aprs.me/lib/aprsme_web/live/info_live/show.ex

833 lines
25 KiB
Elixir

defmodule AprsmeWeb.InfoLive.Show do
@moduledoc false
use AprsmeWeb, :live_view
use Gettext, backend: AprsmeWeb.Gettext
alias Aprsme.Callsign
alias Aprsme.EncodingUtils
alias Aprsme.Packets
alias AprsmeWeb.AprsSymbol
alias AprsmeWeb.Live.SharedPacketHandler
alias AprsmeWeb.MapLive.PacketUtils
alias AprsmeWeb.TimeUtils
@neighbor_limit 10
@impl true
def mount(%{"callsign" => callsign}, _session, socket) do
normalized_callsign = Callsign.normalize(callsign)
# Subscribe to Postgres notifications for live updates
if connected?(socket) do
Phoenix.PubSub.subscribe(Aprsme.PubSub, "postgres:aprsme_packets")
end
packet = get_latest_packet(normalized_callsign)
packet = if packet, do: SharedPacketHandler.enrich_with_device_info(packet)
# Get locale from socket assigns (set by LocaleHook)
locale = Map.get(socket.assigns, :locale, "en")
neighbors = get_neighbors(packet, normalized_callsign, locale)
has_weather_packets = PacketUtils.has_weather_packets?(normalized_callsign)
other_ssids = get_other_ssids(normalized_callsign)
heard_by_stations = get_heard_by_stations(normalized_callsign, locale)
stations_heard_by = get_stations_heard_by(normalized_callsign, locale)
socket =
socket
|> assign(:callsign, normalized_callsign)
|> assign(:packet, packet)
|> assign(:neighbors, neighbors)
|> assign(:page_title, "APRS station #{normalized_callsign}")
|> assign(:has_weather_packets, has_weather_packets)
|> assign(:other_ssids, other_ssids)
|> assign(:heard_by_stations, heard_by_stations)
|> assign(:stations_heard_by, stations_heard_by)
{:ok, socket}
end
@impl true
def handle_info({:postgres_packet, packet}, socket) do
SharedPacketHandler.handle_packet_update(packet, socket,
filter_fn: SharedPacketHandler.callsign_filter(socket.assigns.callsign),
process_fn: &process_packet_update/2,
enrich_packet: false
)
end
def handle_info(_message, socket), do: {:noreply, socket}
defp process_packet_update(_packet, socket) do
# Refresh data when new packet arrives
packet = get_latest_packet(socket.assigns.callsign)
packet = if packet, do: SharedPacketHandler.enrich_with_device_info(packet)
# Get locale from socket assigns
locale = Map.get(socket.assigns, :locale, "en")
neighbors = get_neighbors(packet, socket.assigns.callsign, locale)
has_weather_packets = PacketUtils.has_weather_packets?(socket.assigns.callsign)
other_ssids = get_other_ssids(socket.assigns.callsign)
heard_by_stations = get_heard_by_stations(socket.assigns.callsign, locale)
stations_heard_by = get_stations_heard_by(socket.assigns.callsign, locale)
socket =
socket
|> assign(:packet, packet)
|> assign(:neighbors, neighbors)
|> assign(:has_weather_packets, has_weather_packets)
|> assign(:other_ssids, other_ssids)
|> assign(:heard_by_stations, heard_by_stations)
|> assign(:stations_heard_by, stations_heard_by)
{:noreply, socket}
end
defp get_latest_packet(callsign) do
# Get the most recent packet for this callsign, regardless of type
# This ensures we show the most recent activity, not just position packets
# Use cached version for better performance
Aprsme.CachedQueries.get_latest_packet_for_callsign_cached(callsign)
end
defp get_neighbors(nil, _callsign, _locale), do: []
defp get_neighbors(packet, callsign, locale) do
lat = packet.lat
lon = packet.lon
if is_nil(lat) or is_nil(lon) do
[]
else
# Convert Decimal to float if needed
lat_float = to_float(lat)
lon_float = to_float(lon)
# Use the spatial query to get the closest stations
# The query already returns them sorted by distance
nearby_packets =
Packets.get_nearby_stations(
lat_float,
lon_float,
callsign,
%{limit: @neighbor_limit}
)
