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morphcreator.py
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morphcreator.py
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# MB-Lab
# MB-Lab fork website : https://github.com/animate1978/MB-Lab
# ##### BEGIN GPL LICENSE BLOCK #####
#
# This program is free software; you can redistribute it and/or
# modify it under the terms of the GNU General Public License
# as published by the Free Software Foundation; either version 3
# of the License, or (at your option) any later version.
#
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with this program; if not, write to the Free Software Foundation,
# Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
#
# ##### END GPL LICENSE BLOCK #####
#
# ManuelbastioniLAB - Copyright (C) 2015-2018 Manuel Bastioni
# Teto for this part.
import logging
import json
import os
import bpy
import numpy
import mathutils
from . import algorithms
from . import file_ops
from . import creation_tools_ops
body_parts = [("AB", "Abdomen", ""),
("AR", "Armpit", ""),
("AM", "Arms", ""),
("BO", "Body", ""),
("CH", "Cheeks", ""),
("CE", "Chest", ""),
("CI", "Chin", ""),
("EA", "Ears", ""),
("EL", "Elbows", ""),
("EX", "Expressions", ""),
("EY", "Eyebrows", ""),
("EL", "Eyelids", ""),
("EE", "Eyes", ""),
("FA", "Face", ""),
("FT", "Fantasy", ""),
("FE", "Feet", ""),
("FO", "Forehead", ""),
("HA", "Hands", ""),
("HE", "Head", ""),
("JA", "Jaw", ""),
("LE", "Legs", ""),
("MO", "Mouth", ""),
("NE", "Neck", ""),
("NO", "Nose", ""),
("PE", "Pelvis", ""),
("SH", "Shoulders", ""),
("ST", "Stomach", ""),
("TO", "Torso", ""),
("WA", "Waist", ""),
("WR", "Wrists", "")]
spectrum = [("GE", "Gender", "For all males / females"),
("ET", "Ethnic group", "For a specific ethnic group")]
min_max = [("MI", "min", "0"), ("MA", "max", "1")]
morphs_names = ["", "", 0]
#0 = get_model_and_gender()
#1 = get_body_type()
#2 = the number for save files
vertices_lists = [[], []]
#0 base vertices.
#1 Sculpted vertices.
modifiers_for_combined = ["", [], []]
# variable for creating combined morphs
# 1st value is the name
# 2nd list of body parts
# 3rd list of corresponding min/max
# Below = Variables for copy/move/delete utilities.
current_cmd_morph_file = ""
gender_cmd_morphs_files = []
body_type_cmd_morphs_files = []
cmd_categories_in_file = []
cmd_morphs_in_category = []
# Below:
# Keys = Name of files.
# Values = dict of morphs files
# Keys = cmd_morphName (with category)
# Values = morphName (with category)
properties_for_cmd = {}
essential_morphs = sorted([
"Body_Size", "Torso_Length", "Chest_SizeX",
"Chest_SizeY", "Chest_Girth", "Neck_Size",
"Neck_Back", "Head_SizeX", "Head_SizeY",
"Head_SizeZ", "Neck_Length", "Shoulders_SizeX",
"Pelvis_Length", "Pelvis_SizeY", "Pelvis_SizeX",
"Pelvis_Girth", "Stomach_LocalFat", "Stomach_Volume",
"Legs_UpperlegLength", "Legs_LowerlegLength", "Legs_UpperlegSize",
"Legs_UpperThighGirth", "Legs_LowerThighGirth", "Legs_CalfGirth",
"Legs_AnkleSize", "Arms_UpperarmGirth", "Shoulders_Size",
"Arms_UpperarmLength", "Arms_ForearmLength", "Elbows_Size",
"Wrists_Size", "Feet_SizeX", "Feet_SizeY",
"Feet_SizeZ", "Hands_Length", "Hands_FingersInterDist",
"Feet_HeelWidth"])
logger = logging.getLogger(__name__)
# ------------------------------------------------------------------------
# All methods to help creating morph names
# ------------------------------------------------------------------------
def get_body_parts(key = None):
global body_parts
if key == None:
return body_parts
return algorithms.get_enum_property_item(key, body_parts)
def get_spectrum(key = None):
global spectrum
if key == None:
return spectrum
return algorithms.get_enum_property_item(key, spectrum)
def get_min_max(key = None):
global min_max
if key == None:
return min_max
return algorithms.get_enum_property_item(key, min_max)
# ------------------------------------------------------------------------
# All methods to help creating file names
# ------------------------------------------------------------------------
def init_morph_names_database():
global morphs_names
global modifiers_for_combined
global gender_cmd_morphs_files
global body_type_cmd_morphs_files
global properties_for_cmd
morphs_names[0] = ""
morphs_names[1] = ""
morphs_names[2] = 0
modifiers_for_combined[0] = ""
modifiers_for_combined[1].clear()
modifiers_for_combined[2].clear()
gender_cmd_morphs_files.clear()
body_type_cmd_morphs_files.clear()
properties_for_cmd.clear()
def get_model_and_gender():
if len(morphs_names[0]) == 0:
