Files
Multi_Swarm_Coevolutive/tests/unit/test_protocol_compiler.py
T
Adriano 44eb6436c1 refactor(protocol): swap S-expression grammar for strict JSON Schema
Sostituisce la grammatica S-expression con uno schema JSON stretto. La
grammatica S-expression falliva il parsing nel 64% delle generazioni del
modello Qwen3-235B sul run reale; JSON e' nativo per gli LLM moderni e
si parsa con json.loads.

Cambiamenti principali:
- grammar.py: costanti rinominate LOGICAL_OPS / COMPARATOR_OPS /
  CROSSOVER_OPS / ACTION_VALUES / KIND_VALUES.
- parser.py: nuovo AST a dataclass tipizzato (OpNode, IndicatorNode,
  FeatureNode, LiteralNode, Rule, Strategy); parse_strategy ora consuma
  JSON tramite json.loads.
- validator.py: walk dispatchato per tipo (isinstance) invece di
  pattern-matching su 'kind'; arity check su operatori e indicator.
- compiler.py: traversal del nuovo AST tipizzato, dispatch per
  isinstance; logica indicator/feature/literal invariata.
- hypothesis.py: prompt SYSTEM riscritto con esempi JSON e vincoli
  espliciti su no-nesting; estrazione via fence ```json``` + fallback
  brace-balanced.
- __init__.py: re-export pubblico delle entita' del protocollo.
- Tutti i test (parser, validator, compiler, hypothesis_agent,
  falsification, adversarial, e2e, smoke_run) migrati a JSON.
- Rimossa dipendenza sexpdata da pyproject.toml + uv.lock.

Test: 135 passed (era 122; aggiunti casi parser/validator).
ruff + mypy strict clean. Smoke run end-to-end OK.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
2026-05-10 21:17:26 +02:00

109 lines
3.0 KiB
Python

from __future__ import annotations
import json
import numpy as np
import pandas as pd
import pytest
from multi_swarm.backtest.orders import Side
from multi_swarm.protocol.compiler import compile_strategy
from multi_swarm.protocol.parser import parse_strategy
@pytest.fixture
def ohlcv() -> pd.DataFrame:
idx = pd.date_range("2024-01-01", periods=200, freq="1h", tz="UTC")
close = np.linspace(100, 120, 200)
return pd.DataFrame(
{
"open": close,
"high": close + 0.5,
"low": close - 0.5,
"close": close,
"volume": 1.0,
},
index=idx,
)
def test_compile_simple_long(ohlcv: pd.DataFrame) -> None:
src = json.dumps(
{
"rules": [
{
"condition": {
"op": "lt",
"args": [
{"kind": "indicator", "name": "rsi", "params": [14]},
{"kind": "literal", "value": 100.0},
],
},
"action": "entry-long",
}
]
}
)
ast = parse_strategy(src)
fn = compile_strategy(ast)
signals = fn(ohlcv)
assert isinstance(signals, pd.Series)
assert (signals == Side.LONG).all() or (signals.dropna() == Side.LONG).all()
def test_compile_no_match_is_flat(ohlcv: pd.DataFrame) -> None:
src = json.dumps(
{
"rules": [
{
"condition": {
"op": "gt",
"args": [
{"kind": "indicator", "name": "rsi", "params": [14]},
{"kind": "literal", "value": 1000.0},
],
},
"action": "entry-long",
}
]
}
)
ast = parse_strategy(src)
fn = compile_strategy(ast)
signals = fn(ohlcv)
assert (signals == Side.FLAT).any()
def test_compile_two_rules_priority(ohlcv: pd.DataFrame) -> None:
src = json.dumps(
{
"rules": [
{
"condition": {
"op": "gt",
"args": [
{"kind": "feature", "name": "close"},
{"kind": "literal", "value": 110.0},
],
},
"action": "entry-long",
},
{
"condition": {
"op": "lt",
"args": [
{"kind": "feature", "name": "close"},
{"kind": "literal", "value": 105.0},
],
},
"action": "entry-short",
},
]
}
)
ast = parse_strategy(src)
fn = compile_strategy(ast)
signals = fn(ohlcv)
last = signals.iloc[-1]
assert last == Side.LONG # close finale e' 120, regola 1 matcha