_nsprefix_) else ''
IM_MAD_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='IM_MAD', pretty_print=pretty_print)
for INHERIT_DATASTORE_ATTR_ in self.INHERIT_DATASTORE_ATTR:
namespaceprefix_ = self.INHERIT_DATASTORE_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.INHERIT_DATASTORE_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sINHERIT_DATASTORE_ATTR>%s</%sINHERIT_DATASTORE_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(INHERIT_DATASTORE_ATTR_), input_name='INHERIT_DATASTORE_ATTR')), namespaceprefix_ , eol_))
for INHERIT_IMAGE_ATTR_ in self.INHERIT_IMAGE_ATTR:
namespaceprefix_ = self.INHERIT_IMAGE_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.INHERIT_IMAGE_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sINHERIT_IMAGE_ATTR>%s</%sINHERIT_IMAGE_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(INHERIT_IMAGE_ATTR_), input_name='INHERIT_IMAGE_ATTR')), namespaceprefix_ , eol_))
for INHERIT_VNET_ATTR_ in self.INHERIT_VNET_ATTR:
namespaceprefix_ = self.INHERIT_VNET_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.INHERIT_VNET_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sINHERIT_VNET_ATTR>%s</%sINHERIT_VNET_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(INHERIT_VNET_ATTR_), input_name='INHERIT_VNET_ATTR')), namespaceprefix_ , eol_))
for IPAM_MAD_ in self.IPAM_MAD:
namespaceprefix_ = self.IPAM_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.IPAM_MAD_nsprefix_) else ''
IPAM_MAD_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='IPAM_MAD', pretty_print=pretty_print)
for KEEPALIVE_MAX_CONN_ in self.KEEPALIVE_MAX_CONN:
namespaceprefix_ = self.KEEPALIVE_MAX_CONN_nsprefix_ + ':' if (UseCapturedNS_ and self.KEEPALIVE_MAX_CONN_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sKEEPALIVE_MAX_CONN>%s</%sKEEPALIVE_MAX_CONN>%s' % (namespaceprefix_ , self.gds_format_integer(KEEPALIVE_MAX_CONN_, input_name='KEEPALIVE_MAX_CONN'), namespaceprefix_ , eol_))
for KEEPALIVE_TIMEOUT_ in self.KEEPALIVE_TIMEOUT:
namespaceprefix_ = self.KEEPALIVE_TIMEOUT_nsprefix_ + ':' if (UseCapturedNS_ and self.KEEPALIVE_TIMEOUT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sKEEPALIVE_TIMEOUT>%s</%sKEEPALIVE_TIMEOUT>%s' % (namespaceprefix_ , self.gds_format_integer(KEEPALIVE_TIMEOUT_, input_name='KEEPALIVE_TIMEOUT'), namespaceprefix_ , eol_))
for LISTEN_ADDRESS_ in self.LISTEN_ADDRESS:
namespaceprefix_ = self.LISTEN_ADDRESS_nsprefix_ + ':' if (UseCapturedNS_ and self.LISTEN_ADDRESS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sLISTEN_ADDRESS>%s</%sLISTEN_ADDRESS>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(LISTEN_ADDRESS_), input_name='LISTEN_ADDRESS')), namespaceprefix_ , eol_))
for LOG_ in self.LOG:
namespaceprefix_ = self.LOG_nsprefix_ + ':' if (UseCapturedNS_ and self.LOG_nsprefix_) else ''
LOG_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='LOG', pretty_print=pretty_print)
for LOG_CALL_FORMAT_ in self.LOG_CALL_FORMAT:
namespaceprefix_ = self.LOG_CALL_FORMAT_nsprefix_ + ':' if (UseCapturedNS_ and self.LOG_CALL_FORMAT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sLOG_CALL_FORMAT>%s</%sLOG_CALL_FORMAT>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(LOG_CALL_FORMAT_), input_name='LOG_CALL_FORMAT')), namespaceprefix_ , eol_))
for MAC_PREFIX_ in self.MAC_PREFIX:
namespaceprefix_ = self.MAC_PREFIX_nsprefix_ + ':' if (UseCapturedNS_ and self.MAC_PREFIX_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMAC_PREFIX>%s</%sMAC_PREFIX>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(MAC_PREFIX_), input_name='MAC_PREFIX')), namespaceprefix_ , eol_))
for MANAGER_TIMER_ in self.MANAGER_TIMER:
namespaceprefix_ = self.MANAGER_TIMER_nsprefix_ + ':' if (UseCapturedNS_ and self.MANAGER_TIMER_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMANAGER_TIMER>%s</%sMANAGER_TIMER>%s' % (namespaceprefix_ , self.gds_format_integer(MANAGER_TIMER_, input_name='MANAGER_TIMER'), namespaceprefix_ , eol_))
for MARKET_MAD_ in self.MARKET_MAD:
namespaceprefix_ = self.MARKET_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.MARKET_MAD_nsprefix_) else ''
MARKET_MAD_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='MARKET_MAD', pretty_print=pretty_print)
for MARKET_MAD_CONF_ in self.MARKET_MAD_CONF:
namespaceprefix_ = self.MARKET_MAD_CONF_nsprefix_ + ':' if (UseCapturedNS_ and self.MARKET_MAD_CONF_nsprefix_) else ''
MARKET_MAD_CONF_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='MARKET_MAD_CONF', pretty_print=pretty_print)
if self.MAX_BACKUPS is not None:
namespaceprefix_ = self.MAX_BACKUPS_nsprefix_ + ':' if (UseCapturedNS_ and self.MAX_BACKUPS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMAX_BACKUPS>%s</%sMAX_BACKUPS>%s' % (namespaceprefix_ , self.gds_format_integer(self.MAX_BACKUPS, input_name='MAX_BACKUPS'), namespaceprefix_ , eol_))
if self.MAX_BACKUPS_HOST is not None:
namespaceprefix_ = self.MAX_BACKUPS_HOST_nsprefix_ + ':' if (UseCapturedNS_ and self.MAX_BACKUPS_HOST_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMAX_BACKUPS_HOST>%s</%sMAX_BACKUPS_HOST>%s' % (namespaceprefix_ , self.gds_format_integer(self.MAX_BACKUPS_HOST, input_name='MAX_BACKUPS_HOST'), namespaceprefix_ , eol_))
if self.MAX_CONN is not None:
namespaceprefix_ = self.MAX_CONN_nsprefix_ + ':' if (UseCapturedNS_ and self.MAX_CONN_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMAX_CONN>%s</%sMAX_CONN>%s' % (namespaceprefix_ , self.gds_format_integer(self.MAX_CONN, input_name='MAX_CONN'), namespaceprefix_ , eol_))
if self.MAX_CONN_BACKLOG is not None:
namespaceprefix_ = self.MAX_CONN_BACKLOG_nsprefix_ + ':' if (UseCapturedNS_ and self.MAX_CONN_BACKLOG_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMAX_CONN_BACKLOG>%s</%sMAX_CONN_BACKLOG>%s' % (namespaceprefix_ , self.gds_format_integer(self.MAX_CONN_BACKLOG, input_name='MAX_CONN_BACKLOG'), namespaceprefix_ , eol_))
if self.MESSAGE_SIZE is not None:
namespaceprefix_ = self.MESSAGE_SIZE_nsprefix_ + ':' if (UseCapturedNS_ and self.MESSAGE_SIZE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMESSAGE_SIZE>%s</%sMESSAGE_SIZE>%s' % (namespaceprefix_ , self.gds_format_integer(self.MESSAGE_SIZE, input_name='MESSAGE_SIZE'), namespaceprefix_ , eol_))
if self.MONITORING_INTERVAL_DATASTORE is not None:
namespaceprefix_ = self.MONITORING_INTERVAL_DATASTORE_nsprefix_ + ':' if (UseCapturedNS_ and self.MONITORING_INTERVAL_DATASTORE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMONITORING_INTERVAL_DATASTORE>%s</%sMONITORING_INTERVAL_DATASTORE>%s' % (namespaceprefix_ , self.gds_format_integer(self.MONITORING_INTERVAL_DATASTORE, input_name='MONITORING_INTERVAL_DATASTORE'), namespaceprefix_ , eol_))
if self.MONITORING_INTERVAL_HOST is not None:
namespaceprefix_ = self.MONITORING_INTERVAL_HOST_nsprefix_ + ':' if (UseCapturedNS_ and self.MONITORING_INTERVAL_HOST_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMONITORING_INTERVAL_HOST>%s</%sMONITORING_INTERVAL_HOST>%s' % (namespaceprefix_ , self.gds_format_integer(self.MONITORING_INTERVAL_HOST, input_name='MONITORING_INTERVAL_HOST'), namespaceprefix_ , eol_))
if self.MONITORING_INTERVAL_MARKET is not None:
namespaceprefix_ = self.MONITORING_INTERVAL_MARKET_nsprefix_ + ':' if (UseCapturedNS_ and self.MONITORING_INTERVAL_MARKET_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMONITORING_INTERVAL_MARKET>%s</%sMONITORING_INTERVAL_MARKET>%s' % (namespaceprefix_ , self.gds_format_integer(self.MONITORING_INTERVAL_MARKET, input_name='MONITORING_INTERVAL_MARKET'), namespaceprefix_ , eol_))
if self.MONITORING_INTERVAL_VM is not None:
namespaceprefix_ = self.MONITORING_INTERVAL_VM_nsprefix_ + ':' if (UseCapturedNS_ and self.MONITORING_INTERVAL_VM_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sMONITORING_INTERVAL_VM>%s</%sMONITORING_INTERVAL_VM>%s' % (namespaceprefix_ , self.gds_format_integer(self.MONITORING_INTERVAL_VM, input_name='MONITORING_INTERVAL_VM'), namespaceprefix_ , eol_))
if self.NETWORK_SIZE is not None:
namespaceprefix_ = self.NETWORK_SIZE_nsprefix_ + ':' if (UseCapturedNS_ and self.NETWORK_SIZE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNETWORK_SIZE>%s</%sNETWORK_SIZE>%s' % (namespaceprefix_ , self.gds_format_integer(self.NETWORK_SIZE, input_name='NETWORK_SIZE'), namespaceprefix_ , eol_))
for ONE_KEY_ in self.ONE_KEY:
namespaceprefix_ = self.ONE_KEY_nsprefix_ + ':' if (UseCapturedNS_ and self.ONE_KEY_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sONE_KEY>%s</%sONE_KEY>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(ONE_KEY_), input_name='ONE_KEY')), namespaceprefix_ , eol_))
if self.PCI_PASSTHROUGH_BUS is not None:
namespaceprefix_ = self.PCI_PASSTHROUGH_BUS_nsprefix_ + ':' if (UseCapturedNS_ and self.PCI_PASSTHROUGH_BUS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sPCI_PASSTHROUGH_BUS>%s</%sPCI_PASSTHROUGH_BUS>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.PCI_PASSTHROUGH_BUS), input_name='PCI_PASSTHROUGH_BUS')), namespaceprefix_ , eol_))
if self.PORT is not None:
namespaceprefix_ = self.PORT_nsprefix_ + ':' if (UseCapturedNS_ and self.PORT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sPORT>%s</%sPORT>%s' % (namespaceprefix_ , self.gds_format_integer(self.PORT, input_name='PORT'), namespaceprefix_ , eol_))
if self.RAFT is not None:
namespaceprefix_ = self.RAFT_nsprefix_ + ':' if (UseCapturedNS_ and self.RAFT_nsprefix_) else ''