# Calculate distance and course for each neighbor
# The packets are already sorted by distance from the database
Enum.map(nearby_packets, fn p ->
dist = haversine(lat, lon, p.lat, p.lon)
course = calculate_course(lat, lon, p.lat, p.lon)
%{
callsign: p.sender,
distance: format_distance(dist, locale),
distance_km: dist,
course: course,
last_heard: format_timestamp_for_display(p),
packet: p
}
end)
end
end
def haversine(lat1, lon1, lat2, lon2) do
# Returns distance in km
# Convert Decimal to float if needed
lat1 = to_float(lat1)
lon1 = to_float(lon1)
lat2 = to_float(lat2)
lon2 = to_float(lon2)
r = 6371
dlat = :math.pi() / 180 * (lat2 - lat1)
dlon = :math.pi() / 180 * (lon2 - lon1)
a =
:math.sin(dlat / 2) * :math.sin(dlat / 2) +
:math.cos(:math.pi() / 180 * lat1) * :math.cos(:math.pi() / 180 * lat2) *
:math.sin(dlon / 2) * :math.sin(dlon / 2)
c = 2 * :math.atan2(:math.sqrt(a), :math.sqrt(1 - a))
r * c
end
defp to_float(value), do: EncodingUtils.to_float(value) || 0.0
defp format_timestamp_for_display(packet) do
received_at = get_received_at(packet)
if received_at do
timestamp_dt = AprsmeWeb.TimeHelpers.to_datetime(received_at)
if timestamp_dt do
%{
time_ago: AprsmeWeb.TimeHelpers.time_ago_in_words(timestamp_dt),
formatted: Calendar.strftime(timestamp_dt, "%Y-%m-%d %H:%M:%S UTC")
}
else
%{
time_ago: gettext("Unknown"),
formatted: ""
}
end
else
%{
time_ago: gettext("Unknown"),
formatted: ""
}
end
end
defp get_received_at(packet) do
cond do
Map.has_key?(packet, :received_at) -> packet.received_at
Map.has_key?(packet, "received_at") -> packet["received_at"]
true -> nil
end
end
def format_distance(km, locale \\ "en") do
case locale do
"en" ->
# Use imperial units for English locale
miles = Aprsme.Convert.kph_to_mph(km)
if miles < 1.0 do
feet = miles * 5280
"#{Float.round(feet, 0)} ft"
else
"#{Float.round(miles, 2)} mi"
end
_ ->
# Use metric units for other locales
if km < 1.0 do
"#{Float.round(km * 1000, 0)} m"
else
"#{Float.round(km, 2)} km"
end
end
end
def calculate_course(lat1, lon1, lat2, lon2) do
# Calculate bearing from point 1 to point 2
# Convert Decimal to float if needed
lat1 = to_float(lat1)
lon1 = to_float(lon1)
lat2 = to_float(lat2)
lon2 = to_float(lon2)
dlon = :math.pi() / 180 * (lon2 - lon1)
lat1_rad = :math.pi() / 180 * lat1
lat2_rad = :math.pi() / 180 * lat2
y = :math.sin(dlon) * :math.cos(lat2_rad)
x = :math.cos(lat1_rad) * :math.sin(lat2_rad) - :math.sin(lat1_rad) * :math.cos(lat2_rad) * :math.cos(dlon)
bearing = :math.atan2(y, x) * 180 / :math.pi()
# Convert to 0-360 range
if bearing < 0, do: bearing + 360, else: bearing
end
defp get_other_ssids(callsign) do
alias Aprsme.Packet
alias Aprsme.Repo
# Extract base callsign from the full callsign (remove SSID if present)
base_callsign = extract_base_callsign(callsign)
# Get recent packets for the base callsign to find other SSIDs
one_hour_ago = TimeUtils.one_hour_ago()
# Use a window function to get the most recent packet per sender
# This is much more efficient than fetching 100 packets and filtering in Elixir
query = """
WITH recent_ssids AS (
SELECT DISTINCT ON (sender)
sender, ssid, received_at, id
FROM packets
WHERE base_callsign = $1
AND received_at >= $2
AND sender != $3
ORDER BY sender, received_at DESC
)
SELECT * FROM recent_ssids
ORDER BY received_at DESC
LIMIT 10
"""
case Repo.query(query, [base_callsign, one_hour_ago, callsign]) do
{:ok, result} ->
Enum.map(result.rows, fn [sender, ssid, received_at, id] ->
# Create a minimal packet struct for display
packet = %Packet{
id: id,
sender: sender,
ssid: ssid,
received_at: received_at
}
%{
callsign: sender,
ssid: ssid,
last_heard: format_timestamp_for_display(packet),
packet: packet
}
end)
{:error, _} ->
[]
end
end