obj = bpy.context.view_layer.objects.active
# Dirty, but SOMETIMES for an unknown reason,
# algorithms.get_template_model(obj) returns None.
# Tried to reproduce the bug, without success.
try:
temp = algorithms.get_template_model(obj).split("_")
except:
return "Bug"
morphs_names[0] = temp[1] + "_" + temp[2] + "_morphs"
return morphs_names[0]
def get_body_type():
if len(morphs_names[1]) == 0:
morphs_names[1] = bpy.context.scene.mblab_character_name
return morphs_names[1]
def get_next_number():
morphs_names[2] += 1
return str(morphs_names[2]).zfill(3)
# ------------------------------------------------------------------------
# All methods/classes to help creating morphs
# ------------------------------------------------------------------------
#0 base vertices.
#1 Sculpted vertices.
def set_vertices_list(index, list):
global vertices_lists
vertices_lists[index] = list
def get_vertices_list(index):
global vertices_lists
return vertices_lists[index]
def create_vertices_list(raw_vertices):
if raw_vertices == []:
return []
bpy.ops.object.mode_set(mode='OBJECT')
#vertices to store in a convenient way.
vertices_count = len(raw_vertices)
stored_vertices = numpy.empty(vertices_count * 3)
raw_vertices.foreach_get('co', stored_vertices)
stored_vertices.shape = (vertices_count, 3)
stored_vertices = numpy.around(stored_vertices, decimals=5)
return stored_vertices
def create_vertices_list_from_list(vertices_list):
#useless, just for reminder...
array = numpy.array(vertices_list)
return array
def are_points_different(point_a, point_b):
#compare 2 lists ( under form [a, b, c, n...] )
#NO security...
for i in range(len(point_a)):
if point_a[i] != point_b[i]:
return True
return False
def insert_number_in_list(list, index=0, start=0):
#Insert a number from 'start' in each sub-list at index 'index'. No step here.
#in MB-Lab the index used is the physical index of the list (not sure)
#NO deep checks...
#And at the end, the method is useless, except, maybe, for debugging.
if len(list) == 0:
return []
list = list[:]
for item in list:
item[index:index] = [start]
start += 1
return list
def substract_vertices_lists(list_a, list_b):
#Substract content of list_b by list_a
list_a = numpy.around(list_a, decimals=4).tolist()
list_b = numpy.around(list_b, decimals=4).tolist()
length = len(list_a)
if length != len(list_b) or not are_points_different(list_a, list_b):
return []
return_list = [0]*3
for i in range(length):
return_list[i] = list_b[i] - list_a[i]
return numpy.around(return_list, decimals=4).tolist()
def substract_with_index(list_a, list_b):
length = len(list_a)
if length == 0 or length != len(list_b):
return []
return_list = []
for i in range(length):
substract = substract_vertices_lists(list_a[i], list_b[i])
if len(substract) > 0:
substract[0:0] = [i]
return_list.append(substract)
return return_list
def get_all_morph_files(data_path, data_type_path, body_type):
#Get all files in morphs directory, without standard ones.
#Used when the engine loads morphs librairies, here the user ones.
