defmodule AprsmeWeb.MapLive.PacketProcessor do @moduledoc """ Handles real-time packet processing, filtering, and display logic. """ import Phoenix.Component, only: [assign: 3] alias Aprsme.GeoUtils alias AprsmeWeb.Live.Shared.BoundsUtils alias AprsmeWeb.Live.Shared.CoordinateUtils alias AprsmeWeb.Live.Shared.PacketUtils, as: SharedPacketUtils alias AprsmeWeb.MapLive.DataBuilder alias Phoenix.LiveView alias Phoenix.LiveView.Socket @max_visible_packets 1000 @doc """ Process a packet for display on the map. Pushes events directly to the socket (used for single-packet path). """ @spec process_packet_for_display(map(), Socket.t()) :: {:noreply, Socket.t()} def process_packet_for_display(packet, socket) do {lat, lon, _data_extended} = CoordinateUtils.get_coordinates(packet) callsign_key = SharedPacketUtils.get_callsign_key(packet) # Handle packet visibility logic socket = handle_packet_visibility(packet, lat, lon, callsign_key, socket) # Update last update timestamp for real-time display in map sidebar socket = assign(socket, :last_update_at, DateTime.utc_now()) {:noreply, socket} end @doc """ Process a packet for batch display. Updates socket state but does NOT push events. Returns `{socket, marker_data | nil, removed_id | nil}` where marker_data is the data that should be included in a batched push_event, and removed_id is a callsign key that was removed from visible_packets (for batched remove_markers_batch events). """ @spec process_packet_for_marker_data(map(), Socket.t()) :: {Socket.t(), map() | nil, String.t() | nil} def process_packet_for_marker_data(packet, socket) do {lat, lon, _data_extended} = CoordinateUtils.get_coordinates(packet) callsign_key = SharedPacketUtils.get_callsign_key(packet) batch_visibility_action(packet, lat, lon, callsign_key, socket) end @doc """ Handle packet visibility logic based on bounds and existing markers. """ @spec handle_packet_visibility(map(), number() | nil, number() | nil, binary(), Socket.t()) :: Socket.t() def handle_packet_visibility(packet, lat, lon, callsign_key, socket) do visibility_action(packet, lat, lon, callsign_key, socket) end defp visibility_action(packet, lat, lon, callsign_key, socket) when not is_nil(lat) and not is_nil(lon) do in_bounds = within_bounds?(%{lat: lat, lon: lon}, socket.assigns.map_bounds) has_marker = Map.has_key?(socket.assigns.visible_packets, callsign_key) dispatch_visibility({in_bounds, has_marker}, packet, lat, lon, callsign_key, socket) end defp visibility_action(_packet, _lat, _lon, _callsign_key, socket), do: socket defp dispatch_visibility({false, true}, _packet, _lat, _lon, callsign_key, socket) do remove_marker_from_map(callsign_key, socket) end defp dispatch_visibility({true, false}, packet, lat, lon, _callsign_key, socket) do handle_valid_postgres_packet(packet, lat, lon, socket) end defp dispatch_visibility({true, true}, packet, lat, lon, callsign_key, socket) do existing = socket.assigns.visible_packets[callsign_key] if moved_significantly?(existing, lat, lon) do handle_valid_postgres_packet(packet, lat, lon, socket) else new_visible_packets = Map.put(socket.assigns.visible_packets, callsign_key, packet) assign(socket, :visible_packets, new_visible_packets) end end defp dispatch_visibility(_, _packet, _lat, _lon, _callsign_key, socket), do: socket # A station's marker is moved only if we can compare the two coordinates AND # the delta exceeds the 50-meter significance threshold. Any missing/invalid # existing coordinate means "not a significant move" (keep existing marker). defp moved_significantly?(existing_packet, new_lat, new_lon) do case CoordinateUtils.get_coordinates(existing_packet) do {elat, elon, _} when is_number(elat) and is_number(elon) -> GeoUtils.significant_movement?(elat, elon, new_lat, new_lon, 50) _ -> false end end @doc """ Handle valid postgres packet by adding it to visible packets and displaying it. """ @spec handle_valid_postgres_packet(map(), number() | nil, number() | nil, Socket.t()) :: Socket.t() def handle_valid_postgres_packet(packet, _lat, _lon, socket) do {socket, marker_data} = prepare_packet_state(packet, socket) render_for_zoom(socket.assigns.map_zoom, marker_data, socket) end defp render_for_zoom(zoom, _marker_data, socket) when zoom <= 8, do: socket defp render_for_zoom(_zoom, nil, socket), do: socket defp render_for_zoom(_zoom, marker_data, socket) do send_marker_with_popup_check(socket, marker_data) end @doc """ Remove marker from map and update visible packets. """ @spec remove_marker_from_map(binary(), Socket.t()) :: Socket.t() def remove_marker_from_map(callsign_key, socket) do socket = LiveView.push_event(socket, "remove_marker", %{id: callsign_key}) new_visible_packets = Map.delete(socket.assigns.visible_packets, callsign_key) assign(socket, :visible_packets, new_visible_packets) end # Batch-mode visibility: same logic as visibility_action but returns # {socket, marker_data | nil, removed_id | nil} without pushing events defp batch_visibility_action(packet, lat, lon, callsign_key, socket) when not is_nil(lat) and not is_nil(lon) do in_bounds = within_bounds?