defp extract_base_callsign(callsign) do
Callsign.extract_base(callsign)
end
defp get_heard_by_stations(callsign, locale) do
alias Aprsme.Repo
# Get packets from the last month where this callsign was heard on RF
one_month_ago = DateTime.add(DateTime.utc_now(), -30, :day)
# Query to find stations that heard this callsign directly
# In APRS, the first station with an asterisk (*) in the path is the one that heard the packet directly
query = """
WITH parsed_paths AS (
SELECT
id,
sender,
path,
received_at,
lat,
lon,
location,
-- Extract the first digipeater from the path
CASE
WHEN path ~ '[A-Z0-9]+-?[0-9]*\\*' THEN
substring(path from '([A-Z0-9]+-?[0-9]*)\\*')
ELSE NULL
END as first_digipeater
FROM packets
WHERE sender = $1
AND received_at >= $2
AND path IS NOT NULL
AND path != ''
AND path !~ '^TCPIP'
AND path !~ ',TCPIP'
),
digipeater_stats AS (
SELECT
first_digipeater as digipeater,
MIN(received_at) as first_heard,
MAX(received_at) as last_heard,
COUNT(*) as packet_count,
-- Find the packet with maximum distance for this digipeater
(SELECT pp2.id
FROM parsed_paths pp2
WHERE pp2.first_digipeater = pp.first_digipeater
AND pp2.lat IS NOT NULL
AND pp2.lon IS NOT NULL
ORDER BY
ST_Distance(
pp2.location::geography,
(SELECT location::geography
FROM packets
WHERE sender = pp2.first_digipeater
AND location IS NOT NULL
ORDER BY received_at DESC
LIMIT 1)
) DESC NULLS LAST
LIMIT 1
) as longest_path_packet_id
FROM parsed_paths pp
WHERE first_digipeater IS NOT NULL
GROUP BY first_digipeater
)
SELECT
ds.digipeater,
ds.first_heard,
ds.last_heard,
ds.packet_count,
p.received_at as longest_path_time,
CASE
WHEN p.location IS NOT NULL AND dig_loc.location IS NOT NULL THEN
ST_Distance(p.location::geography, dig_loc.location::geography) / 1000.0
ELSE NULL
END as longest_distance_km
FROM digipeater_stats ds
LEFT JOIN packets p ON p.id = ds.longest_path_packet_id
LEFT JOIN LATERAL (
SELECT location
FROM packets
WHERE sender = ds.digipeater
AND location IS NOT NULL
ORDER BY received_at DESC
LIMIT 1
) dig_loc ON true
ORDER BY ds.last_heard DESC
LIMIT 50
"""
case Repo.query(query, [callsign, one_month_ago]) do
{:ok, result} ->
result.rows
|> Enum.map(fn row ->
case row do
[digipeater, first_heard, last_heard, packet_count, longest_path_time, longest_distance_km] ->
%{
digipeater: digipeater || "",
first_heard: first_heard,
last_heard: last_heard,
packet_count: packet_count || 0,
longest_distance_km: longest_distance_km,
longest_distance: if(longest_distance_km, do: format_distance(longest_distance_km, locale)),
longest_path_time: longest_path_time
}
_ ->
nil
end
end)
|> Enum.reject(&is_nil/1)
{:error, error} ->
require Logger
Logger.error("Error in get_heard_by_stations: #{inspect(error)}")
[]
end
end
defp get_stations_heard_by(callsign, locale) do
alias Aprsme.Repo
# Get packets from the last month where this callsign heard other stations on RF
one_month_ago = DateTime.add(DateTime.utc_now(), -30, :day)
# Optimized query to find stations that were heard directly by this callsign
# Eliminates correlated subqueries and reduces redundant operations
query = """
WITH digipeater_location AS (
-- Get the most recent location for the digipeater (cached once)
SELECT location::geography as dig_loc
FROM packets
WHERE sender = $1
AND location IS NOT NULL
ORDER BY received_at DESC
LIMIT 1
),
parsed_paths AS (
SELECT
id,
sender,
path,
received_at,
lat,
lon,
location,
-- Extract the first digipeater from the path more efficiently
CASE
WHEN path ~ ($1 || '\\*') THEN
substring(path from ($1 || '\\*'))
ELSE NULL
END as first_digipeater
FROM packets
WHERE path ~ ($1 || '\\*')
AND received_at >= $2
AND path IS NOT NULL
AND path != ''
AND path !~ '^TCPIP'