self.RAFT.export(outfile, level, namespaceprefix_, namespacedef_='', name_='RAFT', pretty_print=pretty_print)
if self.RPC_LOG is not None:
namespaceprefix_ = self.RPC_LOG_nsprefix_ + ':' if (UseCapturedNS_ and self.RPC_LOG_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sRPC_LOG>%s</%sRPC_LOG>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.RPC_LOG), input_name='RPC_LOG')), namespaceprefix_ , eol_))
if self.SCRIPTS_REMOTE_DIR is not None:
namespaceprefix_ = self.SCRIPTS_REMOTE_DIR_nsprefix_ + ':' if (UseCapturedNS_ and self.SCRIPTS_REMOTE_DIR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSCRIPTS_REMOTE_DIR>%s</%sSCRIPTS_REMOTE_DIR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.SCRIPTS_REMOTE_DIR), input_name='SCRIPTS_REMOTE_DIR')), namespaceprefix_ , eol_))
if self.SESSION_EXPIRATION_TIME is not None:
namespaceprefix_ = self.SESSION_EXPIRATION_TIME_nsprefix_ + ':' if (UseCapturedNS_ and self.SESSION_EXPIRATION_TIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSESSION_EXPIRATION_TIME>%s</%sSESSION_EXPIRATION_TIME>%s' % (namespaceprefix_ , self.gds_format_integer(self.SESSION_EXPIRATION_TIME, input_name='SESSION_EXPIRATION_TIME'), namespaceprefix_ , eol_))
if self.SHOWBACK_ONLY_RUNNING is not None:
namespaceprefix_ = self.SHOWBACK_ONLY_RUNNING_nsprefix_ + ':' if (UseCapturedNS_ and self.SHOWBACK_ONLY_RUNNING_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSHOWBACK_ONLY_RUNNING>%s</%sSHOWBACK_ONLY_RUNNING>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.SHOWBACK_ONLY_RUNNING), input_name='SHOWBACK_ONLY_RUNNING')), namespaceprefix_ , eol_))
if self.TIMEOUT is not None:
namespaceprefix_ = self.TIMEOUT_nsprefix_ + ':' if (UseCapturedNS_ and self.TIMEOUT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTIMEOUT>%s</%sTIMEOUT>%s' % (namespaceprefix_ , self.gds_format_integer(self.TIMEOUT, input_name='TIMEOUT'), namespaceprefix_ , eol_))
for TM_MAD_ in self.TM_MAD:
namespaceprefix_ = self.TM_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.TM_MAD_nsprefix_) else ''
TM_MAD_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='TM_MAD', pretty_print=pretty_print)
for TM_MAD_CONF_ in self.TM_MAD_CONF:
namespaceprefix_ = self.TM_MAD_CONF_nsprefix_ + ':' if (UseCapturedNS_ and self.TM_MAD_CONF_nsprefix_) else ''
TM_MAD_CONF_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='TM_MAD_CONF', pretty_print=pretty_print)
for USER_ENCRYPTED_ATTR_ in self.USER_ENCRYPTED_ATTR:
namespaceprefix_ = self.USER_ENCRYPTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.USER_ENCRYPTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUSER_ENCRYPTED_ATTR>%s</%sUSER_ENCRYPTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(USER_ENCRYPTED_ATTR_), input_name='USER_ENCRYPTED_ATTR')), namespaceprefix_ , eol_))
for USER_RESTRICTED_ATTR_ in self.USER_RESTRICTED_ATTR:
namespaceprefix_ = self.USER_RESTRICTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.USER_RESTRICTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUSER_RESTRICTED_ATTR>%s</%sUSER_RESTRICTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(USER_RESTRICTED_ATTR_), input_name='USER_RESTRICTED_ATTR')), namespaceprefix_ , eol_))
if self.VLAN_IDS is not None:
namespaceprefix_ = self.VLAN_IDS_nsprefix_ + ':' if (UseCapturedNS_ and self.VLAN_IDS_nsprefix_) else ''
self.VLAN_IDS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='VLAN_IDS', pretty_print=pretty_print)
if self.VM_ADMIN_OPERATIONS is not None:
namespaceprefix_ = self.VM_ADMIN_OPERATIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_ADMIN_OPERATIONS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVM_ADMIN_OPERATIONS>%s</%sVM_ADMIN_OPERATIONS>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.VM_ADMIN_OPERATIONS), input_name='VM_ADMIN_OPERATIONS')), namespaceprefix_ , eol_))
for VM_ENCRYPTED_ATTR_ in self.VM_ENCRYPTED_ATTR:
namespaceprefix_ = self.VM_ENCRYPTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_ENCRYPTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVM_ENCRYPTED_ATTR>%s</%sVM_ENCRYPTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(VM_ENCRYPTED_ATTR_), input_name='VM_ENCRYPTED_ATTR')), namespaceprefix_ , eol_))
for VM_MAD_ in self.VM_MAD:
namespaceprefix_ = self.VM_MAD_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_MAD_nsprefix_) else ''
VM_MAD_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='VM_MAD', pretty_print=pretty_print)
if self.VM_MANAGE_OPERATIONS is not None:
namespaceprefix_ = self.VM_MANAGE_OPERATIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_MANAGE_OPERATIONS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVM_MANAGE_OPERATIONS>%s</%sVM_MANAGE_OPERATIONS>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.VM_MANAGE_OPERATIONS), input_name='VM_MANAGE_OPERATIONS')), namespaceprefix_ , eol_))
for VM_MONITORING_EXPIRATION_TIME_ in self.VM_MONITORING_EXPIRATION_TIME:
namespaceprefix_ = self.VM_MONITORING_EXPIRATION_TIME_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_MONITORING_EXPIRATION_TIME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVM_MONITORING_EXPIRATION_TIME>%s</%sVM_MONITORING_EXPIRATION_TIME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(VM_MONITORING_EXPIRATION_TIME_), input_name='VM_MONITORING_EXPIRATION_TIME')), namespaceprefix_ , eol_))
for VM_RESTRICTED_ATTR_ in self.VM_RESTRICTED_ATTR:
namespaceprefix_ = self.VM_RESTRICTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_RESTRICTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVM_RESTRICTED_ATTR>%s</%sVM_RESTRICTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(VM_RESTRICTED_ATTR_), input_name='VM_RESTRICTED_ATTR')), namespaceprefix_ , eol_))
if self.VM_SNAPSHOT_FACTOR is not None:
namespaceprefix_ = self.VM_SNAPSHOT_FACTOR_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_SNAPSHOT_FACTOR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVM_SNAPSHOT_FACTOR>%s</%sVM_SNAPSHOT_FACTOR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.VM_SNAPSHOT_FACTOR), input_name='VM_SNAPSHOT_FACTOR')), namespaceprefix_ , eol_))
if self.VM_SUBMIT_ON_HOLD is not None:
namespaceprefix_ = self.VM_SUBMIT_ON_HOLD_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_SUBMIT_ON_HOLD_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVM_SUBMIT_ON_HOLD>%s</%sVM_SUBMIT_ON_HOLD>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.VM_SUBMIT_ON_HOLD), input_name='VM_SUBMIT_ON_HOLD')), namespaceprefix_ , eol_))
for VM_USE_OPERATIONS_ in self.VM_USE_OPERATIONS:
namespaceprefix_ = self.VM_USE_OPERATIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_USE_OPERATIONS_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVM_USE_OPERATIONS>%s</%sVM_USE_OPERATIONS>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(VM_USE_OPERATIONS_), input_name='VM_USE_OPERATIONS')), namespaceprefix_ , eol_))
if self.VNC_PORTS is not None:
namespaceprefix_ = self.VNC_PORTS_nsprefix_ + ':' if (UseCapturedNS_ and self.VNC_PORTS_nsprefix_) else ''
self.VNC_PORTS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='VNC_PORTS', pretty_print=pretty_print)
for VNET_ENCRYPTED_ATTR_ in self.VNET_ENCRYPTED_ATTR:
namespaceprefix_ = self.VNET_ENCRYPTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.VNET_ENCRYPTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVNET_ENCRYPTED_ATTR>%s</%sVNET_ENCRYPTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(VNET_ENCRYPTED_ATTR_), input_name='VNET_ENCRYPTED_ATTR')), namespaceprefix_ , eol_))
for VNET_RESTRICTED_ATTR_ in self.VNET_RESTRICTED_ATTR:
namespaceprefix_ = self.VNET_RESTRICTED_ATTR_nsprefix_ + ':' if (UseCapturedNS_ and self.VNET_RESTRICTED_ATTR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVNET_RESTRICTED_ATTR>%s</%sVNET_RESTRICTED_ATTR>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(VNET_RESTRICTED_ATTR_), input_name='VNET_RESTRICTED_ATTR')), namespaceprefix_ , eol_))
for VN_MAD_CONF_ in self.VN_MAD_CONF:
namespaceprefix_ = self.VN_MAD_CONF_nsprefix_ + ':' if (UseCapturedNS_ and self.VN_MAD_CONF_nsprefix_) else ''
VN_MAD_CONF_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='VN_MAD_CONF', pretty_print=pretty_print)
if self.VXLAN_IDS is not None:
namespaceprefix_ = self.VXLAN_IDS_nsprefix_ + ':' if (UseCapturedNS_ and self.VXLAN_IDS_nsprefix_) else ''
self.VXLAN_IDS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='VXLAN_IDS', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'API_LIST_ORDER':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'API_LIST_ORDER')
value_ = self.gds_validate_string(value_, node, 'API_LIST_ORDER')
self.API_LIST_ORDER.append(value_)
self.API_LIST_ORDER_nsprefix_ = child_.prefix
elif nodeName_ == 'AUTH_MAD':
obj_ = AUTH_MADType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.AUTH_MAD.append(obj_)
obj_.original_tagname_ = 'AUTH_MAD'
elif nodeName_ == 'AUTH_MAD_CONF':
obj_ = AUTH_MAD_CONFType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.AUTH_MAD_CONF.append(obj_)
obj_.original_tagname_ = 'AUTH_MAD_CONF'
elif nodeName_ == 'CLUSTER_ENCRYPTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'CLUSTER_ENCRYPTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'CLUSTER_ENCRYPTED_ATTR')
self.CLUSTER_ENCRYPTED_ATTR.append(value_)
self.CLUSTER_ENCRYPTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'CONTEXT_RESTRICTED_DIRS':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'CONTEXT_RESTRICTED_DIRS')
