The browser half of M3. Flows open on a full-bleed canvas with their chrome floating over it: flow tabs top, dock bottom, node settings in a panel on the right that leaves the graph visible and running behind it. - Connections are derived, not stored. A node declares the messages it reads and publishes; every matching pair draws an edge, so two producers of one message converge on their consumer. Dragging output to input is shorthand for pointing that input at the producer's message, and asks before it replaces an existing one. - Values land on the edges as they flow, over a websocket that feeds a store outside React, so a value arriving re-renders its own chip and nothing else. Clicking an edge shows the last payload and when it arrived. - Node source is edited in Monaco, loaded only when a panel opens and themed from the design tokens. - Edits autosave; identical documents are skipped server-side, so a quiet canvas writes nothing. - Validation from the API shows on the node it belongs to and is summarised in the dock, where each entry pans to its node. - Works on a phone: touch-connect, 44px dock targets, and the node panel becomes a full-screen sheet. Two new tokens (--status-success, --font-mono) are mirrored in the website repo and recorded in DESIGN-GUIDELINES.md. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_016WzrvW7rjQbynnhF6pxh6i
161 lines
4.6 KiB
Python
161 lines
4.6 KiB
Python
"""The wiring fundamentals: name binding, fan-in, namespaces, validation."""
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from app.flow.messages import DType, MessageSpec
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from app.flow.nodes import Node
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from app.flow.pipeline import Pipeline
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def spec(name: str, dtype: DType = DType.FLOAT, port: str = "") -> MessageSpec:
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return MessageSpec(name=name, dtype=dtype, port=port)
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def make_node(node_id: str, flow: str, f, requires=(), provides=()) -> Node:
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node = Node(f=f, requires=list(requires), provides=list(provides), name=node_id)
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node.assign_flow(flow, node_id)
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return node
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def test_bare_names_are_scoped_to_their_flow():
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source = make_node(
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"source", "heating", lambda params: {"temp": 20.0}, provides=[spec("temp")]
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)
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assert "heating.temp" in source.provides
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def test_consumer_receives_from_any_producer():
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# Two producers of one message: each publication reaches the consumer.
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seen = []
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def emit_a(params):
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return {"temp": 1.0}
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def emit_b(params):
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return {"temp": 2.0}
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def consume(temp, params):
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seen.append(temp)
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return None
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a = make_node("a", "heating", emit_a, provides=[spec("temp")])
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b = make_node("b", "heating", emit_b, provides=[spec("temp")])
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c = make_node("c", "heating", consume, requires=[spec("temp")])
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pipeline = Pipeline(nodes=[a, b, c])
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assert pipeline.produces["heating.temp"] == [a, b]
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assert pipeline.dependencies[c] == frozenset({a, b})
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a.inject()
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b.inject()
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assert seen == [1.0, 2.0]
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# Latest value wins.
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assert pipeline.state["heating.temp"] == 2.0
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def test_flows_connect_through_qualified_names():
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def emit(params):
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return {"power": 500.0}
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def consume(power, params):
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return {"used": power}
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producer = make_node("meter", "solar", emit, provides=[spec("power")])
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# A bare name would be heating.power; the dotted one crosses the flow.
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consumer = make_node(
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"load",
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"heating",
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consume,
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requires=[spec("solar.power")],
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provides=[spec("used")],
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)
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pipeline = Pipeline(nodes=[producer, consumer])
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assert pipeline.dependencies[consumer] == frozenset({producer})
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producer.inject()
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assert pipeline.state["heating.used"] == 500.0
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def test_ports_keep_function_arguments_local():
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def convert(celsius, params):
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return {"fahrenheit": celsius * 9 / 5 + 32}
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node = make_node(
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"convert",
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"heating",
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convert,
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requires=[spec("solar.celsius", port="celsius")],
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provides=[spec("fahrenheit")],
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)
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Pipeline(nodes=[node])
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assert node.execute({"solar.celsius": 100.0}) == {"heating.fahrenheit": 212.0}
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def test_validate_reports_cycles_and_dangling_inputs():
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a = make_node(
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"a", "f", lambda b, params: {"a": b}, requires=[spec("b")], provides=[spec("a")]
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)
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b = make_node(
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"b", "f", lambda a, params: {"b": a}, requires=[spec("a")], provides=[spec("b")]
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)
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lonely = make_node(
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"lonely", "f", lambda missing, params: None, requires=[spec("missing")]
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)
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issues = Pipeline(nodes=[a, b, lonely]).validate()
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codes = {issue.code for issue in issues}
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assert "cycle" in codes
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assert "unconnected_input" in codes
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dangling = next(i for i in issues if i.code == "unconnected_input")
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assert dangling.message_name == "f.missing"
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assert dangling.node == "f.lonely"
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def test_declared_flow_inputs_are_not_dangling():
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node = make_node(
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"n", "f", lambda setpoint, params: None, requires=[spec("setpoint")]
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)
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issues = Pipeline(nodes=[node]).validate({"f.setpoint": True})
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assert issues == []
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def test_a_flow_input_without_a_starting_value_is_reported():
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node = make_node(
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"n", "f", lambda setpoint, params: None, requires=[spec("setpoint")]
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)
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issues = Pipeline(nodes=[node]).validate({"f.setpoint": False})
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assert [issue.code for issue in issues] == ["missing_initial_value"]
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def test_a_failing_node_does_not_stop_its_siblings():
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ran = []
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def boom(params):
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raise RuntimeError("nope")
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def fine(params):
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ran.append("fine")
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return {"ok": 1.0}
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bad = make_node("bad", "f", boom, provides=[spec("bad_out")])
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good = make_node("good", "f", fine, provides=[spec("ok")])
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pipeline = Pipeline(nodes=[bad, good])
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pipeline.run()
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assert ran == ["fine"]
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assert pipeline.state["f.ok"] == 1.0
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def test_values_carry_timestamps():
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node = make_node("n", "f", lambda params: {"out": 1.0}, provides=[spec("out")])
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pipeline = Pipeline(nodes=[node])
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node.inject()
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values = pipeline.values("f")
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assert values["f.out"]["value"] == 1.0
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assert values["f.out"]["ts"] > 0
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