Fixed an issue in idmapper metaclass wrapper, it caused text fields to be occationally be written with objects.

This commit is contained in:
Griatch 2013-09-22 19:56:51 +02:00
parent bbba695380
commit 0a394929b7
7 changed files with 146 additions and 45 deletions

View file

@ -214,6 +214,7 @@ def format_script_list(scripts):
table.align = 'r' table.align = 'r'
for script in scripts: for script in scripts:
nextrep = script.time_until_next_repeat() nextrep = script.time_until_next_repeat()
print "@script:", script.key, type(script.key)
table.add_row([script.id, table.add_row([script.id,
script.obj.key if (hasattr(script, 'obj') and script.obj) else "<Global>", script.obj.key if (hasattr(script, 'obj') and script.obj) else "<Global>",
script.key, script.key,

View file

@ -33,9 +33,11 @@ _RE = re.compile(r"^\+|-+\+|\+-+|--*|\|", re.MULTILINE)
# Command testing # Command testing
# ------------------------------------------------------------ # ------------------------------------------------------------
def dummy_data_out(self, text=None, **kwargs): def dummy(self, *args, **kwargs):
pass pass
SESSIONS.data_out = dummy_data_out
SESSIONS.data_out = dummy
SESSIONS.disconnect = dummy
class TestObjectClass(Object): class TestObjectClass(Object):
def msg(self, text="", **kwargs): def msg(self, text="", **kwargs):
@ -46,6 +48,10 @@ class TestCharacterClass(Character):
"test message" "test message"
if self.player: if self.player:
self.player.msg(text=text, **kwargs) self.player.msg(text=text, **kwargs)
else:
if not self.ndb.stored_msg:
self.ndb.stored_msg = []
self.ndb.stored_msg.append(text)
class TestPlayerClass(Player): class TestPlayerClass(Player):
def msg(self, text="", **kwargs): def msg(self, text="", **kwargs):
"test message" "test message"
@ -116,7 +122,8 @@ class CommandTest(TestCase):
cmdobj.func() cmdobj.func()
cmdobj.at_post_cmd() cmdobj.at_post_cmd()
# clean out prettytable sugar # clean out prettytable sugar
returned_msg = "|".join(_RE.sub("", mess) for mess in self.char1.player.ndb.stored_msg) stored_msg = self.char1.player.ndb.stored_msg if self.char1.player else self.char1.ndb.stored_msg
returned_msg = "|".join(_RE.sub("", mess) for mess in stored_msg)
#returned_msg = "|".join(self.char1.player.ndb.stored_msg) #returned_msg = "|".join(self.char1.player.ndb.stored_msg)
returned_msg = ansi.parse_ansi(returned_msg, strip_ansi=noansi).strip() returned_msg = ansi.parse_ansi(returned_msg, strip_ansi=noansi).strip()
if msg != None: if msg != None:
@ -189,6 +196,8 @@ class TestPlayer(CommandTest):
CID = 5 CID = 5
def test_cmds(self): def test_cmds(self):
self.call(player.CmdOOCLook(), "", "Account TestPlayer5 (you are OutofCharacter)", caller=self.player) self.call(player.CmdOOCLook(), "", "Account TestPlayer5 (you are OutofCharacter)", caller=self.player)
self.call(player.CmdOOC(), "", "You are already", caller=self.player)
self.call(player.CmdIC(), "Char5","You become Char5.", caller=self.player)
self.call(player.CmdPassword(), "testpassword = testpassword", "Password changed.", caller=self.player) self.call(player.CmdPassword(), "testpassword = testpassword", "Password changed.", caller=self.player)
self.call(player.CmdEncoding(), "", "Default encoding:", caller=self.player) self.call(player.CmdEncoding(), "", "Default encoding:", caller=self.player)
self.call(player.CmdWho(), "", "Players:", caller=self.player) self.call(player.CmdWho(), "", "Players:", caller=self.player)
@ -197,8 +206,6 @@ class TestPlayer(CommandTest):
self.call(player.CmdColorTest(), "ansi", "ANSI colors:", caller=self.player) self.call(player.CmdColorTest(), "ansi", "ANSI colors:", caller=self.player)
self.call(player.CmdCharCreate(), "Test1=Test char","Created new character Test1. Use @ic Test1 to enter the game", caller=self.player) self.call(player.CmdCharCreate(), "Test1=Test char","Created new character Test1. Use @ic Test1 to enter the game", caller=self.player)
self.call(player.CmdQuell(), "", "Quelling Player permissions (immortals). Use @unquell to get them back.", caller=self.player) self.call(player.CmdQuell(), "", "Quelling Player permissions (immortals). Use @unquell to get them back.", caller=self.player)
self.call(player.CmdIC(), "Char5","Char5 is now acted from another", caller=self.player)
self.call(player.CmdOOC(), "", "You are already", caller=self.player)
from src.commands.default import building from src.commands.default import building
class TestBuilding(CommandTest): class TestBuilding(CommandTest):