value_ = self.gds_validate_string(value_, node, 'CONTEXT_RESTRICTED_DIRS')
self.CONTEXT_RESTRICTED_DIRS = value_
self.CONTEXT_RESTRICTED_DIRS_nsprefix_ = child_.prefix
elif nodeName_ == 'CONTEXT_SAFE_DIRS':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'CONTEXT_SAFE_DIRS')
value_ = self.gds_validate_string(value_, node, 'CONTEXT_SAFE_DIRS')
self.CONTEXT_SAFE_DIRS = value_
self.CONTEXT_SAFE_DIRS_nsprefix_ = child_.prefix
elif nodeName_ == 'DATASTORE_CAPACITY_CHECK':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DATASTORE_CAPACITY_CHECK')
value_ = self.gds_validate_string(value_, node, 'DATASTORE_CAPACITY_CHECK')
self.DATASTORE_CAPACITY_CHECK.append(value_)
self.DATASTORE_CAPACITY_CHECK_nsprefix_ = child_.prefix
elif nodeName_ == 'DATASTORE_ENCRYPTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DATASTORE_ENCRYPTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'DATASTORE_ENCRYPTED_ATTR')
self.DATASTORE_ENCRYPTED_ATTR.append(value_)
self.DATASTORE_ENCRYPTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'DATASTORE_LOCATION':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DATASTORE_LOCATION')
value_ = self.gds_validate_string(value_, node, 'DATASTORE_LOCATION')
self.DATASTORE_LOCATION.append(value_)
self.DATASTORE_LOCATION_nsprefix_ = child_.prefix
elif nodeName_ == 'DATASTORE_MAD':
obj_ = DATASTORE_MADType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DATASTORE_MAD.append(obj_)
obj_.original_tagname_ = 'DATASTORE_MAD'
elif nodeName_ == 'DB':
obj_ = DBType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DB = obj_
obj_.original_tagname_ = 'DB'
elif nodeName_ == 'DEFAULT_AUTH':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_AUTH')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_AUTH')
self.DEFAULT_AUTH.append(value_)
self.DEFAULT_AUTH_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_CDROM_DEVICE_PREFIX':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_CDROM_DEVICE_PREFIX')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_CDROM_DEVICE_PREFIX')
self.DEFAULT_CDROM_DEVICE_PREFIX.append(value_)
self.DEFAULT_CDROM_DEVICE_PREFIX_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_COST':
obj_ = DEFAULT_COSTType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DEFAULT_COST.append(obj_)
obj_.original_tagname_ = 'DEFAULT_COST'
elif nodeName_ == 'DEFAULT_DEVICE_PREFIX':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_DEVICE_PREFIX')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_DEVICE_PREFIX')
self.DEFAULT_DEVICE_PREFIX.append(value_)
self.DEFAULT_DEVICE_PREFIX_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_IMAGE_PERSISTENT':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_IMAGE_PERSISTENT')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_IMAGE_PERSISTENT')
self.DEFAULT_IMAGE_PERSISTENT.append(value_)
self.DEFAULT_IMAGE_PERSISTENT_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_IMAGE_PERSISTENT_NEW':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_IMAGE_PERSISTENT_NEW')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_IMAGE_PERSISTENT_NEW')
self.DEFAULT_IMAGE_PERSISTENT_NEW.append(value_)
self.DEFAULT_IMAGE_PERSISTENT_NEW_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_IMAGE_TYPE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_IMAGE_TYPE')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_IMAGE_TYPE')
self.DEFAULT_IMAGE_TYPE.append(value_)
self.DEFAULT_IMAGE_TYPE_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_UMASK':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_UMASK')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_UMASK')
self.DEFAULT_UMASK.append(value_)
self.DEFAULT_UMASK_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_VDC_CLUSTER_DATASTORE_ACL':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_VDC_CLUSTER_DATASTORE_ACL')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_VDC_CLUSTER_DATASTORE_ACL')
self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL.append(value_)
self.DEFAULT_VDC_CLUSTER_DATASTORE_ACL_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_VDC_CLUSTER_HOST_ACL':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_VDC_CLUSTER_HOST_ACL')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_VDC_CLUSTER_HOST_ACL')
self.DEFAULT_VDC_CLUSTER_HOST_ACL.append(value_)
self.DEFAULT_VDC_CLUSTER_HOST_ACL_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_VDC_CLUSTER_NET_ACL':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_VDC_CLUSTER_NET_ACL')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_VDC_CLUSTER_NET_ACL')
self.DEFAULT_VDC_CLUSTER_NET_ACL.append(value_)
self.DEFAULT_VDC_CLUSTER_NET_ACL_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_VDC_DATASTORE_ACL':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_VDC_DATASTORE_ACL')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_VDC_DATASTORE_ACL')
self.DEFAULT_VDC_DATASTORE_ACL.append(value_)
self.DEFAULT_VDC_DATASTORE_ACL_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_VDC_HOST_ACL':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_VDC_HOST_ACL')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_VDC_HOST_ACL')
self.DEFAULT_VDC_HOST_ACL.append(value_)
self.DEFAULT_VDC_HOST_ACL_nsprefix_ = child_.prefix
elif nodeName_ == 'DEFAULT_VDC_VNET_ACL':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DEFAULT_VDC_VNET_ACL')
value_ = self.gds_validate_string(value_, node, 'DEFAULT_VDC_VNET_ACL')
self.DEFAULT_VDC_VNET_ACL.append(value_)
self.DEFAULT_VDC_VNET_ACL_nsprefix_ = child_.prefix
elif nodeName_ == 'DOCUMENT_ENCRYPTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'DOCUMENT_ENCRYPTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'DOCUMENT_ENCRYPTED_ATTR')
self.DOCUMENT_ENCRYPTED_ATTR.append(value_)
self.DOCUMENT_ENCRYPTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'DS_MAD_CONF':
obj_ = DS_MAD_CONFType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DS_MAD_CONF.append(obj_)
obj_.original_tagname_ = 'DS_MAD_CONF'
elif nodeName_ == 'DS_MONITOR_VM_DISK' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'DS_MONITOR_VM_DISK')
ival_ = self.gds_validate_integer(ival_, node, 'DS_MONITOR_VM_DISK')
self.DS_MONITOR_VM_DISK = ival_
self.DS_MONITOR_VM_DISK_nsprefix_ = child_.prefix
elif nodeName_ == 'ENABLE_OTHER_PERMISSIONS':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'ENABLE_OTHER_PERMISSIONS')
value_ = self.gds_validate_string(value_, node, 'ENABLE_OTHER_PERMISSIONS')
self.ENABLE_OTHER_PERMISSIONS = value_
self.ENABLE_OTHER_PERMISSIONS_nsprefix_ = child_.prefix
# validate type ENABLE_OTHER_PERMISSIONSType
self.validate_ENABLE_OTHER_PERMISSIONSType(self.ENABLE_OTHER_PERMISSIONS)
elif nodeName_ == 'FEDERATION':
obj_ = FEDERATIONType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.FEDERATION = obj_
obj_.original_tagname_ = 'FEDERATION'
elif nodeName_ == 'GROUP_RESTRICTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'GROUP_RESTRICTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'GROUP_RESTRICTED_ATTR')
self.GROUP_RESTRICTED_ATTR.append(value_)
self.GROUP_RESTRICTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'HM_MAD':
obj_ = HM_MADType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.HM_MAD = obj_
obj_.original_tagname_ = 'HM_MAD'
elif nodeName_ == 'HOOK_LOG_CONF':
obj_ = HOOK_LOG_CONFType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.HOOK_LOG_CONF = obj_
obj_.original_tagname_ = 'HOOK_LOG_CONF'
elif nodeName_ == 'HOST_ENCRYPTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'HOST_ENCRYPTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'HOST_ENCRYPTED_ATTR')
self.HOST_ENCRYPTED_ATTR.append(value_)
self.HOST_ENCRYPTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'IMAGE_ENCRYPTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'IMAGE_ENCRYPTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'IMAGE_ENCRYPTED_ATTR')
self.IMAGE_ENCRYPTED_ATTR.append(value_)
self.IMAGE_ENCRYPTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'IMAGE_RESTRICTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'IMAGE_RESTRICTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'IMAGE_RESTRICTED_ATTR')
self.IMAGE_RESTRICTED_ATTR.append(value_)
self.IMAGE_RESTRICTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'IM_MAD':
obj_ = IM_MADType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.IM_MAD.append(obj_)
obj_.original_tagname_ = 'IM_MAD'
elif nodeName_ == 'INHERIT_DATASTORE_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'INHERIT_DATASTORE_ATTR')
value_ = self.gds_validate_string(value_, node, 'INHERIT_DATASTORE_ATTR')
self.INHERIT_DATASTORE_ATTR.append(value_)
self.INHERIT_DATASTORE_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'INHERIT_IMAGE_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'INHERIT_IMAGE_ATTR')
value_ = self.gds_validate_string(value_, node, 'INHERIT_IMAGE_ATTR')
self.INHERIT_IMAGE_ATTR.append(value_)
self.INHERIT_IMAGE_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'INHERIT_VNET_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'INHERIT_VNET_ATTR')
value_ = self.gds_validate_string(value_, node, 'INHERIT_VNET_ATTR')
self.INHERIT_VNET_ATTR.append(value_)
self.INHERIT_VNET_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'IPAM_MAD':