#Can be used for both types of files : gender and specific type.
dir = os.path.join(data_path, data_type_path)
found_files = []
body_type_split = body_type.split('_')[:2]
for item in os.listdir(dir):
if item != body_type and item.count("extra") < 1:
if item.split('_')[:2] == body_type_split:
found_files += [os.path.join(dir, item)]
return found_files
# ------------------------------------------------------------------------
# All methods/classes to help creating combined morphs
# ------------------------------------------------------------------------
def get_combined_morph_name():
global modifiers_for_combined
return modifiers_for_combined[0]
# Answer if the morph "name" is already part of a combined morph or not.
def is_modifier_combined_morph(humanoid, name="", category=""):
if name == "" or category == "":
return True # Just in case...
cat = humanoid.get_category(category)
modif = cat.get_modifier(name)
if modif == None:
return True
return False
# A special and dirty function to help and simplify __init__
def secure_modifier_name(enum_items, items):
check_name = algorithms.get_enum_property_item(enum_items, items)
try:
temp = check_name.split("_")[1]
except:
return "###_###"
return check_name
# Store the combined morph elements for
# updating the model and save the morph
def set_modifiers_for_combined_morphs(final_name="", morphs_name=[], minmax=[]):
global modifiers_for_combined
modifiers_for_combined[0] = final_name
modifiers_for_combined[1] = morphs_name
for i in range(len(minmax)):
if len(minmax[i]) > 0:
if minmax[i] == "min":
minmax[i] = 0
else:
minmax[i] = 1
else:
minmax[i] = 0.5
modifiers_for_combined[2] = minmax
def update_for_combined_morphs(humanoid):
global modifiers_for_combined
if len(modifiers_for_combined[0]) < 1 or humanoid == None:
return
obj = humanoid.get_object()
names = modifiers_for_combined[1]
minmax = modifiers_for_combined[2]
for i in range(len(names)):
for prop in humanoid.character_data:
if str(prop) == names[i]:
setattr(obj, prop, minmax[i])
humanoid.sync_character_data_to_obj_props()
humanoid.update_character()
# ------------------------------------------------------------------------
# All methods/classes to help creating phenotypes
# ------------------------------------------------------------------------
def is_phenotype_exists(body_type, name):
if len(body_type) < 1 or len(name) < 1:
return False
try:
path = os.path.join(file_ops.get_data_path(), "phenotypes", body_type+"_ptypes")
for database_file in os.listdir(path):
the_item, extension = os.path.splitext(database_file)
if the_item == name:
return True
except:
return False
return False
def save_phenotype(path, humanoid):
# Save all morphs as a new phenotype
# in its dedicated file.
# If file already exists, it's replaced.
logger.info("Exporting character to {0}".format(file_ops.simple_path(path)))
obj = humanoid.get_object()
char_data = {"structural": dict()}
if obj:
for prop in humanoid.character_data.keys():
if humanoid.character_data[prop] != 0.5 and not prop.startswith("Expressions_"):
char_data["structural"][prop] = round(humanoid.character_data[prop], 2)
with open(path, "w") as j_file:
json.dump(char_data, j_file, indent=2)
j_file.close()
# ------------------------------------------------------------------------
# All methods/classes to help creating presets
# ------------------------------------------------------------------------
def is_preset_exists(preset_folder, name):
if len(preset_folder) < 1 or len(name) < 1:
return False
try:
path = os.path.join(file_ops.get_data_path(), "presets", preset_folder)
for database_file in os.listdir(path):
the_item, extension = os.path.splitext(database_file)
if the_item == name:
return True
except:
return False
return False
def save_preset(filepath, humanoid, integrate_material=False):
logger.info("Exporting character to {0}".format(file_ops.simple_path(filepath)))
obj = humanoid.get_object()
char_data = {"manuellab_vers": humanoid.lab_vers, "structural": dict(), "metaproperties": dict(), "materialproperties": dict(), "materialproperties": dict()}
if obj:
# Structural
for prop in humanoid.character_data.keys():
if humanoid.character_data[prop] != 0.5 and not prop.startswith("Expressions_"):
char_data["structural"][prop] = round(humanoid.character_data[prop], 4)
# metaproperties
for meta_data_prop in humanoid.character_metaproperties.keys():
char_data["metaproperties"][meta_data_prop] = round(humanoid.character_metaproperties[meta_data_prop], 2)
# materiel properties
if integrate_material:
mat_param = humanoid.mat_engine.get_material_parameters()
for mat_prop in mat_param.keys():
char_data["materialproperties"][mat_prop] = round(mat_param[mat_prop], 4)
# File
with open(filepath, "w") as j_file:
json.dump(char_data, j_file, indent=2)
j_file.close()
# ------------------------------------------------------------------------
# All methods to move/copy/delete morphs
# ------------------------------------------------------------------------
def init_cmd_tools():
global current_cmd_morph_file
global gender_cmd_morphs_files
global body_type_cmd_morphs_files
global properties_for_cmd
current_cmd_morph_file = ""
gender_cmd_morphs_files.clear()
body_type_cmd_morphs_files.clear()
properties_for_cmd.clear()