View file

@ -523,8 +523,6 @@ class Channel(SharedMemoryModel):
logger.log_errmsg("Lock_Storage (on %s) cannot be deleted. Use obj.lock.delete() instead." % self) logger.log_errmsg("Lock_Storage (on %s) cannot be deleted. Use obj.lock.delete() instead." % self)
lock_storage = property(lock_storage_get, lock_storage_set, lock_storage_del) lock_storage = property(lock_storage_get, lock_storage_set, lock_storage_del)
db_model_name = "channel" # used by attributes to safely store objects
class Meta: class Meta:
"Define Django meta options" "Define Django meta options"
verbose_name = "Channel" verbose_name = "Channel"

View file

@ -108,6 +108,8 @@ def field_pre_save(sender, instance=None, update_fields=None, raw=False, **kwarg
# try to see if there is a handler on object that should be triggered when saving. # try to see if there is a handler on object that should be triggered when saving.
handlername = "_at_%s_save" % fieldname handlername = "_at_%s_save" % fieldname
handler = _GA(instance, handlername) if handlername in _GA(instance, '__dict__') else None handler = _GA(instance, handlername) if handlername in _GA(instance, '__dict__') else None
#if handlername == "_at_db_location_save":
# print "handler:", handlername, handler, _GA(sender, '__dict__').keys()
if callable(handler): if callable(handler):
#hid = hashid(instance, "-%s" % fieldname) #hid = hashid(instance, "-%s" % fieldname)
try: try:

View file

@ -175,8 +175,8 @@ class TypeClass(object):
dbobj.dbid, dbobj.dbid,
dbobj.typeclass_path,)) dbobj.typeclass_path,))
def __str__(self): # def __str__(self):
"represent the object" # "represent the object"
return self.key # return _GA(self, "key")
def __unicode__(self): # def __unicode__(self):
return u"%s" % self.key # return u"%s" % _GA(self, "key")

