Don't allowing playing when waiting for the end after last MIDI command.

This commit is contained in:
Pim Kunis 2020-10-10 21:36:01 +02:00
parent 60361b02ae
commit 4992bd8cdc

View file

@ -7,8 +7,8 @@ defmodule MIDITools.Player do
GenServer.start_link(__MODULE__, arg, name: __MODULE__)
end
def set_schedule(schedule, end_time) do
GenServer.call(__MODULE__, {:set_schedule, schedule, end_time})
def set_schedule(schedule, duration) do
GenServer.call(__MODULE__, {:set_schedule, schedule, duration})
end
def play do
@ -36,25 +36,28 @@ defmodule MIDITools.Player do
schedule: [],
schedule_left: [],
start_time: epoch,
end_time: 0,
duration: 0,
synth: synth,
repeat: false
repeat: false,
playing: false
}}
end
@impl true
def handle_call({:set_schedule, schedule, end_time}, _from, state) do
{:reply, :ok, %{state | schedule: schedule, schedule_left: schedule, end_time: end_time}}
def handle_call({:set_schedule, schedule, duration}, _from, state) do
{:reply, :ok, %{state | schedule: schedule, schedule_left: schedule, duration: duration}}
end
def handle_call(:play, _from, %{timer: timer} = state) when timer != nil do
{:reply, :already_started, state}
def handle_call(:play, _from, %{playing: true} = state) do
{:reply, {:error, :already_started}, state}
end
def handle_call(:play, _from, %{schedule: schedule} = state) do
start_time = Timex.now()
timer = start_timer(schedule, start_time)
{:reply, :ok, %{state | timer: timer, start_time: start_time, schedule_left: schedule}}
{:reply, :ok,
%{state | timer: timer, start_time: start_time, schedule_left: schedule, playing: true}}
end
def handle_call({:set_repeat, repeat}, _from, state) do
@ -63,7 +66,7 @@ defmodule MIDITools.Player do
def handle_call(:stop_playing, _from, %{timer: timer} = state) do
Process.cancel_timer(timer, info: false)
{:reply, :ok, %{state | timer: nil}}
{:reply, :ok, %{state | timer: nil, playing: false}}
end
@impl true
@ -73,21 +76,24 @@ defmodule MIDITools.Player do
schedule_left: schedule_left,
start_time: start_time,
synth: synth,
repeat: repeat,
end_time: end_time,
schedule: schedule
duration: duration
} = state
) do
{timer, schedule_left} = play_next_command(schedule_left, start_time, synth)
state = %{state | timer: timer, schedule_left: schedule_left}
{timer, schedule_left} = play_next_command(schedule_left, start_time, duration, synth)
{:noreply, %{state | timer: timer, schedule_left: schedule_left}}
end
if repeat and schedule_left == [] do
start_time = DateTime.add(start_time, end_time, :millisecond)
timer = start_timer(schedule, start_time)
{:noreply, %{state | start_time: start_time, timer: timer, schedule_left: schedule}}
else
{:noreply, state}
end
def handle_info(
:end,
%{repeat: true, start_time: start_time, duration: duration, schedule: schedule} = state
) do
start_time = DateTime.add(start_time, duration, :millisecond)
timer = start_timer(schedule, start_time)
{:noreply, %{state | start_time: start_time, timer: timer, schedule_left: schedule}}
end
def handle_info(:end, state) do
{:noreply, %{state | playing: false, timer: nil}}
end
# Private functions
@ -100,16 +106,26 @@ defmodule MIDITools.Player do
Process.send_after(self(), :play, delay)
end
defp play_next_command([], _start_time, _synth), do: {nil, []}
defp play_next_command([], start_time, duration, _synth) do
end_time = DateTime.add(start_time, duration, :millisecond)
delay = max(Timex.diff(end_time, Timex.now(), :millisecond), 0)
timer = Process.send_after(self(), :end, delay)
{timer, []}
end
defp play_next_command([{offset, command} | next_schedule] = schedule_left, start_time, synth) do
defp play_next_command(
[{offset, command} | next_schedule] = schedule_left,
start_time,
duration,
synth
) do
next_time = DateTime.add(start_time, offset, :millisecond)
micro_diff = Timex.diff(next_time, Timex.now(), :microsecond)
if micro_diff < 500 do
# Play command, and try to play next command too.
MIDISynth.midi(synth, command)
play_next_command(next_schedule, start_time, synth)
play_next_command(next_schedule, start_time, duration, synth)
else
# Command is too far in the future, schedule next timer.
delay = max(ceil(micro_diff / 1000), 0)