obj_ = IPAM_MADType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.IPAM_MAD.append(obj_)
obj_.original_tagname_ = 'IPAM_MAD'
elif nodeName_ == 'KEEPALIVE_MAX_CONN' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'KEEPALIVE_MAX_CONN')
ival_ = self.gds_validate_integer(ival_, node, 'KEEPALIVE_MAX_CONN')
self.KEEPALIVE_MAX_CONN.append(ival_)
self.KEEPALIVE_MAX_CONN_nsprefix_ = child_.prefix
elif nodeName_ == 'KEEPALIVE_TIMEOUT' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'KEEPALIVE_TIMEOUT')
ival_ = self.gds_validate_integer(ival_, node, 'KEEPALIVE_TIMEOUT')
self.KEEPALIVE_TIMEOUT.append(ival_)
self.KEEPALIVE_TIMEOUT_nsprefix_ = child_.prefix
elif nodeName_ == 'LISTEN_ADDRESS':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'LISTEN_ADDRESS')
value_ = self.gds_validate_string(value_, node, 'LISTEN_ADDRESS')
self.LISTEN_ADDRESS.append(value_)
self.LISTEN_ADDRESS_nsprefix_ = child_.prefix
elif nodeName_ == 'LOG':
obj_ = LOGType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.LOG.append(obj_)
obj_.original_tagname_ = 'LOG'
elif nodeName_ == 'LOG_CALL_FORMAT':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'LOG_CALL_FORMAT')
value_ = self.gds_validate_string(value_, node, 'LOG_CALL_FORMAT')
self.LOG_CALL_FORMAT.append(value_)
self.LOG_CALL_FORMAT_nsprefix_ = child_.prefix
elif nodeName_ == 'MAC_PREFIX':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'MAC_PREFIX')
value_ = self.gds_validate_string(value_, node, 'MAC_PREFIX')
self.MAC_PREFIX.append(value_)
self.MAC_PREFIX_nsprefix_ = child_.prefix
elif nodeName_ == 'MANAGER_TIMER' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'MANAGER_TIMER')
ival_ = self.gds_validate_integer(ival_, node, 'MANAGER_TIMER')
self.MANAGER_TIMER.append(ival_)
self.MANAGER_TIMER_nsprefix_ = child_.prefix
elif nodeName_ == 'MARKET_MAD':
obj_ = MARKET_MADType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.MARKET_MAD.append(obj_)
obj_.original_tagname_ = 'MARKET_MAD'
elif nodeName_ == 'MARKET_MAD_CONF':
obj_ = MARKET_MAD_CONFType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.MARKET_MAD_CONF.append(obj_)
obj_.original_tagname_ = 'MARKET_MAD_CONF'
elif nodeName_ == 'MAX_BACKUPS' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'MAX_BACKUPS')
ival_ = self.gds_validate_integer(ival_, node, 'MAX_BACKUPS')
self.MAX_BACKUPS = ival_
self.MAX_BACKUPS_nsprefix_ = child_.prefix
elif nodeName_ == 'MAX_BACKUPS_HOST' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'MAX_BACKUPS_HOST')
ival_ = self.gds_validate_integer(ival_, node, 'MAX_BACKUPS_HOST')
self.MAX_BACKUPS_HOST = ival_
self.MAX_BACKUPS_HOST_nsprefix_ = child_.prefix
elif nodeName_ == 'MAX_CONN' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'MAX_CONN')
ival_ = self.gds_validate_integer(ival_, node, 'MAX_CONN')
self.MAX_CONN = ival_
self.MAX_CONN_nsprefix_ = child_.prefix
elif nodeName_ == 'MAX_CONN_BACKLOG' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'MAX_CONN_BACKLOG')
ival_ = self.gds_validate_integer(ival_, node, 'MAX_CONN_BACKLOG')
self.MAX_CONN_BACKLOG = ival_
self.MAX_CONN_BACKLOG_nsprefix_ = child_.prefix
elif nodeName_ == 'MESSAGE_SIZE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'MESSAGE_SIZE')
ival_ = self.gds_validate_integer(ival_, node, 'MESSAGE_SIZE')
self.MESSAGE_SIZE = ival_
self.MESSAGE_SIZE_nsprefix_ = child_.prefix
elif nodeName_ == 'MONITORING_INTERVAL_DATASTORE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'MONITORING_INTERVAL_DATASTORE')
ival_ = self.gds_validate_integer(ival_, node, 'MONITORING_INTERVAL_DATASTORE')
self.MONITORING_INTERVAL_DATASTORE = ival_
self.MONITORING_INTERVAL_DATASTORE_nsprefix_ = child_.prefix
elif nodeName_ == 'MONITORING_INTERVAL_HOST' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'MONITORING_INTERVAL_HOST')
ival_ = self.gds_validate_integer(ival_, node, 'MONITORING_INTERVAL_HOST')
self.MONITORING_INTERVAL_HOST = ival_
self.MONITORING_INTERVAL_HOST_nsprefix_ = child_.prefix
elif nodeName_ == 'MONITORING_INTERVAL_MARKET' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'MONITORING_INTERVAL_MARKET')
ival_ = self.gds_validate_integer(ival_, node, 'MONITORING_INTERVAL_MARKET')
self.MONITORING_INTERVAL_MARKET = ival_
self.MONITORING_INTERVAL_MARKET_nsprefix_ = child_.prefix
elif nodeName_ == 'MONITORING_INTERVAL_VM' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'MONITORING_INTERVAL_VM')
ival_ = self.gds_validate_integer(ival_, node, 'MONITORING_INTERVAL_VM')
self.MONITORING_INTERVAL_VM = ival_
self.MONITORING_INTERVAL_VM_nsprefix_ = child_.prefix
elif nodeName_ == 'NETWORK_SIZE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'NETWORK_SIZE')
ival_ = self.gds_validate_integer(ival_, node, 'NETWORK_SIZE')
self.NETWORK_SIZE = ival_
self.NETWORK_SIZE_nsprefix_ = child_.prefix
elif nodeName_ == 'ONE_KEY':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'ONE_KEY')
value_ = self.gds_validate_string(value_, node, 'ONE_KEY')
self.ONE_KEY.append(value_)
self.ONE_KEY_nsprefix_ = child_.prefix
elif nodeName_ == 'PCI_PASSTHROUGH_BUS':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'PCI_PASSTHROUGH_BUS')
value_ = self.gds_validate_string(value_, node, 'PCI_PASSTHROUGH_BUS')
self.PCI_PASSTHROUGH_BUS = value_
self.PCI_PASSTHROUGH_BUS_nsprefix_ = child_.prefix
elif nodeName_ == 'PORT' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'PORT')
ival_ = self.gds_validate_integer(ival_, node, 'PORT')
self.PORT = ival_
self.PORT_nsprefix_ = child_.prefix
elif nodeName_ == 'RAFT':
obj_ = RAFTType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.RAFT = obj_
obj_.original_tagname_ = 'RAFT'
elif nodeName_ == 'RPC_LOG':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'RPC_LOG')
value_ = self.gds_validate_string(value_, node, 'RPC_LOG')
self.RPC_LOG = value_
self.RPC_LOG_nsprefix_ = child_.prefix
elif nodeName_ == 'SCRIPTS_REMOTE_DIR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'SCRIPTS_REMOTE_DIR')
value_ = self.gds_validate_string(value_, node, 'SCRIPTS_REMOTE_DIR')
self.SCRIPTS_REMOTE_DIR = value_
self.SCRIPTS_REMOTE_DIR_nsprefix_ = child_.prefix
elif nodeName_ == 'SESSION_EXPIRATION_TIME' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'SESSION_EXPIRATION_TIME')
ival_ = self.gds_validate_integer(ival_, node, 'SESSION_EXPIRATION_TIME')
self.SESSION_EXPIRATION_TIME = ival_
self.SESSION_EXPIRATION_TIME_nsprefix_ = child_.prefix
elif nodeName_ == 'SHOWBACK_ONLY_RUNNING':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'SHOWBACK_ONLY_RUNNING')
value_ = self.gds_validate_string(value_, node, 'SHOWBACK_ONLY_RUNNING')
self.SHOWBACK_ONLY_RUNNING = value_
self.SHOWBACK_ONLY_RUNNING_nsprefix_ = child_.prefix
elif nodeName_ == 'TIMEOUT' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'TIMEOUT')
ival_ = self.gds_validate_integer(ival_, node, 'TIMEOUT')
self.TIMEOUT = ival_
self.TIMEOUT_nsprefix_ = child_.prefix
elif nodeName_ == 'TM_MAD':
obj_ = TM_MADType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.TM_MAD.append(obj_)
obj_.original_tagname_ = 'TM_MAD'
elif nodeName_ == 'TM_MAD_CONF':
obj_ = TM_MAD_CONFType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.TM_MAD_CONF.append(obj_)
obj_.original_tagname_ = 'TM_MAD_CONF'
elif nodeName_ == 'USER_ENCRYPTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'USER_ENCRYPTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'USER_ENCRYPTED_ATTR')
self.USER_ENCRYPTED_ATTR.append(value_)
self.USER_ENCRYPTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'USER_RESTRICTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'USER_RESTRICTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'USER_RESTRICTED_ATTR')
self.USER_RESTRICTED_ATTR.append(value_)
self.USER_RESTRICTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'VLAN_IDS':
obj_ = VLAN_IDSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.VLAN_IDS = obj_
obj_.original_tagname_ = 'VLAN_IDS'
elif nodeName_ == 'VM_ADMIN_OPERATIONS':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VM_ADMIN_OPERATIONS')
value_ = self.gds_validate_string(value_, node, 'VM_ADMIN_OPERATIONS')
self.VM_ADMIN_OPERATIONS = value_
self.VM_ADMIN_OPERATIONS_nsprefix_ = child_.prefix
elif nodeName_ == 'VM_ENCRYPTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VM_ENCRYPTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'VM_ENCRYPTED_ATTR')
self.VM_ENCRYPTED_ATTR.append(value_)
self.VM_ENCRYPTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'VM_MAD':
obj_ = VM_MADType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.VM_MAD.append(obj_)
obj_.original_tagname_ = 'VM_MAD'
elif nodeName_ == 'VM_MANAGE_OPERATIONS':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VM_MANAGE_OPERATIONS')
value_ = self.gds_validate_string(value_, node, 'VM_MANAGE_OPERATIONS')
self.VM_MANAGE_OPERATIONS = value_
self.VM_MANAGE_OPERATIONS_nsprefix_ = child_.prefix
elif nodeName_ == 'VM_MONITORING_EXPIRATION_TIME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VM_MONITORING_EXPIRATION_TIME')
value_ = self.gds_validate_string(value_, node, 'VM_MONITORING_EXPIRATION_TIME')
self.VM_MONITORING_EXPIRATION_TIME.append(value_)
self.VM_MONITORING_EXPIRATION_TIME_nsprefix_ = child_.prefix
elif nodeName_ == 'VM_RESTRICTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VM_RESTRICTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'VM_RESTRICTED_ATTR')