# Create tuples for UI.
def get_gender_type_files(humanoid, type, with_new=False):
gender, body_type = get_all_compatible_files(humanoid)
return_list = []
if type == "Gender":
for file in gender:
return_list.append((file+".json", file, file))
if with_new:
return_list.append(("NEW", "New file", "Add a new file"))
return return_list
else:
for file in body_type:
return_list.append((file+".json", file, file))
if with_new:
return_list.append(("NEW", "New file", "Add a new file"))
return return_list
# return all compatible files
# return : gender, body_type
def get_all_compatible_files(humanoid):
# humanoid will be useful later,
# when for each humanoid you will have a dedicated
# data directory...
global gender_cmd_morphs_files
global body_type_cmd_morphs_files
global properties_for_cmd
if humanoid == None:
return gender_cmd_morphs_files, body_type_cmd_morphs_files
if len(gender_cmd_morphs_files) > 0 or len(body_type_cmd_morphs_files) > 0:
return gender_cmd_morphs_files, body_type_cmd_morphs_files
properties_for_cmd.clear()
path = os.path.join(file_ops.get_data_path(), "morphs")
list_dir = os.listdir(path)
split_name = []
for file in list_dir:
split_name = file.split("_")
try:
if split_name[0] == "m" or split_name[0] == "f" or split_name[0] == "u":
body_type_cmd_morphs_files.append(file.split(".")[0])
else:
gender_cmd_morphs_files.append(file.split(".")[0])
properties_for_cmd[file] = {}
except:
logger.info("File {0} not valid for morphs".format(file))
gender_cmd_morphs_files = sorted(gender_cmd_morphs_files)
body_type_cmd_morphs_files = sorted(body_type_cmd_morphs_files)
return gender_cmd_morphs_files, body_type_cmd_morphs_files
def get_cmd_properties(file):
global properties_for_cmd
if len(properties_for_cmd[file]) < 1:
content = get_morph_file_raw_content(file)
tmp = properties_for_cmd[file] # to clear the code...
key = ""
morph_name = ""
splitted = ""
for morph in content.keys():
splitted = morph.split("_")
morph_name = splitted[0] + "_" + splitted[1]
key = "cmd_" + morph_name # The key, used later for setattr
if not key in tmp:
tmp[key] = morph_name + "_"
return properties_for_cmd[file]
def get_all_cmd_attr_names(humanoid):
global properties_for_cmd
if len(properties_for_cmd) < 1:
get_all_compatible_files(humanoid)
complete_files = properties_for_cmd.keys()
return_properties = []
props = []
for file in complete_files:
props = get_cmd_properties(file)
for prop in props.keys():
if not prop in return_properties:
return_properties.append(prop)
return return_properties
# Get all keys, sorted, no doubles, of all categories for morphs in the file.
# User give the content of the file.
def get_morph_file_categories(file_name):
global cmd_categories_in_file
if len(cmd_categories_in_file) > 0:
return cmd_categories_in_file
categories = []
tmp = ""
prop_values = get_cmd_properties(file_name)
for morph in prop_values.values():
tmp = morph.split("_")[0]
if tmp not in categories:
categories.append(tmp)
cmd_categories_in_file.append((tmp, tmp, tmp))
cmd_categories_in_file = sorted(cmd_categories_in_file)
return cmd_categories_in_file
def get_morphs_in_category(file, category):
global properties_for_cmd
global cmd_morphs_in_category
if len(cmd_morphs_in_category) > 0:
return cmd_morphs_in_category
content = properties_for_cmd[file]
splitted = ""
for key, value in content.items():
splitted = value.split("_")[0]
if splitted == category and not key in cmd_morphs_in_category:
cmd_morphs_in_category.append(key)
cmd_morphs_in_category = sorted(cmd_morphs_in_category)