View file

@ -14,7 +14,7 @@ from twisted.internet.reactor import callFromThread
from django.core.exceptions import ObjectDoesNotExist, FieldError from django.core.exceptions import ObjectDoesNotExist, FieldError
from django.db.models.base import Model, ModelBase from django.db.models.base import Model, ModelBase
from django.db.models.signals import post_save, pre_delete, post_syncdb from django.db.models.signals import post_save, pre_delete, post_syncdb
from src.utils.utils import dbref, get_evennia_pids from src.utils.utils import dbref, get_evennia_pids, to_str
from manager import SharedMemoryManager from manager import SharedMemoryManager
@ -30,7 +30,6 @@ _DA = object.__delattr__
from src import PROC_MODIFIED_OBJS from src import PROC_MODIFIED_OBJS
# get info about the current process and thread # get info about the current process and thread
_SELF_PID = os.getpid() _SELF_PID = os.getpid()
_SERVER_PID, _PORTAL_PID = get_evennia_pids() _SERVER_PID, _PORTAL_PID = get_evennia_pids()
_IS_SUBPROCESS = (_SERVER_PID and _PORTAL_PID) and not _SELF_PID in (_SERVER_PID, _PORTAL_PID) _IS_SUBPROCESS = (_SERVER_PID and _PORTAL_PID) and not _SELF_PID in (_SERVER_PID, _PORTAL_PID)
@ -74,7 +73,7 @@ class SharedMemoryModelBase(ModelBase):
cls.__instance_cache__ = {} #WeakValueDictionary() cls.__instance_cache__ = {} #WeakValueDictionary()
super(SharedMemoryModelBase, cls)._prepare() super(SharedMemoryModelBase, cls)._prepare()
def __init__(cls, *args, **kwargs): def __new__(cls, classname, bases, classdict, *args, **kwargs):
""" """
Field shortcut creation: Field shortcut creation:
Takes field names db_* and creates property wrappers named without the db_ prefix. So db_key -> key Takes field names db_* and creates property wrappers named without the db_ prefix. So db_key -> key
@ -82,15 +81,15 @@ class SharedMemoryModelBase(ModelBase):
already has a wrapper of the given name, the automatic creation is skipped. Note: Remember to already has a wrapper of the given name, the automatic creation is skipped. Note: Remember to
document this auto-wrapping in the class header, this could seem very much like magic to the user otherwise. document this auto-wrapping in the class header, this could seem very much like magic to the user otherwise.
""" """
super(SharedMemoryModelBase, cls).__init__(*args, **kwargs) def create_wrapper(cls, fieldname, wrappername, editable=True, foreignkey=False):
def create_wrapper(cls, fieldname, wrappername, editable=True):
"Helper method to create property wrappers with unique names (must be in separate call)" "Helper method to create property wrappers with unique names (must be in separate call)"
def _get(cls, fname): def _get(cls, fname):
"Wrapper for getting database field" "Wrapper for getting database field"
value = _GA(cls, fieldname) value = _GA(cls, fieldname)
if type(value) in (basestring, int, float, bool): if isinstance(value, (basestring, int, float, bool)):
return value return value
elif hasattr(value, "typeclass"): elif hasattr(value, "typeclass"):
if fieldname == "db_key": print "idmapper _get typeclass:, ", cls.__class__.__name__, fieldname, _GA(value, "typeclass")
return _GA(value, "typeclass") return _GA(value, "typeclass")
return value return value
def _set_nonedit(cls, fname, value): def _set_nonedit(cls, fname, value):
@ -98,22 +97,32 @@ class SharedMemoryModelBase(ModelBase):
raise FieldError("Field %s cannot be edited." % fname) raise FieldError("Field %s cannot be edited." % fname)
def _set(cls, fname, value): def _set(cls, fname, value):
"Wrapper for setting database field" "Wrapper for setting database field"
#print "_set:", fname if fname=="db_key": print "db_key _set:", value, type(value)
if hasattr(value, "dbobj"): _SA(cls, fname, value)
# only use explicit update_fields in save if we actually have a
# primary key assigned already (won't be set when first creating object)
update_fields = [fname] if _GA(cls, "_get_pk_val")(_GA(cls, "_meta")) is not None else None
_GA(cls, "save")(update_fields=update_fields)
def _set_foreign(cls, fname, value):
"Setter only used on foreign key relations, allows setting with #dbref"
try:
value = _GA(value, "dbobj") value = _GA(value, "dbobj")