AND path !~ ',TCPIP'
AND lat IS NOT NULL
AND lon IS NOT NULL
),
station_stats AS (
SELECT
sender as station,
MIN(received_at) as first_heard,
MAX(received_at) as last_heard,
COUNT(*) as packet_count
FROM parsed_paths
WHERE first_digipeater = $1
GROUP BY sender
),
longest_paths AS (
-- Find the longest path packet for each station in a single pass
SELECT DISTINCT ON (pp.sender)
pp.sender,
pp.id as longest_path_packet_id,
pp.received_at as longest_path_time,
CASE
WHEN pp.location IS NOT NULL AND dl.dig_loc IS NOT NULL THEN
ST_Distance(pp.location::geography, dl.dig_loc) / 1000.0
ELSE NULL
END as longest_distance_km
FROM parsed_paths pp
CROSS JOIN digipeater_location dl
WHERE pp.first_digipeater = $1
ORDER BY pp.sender,
ST_Distance(pp.location::geography, dl.dig_loc) DESC NULLS LAST,
pp.received_at DESC
)
SELECT
ss.station,
ss.first_heard,
ss.last_heard,
ss.packet_count,
lp.longest_path_time,
lp.longest_distance_km
FROM station_stats ss
LEFT JOIN longest_paths lp ON lp.sender = ss.station
ORDER BY ss.last_heard DESC
LIMIT 50
"""
case Repo.query(query, [callsign, one_month_ago]) do
{:ok, result} ->
result.rows
|> Enum.map(fn row ->
case row do
[station, first_heard, last_heard, packet_count, longest_path_time, longest_distance_km] ->
%{
station: station || "",
first_heard: first_heard,
last_heard: last_heard,
packet_count: packet_count || 0,
longest_distance_km: longest_distance_km,
longest_distance: if(longest_distance_km, do: format_distance(longest_distance_km, locale)),
longest_path_time: longest_path_time
}
_ ->
nil
end
end)
|> Enum.reject(&is_nil/1)
{:error, error} ->
require Logger
Logger.error("Error in get_stations_heard_by: #{inspect(error)}")
[]
end
end
@doc """
Renders an APRS symbol style for use in templates.
"""
def render_symbol_style(packet, size \\ 32) do
if packet do
{symbol_table_id, symbol_code} = AprsSymbol.extract_from_packet(packet)
AprsSymbol.render_style(symbol_table_id, symbol_code, size)
else
# Return empty style if no packet
""
end
end
@doc """
Renders an APRS symbol as HTML for overlay symbols that need proper overlay character display.
"""
def render_symbol_html(packet, size \\ 32) do
if packet do
{symbol_table_id, symbol_code} = AprsSymbol.extract_from_packet(packet)
# Check if this is an overlay symbol
if symbol_table_id && String.match?(symbol_table_id, ~r/^[A-Z0-9]$/) do
# Use layered sprite backgrounds for overlay symbols
sprite_info = AprsSymbol.get_sprite_info(symbol_table_id, symbol_code)
overlay_sprite_info = AprsSymbol.get_overlay_character_sprite_info(symbol_table_id)
raw("""
<div style="
position: relative;
width: #{size}px;
height: #{size}px;
background-image: url(#{overlay_sprite_info.sprite_file}), url(#{sprite_info.sprite_file});
background-position: #{overlay_sprite_info.background_position}, #{sprite_info.background_position};
background-size: #{overlay_sprite_info.background_size}, #{sprite_info.background_size};
background-repeat: no-repeat, no-repeat;
image-rendering: pixelated;
display: inline-block;
vertical-align: middle;
margin-bottom: -6px;
">
</div>
""")
else
# Use style rendering for non-overlay symbols
raw("""
<div style="#{AprsSymbol.render_style(symbol_table_id, symbol_code, size)}"></div>
""")
end
else
# Return empty if no packet
raw("")
end
end
defp decode_aprs_path(path) when is_binary(path) and path != "" do
path_elements = String.split(path, ",")
decoded_elements = Enum.map(path_elements, &decode_path_element/1)
# Filter out nil results and join with explanations
decoded_elements
|> Enum.reject(&is_nil/1)
|> Enum.join("")
end
defp decode_aprs_path(_), do: nil
@doc """
Parses the APRS path and creates linked callsigns where appropriate.
