AI-Pricing-Agent/tests/test_cosmos.py

57 lines
2.2 KiB
Python

"""Unit tests for the COSMOS mapping layer (no network).
Uses a fake client that returns a captured real take-home response, so we verify
the FeeQuote mapping and the stack assembly without hitting the API.
"""
from __future__ import annotations
from config.settings import PricingRules
from pricing_agent.cosmos.service import CosmosPricingService
from pricing_agent.tools.margin_engine import stack_from_quote
# A real captured take-home response for UBMICROFIBERGUSSETPILLOWWHITEQUEEN @ $24.99.
REAL_TAKEHOME = {
"itemPrice": 24.99, "referralFee": 3.75, "fbaFee": 8.97, "lowInventoryFee": 0.0,
"inboundPlacementFee": 0.11, "returnFee": 0.5, "eprFee": 0, "vat": 0.0,
"costSubtotal": -12.72, "marginImpact": 37.71, "logisticsCost": 0.0,
"dutyAmount": 0.0, "costPerUnit": 8.59, "orderHandling": 0, "weightHandling": 0,
"warehouseExpense": 0,
"costBreakdown": {"purchasePrice": 6.28, "freight": 1.27, "duty": 1.03},
"takeHome": 3.07,
}
RULES = PricingRules(margin_floor=0.25, worst_case_referral_pct=0.15)
class FakeClient:
def get(self, path, params=None):
assert "takehome-calculator" in path
return REAL_TAKEHOME
def test_fee_quote_maps_takehome():
svc = CosmosPricingService(FakeClient())
q = svc.fee_quote("UBTEST", 24.99)
assert q.selling_price == 24.99
assert q.landed_cost == 8.59
assert q.fba_fee == 8.97
assert q.referral_amt == 3.75
assert q.returns_reserve == 0.5
assert q.other_fees == 0.11 # inbound placement only
assert q.net_takehome == 3.07
assert q.source == "cosmos"
def test_stack_from_quote_matches_cosmos_net():
svc = CosmosPricingService(FakeClient())
q = svc.fee_quote("UBTEST", 24.99)
stack = stack_from_quote(q, RULES)
# Net profit must equal COSMOS take-home.
assert round(stack.profit, 2) == 3.07
# CM% = takeHome / price.
assert round(stack.contribution_margin_pct, 4) == round(3.07 / 24.99, 4)
# Break-even uses the fixed cost base and the derived referral %.
cost_base = 8.59 + 8.97 + 0.5 + 0.11
assert round(stack.break_even_price, 2) == round(cost_base / (1 - 0.15), 2)
assert round(stack.map_floor, 2) == round(cost_base / (1 - 0.25), 2)