feat(rover-planning): cache link-budget loss components per path
The path-profile worker now also computes the baseline link-loss budget — free-space path loss, oxygen absorption, baseline H2O loss (at 7.5 g/m^3 default humidity), plus the already-cached terrain diffraction — and stores all four numbers in Path.result. The show page renders the per-row total in a new Loss column. /path still recomputes against live HRRR weather; this is the offline-readable cached snapshot.
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4 changed files with 101 additions and 2 deletions
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@ -23,14 +23,21 @@ defmodule Microwaveprop.Workers.RoverPathProfileWorker do
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import Ecto.Query
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alias Microwaveprop.Geo
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alias Microwaveprop.Propagation.BandConfig
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alias Microwaveprop.Propagation.ScoresFile
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alias Microwaveprop.Repo
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alias Microwaveprop.RoverPlanning.Path
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alias Microwaveprop.Terrain.ElevationClient
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alias Microwaveprop.Terrain.TerrainAnalysis
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# Default surface absolute humidity (g/m³) — ~7.5 is the
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# PathLive fallback when no live HRRR sample is available. Used to
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# produce a "baseline" cached H₂O loss; the live `/path` page
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# recomputes this from current weather.
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require Logger
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@default_abs_humidity_gm3 7.5
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@impl Oban.Worker
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def backoff(%Oban.Job{attempt: attempt}) do
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min(60 * Integer.pow(2, attempt - 1), 3600)
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@ -89,7 +96,10 @@ defmodule Microwaveprop.Workers.RoverPathProfileWorker do
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midlon = (rover.lon + station.lon) / 2
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propagation_score = lookup_propagation_score(mission.band_mhz, midlat, midlon)
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store_complete(path, profile, analysis, dist_km, bearing, propagation_score)
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loss_budget =
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compute_loss_budget(dist_km, mission.band_mhz, freq_ghz, analysis.diffraction_db)
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store_complete(path, profile, analysis, dist_km, bearing, propagation_score, loss_budget)
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{:error, reason} ->
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store_failed(path, "elevation profile failed: #{inspect(reason)}")
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@ -101,7 +111,7 @@ defmodule Microwaveprop.Workers.RoverPathProfileWorker do
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reraise e, __STACKTRACE__
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end
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defp store_complete(path, profile, analysis, dist_km, bearing, propagation_score) do
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defp store_complete(path, profile, analysis, dist_km, bearing, propagation_score, loss_budget) do
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points =
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Enum.map(profile, fn p ->
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%{
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@ -124,6 +134,10 @@ defmodule Microwaveprop.Workers.RoverPathProfileWorker do
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"verdict" => to_string(analysis.verdict),
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"sample_count" => length(profile),
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"propagation_score" => propagation_score,
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"free_space_loss_db" => loss_budget.free_space_loss_db,
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"oxygen_loss_db" => loss_budget.oxygen_loss_db,
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"humidity_loss_db_baseline" => loss_budget.humidity_loss_db_baseline,
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"total_baseline_loss_db" => loss_budget.total_baseline_loss_db,
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"path_points" => points
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}
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@ -173,6 +187,30 @@ defmodule Microwaveprop.Workers.RoverPathProfileWorker do
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end
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end
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# Cached baseline link-loss components for a path. Mirrors the
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# `compute_loss_budget` math in PathLive but without live HRRR
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# weather: humidity defaults to @default_abs_humidity_gm3 and rain is
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# treated as zero. The `/path` page recomputes these against current
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# conditions; this snapshot is what the rover-planning show page
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# renders without needing HRRR access.