Returns a list of tuples: {:text, string} or {:link, callsign, display_text}
"""
def parse_path_with_links(path) when is_binary(path) and path != "" do
path
|> String.split(",")
|> Enum.map(&parse_path_element_with_link/1)
end
def parse_path_with_links(_), do: []
defp parse_path_element_with_link(element) do
element = String.trim(element)
# Check if it's a callsign (with or without SSID)
if Regex.match?(~r/^[A-Z0-9]{1,6}(-\d{1,2})?(\*)?$/, element) and
not String.starts_with?(element, "WIDE") and
not String.starts_with?(element, "TRACE") and
not String.starts_with?(element, "RELAY") and
not String.starts_with?(element, "TCPIP") and
not String.starts_with?(element, "q") do
# Remove asterisk if present (indicates the packet was digipeated through this station)
callsign = String.replace(element, "*", "")
display = if String.ends_with?(element, "*"), do: "#{callsign}*", else: callsign
{:link, callsign, display}
else
# Not a linkable callsign, just return as text
{:text, element, element}
end
end
defp decode_path_element(element) do
element = String.trim(element)
cond do
# WIDE digipeaters
String.starts_with?(element, "WIDE") ->
case element do
"WIDE1-1" -> gettext("WIDE1-1 (Wide area digipeater, 1 hop)")
"WIDE2-1" -> gettext("WIDE2-1 (Wide area digipeater, 2 hops)")
"WIDE3-1" -> gettext("WIDE3-1 (Wide area digipeater, 3 hops)")
"WIDE4-1" -> gettext("WIDE4-1 (Wide area digipeater, 4 hops)")
"WIDE5-1" -> gettext("WIDE5-1 (Wide area digipeater, 5 hops)")
"WIDE6-1" -> gettext("WIDE6-1 (Wide area digipeater, 6 hops)")
"WIDE7-1" -> gettext("WIDE7-1 (WIDE area digipeater, 7 hops)")
"WIDE1-2" -> gettext("WIDE1-2 (Wide area digipeater, 1 hop, 2nd attempt)")
"WIDE2-2" -> gettext("WIDE2-2 (Wide area digipeater, 2 hops, 2nd attempt)")
_ -> gettext("WIDE digipeater (%{element})", element: element)
end
# TRACE digipeaters
String.starts_with?(element, "TRACE") ->
case element do
"TRACE1-1" -> gettext("TRACE1-1 (Trace digipeater, 1 hop)")
"TRACE2-1" -> gettext("TRACE2-1 (Trace digipeater, 2 hops)")
"TRACE3-1" -> gettext("TRACE3-1 (Trace digipeater, 3 hops)")
"TRACE4-1" -> gettext("TRACE4-1 (Trace digipeater, 4 hops)")
"TRACE5-1" -> gettext("TRACE5-1 (Trace digipeater, 5 hops)")
"TRACE6-1" -> gettext("TRACE6-1 (Trace digipeater, 6 hops)")
"TRACE7-1" -> gettext("TRACE7-1 (Trace digipeater, 7 hops)")
_ -> gettext("TRACE digipeater (%{element})", element: element)
end
# RELAY digipeaters
String.starts_with?(element, "RELAY") ->
case element do
"RELAY" -> gettext("RELAY (Relay digipeater)")
"RELAY-1" -> gettext("RELAY-1 (Relay digipeater, 1 hop)")
"RELAY-2" -> gettext("RELAY-2 (Relay digipeater, 2 hops)")
_ -> gettext("RELAY digipeater (%{element})", element: element)
end
# qAC (APRS-IS connection)
element == "qAC" ->
"qAC (APRS-IS connection)"
# qAO (APRS-IS origin)
element == "qAO" ->
"qAO (APRS-IS origin)"
# qAR (APRS-IS relay)
element == "qAR" ->
"qAR (APRS-IS relay)"
# qAS (APRS-IS server)
element == "qAS" ->
"qAS (APRS-IS server)"
# qAX (APRS-IS client)
element == "qAX" ->
"qAX (APRS-IS client)"
# qAY (APRS-IS gateway)
element == "qAY" ->
"qAY (APRS-IS gateway)"
# qAZ (APRS-IS zone)
element == "qAZ" ->
