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- F-level (228): replace length/1 with Enum.count_until/2 or pattern matching; convert Enum.flat_map+if to Enum.filter+Enum.map; fix identity case in narr_client - W-level (46): normalize dual atom/string key access in weather_layers, beacon_measurements, surface, skewt_live, contact_live/show; add :data_provider and weather-map assigns to ignored_assigns in credo config (consumed by child components credo can't trace); remove weak is_list assertion; remove explicit assert_receive timeout - R-level (6): replace 'This module provides...' moduledocs with meaningful descriptions - Also fix 4 compile-connected xref issues by deferring BandConfig.band_options() from module attribute to runtime Co-Authored-By: Claude <noreply@anthropic.com>
208 lines
6 KiB
Elixir
208 lines
6 KiB
Elixir
defmodule Microwaveprop.Propagation.DuctTest do
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use ExUnit.Case, async: true
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alias Microwaveprop.Propagation.Duct
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defp profile(levels) do
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%{
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level_count: length(levels),
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heights_m: Enum.map(levels, &elem(&1, 0)),
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temp_k: Enum.map(levels, &elem(&1, 1)),
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spfh: Enum.map(levels, &elem(&1, 2)),
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pressure_pa: Enum.map(levels, &elem(&1, 3))
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}
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end
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describe "refractivity_profile/1" do
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test "computes N at each level with plausible values" do
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p =
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profile([
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{10.0, 295.0, 0.012, 101_000.0},
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{500.0, 290.0, 0.006, 95_000.0},
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{1000.0, 283.0, 0.003, 90_000.0}
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])
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n_profile = Duct.refractivity_profile(p)
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assert Enum.count_until(n_profile, 4) == 3
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# N should decrease with height in a normal atmosphere
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[{_, n0}, {_, n1}, {_, n2}] = n_profile
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assert n0 > n1
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assert n1 > n2
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# Typical surface N = 300-400
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assert n0 > 250 and n0 < 500
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end
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end
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describe "m_profile/1" do
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test "M = N + 157*h where h is in km" do
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n_profile = [{0.0, 350.0}, {1000.0, 280.0}]
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m_profile = Duct.m_profile(n_profile)
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[{h0, m0}, {1000.0, m1}] = m_profile
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assert h0 == 0.0
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assert_in_delta m0, 350.0, 0.01
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# M at 1km = 280 + 157*1.0 = 437
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assert_in_delta m1, 437.0, 0.01
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end
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end
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describe "detect_ducts/1" do
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test "returns empty list when M increases monotonically (no duct)" do
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# Standard atmosphere: M always increases with height
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m_profile = [
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{0.0, 350.0},
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{100.0, 365.0},
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{300.0, 397.0},
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{500.0, 428.0},
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{1000.0, 507.0}
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]
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assert Duct.detect_ducts(m_profile) == []
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end
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test "detects a surface-based duct where M decreases" do
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# Surface-based duct: M decreases from 0 to 100m, then resumes increasing
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m_profile = [
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{0.0, 380.0},
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{50.0, 370.0},
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{100.0, 360.0},
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{200.0, 375.0},
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{500.0, 428.0}
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]
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ducts = Duct.detect_ducts(m_profile)
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assert Enum.count_until(ducts, 2) == 1
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[duct] = ducts
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assert duct.base_m == 0.0
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assert duct.top_m == 100.0
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assert duct.thickness_m == 100.0
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assert duct.m_deficit > 0
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end
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test "detects an elevated duct" do
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# Elevated duct between 500-700m
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m_profile = [
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{0.0, 350.0},
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{100.0, 366.0},
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{300.0, 397.0},
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{500.0, 430.0},
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{600.0, 425.0},
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{700.0, 420.0},
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{1000.0, 500.0}
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]
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ducts = Duct.detect_ducts(m_profile)
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assert Enum.count_until(ducts, 2) == 1
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[duct] = ducts
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assert duct.base_m == 500.0
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assert duct.top_m == 700.0
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assert duct.thickness_m == 200.0
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end
