defmodule Microwaveprop.Weather.IemRateLimiterTest do use ExUnit.Case, async: false alias Microwaveprop.Weather.IemRateLimiter # Each test starts an isolated limiter under a unique name so the # app-level IemRateLimiter (started by the application supervisor # with interval_ms: 0) doesn't conflict. defp start_limiter(interval_ms) do # credo:disable-for-this-line Credo.Check.Warning.UnsafeToAtom name = :"iem_rate_limiter_test_#{System.unique_integer([:positive])}" start_supervised!({IemRateLimiter, interval_ms: interval_ms, name: name}) name end describe "acquire/1" do test "first call returns immediately when the limiter is idle" do name = start_limiter(50) {elapsed_ms, :ok} = :timer.tc(fn -> IemRateLimiter.acquire(name) end, :millisecond) # Allow a generous upper bound for scheduling jitter; the point is that # no rate-limit sleep was applied on the first call. assert elapsed_ms < 20 end test "serial calls are spaced at least interval_ms apart" do name = start_limiter(50) {elapsed_ms, _} = :timer.tc( fn -> IemRateLimiter.acquire(name) IemRateLimiter.acquire(name) IemRateLimiter.acquire(name) end, :millisecond ) # Three acquires at 50ms gap → floor at 100ms (gap after call 1 and 2). assert elapsed_ms >= 100 end test "concurrent callers each get a non-overlapping slot" do name = start_limiter(50) parent = self() for _ <- 1..4 do spawn(fn -> IemRateLimiter.acquire(name) send(parent, {:acquired, System.monotonic_time(:millisecond)}) end) end timestamps = for _ <- 1..4 do assert_receive {:acquired, ts}, 500 ts end sorted = Enum.sort(timestamps) gaps = sorted |> Enum.zip(tl(sorted)) |> Enum.map(fn {a, b} -> b - a end) min_gap = Enum.min(gaps) # Allow 5ms scheduler jitter on the lower bound. assert min_gap >= 45 end test "interval_ms: 0 is a no-op" do name = start_limiter(0) {elapsed_ms, _} = :timer.tc( fn -> for _ <- 1..10, do: IemRateLimiter.acquire(name) end, :millisecond ) assert elapsed_ms < 20 end end describe "adaptive gap" do defp start_adaptive(base, max) do # credo:disable-for-this-line Credo.Check.Warning.UnsafeToAtom name = :"iem_rate_limiter_test_#{System.unique_integer([:positive])}" start_supervised!({IemRateLimiter, interval_ms: base, max_interval_ms: max, name: name}) name end test "signal_429 widens the current gap" do name = start_adaptive(50, 500) IemRateLimiter.signal_429(name) IemRateLimiter.signal_429(name) gap = IemRateLimiter.current_interval_ms(name) assert gap > 50 assert gap <= 500 end test "signal_success decays the gap back toward base" do name = start_adaptive(50, 500) # Inflate the gap Enum.each(1..5, fn _ -> IemRateLimiter.signal_429(name) end) high_gap = IemRateLimiter.current_interval_ms(name) assert high_gap > 50 # Successes drive it back down Enum.each(1..20, fn _ -> IemRateLimiter.signal_success(name) end) low_gap = IemRateLimiter.current_interval_ms(name) assert low_gap < high_gap # But never below the configured base. assert low_gap >= 50 end test "max_interval_ms is a hard ceiling" do name = start_adaptive(100, 400) Enum.each(1..50, fn _ -> IemRateLimiter.signal_429(name) end) assert IemRateLimiter.current_interval_ms(name) == 400 end end describe "unregistered server paths" do test "acquire/1 with a live PID succeeds via the is_pid clause" do # credo:disable-for-this-line Credo.Check.Warning.UnsafeToAtom name = :"iem_rate_limiter_pid_test_#{System.unique_integer([:positive])}" pid = start_supervised!({IemRateLimiter, interval_ms: 0, name: name}) assert IemRateLimiter.acquire(pid) == :ok assert IemRateLimiter.signal_429(pid) == :ok assert IemRateLimiter.signal_success(pid) == :ok assert IemRateLimiter.current_interval_ms(pid) == 0 end test "acquire/1 returns :ok when server is not registered" do assert IemRateLimiter.acquire(:nonexistent_limiter_12345) == :ok end test "signal_429/1 returns :ok when server is not registered" do assert IemRateLimiter.signal_429(:nonexistent_limiter_12345) == :ok end test "signal_success/1 returns :ok when server is not registered" do assert IemRateLimiter.signal_success(:nonexistent_limiter_12345) == :ok end test "current_interval_ms/1 returns 0 when server is not registered" do assert IemRateLimiter.current_interval_ms(:nonexistent_limiter_12345) == 0 end end end