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defp compute_loss_budget(dist_km, band_mhz, freq_ghz, diffraction_db) do
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band_config = BandConfig.get(band_mhz) || BandConfig.get(10_000)
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freq_mhz = freq_ghz * 1000
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fspl = 20 * :math.log10(max(dist_km, 0.001)) + 20 * :math.log10(freq_mhz) + 32.44
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o2_loss = (band_config.o2_db_km || 0.0) * dist_km
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h2o_loss = (band_config.h2o_coeff || 0.0) * @default_abs_humidity_gm3 * dist_km
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diffraction = diffraction_db * 1.0
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total = fspl + o2_loss + h2o_loss + diffraction
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%{
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free_space_loss_db: Float.round(fspl, 1),
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oxygen_loss_db: Float.round(o2_loss, 2),
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humidity_loss_db_baseline: Float.round(h2o_loss, 2),
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total_baseline_loss_db: Float.round(total, 1)
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}
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end
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# Look up the propagation grid score (0-100) for the midpoint of a
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# path at the most recent forecast time available on disk. Returns
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# nil when no scores file exists for this band yet — callers (the
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@ -231,6 +231,9 @@ defmodule MicrowavepropWeb.RoverPlanningLive.Show do
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defp format_distance(_), do: "—"
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defp format_loss(db) when is_number(db), do: "#{Float.round(db * 1.0, 1)} dB"
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defp format_loss(_), do: "—"
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# Two-line station identity for the path table. Returns
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# `{primary, secondary}` — primary is the callsign (or grid when no
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# callsign), secondary is a Maidenhead grid (stored or derived from
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@ -476,6 +479,7 @@ defmodule MicrowavepropWeb.RoverPlanningLive.Show do
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<th>Station</th>
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<th>Status</th>
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<th>Distance</th>
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<th>Loss</th>
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<th>Verdict</th>
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<th>Propagation</th>
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</tr>
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@ -498,6 +502,11 @@ defmodule MicrowavepropWeb.RoverPlanningLive.Show do
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<td class="text-xs">
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{if path.result, do: format_distance(path.result["distance_km"]), else: "—"}
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</td>
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<td class="text-xs">
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{if path.result,
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do: format_loss(path.result["total_baseline_loss_db"]),
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else: "—"}
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</td>
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<td>
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{if path.result, do: verdict_badge(path.result["verdict"]), else: "—"}
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</td>
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@ -69,6 +69,29 @@ defmodule Microwaveprop.RoverPlanningTest do
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assert hd(paths).status in [:complete, :failed]
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end
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test "completed path caches the link-budget loss components" do
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user = AccountsFixtures.user_fixture()
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_loc = create_rover_location(%{lat: 32.0, lon: -97.0, status: :good})
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assert {:ok, mission} = RoverPlanning.create_mission(user, valid_attrs())
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[path] = RoverPlanning.list_paths(mission)
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assert path.status == :complete
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# The result map MUST carry the cached loss-budget so the show
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# page (and any future caller) can render link math without
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# re-running the computation. Values come from the band's
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# absorption coefficients × distance + free-space path loss + the
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# already-cached terrain diffraction. Stored as floats.
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assert is_float(path.result["free_space_loss_db"])
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assert is_float(path.result["oxygen_loss_db"])
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assert is_float(path.result["humidity_loss_db_baseline"])
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assert is_float(path.result["total_baseline_loss_db"])
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# Free-space loss for a ~140 km, 10 GHz path is ~155 dB; sanity
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# check it's in the right order of magnitude (not zero, not 1000).
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assert path.result["free_space_loss_db"] > 100
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assert path.result["free_space_loss_db"] < 200
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end
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test "completed path stores a propagation_score key (may be nil without scores file)" do
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user = AccountsFixtures.user_fixture()
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_loc = create_rover_location(%{lat: 32.0, lon: -97.0, status: :good})
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@ -213,6 +213,35 @@ defmodule MicrowavepropWeb.RoverPlanningLiveTest do
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assert html =~ "78"
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end
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test "loss column renders the cached total baseline path loss", %{conn: conn} do
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user = AccountsFixtures.user_fixture()
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mission = create_mission(user, "Loss column mission")
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[path | _] = Repo.all(Path)
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{:ok, _} =
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path
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|> Ecto.Changeset.change(%{
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status: :complete,
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result: %{
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"distance_km" => 12.0,
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"verdict" => "CLEAR",
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"free_space_loss_db" => 134.7,
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"oxygen_loss_db" => 0.08,
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"humidity_loss_db_baseline" => 0.18,
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"total_baseline_loss_db" => 135.0
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}
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})
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|> Repo.update()
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{:ok, _lv, html} = live(conn, ~p"/rover-planning/#{mission.id}")
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assert html =~ "Loss"
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# The TOTAL is what the user actually cares about at-a-glance —
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# FSPL alone undersells humid-band paths. Show with one decimal +
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# "dB" suffix.
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assert html =~ "135.0 dB"
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end
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test "propagation column renders dash when score is missing", %{conn: conn} do
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user = AccountsFixtures.user_fixture()
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mission = create_mission(user, "No-score mission")
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