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N1 and N2S were flipped relative to every other registry that names them - firmware_check.py (N2S -> "a1"), virtual_printer/manager.py (both the model map and the serial-prefix map: N2S -> 039 = A1, N1 -> 030 = A1 Mini), and printer_manager.py A1_MODELS all agree on N2S = A1, N1 = A1 Mini. Only printer_models.py had it backwards, so any path that resolved an A1-family printer by internal code rather than serial prefix would silently misclassify. Also fixes the matching comments in LINEAR_RAIL_MODELS - cosmetic only (both codes were already in the frozenset) but kept the file self-consistent. New TestA1SeriesModelIds regression test pins both directions so a future re-flip fails loudly.
149 lines
5.4 KiB
Python
149 lines
5.4 KiB
Python
"""Unit tests for printer model utilities."""
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import pytest
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from backend.app.services.camera import get_camera_port, supports_rtsp
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from backend.app.utils.printer_models import (
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CARBON_ROD_MODELS,
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STEEL_ROD_MODELS,
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get_rod_type,
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has_ethernet,
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is_dual_nozzle_model,
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normalize_printer_model,
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normalize_printer_model_id,
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)
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class TestGetRodType:
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"""Tests for get_rod_type() rod/rail classification."""
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@pytest.mark.parametrize("model", ["X1C", "X1", "X1E", "P1P", "P1S"])
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def test_carbon_rod_models(self, model: str):
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assert get_rod_type(model) == "carbon"
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@pytest.mark.parametrize("model", ["C11", "C12", "C13"])
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def test_carbon_rod_internal_codes(self, model: str):
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assert get_rod_type(model) == "carbon"
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def test_p2s_is_steel_rod(self):
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"""P2S uses hardened steel rods, not carbon rods (#640)."""
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assert get_rod_type("P2S") == "steel_rod"
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def test_p2s_internal_code_is_steel_rod(self):
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"""N7 (P2S internal code) uses steel rods."""
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assert get_rod_type("N7") == "steel_rod"
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@pytest.mark.parametrize("model", ["A1", "A1 Mini", "H2D", "H2D Pro", "H2C", "H2S"])
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def test_linear_rail_models(self, model: str):
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assert get_rod_type(model) == "linear_rail"
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@pytest.mark.parametrize("model", ["N1", "N2S", "A11", "A12", "O1D", "O1E", "O2D", "O1C", "O1C2", "O1S"])
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def test_linear_rail_internal_codes(self, model: str):
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assert get_rod_type(model) == "linear_rail"
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def test_unknown_model_returns_none(self):
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assert get_rod_type("UNKNOWN") is None
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def test_none_returns_none(self):
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assert get_rod_type(None) is None
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def test_case_insensitive(self):
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assert get_rod_type("p2s") == "steel_rod"
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assert get_rod_type("x1c") == "carbon"
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assert get_rod_type("a1") == "linear_rail"
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def test_strips_whitespace_and_dashes(self):
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assert get_rod_type(" P2S ") == "steel_rod"
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assert get_rod_type("A1-Mini") == "linear_rail"
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class TestX2DModel:
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"""X2D printer support (issue #988).
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The X2D is a dual-nozzle enclosed printer launched April 2026. It shares
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the hardened steel rod hardware with P2S (NOT carbon rods) and uses
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RTSP on port 322 like other X/H series printers. Internal SSDP/MQTT
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model code is "N6"; serial numbers begin with "20P9".
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"""
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def test_x2d_is_steel_rod_display_name(self):
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assert get_rod_type("X2D") == "steel_rod"
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def test_x2d_is_steel_rod_internal_code(self):
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assert get_rod_type("N6") == "steel_rod"
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def test_x2d_model_id_map(self):
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assert normalize_printer_model_id("N6") == "X2D"
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def test_x2d_model_map(self):
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assert normalize_printer_model("Bambu Lab X2D") == "X2D"
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def test_x2d_has_ethernet_display_name(self):
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assert has_ethernet("X2D") is True
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def test_x2d_has_ethernet_internal_code(self):
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assert has_ethernet("N6") is True
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def test_x2d_supports_rtsp_display_name(self):
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assert supports_rtsp("X2D") is True
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def test_x2d_supports_rtsp_internal_code(self):
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assert supports_rtsp("N6") is True
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def test_x2d_camera_port_is_rtsp(self):
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assert get_camera_port("N6") == 322
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assert get_camera_port("X2D") == 322
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def test_x2d_not_in_carbon_rod_set(self):
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"""Regression guard: X2D has hardened steel rods, not carbon (#988).
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A prior PR classified X2D as carbon; the reporter confirmed it uses
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the same stainless steel rod gantry as P2S. This assertion pins the
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classification so a future change that reverts it will fail loudly.
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"""
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assert "X2D" not in CARBON_ROD_MODELS
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assert "N6" not in CARBON_ROD_MODELS
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assert "X2D" in STEEL_ROD_MODELS
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assert "N6" in STEEL_ROD_MODELS
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class TestA1SeriesModelIds:
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"""Regression guard for the A1-family internal-code → display-name map.
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The serial-prefix and firmware-API key tables across the codebase agree
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that N2S is the A1 (serial prefix 039) and N1 is the A1 Mini (serial
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prefix 030). PRINTER_MODEL_ID_MAP had these swapped, which silently
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misclassified A1 as A1 Mini in any path that resolved by internal code.
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"""
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def test_n2s_is_a1(self):
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assert normalize_printer_model_id("N2S") == "A1"
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def test_n1_is_a1_mini(self):
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assert normalize_printer_model_id("N1") == "A1 Mini"
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class TestDualNozzleModel:
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"""is_dual_nozzle_model — the single source of truth for nozzle class,
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consumed by start_print, the K-profile routes, and the re-slice guard."""
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def test_h2d_and_pro_are_dual(self):
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# Takes a normalized model code (like has_ethernet) — "H2D Pro" with a
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# space is accepted; full "Bambu Lab …" names are normalized by callers.
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assert is_dual_nozzle_model("H2D") is True
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assert is_dual_nozzle_model("H2D Pro") is True
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assert is_dual_nozzle_model("H2DPRO") is True
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def test_internal_codes_are_dual(self):
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assert is_dual_nozzle_model("O1D") is True # H2D
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assert is_dual_nozzle_model("O1E") is True # H2D Pro
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def test_single_nozzle_models_are_not_dual(self):
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# H2S is in the H2 family but single-nozzle (#1386) — must be False.
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for model in ("X1C", "X1E", "P1S", "P1P", "A1", "A1 Mini", "P2S", "H2S"):
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assert is_dual_nozzle_model(model) is False, model
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def test_none_and_empty_are_not_dual(self):
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assert is_dual_nozzle_model(None) is False
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assert is_dual_nozzle_model("") is False
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