elif isinstance(value, basestring) and (value.isdigit() or value.startswith("#")): except AttributeError:
# we also allow setting using dbrefs, if so we try to load the matching object. pass
# (we assume the object is of the same type as the class holding the field, if if isinstance(value, (basestring, int)):
# not a custom handler must be used for that field) value = to_str(value, force_string=True)
dbid = dbref(value, reqhash=False) if (value.isdigit() or value.startswith("#")):
if dbid: # we also allow setting using dbrefs, if so we try to load the matching object.
try: # (we assume the object is of the same type as the class holding the field, if
value = cls._default_manager.get(id=dbid) # not a custom handler must be used for that field)
except ObjectDoesNotExist,e: dbid = dbref(value, reqhash=False)
# maybe it is just a name that happens to look like a dbid if dbid:
from src.utils.logger import log_trace model = _GA(cls, "_meta").get_field(fname).model
log_trace() try:
#print "_set wrapper:", fname, value, type(value), cls._get_pk_val(cls._meta) value = model._default_manager.get(id=dbid)
except ObjectDoesNotExist:
# maybe it is just a name that happens to look like a dbid
pass
_SA(cls, fname, value) _SA(cls, fname, value)
# only use explicit update_fields in save if we actually have a # only use explicit update_fields in save if we actually have a
# primary key assigned already (won't be set when first creating object) # primary key assigned already (won't be set when first creating object)
@ -128,24 +137,106 @@ class SharedMemoryModelBase(ModelBase):
update_fields = [fname] if _GA(cls, "_get_pk_val")(_GA(cls, "_meta")) is not None else None update_fields = [fname] if _GA(cls, "_get_pk_val")(_GA(cls, "_meta")) is not None else None
_GA(cls, "save")(update_fields=update_fields) _GA(cls, "save")(update_fields=update_fields)
# create class field wrappers # wrapper factories
fget = lambda cls: _get(cls, fieldname) fget = lambda cls: _get(cls, fieldname)
fset = lambda cls, val: _set(cls, fieldname, val) if editable else _set_nonedit(cls, fieldname, val) if not editable:
fset = lambda cls, val: _set_nonedit(cls, fieldname, val)
elif foreignkey:
fset = lambda cls, val: _set_foreign(cls, fieldname, val)
else:
fset = lambda cls, val: _set(cls, fieldname, val)
fdel = lambda cls: _del(cls, fieldname) if editable else _del_nonedit(cls,fieldname) fdel = lambda cls: _del(cls, fieldname) if editable else _del_nonedit(cls,fieldname)
type(cls).__setattr__(cls, wrappername, property(fget, fset, fdel))#, doc)) # assigning
classdict[wrappername] = property(fget, fset, fdel)
#type(cls).__setattr__(cls, wrappername, property(fget, fset, fdel))#, doc))
# exclude some models that should not auto-create wrapper fields # exclude some models that should not auto-create wrapper fields
if cls.__name__ in ("ServerConfig", "TypeNick"): if cls.__name__ in ("ServerConfig", "TypeNick"):
return return
# dynamically create the wrapper properties for all fields not already handled # dynamically create the wrapper properties for all fields not already handled (manytomanyfields are always handlers)
for field in cls._meta.fields: for fieldname, field in ((fname, field) for fname, field in classdict.items()
fieldname = field.name if fname.startswith("db_") and type(field).__name__ != "ManyToManyField"):
if fieldname.startswith("db_"): foreignkey = type(field).__name__ == "ForeignKey"
wrappername = "dbid" if fieldname == "id" else fieldname.replace("db_", "") #print fieldname, type(field).__name__, field
if not hasattr(cls, wrappername): wrappername = "dbid" if fieldname == "id" else fieldname.replace("db_", "", 1)
# makes sure not to overload manually created wrappers on the model if wrappername not in classdict:
#print "wrapping %s -> %s" % (fieldname, wrappername) # makes sure not to overload manually created wrappers on the model
create_wrapper(cls, fieldname, wrappername, editable=field.editable) #print "wrapping %s -> %s" % (fieldname, wrappername)
create_wrapper(cls, fieldname, wrappername, editable=field.editable, foreignkey=foreignkey)
return super(SharedMemoryModelBase, cls).__new__(cls, classname, bases, classdict, *args, **kwargs)
