Band-warm failures in the Rust propagation_ready pipeline were only
surfaced via Logger.warning, so Prometheus had no way to see them.
The /weather GridCache hit/miss was likewise invisible while its
/map counterpart (ScoreCache) already reported cache ratio.
- NotifyListener emits [:microwaveprop, :propagation, :notify_listener, :warm]
with %{ok, err} measurements and %{valid_time} metadata after every
propagation_ready notification. Public handle_propagation_ready/1 so
tests can exercise the warm+telemetry path without Postgrex.
- GridCache.fetch/1, fetch_bounds/2, and fetch_point/3 emit
[:microwaveprop, :weather, :grid_cache, :lookup] with a :hit | :miss
metadata key on every ETS lookup.
226 lines
6.7 KiB
Elixir
226 lines
6.7 KiB
Elixir
defmodule Microwaveprop.Weather.GridCache do
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@moduledoc """
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Node-local ETS cache of derived HRRR grid rows keyed by `valid_time`. Mirrors
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`Microwaveprop.Propagation.ScoreCache` but for the `/weather` map.
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The Weather map LiveView calls `latest_weather_grid/1` on mount and every
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pan/zoom. Each call otherwise hits the 42M-row partitioned `hrrr_profiles`
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table, runs per-row `derive_and_clean` transforms, and returns 3-10k rows.
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With this cache those calls become in-memory map iterations.
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Each cache entry stores `%{{lat, lon} => derived_row}` so per-point lookups
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(used by `weather_point_detail/3`) are O(1). Populated by
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`Microwaveprop.Weather.warm_grid_cache/1` after the hourly worker upserts
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new HRRR data, fanned out across the cluster via the `"weather:cache"`
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PubSub topic so every node stays in sync.
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"""
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use GenServer
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alias Phoenix.PubSub
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@table :weather_grid_cache
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@lock_table :weather_grid_fill_locks
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@topic "weather:cache"
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@pubsub Microwaveprop.PubSub
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@type row :: %{required(:lat) => float(), required(:lon) => float(), optional(atom()) => any()}
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@type bounds :: %{optional(String.t()) => float()}
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@spec start_link(keyword()) :: GenServer.on_start()
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def start_link(opts), do: GenServer.start_link(__MODULE__, opts, name: __MODULE__)
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@spec fetch(DateTime.t()) :: {:ok, [row()]} | :miss
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def fetch(valid_time) do
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case :ets.lookup(@table, valid_time) do
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[{_, grid}] ->
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emit_lookup(true)
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{:ok, grid_to_list(grid)}
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[] ->
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emit_lookup(false)
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:miss
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end
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end
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@spec fetch_bounds(DateTime.t(), bounds() | nil) :: {:ok, [row()]} | :miss
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def fetch_bounds(valid_time, bounds) do
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case :ets.lookup(@table, valid_time) do
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[{_, grid}] ->
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emit_lookup(true)
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{:ok, grid_to_filtered_list(grid, bounds)}
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[] ->
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emit_lookup(false)
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:miss
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end
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end
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@spec fetch_point(DateTime.t(), float(), float()) :: {:ok, row()} | :miss
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def fetch_point(valid_time, lat, lon) do
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case :ets.lookup(@table, valid_time) do
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[{_, grid}] ->
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case Map.get(grid, {lat, lon}) do
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nil ->
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emit_lookup(false)
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:miss
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row ->
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emit_lookup(true)
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{:ok, row}
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end
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[] ->
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emit_lookup(false)
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:miss
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end
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end
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defp emit_lookup(hit) do
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:telemetry.execute([:microwaveprop, :weather, :grid_cache, :lookup], %{}, %{hit: hit})
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end
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@spec put(DateTime.t(), [row()]) :: :ok
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def put(valid_time, rows) do
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grid = list_to_grid(rows)
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:ets.insert(@table, {valid_time, grid})
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:ok
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end
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@doc "Insert locally AND broadcast to peer nodes via PubSub."
