- hrrr_client: extract shared fetch_grib_ranges/2 to eliminate ~80% duplicated code - mqtt: encode_varint/1 uses IO list accumulator instead of O(n^2) binary concat - commercial: single-pass reduce for aggregate_degradation, remove unused average/1 - scorer: single-pass reduce for safe_avg and build_path_conditions - terrain_analysis: split 76-line do_analyse/4 into 3 focused functions - radio: build_position_changes/3 simplified from then-chains to Enum.reduce - recalibrator_test: fix credo warning (length > 0 -> != [])
202 lines
6.6 KiB
Elixir
202 lines
6.6 KiB
Elixir
defmodule Microwaveprop.Commercial do
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@moduledoc false
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import Ecto.Query
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alias Microwaveprop.Commercial.Link
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alias Microwaveprop.Commercial.Sample
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alias Microwaveprop.Repo
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@default_radius_km 75.0
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@default_baseline_days 7
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@default_current_window_seconds 900
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@min_baseline_samples 5
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@spec enabled_links() :: [Link.t()]
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def enabled_links do
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Link
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|> where([l], l.enabled == true)
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|> Repo.all()
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end
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@doc """
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Returns the aggregate commercial-link rx_power degradation at a location,
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or `nil` if no healthy links are in range.
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Commercial LOS microwave links near the target point act as an inverse
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tropo sensor: when their rx_power drops significantly below the 7-day
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baseline without an obvious equipment cause (link_state still 1), the
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refractivity structure that hurts their short Fresnel zone is usually
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the same structure that *helps* long beyond-LOS amateur propagation.
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Result map:
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%{
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degradation_db: float (positive means worse than baseline),
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baseline_dbm: float,
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current_dbm: float,
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n_links: integer
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}
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## Options
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* `:radius_km` — distance from the target point to include a link (default 75)
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* `:baseline_days` — days of history for the baseline average (default 7)
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* `:current_window_seconds` — how recent "current" rx must be (default 900)
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"""
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@spec link_degradation_at({float(), float()}, DateTime.t(), keyword()) :: map() | nil
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def link_degradation_at({lat, lon}, valid_time, opts \\ []) do
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lookup = build_link_lookup(valid_time, opts)
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link_degradation_from_lookup({lat, lon}, lookup, opts)
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end
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@doc """
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Precompute every enabled link's degradation once so a bulk caller
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(like PropagationGridWorker's per-cell merge) can reuse the same
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`(link, endpoint, degradation)` list across all 95k grid points
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instead of re-running `enabled_links/0` and the per-link sample
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queries per call. Result is fed back into
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`link_degradation_from_lookup/3`.
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"""
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@spec build_link_lookup(DateTime.t(), keyword()) :: [
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{Link.t(), {float(), float()}, map() | nil}
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]
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def build_link_lookup(valid_time, opts \\ []) do
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baseline_days = Keyword.get(opts, :baseline_days, @default_baseline_days)
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current_window = Keyword.get(opts, :current_window_seconds, @default_current_window_seconds)
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baseline_cutoff = DateTime.add(valid_time, -baseline_days * 24 * 3600, :second)
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current_cutoff = DateTime.add(valid_time, -current_window, :second)
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enabled_links()
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|> Enum.map(fn link -> {link, link_endpoint(link)} end)
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|> Enum.reject(fn {_link, endpoint} -> is_nil(endpoint) end)
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|> Enum.map(fn {link, endpoint} ->
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degradation = link_degradation(link.id, baseline_cutoff, current_cutoff, valid_time)
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{link, endpoint, degradation}
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end)
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end
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@doc """
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Pure per-cell aggregator — given a `(lat, lon)` point and a
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precomputed lookup from `build_link_lookup/2`, returns the
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aggregate degradation map or `nil` when no in-range link is
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reporting usable data.