self.VM_RESTRICTED_ATTR.append(value_)
self.VM_RESTRICTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'VM_SNAPSHOT_FACTOR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VM_SNAPSHOT_FACTOR')
value_ = self.gds_validate_string(value_, node, 'VM_SNAPSHOT_FACTOR')
self.VM_SNAPSHOT_FACTOR = value_
self.VM_SNAPSHOT_FACTOR_nsprefix_ = child_.prefix
elif nodeName_ == 'VM_SUBMIT_ON_HOLD':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VM_SUBMIT_ON_HOLD')
value_ = self.gds_validate_string(value_, node, 'VM_SUBMIT_ON_HOLD')
self.VM_SUBMIT_ON_HOLD = value_
self.VM_SUBMIT_ON_HOLD_nsprefix_ = child_.prefix
# validate type VM_SUBMIT_ON_HOLDType
self.validate_VM_SUBMIT_ON_HOLDType(self.VM_SUBMIT_ON_HOLD)
elif nodeName_ == 'VM_USE_OPERATIONS':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VM_USE_OPERATIONS')
value_ = self.gds_validate_string(value_, node, 'VM_USE_OPERATIONS')
self.VM_USE_OPERATIONS.append(value_)
self.VM_USE_OPERATIONS_nsprefix_ = child_.prefix
elif nodeName_ == 'VNC_PORTS':
obj_ = VNC_PORTSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.VNC_PORTS = obj_
obj_.original_tagname_ = 'VNC_PORTS'
elif nodeName_ == 'VNET_ENCRYPTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VNET_ENCRYPTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'VNET_ENCRYPTED_ATTR')
self.VNET_ENCRYPTED_ATTR.append(value_)
self.VNET_ENCRYPTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'VNET_RESTRICTED_ATTR':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'VNET_RESTRICTED_ATTR')
value_ = self.gds_validate_string(value_, node, 'VNET_RESTRICTED_ATTR')
self.VNET_RESTRICTED_ATTR.append(value_)
self.VNET_RESTRICTED_ATTR_nsprefix_ = child_.prefix
elif nodeName_ == 'VN_MAD_CONF':
obj_ = VN_MAD_CONFType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.VN_MAD_CONF.append(obj_)
obj_.original_tagname_ = 'VN_MAD_CONF'
elif nodeName_ == 'VXLAN_IDS':
obj_ = VXLAN_IDSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.VXLAN_IDS = obj_
obj_.original_tagname_ = 'VXLAN_IDS'
# end class OPENNEBULA_CONFIGURATION
class RAFT(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, SERVER_ID=None, STATE=None, TERM=None, VOTEDFOR=None, COMMIT=None, LOG_INDEX=None, LOG_TERM=None, FEDLOG_INDEX=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.SERVER_ID = SERVER_ID
self.SERVER_ID_nsprefix_ = None
self.STATE = STATE
self.STATE_nsprefix_ = None
self.TERM = TERM
self.TERM_nsprefix_ = None
self.VOTEDFOR = VOTEDFOR
self.VOTEDFOR_nsprefix_ = None
self.COMMIT = COMMIT
self.COMMIT_nsprefix_ = None
self.LOG_INDEX = LOG_INDEX
self.LOG_INDEX_nsprefix_ = None
self.LOG_TERM = LOG_TERM
self.LOG_TERM_nsprefix_ = None
self.FEDLOG_INDEX = FEDLOG_INDEX
self.FEDLOG_INDEX_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, RAFT)
if subclass is not None:
return subclass(*args_, **kwargs_)
if RAFT.subclass:
return RAFT.subclass(*args_, **kwargs_)
else:
return RAFT(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_SERVER_ID(self):
return self.SERVER_ID
def set_SERVER_ID(self, SERVER_ID):
self.SERVER_ID = SERVER_ID
def get_STATE(self):
return self.STATE
def set_STATE(self, STATE):
self.STATE = STATE
def get_TERM(self):
return self.TERM
def set_TERM(self, TERM):
self.TERM = TERM
def get_VOTEDFOR(self):
return self.VOTEDFOR
def set_VOTEDFOR(self, VOTEDFOR):
self.VOTEDFOR = VOTEDFOR
def get_COMMIT(self):
return self.COMMIT
def set_COMMIT(self, COMMIT):
self.COMMIT = COMMIT
def get_LOG_INDEX(self):
return self.LOG_INDEX
def set_LOG_INDEX(self, LOG_INDEX):
self.LOG_INDEX = LOG_INDEX
def get_LOG_TERM(self):
return self.LOG_TERM
def set_LOG_TERM(self, LOG_TERM):
self.LOG_TERM = LOG_TERM
def get_FEDLOG_INDEX(self):
return self.FEDLOG_INDEX
def set_FEDLOG_INDEX(self, FEDLOG_INDEX):
self.FEDLOG_INDEX = FEDLOG_INDEX
def has__content(self):
if (
self.SERVER_ID is not None or
self.STATE is not None or
self.TERM is not None or
self.VOTEDFOR is not None or
self.COMMIT is not None or
self.LOG_INDEX is not None or
self.LOG_TERM is not None or
self.FEDLOG_INDEX is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='RAFT', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('RAFT')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'RAFT':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='RAFT')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='RAFT', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='RAFT'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='RAFT', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.SERVER_ID is not None:
namespaceprefix_ = self.SERVER_ID_nsprefix_ + ':' if (UseCapturedNS_ and self.SERVER_ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSERVER_ID>%s</%sSERVER_ID>%s' % (namespaceprefix_ , self.gds_format_integer(self.SERVER_ID, input_name='SERVER_ID'), namespaceprefix_ , eol_))
if self.STATE is not None:
namespaceprefix_ = self.STATE_nsprefix_ + ':' if (UseCapturedNS_ and self.STATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sSTATE>%s</%sSTATE>%s' % (namespaceprefix_ , self.gds_format_integer(self.STATE, input_name='STATE'), namespaceprefix_ , eol_))
if self.TERM is not None:
namespaceprefix_ = self.TERM_nsprefix_ + ':' if (UseCapturedNS_ and self.TERM_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTERM>%s</%sTERM>%s' % (namespaceprefix_ , self.gds_format_integer(self.TERM, input_name='TERM'), namespaceprefix_ , eol_))
if self.VOTEDFOR is not None:
namespaceprefix_ = self.VOTEDFOR_nsprefix_ + ':' if (UseCapturedNS_ and self.VOTEDFOR_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sVOTEDFOR>%s</%sVOTEDFOR>%s' % (namespaceprefix_ , self.gds_format_integer(self.VOTEDFOR, input_name='VOTEDFOR'), namespaceprefix_ , eol_))
if self.COMMIT is not None:
namespaceprefix_ = self.COMMIT_nsprefix_ + ':' if (UseCapturedNS_ and self.COMMIT_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sCOMMIT>%s</%sCOMMIT>%s' % (namespaceprefix_ , self.gds_format_integer(self.COMMIT, input_name='COMMIT'), namespaceprefix_ , eol_))
if self.LOG_INDEX is not None:
namespaceprefix_ = self.LOG_INDEX_nsprefix_ + ':' if (UseCapturedNS_ and self.LOG_INDEX_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sLOG_INDEX>%s</%sLOG_INDEX>%s' % (namespaceprefix_ , self.gds_format_integer(self.LOG_INDEX, input_name='LOG_INDEX'), namespaceprefix_ , eol_))
if self.LOG_TERM is not None:
namespaceprefix_ = self.LOG_TERM_nsprefix_ + ':' if (UseCapturedNS_ and self.LOG_TERM_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sLOG_TERM>%s</%sLOG_TERM>%s' % (namespaceprefix_ , self.gds_format_integer(self.LOG_TERM, input_name='LOG_TERM'), namespaceprefix_ , eol_))
if self.FEDLOG_INDEX is not None:
namespaceprefix_ = self.FEDLOG_INDEX_nsprefix_ + ':' if (UseCapturedNS_ and self.FEDLOG_INDEX_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sFEDLOG_INDEX>%s</%sFEDLOG_INDEX>%s' % (namespaceprefix_ , self.gds_format_integer(self.FEDLOG_INDEX, input_name='FEDLOG_INDEX'), namespaceprefix_ , eol_))
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'SERVER_ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'SERVER_ID')
ival_ = self.gds_validate_integer(ival_, node, 'SERVER_ID')
self.SERVER_ID = ival_
self.SERVER_ID_nsprefix_ = child_.prefix
elif nodeName_ == 'STATE' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'STATE')
ival_ = self.gds_validate_integer(ival_, node, 'STATE')
self.STATE = ival_
self.STATE_nsprefix_ = child_.prefix
elif nodeName_ == 'TERM' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'TERM')
ival_ = self.gds_validate_integer(ival_, node, 'TERM')
self.TERM = ival_
self.TERM_nsprefix_ = child_.prefix
elif nodeName_ == 'VOTEDFOR' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'VOTEDFOR')
ival_ = self.gds_validate_integer(ival_, node, 'VOTEDFOR')
self.VOTEDFOR = ival_
self.VOTEDFOR_nsprefix_ = child_.prefix
elif nodeName_ == 'COMMIT' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'COMMIT')
ival_ = self.gds_validate_integer(ival_, node, 'COMMIT')
self.COMMIT = ival_
self.COMMIT_nsprefix_ = child_.prefix
elif nodeName_ == 'LOG_INDEX' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'LOG_INDEX')
ival_ = self.gds_validate_integer(ival_, node, 'LOG_INDEX')
self.LOG_INDEX = ival_
self.LOG_INDEX_nsprefix_ = child_.prefix
elif nodeName_ == 'LOG_TERM' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'LOG_TERM')
ival_ = self.gds_validate_integer(ival_, node, 'LOG_TERM')
self.LOG_TERM = ival_
self.LOG_TERM_nsprefix_ = child_.prefix
elif nodeName_ == 'FEDLOG_INDEX' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'FEDLOG_INDEX')
ival_ = self.gds_validate_integer(ival_, node, 'FEDLOG_INDEX')
self.FEDLOG_INDEX = ival_
self.FEDLOG_INDEX_nsprefix_ = child_.prefix
# end class RAFT
class SECURITY_GROUP_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, SECURITY_GROUP=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if SECURITY_GROUP is None:
self.SECURITY_GROUP = []
else:
self.SECURITY_GROUP = SECURITY_GROUP
self.SECURITY_GROUP_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, SECURITY_GROUP_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if SECURITY_GROUP_POOL.subclass:
return SECURITY_GROUP_POOL.subclass(*args_, **kwargs_)
else:
return SECURITY_GROUP_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_SECURITY_GROUP(self):
return self.SECURITY_GROUP
def set_SECURITY_GROUP(self, SECURITY_GROUP):