return cmd_morphs_in_category
# Trick to avoid the file to be loaded constantly.
# Must be used to open a file for copy/move/delete/rename.
def update_cmd_file(file_name):
global current_cmd_morph_file
global cmd_categories_in_file
global cmd_morphs_in_category
if file_name == None:
current_cmd_morph_file = ""
cmd_categories_in_file.clear()
cmd_morphs_in_category.clear()
return
if current_cmd_morph_file != file_name:
current_cmd_morph_file = file_name
cmd_categories_in_file.clear()
cmd_morphs_in_category.clear()
def update_cmd_morphs():
global cmd_morphs_in_category
cmd_morphs_in_category.clear()
# Should not be used directly outside this file.
def get_morph_file_raw_content(file_name):
path = os.path.join(file_ops.get_data_path(), "morphs", file_name)
return file_ops.load_json_data(path)
# Should not be used directly outside this file.
def save_morph_file_raw_content(file_name, data):
path = os.path.join(file_ops.get_data_path(), "morphs", file_name)
file_ops.save_json_data(path, data)
# return all cmd_morphs that are selected via GUI
# The returned values are under form "Category_morphName"
def get_selected_cmd_morphs(source_file, obj):
if len(properties_for_cmd[source_file]) < 1:
get_cmd_properties(source_file)
selected_morphs_list = []
for key, value in properties_for_cmd[source_file].items():
if hasattr(obj, key) and getattr(obj, key):
selected_morphs_list.append(value)
return sorted(selected_morphs_list)
# Reset all selected morphs
def reset_cmd_morphs(obj):
cmd_to_reset = []
for content in properties_for_cmd.values():
for key in content.keys():
if hasattr(obj, key) and getattr(obj, key) and not key in cmd_to_reset:
cmd_to_reset.append(key)
for reset in cmd_to_reset:
setattr(obj, reset, False)
# Return all morphs from a file that are selected in the GUI.
# A dict is returned with the morphs and their content.
def get_morphs_list(source_file, obj):
selected_morphs_list = get_selected_cmd_morphs(source_file, obj)
output_morphs_list = {}
if len(selected_morphs_list) < 1:
return output_morphs_list
content_file = get_morph_file_raw_content(source_file)
for key, value in content_file.items():
for morph_name in selected_morphs_list:
if key.startswith(morph_name):
output_morphs_list[key] = value
return output_morphs_list
# Do the copy/move/delete operations from input_file to output_file.
# copy = False and delete = False ==> rename, indexes must match for old->new name
def cmd_morphs_action(input_name, output_name=None, morphs_names=[], new_name="", copy=True, delete=False):
if morphs_names == None or len(morphs_names) < 1:
return
input_file = get_morph_file_raw_content(input_name)
if copy:
if output_name == None:
return
output_file = get_morph_file_raw_content(output_name)
if output_file == None:
output_file = {}
for morph in morphs_names:
output_file[morph] = input_file[morph]
save_morph_file_raw_content(output_name, output_file)
if delete:
for morph in morphs_names:
del input_file[morph]
save_morph_file_raw_content(input_name, input_file)
if not copy and not delete and len(new_name) > 0:
splitted = []
final_name = ""
for name in morphs_names:
splitted = name.split("_")
final_name = splitted[0] + "_" + new_name + "_" + splitted[2]
input_file[final_name] = input_file[name][:]
del input_file[name]
save_morph_file_raw_content(input_name, input_file)
def backup_morph_file(extra_name):
if len(current_cmd_morph_file) < 1:
return
path = os.path.join(file_ops.get_data_path(), "morphs", current_cmd_morph_file + "_" + extra_name + ".json")
content_for_cmd = get_morph_file_raw_content(current_cmd_morph_file)
file_ops.save_json_data(path, content_for_cmd)
# -------------------------------------------------------------
# All methods about bboxes, utilities and so on.
# -------------------------------------------------------------
# Returns all morphs where index is.
def get_all_morphs(index, file):
if len(file) == 0:
return []
#----------
index_int = 0
if isinstance(index, str):
index_int = int(index)
else:
index_int = index
#----------
return_list = []
for key, items in file.items():
for item in items:
if item[0] == index_int:
return_list.append(key)
#break
#----------
return return_list
# Give all indices used by a morph.
# As we have same indices in min/max/combined, 1 morph is good enough.
def extract_indices_from_a_morph(name, file):
if len(file) == 0:
return []
#----------
if not name in file:
return []
#----------
splitted = name.split("_")
cut = splitted[0] + "_" + splitted[1] + "_min"
for key in file.keys():
if key.startswith(cut):
return_list = []
for item in file[key]:
return_list.append(item[0])
return return_list
return []