#def __init__(cls, *args, **kwargs):
# """
# Field shortcut creation:
# Takes field names db_* and creates property wrappers named without the db_ prefix. So db_key -> key
# This wrapper happens on the class level, so there is no overhead when creating objects. If a class
# already has a wrapper of the given name, the automatic creation is skipped. Note: Remember to
# document this auto-wrapping in the class header, this could seem very much like magic to the user otherwise.
# """
# super(SharedMemoryModelBase, cls).__init__(*args, **kwargs)
# def create_wrapper(cls, fieldname, wrappername, editable=True):
# "Helper method to create property wrappers with unique names (must be in separate call)"
# def _get(cls, fname):
# "Wrapper for getting database field"
# value = _GA(cls, fieldname)
# if type(value) in (basestring, int, float, bool):
# return value
# elif hasattr(value, "typeclass"):
# return _GA(value, "typeclass")
# return value
# def _set_nonedit(cls, fname, value):
# "Wrapper for blocking editing of field"
# raise FieldError("Field %s cannot be edited." % fname)
# def _set(cls, fname, value):
# "Wrapper for setting database field"
# #print "_set:", fname
# if hasattr(value, "dbobj"):
# value = _GA(value, "dbobj")
# elif isinstance(value, basestring) and (value.isdigit() or value.startswith("#")):
# # we also allow setting using dbrefs, if so we try to load the matching object.
# # (we assume the object is of the same type as the class holding the field, if
# # not a custom handler must be used for that field)
# dbid = dbref(value, reqhash=False)
# if dbid:
# try:
# value = cls._default_manager.get(id=dbid)
# except ObjectDoesNotExist:
# # maybe it is just a name that happens to look like a dbid
# from src.utils.logger import log_trace
# log_trace()
# #print "_set wrapper:", fname, value, type(value), cls._get_pk_val(cls._meta)
# _SA(cls, fname, value)
# # only use explicit update_fields in save if we actually have a
# # primary key assigned already (won't be set when first creating object)
# update_fields = [fname] if _GA(cls, "_get_pk_val")(_GA(cls, "_meta")) is not None else None
# _GA(cls, "save")(update_fields=update_fields)
# def _del_nonedit(cls, fname):
# "wrapper for not allowing deletion"
# raise FieldError("Field %s cannot be edited." % fname)
# def _del(cls, fname):
# "Wrapper for clearing database field - sets it to None"
# _SA(cls, fname, None)
# update_fields = [fname] if _GA(cls, "_get_pk_val")(_GA(cls, "_meta")) is not None else None
# _GA(cls, "save")(update_fields=update_fields)
# # create class field wrappers
# fget = lambda cls: _get(cls, fieldname)
# fset = lambda cls, val: _set(cls, fieldname, val) if editable else _set_nonedit(cls, fieldname, val)
# fdel = lambda cls: _del(cls, fieldname) if editable else _del_nonedit(cls,fieldname)
# type(cls).__setattr__(cls, wrappername, property(fget, fset, fdel))#, doc))
# # exclude some models that should not auto-create wrapper fields
# if cls.__name__ in ("ServerConfig", "TypeNick"):
# return
# # dynamically create the wrapper properties for all fields not already handled
# for field in cls._meta.fields:
# fieldname = field.name
# if fieldname.startswith("db_"):
# wrappername = "dbid" if fieldname == "id" else fieldname.replace("db_", "")
# if not hasattr(cls, wrappername):
# # makes sure not to overload manually created wrappers on the model
# #print "wrapping %s -> %s" % (fieldname, wrappername)
# create_wrapper(cls, fieldname, wrappername, editable=field.editable)
class SharedMemoryModel(Model): class SharedMemoryModel(Model):
# CL: setting abstract correctly to allow subclasses to inherit the default # CL: setting abstract correctly to allow subclasses to inherit the default

View file

@ -1008,6 +1008,8 @@ class PrettyTable(object):
if self.rowcount == 0 and (not options["print_empty"] or not options["border"]): if self.rowcount == 0 and (not options["print_empty"] or not options["border"]):
return "" return ""
#print "prettytable:", self._rows
# Get the rows we need to print, taking into account slicing, sorting, etc. # Get the rows we need to print, taking into account slicing, sorting, etc.
rows = self._get_rows(options) rows = self._get_rows(options)