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IfcOpenShell/src/ifcopenshell-python/ifcopenshell/api/sequence/recalculate_schedule.py
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import datetime
import networkx as nx
import ifcopenshell.api
import ifcopenshell.util.date
class Usecase:
def __init__(self, file, **settings):
self.file = file
self.settings = {"work_schedule": None}
for key, value in settings.items():
self.settings[key] = value
def execute(self):
# I learned everything about project dependency calcs from this YouTube playlist:
# https://www.youtube.com/playlist?list=PLLRADeJk4TCK-X5vJY8focpFkau1MR7do
self.build_network_graph()
self.pending_nodes = set(self.g.nodes)
while self.pending_nodes:
remaining_nodes = set()
for pending_node in self.pending_nodes:
if not self.forward_pass(pending_node):
remaining_nodes.add(pending_node)
self.pending_nodes = remaining_nodes
self.pending_nodes = set(self.g.nodes)
while self.pending_nodes:
remaining_nodes = set()
for pending_node in self.pending_nodes:
if not self.backward_pass(pending_node):
remaining_nodes.add(pending_node)
self.pending_nodes = remaining_nodes
self.update_task_times()
# TODO: normalise durations to elapsed times. Leave this debug print until we finish this TODO.
for n in self.g.nodes:
if n == 'start' or n == 'finish':
print(n, self.g.nodes[n])
else:
print(self.file.by_id(n), self.g.nodes[n])
def build_network_graph(self):
self.sequence_type_map = {
None: "FS",
"START_START": "SS",
"START_FINISH": "SF",
"FINISH_START": "FS",
"FINISH_FINISH": "FF",
"USERDEFINED": "FS",
"NOTDEFINED": "FS",
}
self.g = nx.DiGraph()
self.edges = []
self.g.add_node("start", duration=0)
self.g.add_node("finish", duration=0)
for rel in self.settings["work_schedule"].Controls:
for related_object in rel.RelatedObjects:
if not related_object.is_a("IfcTask"):
continue
self.add_node(related_object)
self.g.add_edges_from(self.edges)
def add_node(self, task):
if task.IsNestedBy:
for rel in task.IsNestedBy:
[self.add_node(o) for o in rel.RelatedObjects]
return
if task.TaskTime and task.TaskTime.ScheduleDuration:
duration = ifcopenshell.util.date.ifc2datetime(task.TaskTime.ScheduleDuration).days
else:
duration = 0
self.g.add_node(task.id(), duration=duration)
self.edges.extend(
[
(
rel.RelatingProcess.id(),
rel.RelatedProcess.id(),
{
"lag_time": 0
if not rel.TimeLag or not rel.TimeLag.LagValue
else ifcopenshell.util.date.ifc2datetime(rel.TimeLag.LagValue.wrappedValue).days,
"type": self.sequence_type_map[rel.SequenceType],
},
)
for rel in task.IsSuccessorFrom or []
]
)
predecessor_types = [rel.SequenceType for rel in task.IsSuccessorFrom]
successor_types = [rel.SequenceType for rel in task.IsPredecessorTo]
if not predecessor_types or (
"FINISH_START" not in predecessor_types and "START_START" not in predecessor_types
):
self.edges.append(("start", task.id(), {"lag_time": 0, "type": "FS"}))
if not successor_types or ("FINISH_START" not in successor_types and "FINISH_FINISH" not in successor_types):
self.edges.append((task.id(), "finish", {"lag_time": 0, "type": "FS"}))
def update_task_times(self):
for ifc_definition_id in self.g.nodes:
data = self.g.nodes[ifc_definition_id]
if not data["duration"]:
continue
ifcopenshell.api.run(
"sequence.edit_task_time",
self.file,
task_time=self.file.by_id(ifc_definition_id).TaskTime,
attributes={
"TotalFloat": ifcopenshell.util.date.datetime2ifc(
datetime.timedelta(days=data["total_float"]), "IfcDuration"
),
"IsCritical": data["total_float"] == 0,
},
)
def forward_pass(self, node):
successors = self.g.successors(node)
predecessors = list(self.g.predecessors(node))
data = self.g.nodes[node]
if node == "start":
data["early_start"] = 0
else:
finishes = []
starts = []
for predecessor in predecessors:
edge = self.g[predecessor][node]
if edge["type"] == "FS":
finish = self.g.nodes[predecessor].get("early_finish")
if finish is None:
return
starts.append(finish + edge["lag_time"])
elif edge["type"] == "SS":
start = self.g.nodes[predecessor].get("early_start")
if start is None:
return
starts.append(start + edge["lag_time"])
elif edge["type"] == "FF":
finish = self.g.nodes[predecessor].get("early_finish")
if finish is None:
return
finishes.append(finish + edge["lag_time"])
elif edge["type"] == "SF":
start = self.g.nodes[predecessor].get("early_start")
if start is None:
return
finishes.append(start + edge["lag_time"])
if starts and finishes:
data["early_start"] = max(starts)
data["early_finish"] = max(finishes)
if data["early_start"] + data["duration"] > data["early_finish"]:
data["early_finish"] = data["early_start"] + data["duration"]
else:
data["early_start"] = data["early_finish"] - data["duration"]
elif finishes:
data["early_finish"] = max(finishes)
elif starts:
data["early_start"] = max(starts)
else:
print("How did this happen?")
if data.get("early_finish") is None:
data["early_finish"] = data["early_start"] + data["duration"]
elif data.get("early_start") is None:
data["early_start"] = data["early_finish"] - data["duration"]
return True
def backward_pass(self, node):
successors = list(self.g.successors(node))
predecessors = self.g.predecessors(node)
data = self.g.nodes[node]
if node == "finish":
data["late_finish"] = data["early_finish"]
else:
finishes = []
starts = []
for successor in successors:
edge = self.g[node][successor]
if edge["type"] == "FS":
start = self.g.nodes[successor].get("late_start")
if start is None:
return
finishes.append(start - edge["lag_time"])
elif edge["type"] == "SS":
start = self.g.nodes[successor].get("late_start")
if start is None:
return
starts.append(start - edge["lag_time"])
elif edge["type"] == "FF":
finish = self.g.nodes[successor].get("late_finish")
if finish is None:
return
finishes.append(finish - edge["lag_time"])
elif edge["type"] == "SF":
finish = self.g.nodes[successor].get("late_finish")
if finish is None:
return
starts.append(finish - edge["lag_time"])
if starts and finishes:
data["late_start"] = min(starts)
data["late_finish"] = min(finishes)
if data["late_start"] + data["duration"] < data["late_finish"]:
data["late_finish"] = data["late_start"] + data["duration"]
else:
data["late_start"] = data["late_finish"] - data["duration"]
elif finishes:
data["late_finish"] = min(finishes)
elif starts:
data["late_start"] = min(starts)
else:
print("How did this happen?")
if data.get("late_finish") is None:
data["late_finish"] = data["late_start"] + data["duration"]
elif data.get("late_start") is None:
data["late_start"] = data["late_finish"] - data["duration"]
data["total_float"] = data["late_finish"] - data["early_finish"]
return True