# index = the index.
# morph = the content of a morph like [625, 0.0, -0.0003, 0.0], [626, ...
def is_index_in_morph(index, morph):
if len(morph) < 1:
return False
#----------
index_int = 0
if isinstance(index, str):
index_int = int(index)
else:
index_int = index
#----------
for content in morph:
if content[0] == index_int:
return True
return False
# Return all "Feet_Size" like and skip "_min" or "_max"
def clean_redundant_morphs(morphs_keys):
cleaned_list = []
splitted = []
cleaned = ""
for item in morphs_keys:
splitted = item.split("_")
cleaned = splitted[0] + "_" + splitted[1] + "_"
if not cleaned in cleaned_list:
cleaned_list.append(cleaned)
count = 0
for item in cleaned_list:
splitted = item.split("_")
splitted_comb = splitted[1].split("-")
comb_length = len(splitted_comb)
comb_end = ""
for i in range(comb_length):
if i == 0:
comb_end += "min"
else:
comb_end += "-min"
cleaned_list[count] = item + comb_end
count += 1
return cleaned_list
def get_true_number(boolean_list):
counter = 0
for bool in boolean_list:
if bool:
counter += 1
return counter
# Here we try to know all common morphs from a list.
# morphs_list = [] and "Shoulders_Length_max" kind of name
# min=0 means that an index must be in all items in morphs_list.
# 1 mean at least 1, but that does not make sense.
def common_indices(morphs_list, file):
nb = len(morphs_list)
indices_list = {}
item = []
# we seek all indices in morphs_list and add them in indices_list
# with a predefined set of False/True values for later.
common_list = []
for name in morphs_list:
indices = extract_indices_from_a_morph(name, file)
common_list = intersect_lists(common_list, indices)
return common_list
# Utility method.
def intersect_lists(list_a, list_b):
if len(list_a) < 1:
return list_b
if len(list_b) < 1:
return list_a
list_c = []
for index in list_a:
if index in list_b:
list_c.append(index)
return list_c
# the method returns 2 values, the vector, and its length.
def create_vector(x, y, z):
vector = mathutils.Vector(x, y, z)
return vector, vector.length
def create_vector_from_two_points(point_a, point_b):
vector = mathutils.Vector(
point_b.x - point_a.x,
point_b.y - point_a.y,
point_b.z - point_a.z)
return vector, vector.length
# ---------------------------------------------
# All methods about templates
# ---------------------------------------------
def create_template_file(filepath):
global essential_morphs
final_dict = {}
value = [[1, 0.0, 0.0, 0.0]]
for morph_name in essential_morphs:
min = morph_name + "_min"
max = morph_name + "_max"
final_dict[min] = value
final_dict[max] = value
file_ops.save_json_data(filepath, final_dict)
# Method that can be used when a config file is active
def get_needed_morphs_file_name(key):
if not creation_tools_ops.is_project_loaded():
return
addon_directory = os.path.dirname(os.path.realpath(__file__))
return os.path.join(
addon_directory,
creation_tools_ops.get_data_directory(),
"morphs", creation_tools_ops.get_content(key, "shared_morphs_file")+".txt")
# Method that can be used when a config file is active
def check_needed_morphs(key):
global essential_morphs
if not creation_tools_ops.is_project_loaded():
return
morphs_name = creation_tools_ops.get_content(key, "shared_morphs_file")
if morphs_name == '':
return # Just in case...
# we create the txt file content.
txt_content = []
txt_content.append(str("Header : Check needed morphs in file " + morphs_name))
# We open the morphs file and if it exists, we load it.
addon_directory = os.path.dirname(os.path.realpath(__file__))
filepath = os.path.join(
addon_directory,
creation_tools_ops.get_data_directory(),
"morphs", morphs_name)
morphs_file = file_ops.load_json_data(filepath, "")
if morphs_file == None:
txt_content.append(str("Morphs file : " + morphs_name + " doesn't exist"))
txt_content.append(str("Stop checking."))
else:
txt_content.append("---------------")
txt_content.append("Check morph file content :")
# Now we check "relations" key and check if any morphs are missing.
keys = list(morphs_file.keys())
perfect = True
for morph_name in essential_morphs:
min = morph_name + "_min"
max = morph_name + "_max"
if not min in keys:
txt_content.append(str("Essential morph not in file : " + min))
perfect = False
if not max in keys:
txt_content.append(str("Essential morph not in file : " + max))
perfect = False
if perfect:
txt_content.append("All essential morphs are in the file.")
# At the end we save the file.
final_name = get_needed_morphs_file_name(key)
with open(final_name, "w") as j_file:
json.dump(txt_content, j_file, indent=2)
j_file.close()