self.SECURITY_GROUP = SECURITY_GROUP
def add_SECURITY_GROUP(self, value):
self.SECURITY_GROUP.append(value)
def insert_SECURITY_GROUP_at(self, index, value):
self.SECURITY_GROUP.insert(index, value)
def replace_SECURITY_GROUP_at(self, index, value):
self.SECURITY_GROUP[index] = value
def has__content(self):
if (
self.SECURITY_GROUP
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='SECURITY_GROUP_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('SECURITY_GROUP_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'SECURITY_GROUP_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='SECURITY_GROUP_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='SECURITY_GROUP_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='SECURITY_GROUP_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='SECURITY_GROUP_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for SECURITY_GROUP_ in self.SECURITY_GROUP:
namespaceprefix_ = self.SECURITY_GROUP_nsprefix_ + ':' if (UseCapturedNS_ and self.SECURITY_GROUP_nsprefix_) else ''
SECURITY_GROUP_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='SECURITY_GROUP', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'SECURITY_GROUP':
obj_ = SECURITY_GROUP.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.SECURITY_GROUP.append(obj_)
obj_.original_tagname_ = 'SECURITY_GROUP'
# end class SECURITY_GROUP_POOL
class SECURITY_GROUP(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, UID=None, GID=None, UNAME=None, GNAME=None, NAME=None, PERMISSIONS=None, UPDATED_VMS=None, OUTDATED_VMS=None, UPDATING_VMS=None, ERROR_VMS=None, TEMPLATE=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.UID = UID
self.UID_nsprefix_ = None
self.GID = GID
self.GID_nsprefix_ = None
self.UNAME = UNAME
self.UNAME_nsprefix_ = None
self.GNAME = GNAME
self.GNAME_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.PERMISSIONS = PERMISSIONS
self.PERMISSIONS_nsprefix_ = None
self.UPDATED_VMS = UPDATED_VMS
self.UPDATED_VMS_nsprefix_ = None
self.OUTDATED_VMS = OUTDATED_VMS
self.OUTDATED_VMS_nsprefix_ = None
self.UPDATING_VMS = UPDATING_VMS
self.UPDATING_VMS_nsprefix_ = None
self.ERROR_VMS = ERROR_VMS
self.ERROR_VMS_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, SECURITY_GROUP)
if subclass is not None:
return subclass(*args_, **kwargs_)
if SECURITY_GROUP.subclass:
return SECURITY_GROUP.subclass(*args_, **kwargs_)
else:
return SECURITY_GROUP(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_UID(self):
return self.UID
def set_UID(self, UID):
self.UID = UID
def get_GID(self):
return self.GID
def set_GID(self, GID):
self.GID = GID
def get_UNAME(self):
return self.UNAME
def set_UNAME(self, UNAME):
self.UNAME = UNAME
def get_GNAME(self):
return self.GNAME
def set_GNAME(self, GNAME):
self.GNAME = GNAME
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_PERMISSIONS(self):
return self.PERMISSIONS
def set_PERMISSIONS(self, PERMISSIONS):
self.PERMISSIONS = PERMISSIONS
def get_UPDATED_VMS(self):
return self.UPDATED_VMS
def set_UPDATED_VMS(self, UPDATED_VMS):
self.UPDATED_VMS = UPDATED_VMS
def get_OUTDATED_VMS(self):
return self.OUTDATED_VMS
def set_OUTDATED_VMS(self, OUTDATED_VMS):
self.OUTDATED_VMS = OUTDATED_VMS
def get_UPDATING_VMS(self):
return self.UPDATING_VMS
def set_UPDATING_VMS(self, UPDATING_VMS):
self.UPDATING_VMS = UPDATING_VMS
def get_ERROR_VMS(self):
return self.ERROR_VMS
def set_ERROR_VMS(self, ERROR_VMS):
self.ERROR_VMS = ERROR_VMS
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def has__content(self):
if (
self.ID is not None or
self.UID is not None or
self.GID is not None or
self.UNAME is not None or
self.GNAME is not None or
self.NAME is not None or
self.PERMISSIONS is not None or
self.UPDATED_VMS is not None or
self.OUTDATED_VMS is not None or
self.UPDATING_VMS is not None or
self.ERROR_VMS is not None or
self.TEMPLATE is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='SECURITY_GROUP', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('SECURITY_GROUP')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'SECURITY_GROUP':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='SECURITY_GROUP')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='SECURITY_GROUP', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='SECURITY_GROUP'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='SECURITY_GROUP', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.UID is not None:
namespaceprefix_ = self.UID_nsprefix_ + ':' if (UseCapturedNS_ and self.UID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUID>%s</%sUID>%s' % (namespaceprefix_ , self.gds_format_integer(self.UID, input_name='UID'), namespaceprefix_ , eol_))
if self.GID is not None:
namespaceprefix_ = self.GID_nsprefix_ + ':' if (UseCapturedNS_ and self.GID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGID>%s</%sGID>%s' % (namespaceprefix_ , self.gds_format_integer(self.GID, input_name='GID'), namespaceprefix_ , eol_))
if self.UNAME is not None:
namespaceprefix_ = self.UNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.UNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sUNAME>%s</%sUNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.UNAME), input_name='UNAME')), namespaceprefix_ , eol_))
if self.GNAME is not None:
namespaceprefix_ = self.GNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.GNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGNAME>%s</%sGNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.GNAME), input_name='GNAME')), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.PERMISSIONS is not None:
namespaceprefix_ = self.PERMISSIONS_nsprefix_ + ':' if (UseCapturedNS_ and self.PERMISSIONS_nsprefix_) else ''
self.PERMISSIONS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='PERMISSIONS', pretty_print=pretty_print)
if self.UPDATED_VMS is not None:
namespaceprefix_ = self.UPDATED_VMS_nsprefix_ + ':' if (UseCapturedNS_ and self.UPDATED_VMS_nsprefix_) else ''
self.UPDATED_VMS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='UPDATED_VMS', pretty_print=pretty_print)
if self.OUTDATED_VMS is not None:
namespaceprefix_ = self.OUTDATED_VMS_nsprefix_ + ':' if (UseCapturedNS_ and self.OUTDATED_VMS_nsprefix_) else ''
self.OUTDATED_VMS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='OUTDATED_VMS', pretty_print=pretty_print)
if self.UPDATING_VMS is not None:
namespaceprefix_ = self.UPDATING_VMS_nsprefix_ + ':' if (UseCapturedNS_ and self.UPDATING_VMS_nsprefix_) else ''
self.UPDATING_VMS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='UPDATING_VMS', pretty_print=pretty_print)
if self.ERROR_VMS is not None:
namespaceprefix_ = self.ERROR_VMS_nsprefix_ + ':' if (UseCapturedNS_ and self.ERROR_VMS_nsprefix_) else ''
self.ERROR_VMS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='ERROR_VMS', pretty_print=pretty_print)
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
self.TEMPLATE.export(outfile, level, namespaceprefix_, namespacedef_='', name_='TEMPLATE', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'UID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'UID')
ival_ = self.gds_validate_integer(ival_, node, 'UID')
self.UID = ival_
self.UID_nsprefix_ = child_.prefix
elif nodeName_ == 'GID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GID')
ival_ = self.gds_validate_integer(ival_, node, 'GID')
self.GID = ival_
self.GID_nsprefix_ = child_.prefix
elif nodeName_ == 'UNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'UNAME')
value_ = self.gds_validate_string(value_, node, 'UNAME')
self.UNAME = value_
self.UNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'GNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'GNAME')
value_ = self.gds_validate_string(value_, node, 'GNAME')
self.GNAME = value_
self.GNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'PERMISSIONS':
obj_ = PERMISSIONSType46.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.PERMISSIONS = obj_
obj_.original_tagname_ = 'PERMISSIONS'
elif nodeName_ == 'UPDATED_VMS':
obj_ = UPDATED_VMSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.UPDATED_VMS = obj_
obj_.original_tagname_ = 'UPDATED_VMS'
elif nodeName_ == 'OUTDATED_VMS':
obj_ = OUTDATED_VMSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.OUTDATED_VMS = obj_
obj_.original_tagname_ = 'OUTDATED_VMS'
elif nodeName_ == 'UPDATING_VMS':
obj_ = UPDATING_VMSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.UPDATING_VMS = obj_
obj_.original_tagname_ = 'UPDATING_VMS'
elif nodeName_ == 'ERROR_VMS':
obj_ = ERROR_VMSType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.ERROR_VMS = obj_
obj_.original_tagname_ = 'ERROR_VMS'
elif nodeName_ == 'TEMPLATE':
obj_ = TEMPLATEType47.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.TEMPLATE = obj_
obj_.original_tagname_ = 'TEMPLATE'
# end class SECURITY_GROUP
class SHOWBACK_RECORDS(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, SHOWBACK=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if SHOWBACK is None:
self.SHOWBACK = []
else:
self.SHOWBACK = SHOWBACK
self.SHOWBACK_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, SHOWBACK_RECORDS)
if subclass is not None:
return subclass(*args_, **kwargs_)
if SHOWBACK_RECORDS.subclass:
return SHOWBACK_RECORDS.subclass(*args_, **kwargs_)
else:
return SHOWBACK_RECORDS(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_SHOWBACK(self):
return self.SHOWBACK