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"""
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@spec link_degradation_from_lookup(
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{float(), float()},
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[{Link.t(), {float(), float()}, map() | nil}],
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keyword()
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) :: map() | nil
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def link_degradation_from_lookup({lat, lon}, lookup, opts \\ []) do
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radius_km = Keyword.get(opts, :radius_km, @default_radius_km)
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results =
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for {_link, {elat, elon}, %{} = degradation} <- lookup,
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haversine_km(lat, lon, elat, elon) <= radius_km do
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degradation
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end
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aggregate_degradation(results)
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end
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defp aggregate_degradation([]), do: nil
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defp aggregate_degradation(list) do
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{baseline_total, current_total, count} =
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Enum.reduce(list, {0.0, 0.0, 0}, fn item, {bt, ct, c} ->
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{bt + item.baseline_dbm, ct + item.current_dbm, c + 1}
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end)
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baseline_avg = baseline_total / count
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current_avg = current_total / count
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%{
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degradation_db: Float.round(baseline_avg - current_avg, 2),
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baseline_dbm: Float.round(baseline_avg, 2),
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current_dbm: Float.round(current_avg, 2),
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n_links: count
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}
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end
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defp link_degradation(link_id, baseline_cutoff, current_cutoff, valid_time) do
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baseline =
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Sample
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|> where([s], s.link_id == ^link_id)
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|> where([s], s.sampled_at >= ^baseline_cutoff and s.sampled_at < ^current_cutoff)
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|> where([s], s.link_state == 1 and not is_nil(s.rx_power_0))
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|> select([s], avg(s.rx_power_0))
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|> Repo.one()
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{current, baseline_n} = fetch_current_and_baseline_count(link_id, current_cutoff, valid_time)
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cond do
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is_nil(baseline) or is_nil(current) ->
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nil
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baseline_n < @min_baseline_samples ->
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nil
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true ->
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%{baseline_dbm: to_float(baseline), current_dbm: current}
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end
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end
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defp to_float(%Decimal{} = d), do: Decimal.to_float(d)
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defp to_float(n) when is_number(n), do: n * 1.0
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defp fetch_current_and_baseline_count(link_id, current_cutoff, valid_time) do
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current =
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Sample
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|> where([s], s.link_id == ^link_id)
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|> where([s], s.sampled_at >= ^current_cutoff and s.sampled_at <= ^valid_time)
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|> where([s], s.link_state == 1 and not is_nil(s.rx_power_0))
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|> order_by([s], desc: s.sampled_at)
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|> limit(1)
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|> select([s], s.rx_power_0)
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|> Repo.one()
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baseline_n =
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Sample
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|> where([s], s.link_id == ^link_id)
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|> where([s], s.sampled_at < ^current_cutoff)
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|> where([s], s.link_state == 1 and not is_nil(s.rx_power_0))
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|> select([s], count(s.id))
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|> Repo.one()
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{current, baseline_n}
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end
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defp link_endpoint(%Link{endpoint_a: %{"lat" => lat, "lon" => lon}}) when is_number(lat) and is_number(lon),
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do: {lat * 1.0, lon * 1.0}
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defp link_endpoint(_), do: nil
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# Single canonical haversine implementation lives in `Microwaveprop.Radio`.
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# Two formulae for the same physical distance let identical coordinates
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# land on opposite sides of a 75 km link-radius threshold depending on
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# which module asked.
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defp haversine_km(lat1, lon1, lat2, lon2), do: Microwaveprop.Radio.haversine_km(lat1, lon1, lat2, lon2)
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@spec create_link(map()) :: {:ok, Link.t()} | {:error, Ecto.Changeset.t()}
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def create_link(attrs) do
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%Link{}
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|> Link.changeset(attrs)
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|> Repo.insert()
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end
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@spec create_sample(map()) :: {:ok, Sample.t()} | {:error, Ecto.Changeset.t()}
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def create_sample(attrs) do
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%Sample{}
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|> Sample.changeset(attrs)
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|> Repo.insert()
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end
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@spec weather_stations() :: [String.t()]
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def weather_stations do
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Link
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|> where([l], l.enabled == true and not is_nil(l.weather_station))
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|> select([l], l.weather_station)
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|> distinct(true)
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|> Repo.all()
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end
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end
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