"qAZ (APRS-IS zone)"
# qBU (APRS-IS user)
element == "qBU" ->
"qBU (APRS-IS user)"
# qBV (APRS-IS vendor)
element == "qBV" ->
"qBV (APRS-IS vendor)"
# qBW (APRS-IS web)
element == "qBW" ->
"qBW (APRS-IS web)"
# qBX (APRS-IS experimental)
element == "qBX" ->
"qBX (APRS-IS experimental)"
# qBY (APRS-IS Y2K)
element == "qBY" ->
"qBY (APRS-IS Y2K)"
# qBZ (APRS-IS Zulu)
element == "qBZ" ->
"qBZ (APRS-IS Zulu)"
# qCA (APRS-IS client application)
element == "qCA" ->
"qCA (APRS-IS client application)"
# qCB (APRS-IS client browser)
element == "qCB" ->
"qCB (APRS-IS client browser)"
# qCC (APRS-IS client console)
element == "qCC" ->
"qCC (APRS-IS client console)"
# qCD (APRS-IS client daemon)
element == "qCD" ->
"qCD (APRS-IS client daemon)"
# qCE (APRS-IS client editor)
element == "qCE" ->
"qCE (APRS-IS client editor)"
# qCF (APRS-IS client filter)
element == "qCF" ->
"qCF (APRS-IS client filter)"
# qCG (APRS-IS client gateway)
element == "qCG" ->
"qCG (APRS-IS client gateway)"
# qCH (APRS-IS client host)
element == "qCH" ->
"qCH (APRS-IS client host)"
# qCI (APRS-IS client interface)
element == "qCI" ->
"qCI (APRS-IS client interface)"
# qCJ (APRS-IS client java)
element == "qCJ" ->
"qCJ (APRS-IS client java)"
# qCK (APRS-IS client kernel)
element == "qCK" ->
"qCK (APRS-IS client kernel)"
# qCL (APRS-IS client library)
element == "qCL" ->
"qCL (APRS-IS client library)"
# qCM (APRS-IS client module)
element == "qCM" ->
"qCM (APRS-IS client module)"
# qCN (APRS-IS client network)
element == "qCN" ->
"qCN (APRS-IS client network)"
# qCO (APRS-IS client object)
element == "qCO" ->
"qCO (APRS-IS client object)"
# qCP (APRS-IS client protocol)
element == "qCP" ->
"qCP (APRS-IS client protocol)"
# qCQ (APRS-IS client query)
element == "qCQ" ->
"qCQ (APRS-IS client query)"
# qCR (APRS-IS client router)
element == "qCR" ->
"qCR (APRS-IS client router)"
# qCS (APRS-IS client server)
element == "qCS" ->
"qCS (APRS-IS client server)"
# qCT (APRS-IS client terminal)
element == "qCT" ->
"qCT (APRS-IS client terminal)"
# qCU (APRS-IS client user)
element == "qCU" ->
"qCU (APRS-IS client user)"
# qCV (APRS-IS client vendor)
element == "qCV" ->
"qCV (APRS-IS client vendor)"
# qCW (APRS-IS client web)
element == "qCW" ->
"qCW (APRS-IS client web)"
# qCX (APRS-IS client experimental)
element == "qCX" ->
"qCX (APRS-IS client experimental)"
# qCY (APRS-IS client Y2K)
element == "qCY" ->
"qCY (APRS-IS client Y2K)"
# qCZ (APRS-IS client Zulu)
element == "qCZ" ->
"qCZ (APRS-IS client Zulu)"
# TCPIP digipeaters
String.starts_with?(element, "TCPIP") ->
case element do
"TCPIP" -> gettext("TCPIP (Internet gateway)")
"TCPIP*" -> gettext("TCPIP* (Internet gateway, no forward)")
_ -> gettext("TCPIP gateway (%{element})", element: element)
end
# Generic callsign with SSID (likely a digipeater)
Regex.match?(~r/^[A-Z0-9]+-\d+$/, element) ->
gettext("%{element} (Digipeater)", element: element)
# Generic callsign without SSID
Regex.match?(~r/^[A-Z0-9]+$/, element) ->
gettext("%{element} (Station)", element: element)
# Default case
true ->
gettext("%{element} (Unknown)", element: element)
end
end
end