def set_SHOWBACK(self, SHOWBACK):
self.SHOWBACK = SHOWBACK
def add_SHOWBACK(self, value):
self.SHOWBACK.append(value)
def insert_SHOWBACK_at(self, index, value):
self.SHOWBACK.insert(index, value)
def replace_SHOWBACK_at(self, index, value):
self.SHOWBACK[index] = value
def has__content(self):
if (
self.SHOWBACK
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='SHOWBACK_RECORDS', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('SHOWBACK_RECORDS')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'SHOWBACK_RECORDS':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='SHOWBACK_RECORDS')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='SHOWBACK_RECORDS', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='SHOWBACK_RECORDS'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='SHOWBACK_RECORDS', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for SHOWBACK_ in self.SHOWBACK:
namespaceprefix_ = self.SHOWBACK_nsprefix_ + ':' if (UseCapturedNS_ and self.SHOWBACK_nsprefix_) else ''
SHOWBACK_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='SHOWBACK', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'SHOWBACK':
obj_ = SHOWBACKType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.SHOWBACK.append(obj_)
obj_.original_tagname_ = 'SHOWBACK'
# end class SHOWBACK_RECORDS
class USER_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, USER=None, QUOTAS=None, DEFAULT_USER_QUOTAS=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if USER is None:
self.USER = []
else:
self.USER = USER
self.USER_nsprefix_ = None
if QUOTAS is None:
self.QUOTAS = []
else:
self.QUOTAS = QUOTAS
self.QUOTAS_nsprefix_ = None
self.DEFAULT_USER_QUOTAS = DEFAULT_USER_QUOTAS
self.DEFAULT_USER_QUOTAS_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, USER_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if USER_POOL.subclass:
return USER_POOL.subclass(*args_, **kwargs_)
else:
return USER_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_USER(self):
return self.USER
def set_USER(self, USER):
self.USER = USER
def add_USER(self, value):
self.USER.append(value)
def insert_USER_at(self, index, value):
self.USER.insert(index, value)
def replace_USER_at(self, index, value):
self.USER[index] = value
def get_QUOTAS(self):
return self.QUOTAS
def set_QUOTAS(self, QUOTAS):
self.QUOTAS = QUOTAS
def add_QUOTAS(self, value):
self.QUOTAS.append(value)
def insert_QUOTAS_at(self, index, value):
self.QUOTAS.insert(index, value)
def replace_QUOTAS_at(self, index, value):
self.QUOTAS[index] = value
def get_DEFAULT_USER_QUOTAS(self):
return self.DEFAULT_USER_QUOTAS
def set_DEFAULT_USER_QUOTAS(self, DEFAULT_USER_QUOTAS):
self.DEFAULT_USER_QUOTAS = DEFAULT_USER_QUOTAS
def has__content(self):
if (
self.USER or
self.QUOTAS or
self.DEFAULT_USER_QUOTAS is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='USER_POOL', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('USER_POOL')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'USER_POOL':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='USER_POOL')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='USER_POOL', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='USER_POOL'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='USER_POOL', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
for USER_ in self.USER:
namespaceprefix_ = self.USER_nsprefix_ + ':' if (UseCapturedNS_ and self.USER_nsprefix_) else ''
USER_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='USER', pretty_print=pretty_print)
for QUOTAS_ in self.QUOTAS:
namespaceprefix_ = self.QUOTAS_nsprefix_ + ':' if (UseCapturedNS_ and self.QUOTAS_nsprefix_) else ''
QUOTAS_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='QUOTAS', pretty_print=pretty_print)
if self.DEFAULT_USER_QUOTAS is not None:
namespaceprefix_ = self.DEFAULT_USER_QUOTAS_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_USER_QUOTAS_nsprefix_) else ''
self.DEFAULT_USER_QUOTAS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DEFAULT_USER_QUOTAS', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'USER':
obj_ = USERType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.USER.append(obj_)
obj_.original_tagname_ = 'USER'
elif nodeName_ == 'QUOTAS':
obj_ = QUOTASType48.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.QUOTAS.append(obj_)
obj_.original_tagname_ = 'QUOTAS'
elif nodeName_ == 'DEFAULT_USER_QUOTAS':
obj_ = DEFAULT_USER_QUOTASType.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DEFAULT_USER_QUOTAS = obj_
obj_.original_tagname_ = 'DEFAULT_USER_QUOTAS'
# end class USER_POOL
class USER(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, ID=None, GID=None, GROUPS=None, GNAME=None, NAME=None, PASSWORD=None, AUTH_DRIVER=None, ENABLED=None, LOGIN_TOKEN=None, TEMPLATE=None, DATASTORE_QUOTA=None, NETWORK_QUOTA=None, VM_QUOTA=None, IMAGE_QUOTA=None, DEFAULT_USER_QUOTAS=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
self.ID = ID
self.ID_nsprefix_ = None
self.GID = GID
self.GID_nsprefix_ = None
self.GROUPS = GROUPS
self.GROUPS_nsprefix_ = None
self.GNAME = GNAME
self.GNAME_nsprefix_ = None
self.NAME = NAME
self.NAME_nsprefix_ = None
self.PASSWORD = PASSWORD
self.PASSWORD_nsprefix_ = None
self.AUTH_DRIVER = AUTH_DRIVER
self.AUTH_DRIVER_nsprefix_ = None
self.ENABLED = ENABLED
self.ENABLED_nsprefix_ = None
if LOGIN_TOKEN is None:
self.LOGIN_TOKEN = []
else:
self.LOGIN_TOKEN = LOGIN_TOKEN
self.LOGIN_TOKEN_nsprefix_ = None
self.TEMPLATE = TEMPLATE
self.TEMPLATE_nsprefix_ = None
self.DATASTORE_QUOTA = DATASTORE_QUOTA
self.DATASTORE_QUOTA_nsprefix_ = None
self.NETWORK_QUOTA = NETWORK_QUOTA
self.NETWORK_QUOTA_nsprefix_ = None
self.VM_QUOTA = VM_QUOTA
self.VM_QUOTA_nsprefix_ = None
self.IMAGE_QUOTA = IMAGE_QUOTA
self.IMAGE_QUOTA_nsprefix_ = None
self.DEFAULT_USER_QUOTAS = DEFAULT_USER_QUOTAS
self.DEFAULT_USER_QUOTAS_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, USER)
if subclass is not None:
return subclass(*args_, **kwargs_)
if USER.subclass:
return USER.subclass(*args_, **kwargs_)
else:
return USER(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_ID(self):
return self.ID
def set_ID(self, ID):
self.ID = ID
def get_GID(self):
return self.GID
def set_GID(self, GID):
self.GID = GID
def get_GROUPS(self):
return self.GROUPS
def set_GROUPS(self, GROUPS):
self.GROUPS = GROUPS
def get_GNAME(self):
return self.GNAME
def set_GNAME(self, GNAME):
self.GNAME = GNAME
def get_NAME(self):
return self.NAME
def set_NAME(self, NAME):
self.NAME = NAME
def get_PASSWORD(self):
return self.PASSWORD
def set_PASSWORD(self, PASSWORD):
self.PASSWORD = PASSWORD
def get_AUTH_DRIVER(self):
return self.AUTH_DRIVER
def set_AUTH_DRIVER(self, AUTH_DRIVER):
self.AUTH_DRIVER = AUTH_DRIVER
def get_ENABLED(self):
return self.ENABLED
def set_ENABLED(self, ENABLED):
self.ENABLED = ENABLED
def get_LOGIN_TOKEN(self):
return self.LOGIN_TOKEN
def set_LOGIN_TOKEN(self, LOGIN_TOKEN):
self.LOGIN_TOKEN = LOGIN_TOKEN
def add_LOGIN_TOKEN(self, value):
self.LOGIN_TOKEN.append(value)
def insert_LOGIN_TOKEN_at(self, index, value):
self.LOGIN_TOKEN.insert(index, value)
def replace_LOGIN_TOKEN_at(self, index, value):
self.LOGIN_TOKEN[index] = value
def get_TEMPLATE(self):
return self.TEMPLATE
def set_TEMPLATE(self, TEMPLATE):
self.TEMPLATE = TEMPLATE
def get_DATASTORE_QUOTA(self):
return self.DATASTORE_QUOTA
def set_DATASTORE_QUOTA(self, DATASTORE_QUOTA):
self.DATASTORE_QUOTA = DATASTORE_QUOTA
def get_NETWORK_QUOTA(self):
return self.NETWORK_QUOTA
def set_NETWORK_QUOTA(self, NETWORK_QUOTA):
self.NETWORK_QUOTA = NETWORK_QUOTA
def get_VM_QUOTA(self):
return self.VM_QUOTA
def set_VM_QUOTA(self, VM_QUOTA):
self.VM_QUOTA = VM_QUOTA
def get_IMAGE_QUOTA(self):
return self.IMAGE_QUOTA
def set_IMAGE_QUOTA(self, IMAGE_QUOTA):
self.IMAGE_QUOTA = IMAGE_QUOTA
def get_DEFAULT_USER_QUOTAS(self):
return self.DEFAULT_USER_QUOTAS
def set_DEFAULT_USER_QUOTAS(self, DEFAULT_USER_QUOTAS):
self.DEFAULT_USER_QUOTAS = DEFAULT_USER_QUOTAS
def has__content(self):
if (
self.ID is not None or
self.GID is not None or
self.GROUPS is not None or
self.GNAME is not None or
self.NAME is not None or
self.PASSWORD is not None or
self.AUTH_DRIVER is not None or
self.ENABLED is not None or
self.LOGIN_TOKEN or
self.TEMPLATE is not None or
self.DATASTORE_QUOTA is not None or
self.NETWORK_QUOTA is not None or
self.VM_QUOTA is not None or
self.IMAGE_QUOTA is not None or
self.DEFAULT_USER_QUOTAS is not None
):
return True
else:
return False
def export(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='USER', pretty_print=True):
imported_ns_def_ = GenerateDSNamespaceDefs_.get('USER')
if imported_ns_def_ is not None:
namespacedef_ = imported_ns_def_
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.original_tagname_ is not None and name_ == 'USER':
name_ = self.original_tagname_
if UseCapturedNS_ and self.ns_prefix_:
namespaceprefix_ = self.ns_prefix_ + ':'
showIndent(outfile, level, pretty_print)
outfile.write('<%s%s%s' % (namespaceprefix_, name_, namespacedef_ and ' ' + namespacedef_ or '', ))
already_processed = set()
self._exportAttributes(outfile, level, already_processed, namespaceprefix_, name_='USER')
if self.has__content():
outfile.write('>%s' % (eol_, ))
self._exportChildren(outfile, level + 1, namespaceprefix_, namespacedef_, name_='USER', pretty_print=pretty_print)
showIndent(outfile, level, pretty_print)
