174 lines
5.8 KiB
Python
174 lines
5.8 KiB
Python
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from comfy.graph_utils import GraphBuilder, is_link
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from comfy.graph import ExecutionBlocker
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from .tools import VariantSupport
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NUM_FLOW_SOCKETS = 5
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@VariantSupport()
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class TestWhileLoopOpen:
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def __init__(self):
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pass
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@classmethod
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def INPUT_TYPES(cls):
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inputs = {
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"required": {
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"condition": ("BOOLEAN", {"default": True}),
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},
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"optional": {
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},
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}
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for i in range(NUM_FLOW_SOCKETS):
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inputs["optional"][f"initial_value{i}"] = ("*",)
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return inputs
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RETURN_TYPES = tuple(["FLOW_CONTROL"] + ["*"] * NUM_FLOW_SOCKETS)
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RETURN_NAMES = tuple(["FLOW_CONTROL"] + [f"value{i}" for i in range(NUM_FLOW_SOCKETS)])
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FUNCTION = "while_loop_open"
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CATEGORY = "Testing/Flow"
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def while_loop_open(self, condition, **kwargs):
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values = []
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for i in range(NUM_FLOW_SOCKETS):
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values.append(kwargs.get(f"initial_value{i}", None))
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return tuple(["stub"] + values)
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@VariantSupport()
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class TestWhileLoopClose:
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def __init__(self):
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pass
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@classmethod
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def INPUT_TYPES(cls):
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inputs = {
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"required": {
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"flow_control": ("FLOW_CONTROL", {"rawLink": True}),
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"condition": ("BOOLEAN", {"forceInput": True}),
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},
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"optional": {
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},
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"hidden": {
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"dynprompt": "DYNPROMPT",
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"unique_id": "UNIQUE_ID",
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}
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}
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for i in range(NUM_FLOW_SOCKETS):
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inputs["optional"][f"initial_value{i}"] = ("*",)
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return inputs
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RETURN_TYPES = tuple(["*"] * NUM_FLOW_SOCKETS)
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RETURN_NAMES = tuple([f"value{i}" for i in range(NUM_FLOW_SOCKETS)])
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FUNCTION = "while_loop_close"
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CATEGORY = "Testing/Flow"
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def explore_dependencies(self, node_id, dynprompt, upstream):
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node_info = dynprompt.get_node(node_id)
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if "inputs" not in node_info:
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return
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for k, v in node_info["inputs"].items():
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if is_link(v):
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parent_id = v[0]
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if parent_id not in upstream:
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upstream[parent_id] = []
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self.explore_dependencies(parent_id, dynprompt, upstream)
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upstream[parent_id].append(node_id)
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def collect_contained(self, node_id, upstream, contained):
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if node_id not in upstream:
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return
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for child_id in upstream[node_id]:
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if child_id not in contained:
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contained[child_id] = True
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self.collect_contained(child_id, upstream, contained)
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def while_loop_close(self, flow_control, condition, dynprompt=None, unique_id=None, **kwargs):
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assert dynprompt is not None
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if not condition:
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# We're done with the loop
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values = []
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for i in range(NUM_FLOW_SOCKETS):
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values.append(kwargs.get(f"initial_value{i}", None))
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return tuple(values)
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# We want to loop
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upstream = {}
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# Get the list of all nodes between the open and close nodes
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self.explore_dependencies(unique_id, dynprompt, upstream)
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contained = {}
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open_node = flow_control[0]
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self.collect_contained(open_node, upstream, contained)
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contained[unique_id] = True
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contained[open_node] = True
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# We'll use the default prefix, but to avoid having node names grow exponentially in size,
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# we'll use "Recurse" for the name of the recursively-generated copy of this node.
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graph = GraphBuilder()
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for node_id in contained:
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original_node = dynprompt.get_node(node_id)
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node = graph.node(original_node["class_type"], "Recurse" if node_id == unique_id else node_id)
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node.set_override_display_id(node_id)
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for node_id in contained:
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original_node = dynprompt.get_node(node_id)
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node = graph.lookup_node("Recurse" if node_id == unique_id else node_id)
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assert node is not None
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for k, v in original_node["inputs"].items():
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if is_link(v) and v[0] in contained:
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parent = graph.lookup_node(v[0])
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assert parent is not None
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node.set_input(k, parent.out(v[1]))
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else:
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node.set_input(k, v)
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new_open = graph.lookup_node(open_node)
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assert new_open is not None
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for i in range(NUM_FLOW_SOCKETS):
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key = f"initial_value{i}"
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new_open.set_input(key, kwargs.get(key, None))
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my_clone = graph.lookup_node("Recurse")
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assert my_clone is not None
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result = map(lambda x: my_clone.out(x), range(NUM_FLOW_SOCKETS))
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return {
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"result": tuple(result),
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"expand": graph.finalize(),
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}
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@VariantSupport()
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class TestExecutionBlockerNode:
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def __init__(self):
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pass
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@classmethod
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def INPUT_TYPES(cls):
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inputs = {
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"required": {
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"input": ("*",),
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"block": ("BOOLEAN",),
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"verbose": ("BOOLEAN", {"default": False}),
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},
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}
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return inputs
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RETURN_TYPES = ("*",)
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RETURN_NAMES = ("output",)
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FUNCTION = "execution_blocker"
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CATEGORY = "Testing/Flow"
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def execution_blocker(self, input, block, verbose):
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if block:
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return (ExecutionBlocker("Blocked Execution" if verbose else None),)
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return (input,)
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FLOW_CONTROL_NODE_CLASS_MAPPINGS = {
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"TestWhileLoopOpen": TestWhileLoopOpen,
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"TestWhileLoopClose": TestWhileLoopClose,
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"TestExecutionBlocker": TestExecutionBlockerNode,
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}
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FLOW_CONTROL_NODE_DISPLAY_NAME_MAPPINGS = {
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"TestWhileLoopOpen": "While Loop Open",
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"TestWhileLoopClose": "While Loop Close",
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"TestExecutionBlocker": "Execution Blocker",
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}
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