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test "detects multiple ducts" do
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m_profile = [
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{0.0, 380.0},
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{50.0, 370.0},
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{100.0, 390.0},
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{500.0, 430.0},
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{600.0, 425.0},
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{700.0, 440.0}
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]
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ducts = Duct.detect_ducts(m_profile)
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assert Enum.count_until(ducts, 3) == 2
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end
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end
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describe "min_trapped_frequency_ghz/1" do
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test "a narrow duct with weak deficit traps only high frequencies" do
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# 10m duct, 1 M-unit deficit → λ_max ≈ 0.025m → f ≈ 12 GHz
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duct = %{thickness_m: 10.0, m_deficit: 1.0}
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f = Duct.min_trapped_frequency_ghz(duct)
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assert_in_delta f, 12.0, 1.0
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end
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test "a moderate duct traps sub-GHz frequencies" do
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# 50m duct, 10 M-units → λ_max ≈ 0.395m → f ≈ 0.76 GHz
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duct = %{thickness_m: 50.0, m_deficit: 10.0}
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f = Duct.min_trapped_frequency_ghz(duct)
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assert_in_delta f, 0.76, 0.1
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end
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test "a thick strong duct traps very low frequencies" do
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# 200m, 20 M-units → λ_max ≈ 2.24m → f ≈ 0.13 GHz
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duct = %{thickness_m: 200.0, m_deficit: 20.0}
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f = Duct.min_trapped_frequency_ghz(duct)
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assert f < 0.2
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end
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test "thicker ducts trap lower frequencies than thinner ones" do
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thin = Duct.min_trapped_frequency_ghz(%{thickness_m: 30.0, m_deficit: 5.0})
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thick = Duct.min_trapped_frequency_ghz(%{thickness_m: 150.0, m_deficit: 5.0})
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assert thick < thin
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end
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end
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describe "detect_ducts/1 edge cases" do
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test "returns [] for an empty M-profile" do
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assert Duct.detect_ducts([]) == []
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end
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test "returns [] for a single-point M-profile (no pairs to evaluate)" do
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assert Duct.detect_ducts([{0.0, 350.0}]) == []
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end
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test "finalizes a duct that runs to the end of the profile" do
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# M decreases through every adjacent pair, so the duct never
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# closes — `close_trailing_duct/1` should still produce one duct
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# covering the full profile.
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m_profile = [
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{0.0, 400.0},
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{100.0, 380.0},
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{200.0, 360.0},
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{500.0, 340.0}
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]
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assert [duct] = Duct.detect_ducts(m_profile)
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assert duct.base_m == 0.0
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assert duct.top_m == 500.0
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assert duct.thickness_m == 500.0
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assert duct.m_deficit == 60.0
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end
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end
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describe "min_trapped_frequency_ghz/1 sentinel branch" do
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test "returns 999.0 for zero thickness" do
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assert Duct.min_trapped_frequency_ghz(%{thickness_m: 0.0, m_deficit: 10.0}) == 999.0
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end
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test "returns 999.0 for zero deficit" do
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assert Duct.min_trapped_frequency_ghz(%{thickness_m: 100.0, m_deficit: 0.0}) == 999.0
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end
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test "returns 999.0 for arbitrary non-matching inputs" do
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assert Duct.min_trapped_frequency_ghz(%{foo: :bar}) == 999.0
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end
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end
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describe "analyze/1" do
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test "full pipeline from native profile to duct list with frequencies" do
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# Profile with a surface-based duct (strong inversion)
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p =
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profile([
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{10.0, 300.0, 0.018, 101_325.0},
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{50.0, 301.0, 0.017, 100_800.0},
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{100.0, 302.0, 0.012, 100_300.0},
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{150.0, 298.0, 0.008, 99_800.0},
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{300.0, 293.0, 0.005, 97_000.0},
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{500.0, 288.0, 0.003, 95_000.0}
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])
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result = Duct.analyze(p)
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assert match?(%{ducts: _, best_duct_band_ghz: _}, result)
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end
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end
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end
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