(%{lat: lat, lon: lon}, socket.assigns.map_bounds) has_marker = Map.has_key?(socket.assigns.visible_packets, callsign_key) batch_dispatch({in_bounds, has_marker}, packet, lat, lon, callsign_key, socket) end defp batch_visibility_action(_packet, _lat, _lon, _callsign_key, socket) do {socket, nil, nil} end # Out of bounds but has marker — remove state only, return the removed key # so the caller can batch all removals into one push_event defp batch_dispatch({false, true}, _packet, _lat, _lon, callsign_key, socket) do new_visible_packets = Map.delete(socket.assigns.visible_packets, callsign_key) socket = assign(socket, :visible_packets, new_visible_packets) {socket, nil, callsign_key} end # In bounds, no existing marker — add it defp batch_dispatch({true, false}, packet, _lat, _lon, _callsign_key, socket) do {socket, marker_data} = prepare_packet_state(packet, socket) {socket, marker_data, nil} end # In bounds, existing marker — update if significant movement. defp batch_dispatch({true, true}, packet, lat, lon, callsign_key, socket) do existing = socket.assigns.visible_packets[callsign_key] if moved_significantly?(existing, lat, lon) do {socket, marker_data} = prepare_packet_state(packet, socket) {socket, marker_data, nil} else new_visible_packets = Map.put(socket.assigns.visible_packets, callsign_key, packet) {assign(socket, :visible_packets, new_visible_packets), nil, nil} end end defp batch_dispatch(_, _packet, _lat, _lon, _callsign_key, socket) do {socket, nil, nil} end # Shared: updates visible_packets state and builds marker data. # Returns {socket, marker_data | nil}. Does NOT push events. # When an existing visible packet for the same callsign is replaced, # the marker_data includes a "convert_from" key with the old callsign_key # so the JS can convert the old marker to a historical dot via O(1) lookup. defp prepare_packet_state(packet, socket) do callsign_key = SharedPacketUtils.get_callsign_key(packet) had_existing = Map.has_key?(socket.assigns.visible_packets, callsign_key) new_visible_packets = socket.assigns.visible_packets |> Map.put(callsign_key, packet) |> prune_if_over_cap() socket = assign(socket, :visible_packets, new_visible_packets) marker_data = build_marker_data(socket.assigns.map_zoom, packet, callsign_key, had_existing, socket) {socket, marker_data} end # Cap the visible-packets map at @max_visible_packets; pattern-match on # map_size so we only call the pruner when we're actually over the cap. defp prune_if_over_cap(packets) when map_size(packets) > @max_visible_packets do SharedPacketUtils.prune_oldest_packets(packets, @max_visible_packets) end defp prune_if_over_cap(packets), do: packets # At low zoom, we use the heatmap instead of individual markers, so no # marker_data is built at all. defp build_marker_data(zoom, _packet, _key, _had_existing, _socket) when zoom <= 8, do: nil defp build_marker_data(_zoom, packet, callsign_key, had_existing, socket) do case DataBuilder.build_packet_data(packet, true, get_locale(socket)) do nil -> nil data -> maybe_tag_convert_from(data, had_existing, callsign_key) end end defp maybe_tag_convert_from(data, true, callsign_key), do: Map.put(data, "convert_from", callsign_key) defp maybe_tag_convert_from(data, false, _callsign_key), do: data # Private helper functions defp within_bounds?(coords, bounds) do BoundsUtils.within_bounds?(coords, bounds) end defp get_locale(socket) do Map.get(socket.assigns, :locale, "en") end defp send_marker_with_popup_check(socket, marker_data) do # Strip convert_from — the single-packet JS handler uses its own scan logic. marker_data = Map.delete(marker_data, "convert_from") push_new_packet(socket.assigns.station_popup_open, socket, marker_data) end # When a popup is already open, keep it open by pinning openPopup=false on # the fresh marker so the client doesn't re-open or steal focus. defp push_new_packet(true, socket, marker_data) do LiveView.push_event(socket, "new_packet", Map.put(marker_data, :openPopup, false)) end defp push_new_packet(false, socket, marker_data) do LiveView.push_event(socket, "new_packet", marker_data) end end