outfile.write('</%s%s>%s' % (namespaceprefix_, name_, eol_))
else:
outfile.write('/>%s' % (eol_, ))
def _exportAttributes(self, outfile, level, already_processed, namespaceprefix_='', name_='USER'):
pass
def _exportChildren(self, outfile, level, namespaceprefix_='', namespacedef_=' xmlns:None="http://opennebula.org/XMLSchema" ', name_='USER', fromsubclass_=False, pretty_print=True):
if pretty_print:
eol_ = '\n'
else:
eol_ = ''
if self.ID is not None:
namespaceprefix_ = self.ID_nsprefix_ + ':' if (UseCapturedNS_ and self.ID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sID>%s</%sID>%s' % (namespaceprefix_ , self.gds_format_integer(self.ID, input_name='ID'), namespaceprefix_ , eol_))
if self.GID is not None:
namespaceprefix_ = self.GID_nsprefix_ + ':' if (UseCapturedNS_ and self.GID_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGID>%s</%sGID>%s' % (namespaceprefix_ , self.gds_format_integer(self.GID, input_name='GID'), namespaceprefix_ , eol_))
if self.GROUPS is not None:
namespaceprefix_ = self.GROUPS_nsprefix_ + ':' if (UseCapturedNS_ and self.GROUPS_nsprefix_) else ''
self.GROUPS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='GROUPS', pretty_print=pretty_print)
if self.GNAME is not None:
namespaceprefix_ = self.GNAME_nsprefix_ + ':' if (UseCapturedNS_ and self.GNAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sGNAME>%s</%sGNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.GNAME), input_name='GNAME')), namespaceprefix_ , eol_))
if self.NAME is not None:
namespaceprefix_ = self.NAME_nsprefix_ + ':' if (UseCapturedNS_ and self.NAME_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sNAME>%s</%sNAME>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.NAME), input_name='NAME')), namespaceprefix_ , eol_))
if self.PASSWORD is not None:
namespaceprefix_ = self.PASSWORD_nsprefix_ + ':' if (UseCapturedNS_ and self.PASSWORD_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sPASSWORD>%s</%sPASSWORD>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.PASSWORD), input_name='PASSWORD')), namespaceprefix_ , eol_))
if self.AUTH_DRIVER is not None:
namespaceprefix_ = self.AUTH_DRIVER_nsprefix_ + ':' if (UseCapturedNS_ and self.AUTH_DRIVER_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sAUTH_DRIVER>%s</%sAUTH_DRIVER>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.AUTH_DRIVER), input_name='AUTH_DRIVER')), namespaceprefix_ , eol_))
if self.ENABLED is not None:
namespaceprefix_ = self.ENABLED_nsprefix_ + ':' if (UseCapturedNS_ and self.ENABLED_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sENABLED>%s</%sENABLED>%s' % (namespaceprefix_ , self.gds_format_integer(self.ENABLED, input_name='ENABLED'), namespaceprefix_ , eol_))
for LOGIN_TOKEN_ in self.LOGIN_TOKEN:
namespaceprefix_ = self.LOGIN_TOKEN_nsprefix_ + ':' if (UseCapturedNS_ and self.LOGIN_TOKEN_nsprefix_) else ''
LOGIN_TOKEN_.export(outfile, level, namespaceprefix_, namespacedef_='', name_='LOGIN_TOKEN', pretty_print=pretty_print)
if self.TEMPLATE is not None:
namespaceprefix_ = self.TEMPLATE_nsprefix_ + ':' if (UseCapturedNS_ and self.TEMPLATE_nsprefix_) else ''
showIndent(outfile, level, pretty_print)
outfile.write('<%sTEMPLATE>%s</%sTEMPLATE>%s' % (namespaceprefix_ , self.gds_encode(self.gds_format_string(quote_xml(self.TEMPLATE), input_name='TEMPLATE')), namespaceprefix_ , eol_))
if self.DATASTORE_QUOTA is not None:
namespaceprefix_ = self.DATASTORE_QUOTA_nsprefix_ + ':' if (UseCapturedNS_ and self.DATASTORE_QUOTA_nsprefix_) else ''
self.DATASTORE_QUOTA.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DATASTORE_QUOTA', pretty_print=pretty_print)
if self.NETWORK_QUOTA is not None:
namespaceprefix_ = self.NETWORK_QUOTA_nsprefix_ + ':' if (UseCapturedNS_ and self.NETWORK_QUOTA_nsprefix_) else ''
self.NETWORK_QUOTA.export(outfile, level, namespaceprefix_, namespacedef_='', name_='NETWORK_QUOTA', pretty_print=pretty_print)
if self.VM_QUOTA is not None:
namespaceprefix_ = self.VM_QUOTA_nsprefix_ + ':' if (UseCapturedNS_ and self.VM_QUOTA_nsprefix_) else ''
self.VM_QUOTA.export(outfile, level, namespaceprefix_, namespacedef_='', name_='VM_QUOTA', pretty_print=pretty_print)
if self.IMAGE_QUOTA is not None:
namespaceprefix_ = self.IMAGE_QUOTA_nsprefix_ + ':' if (UseCapturedNS_ and self.IMAGE_QUOTA_nsprefix_) else ''
self.IMAGE_QUOTA.export(outfile, level, namespaceprefix_, namespacedef_='', name_='IMAGE_QUOTA', pretty_print=pretty_print)
if self.DEFAULT_USER_QUOTAS is not None:
namespaceprefix_ = self.DEFAULT_USER_QUOTAS_nsprefix_ + ':' if (UseCapturedNS_ and self.DEFAULT_USER_QUOTAS_nsprefix_) else ''
self.DEFAULT_USER_QUOTAS.export(outfile, level, namespaceprefix_, namespacedef_='', name_='DEFAULT_USER_QUOTAS', pretty_print=pretty_print)
def build(self, node, gds_collector_=None):
self.gds_collector_ = gds_collector_
if SaveElementTreeNode:
self.gds_elementtree_node_ = node
already_processed = set()
self.ns_prefix_ = node.prefix
self._buildAttributes(node, node.attrib, already_processed)
for child in node:
nodeName_ = Tag_pattern_.match(child.tag).groups()[-1]
self._buildChildren(child, node, nodeName_, gds_collector_=gds_collector_)
return self
def _buildAttributes(self, node, attrs, already_processed):
pass
def _buildChildren(self, child_, node, nodeName_, fromsubclass_=False, gds_collector_=None):
if nodeName_ == 'ID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ID')
ival_ = self.gds_validate_integer(ival_, node, 'ID')
self.ID = ival_
self.ID_nsprefix_ = child_.prefix
elif nodeName_ == 'GID' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'GID')
ival_ = self.gds_validate_integer(ival_, node, 'GID')
self.GID = ival_
self.GID_nsprefix_ = child_.prefix
elif nodeName_ == 'GROUPS':
obj_ = GROUPSType65.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.GROUPS = obj_
obj_.original_tagname_ = 'GROUPS'
elif nodeName_ == 'GNAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'GNAME')
value_ = self.gds_validate_string(value_, node, 'GNAME')
self.GNAME = value_
self.GNAME_nsprefix_ = child_.prefix
elif nodeName_ == 'NAME':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'NAME')
value_ = self.gds_validate_string(value_, node, 'NAME')
self.NAME = value_
self.NAME_nsprefix_ = child_.prefix
elif nodeName_ == 'PASSWORD':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'PASSWORD')
value_ = self.gds_validate_string(value_, node, 'PASSWORD')
self.PASSWORD = value_
self.PASSWORD_nsprefix_ = child_.prefix
elif nodeName_ == 'AUTH_DRIVER':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'AUTH_DRIVER')
value_ = self.gds_validate_string(value_, node, 'AUTH_DRIVER')
self.AUTH_DRIVER = value_
self.AUTH_DRIVER_nsprefix_ = child_.prefix
elif nodeName_ == 'ENABLED' and child_.text:
sval_ = child_.text
ival_ = self.gds_parse_integer(sval_, node, 'ENABLED')
ival_ = self.gds_validate_integer(ival_, node, 'ENABLED')
self.ENABLED = ival_
self.ENABLED_nsprefix_ = child_.prefix
elif nodeName_ == 'LOGIN_TOKEN':
obj_ = LOGIN_TOKENType66.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.LOGIN_TOKEN.append(obj_)
obj_.original_tagname_ = 'LOGIN_TOKEN'
elif nodeName_ == 'TEMPLATE':
value_ = child_.text
value_ = self.gds_parse_string(value_, node, 'TEMPLATE')
value_ = self.gds_validate_string(value_, node, 'TEMPLATE')
self.TEMPLATE = value_
self.TEMPLATE_nsprefix_ = child_.prefix
elif nodeName_ == 'DATASTORE_QUOTA':
obj_ = DATASTORE_QUOTAType67.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DATASTORE_QUOTA = obj_
obj_.original_tagname_ = 'DATASTORE_QUOTA'
elif nodeName_ == 'NETWORK_QUOTA':
obj_ = NETWORK_QUOTAType69.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.NETWORK_QUOTA = obj_
obj_.original_tagname_ = 'NETWORK_QUOTA'
elif nodeName_ == 'VM_QUOTA':
obj_ = VM_QUOTAType71.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.VM_QUOTA = obj_
obj_.original_tagname_ = 'VM_QUOTA'
elif nodeName_ == 'IMAGE_QUOTA':
obj_ = IMAGE_QUOTAType73.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.IMAGE_QUOTA = obj_
obj_.original_tagname_ = 'IMAGE_QUOTA'
elif nodeName_ == 'DEFAULT_USER_QUOTAS':
obj_ = DEFAULT_USER_QUOTASType75.factory(parent_object_=self)
obj_.build(child_, gds_collector_=gds_collector_)
self.DEFAULT_USER_QUOTAS = obj_
obj_.original_tagname_ = 'DEFAULT_USER_QUOTAS'
# end class USER
class VDC_POOL(GeneratedsSuper):
__hash__ = GeneratedsSuper.__hash__
subclass = None
superclass = None
def __init__(self, VDC=None, gds_collector_=None, **kwargs_):
self.gds_collector_ = gds_collector_
self.gds_elementtree_node_ = None
self.original_tagname_ = None
self.parent_object_ = kwargs_.get('parent_object_')
self.ns_prefix_ = None
if VDC is None:
self.VDC = []
else:
self.VDC = VDC
self.VDC_nsprefix_ = None
def factory(*args_, **kwargs_):
if CurrentSubclassModule_ is not None:
subclass = getSubclassFromModule_(
CurrentSubclassModule_, VDC_POOL)
if subclass is not None:
return subclass(*args_, **kwargs_)
if VDC_POOL.subclass:
return VDC_POOL.subclass(*args_, **kwargs_)
else:
return VDC_POOL(*args_, **kwargs_)
factory = staticmethod(factory)
def get_ns_prefix_(self):
return self.ns_prefix_
def set_ns_prefix_(self, ns_prefix):
self.ns_prefix_ = ns_prefix
def get_VDC(self):
return self.VDC
def set_VDC(self, VDC):
self.VDC = VDC
def add_VDC(self, value):
self.VDC.append(value)
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