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@spec broadcast_put(DateTime.t(), [row()]) :: :ok
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def broadcast_put(valid_time, rows) do
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_ = PubSub.broadcast(@pubsub, @topic, {:weather_cache_refresh, valid_time, rows})
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:ok
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end
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@spec latest_valid_time() :: DateTime.t() | nil
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def latest_valid_time do
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match_spec = [{{:"$1", :_}, [], [:"$1"]}]
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case :ets.select(@table, match_spec) do
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[] -> nil
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times -> Enum.max(times, DateTime)
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end
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end
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@spec prune_older_than(DateTime.t()) :: non_neg_integer()
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def prune_older_than(cutoff) do
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match_spec = [{{:"$1", :_}, [{:<, :"$1", {:const, cutoff}}], [true]}]
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:ets.select_delete(@table, match_spec)
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end
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@spec clear() :: :ok
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def clear do
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GenServer.call(__MODULE__, :clear)
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end
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@doc """
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Atomically claim the right to fill the cache for `valid_time`. Returns
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`true` if this caller won the claim and should run the fill; `false` if
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another caller is already filling. Prevents N concurrent /weather mounts
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after a pod restart from each firing the 15-second cold-fill read and
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starving the Postgres connection pool.
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The GenServer `Process.monitor`s the caller: if the caller crashes
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before calling `release_fill/1`, the lock is released automatically.
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"""
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@spec claim_fill(DateTime.t()) :: boolean()
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def claim_fill(valid_time) do
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GenServer.call(__MODULE__, {:claim_fill, valid_time, self()})
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end
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@doc "Release a fill lock claimed via `claim_fill/1`."
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@spec release_fill(DateTime.t()) :: :ok
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def release_fill(valid_time) do
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GenServer.call(__MODULE__, {:release_fill, valid_time})
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end
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@spec sync() :: :ok
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def sync do
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GenServer.call(__MODULE__, :sync)
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end
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@impl true
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def init(_opts) do
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_ = :ets.new(@table, [:set, :named_table, :public, :compressed, read_concurrency: true])
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_ = :ets.new(@lock_table, [:set, :named_table, :protected])
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:ok = PubSub.subscribe(@pubsub, @topic)
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{:ok, %{monitors: %{}}}
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end
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@impl true
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def handle_call(:sync, _from, state), do: {:reply, :ok, state}
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def handle_call(:clear, _from, state) do
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:ets.delete_all_objects(@table)
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# Demonitor all tracked callers and drop every lock so tests start clean.
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for {ref, _vt} <- state.monitors, do: Process.demonitor(ref, [:flush])
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:ets.delete_all_objects(@lock_table)
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{:reply, :ok, %{state | monitors: %{}}}
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end
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def handle_call({:claim_fill, valid_time, caller}, _from, state) do
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if :ets.insert_new(@lock_table, {valid_time, caller}) do
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ref = Process.monitor(caller)
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{:reply, true, %{state | monitors: Map.put(state.monitors, ref, valid_time)}}
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else
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{:reply, false, state}
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end
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end
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def handle_call({:release_fill, valid_time}, _from, state) do
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{monitors, _matched} = pop_monitor_for(state.monitors, valid_time)
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:ets.delete(@lock_table, valid_time)
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{:reply, :ok, %{state | monitors: monitors}}
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end
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@impl true
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def handle_info({:DOWN, ref, :process, _pid, _reason}, state) do
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case Map.pop(state.monitors, ref) do
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{nil, _} ->
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{:noreply, state}
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{valid_time, monitors} ->
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:ets.delete(@lock_table, valid_time)
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{:noreply, %{state | monitors: monitors}}
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end
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end
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def handle_info({:weather_cache_refresh, valid_time, rows}, state) do
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put(valid_time, rows)
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{:noreply, state}
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end
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def handle_info(_msg, state), do: {:noreply, state}
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defp pop_monitor_for(monitors, valid_time) do
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case Enum.find(monitors, fn {_ref, vt} -> vt == valid_time end) do
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nil ->
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{monitors, nil}
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{ref, ^valid_time} ->
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Process.demonitor(ref, [:flush])
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{Map.delete(monitors, ref), ref}
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end
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end
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# ---------- Internal ----------
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defp list_to_grid(rows) do
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Map.new(rows, fn %{lat: lat, lon: lon} = row -> {{lat, lon}, row} end)
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end
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defp grid_to_list(grid), do: Enum.map(grid, fn {_, row} -> row end)
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defp grid_to_filtered_list(grid, nil), do: grid_to_list(grid)
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defp grid_to_filtered_list(grid, %{"south" => s, "north" => n, "west" => w, "east" => e}) do
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grid
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|> Enum.filter(fn {{lat, lon}, _} ->
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lat >= s and lat <= n and lon >= w and lon <= e
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end)
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|> Enum.map(fn {_, row} -> row end)
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end
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end
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