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8e15c990fa
| Author | SHA1 | Date | |
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8e15c990fa | ||
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e1dc3c1de7 | ||
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efc0604c1d | ||
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a048e084e7 |
@@ -1,9 +1,7 @@
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import gleam/erlang/atom
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import gleam/erlang/process.{type Subject}
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import gleam/list
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import gleam/string
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import musicplayer/input/internal as internal_input
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import input/internal as internal_input
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pub type Key {
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Char(String)
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@@ -37,12 +35,9 @@ pub fn from_list(l: List(String)) -> Key {
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[ci] | [ci, _] if ci == input_introducer -> Continue(l)
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[ii, cmd, tail] if ii == input_introducer -> {
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case tail {
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// Return
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"\r" -> Input(cmd)
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// Backspace
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"\u{007F}" -> Continue([ii, string.drop_end(cmd, 1)])
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_ -> Continue([ii, cmd <> tail])
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case tail == "\r" {
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True -> Input(cmd)
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False -> Continue([ii, cmd <> tail])
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}
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}
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@@ -60,20 +55,14 @@ pub fn start_raw_shell() {
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internal_input.shell_start_interactive(#(no_shell, raw))
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}
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pub fn read_input_until_key(
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l: List(String),
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taps: List(Subject(List(String))),
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) -> Key {
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pub fn read_input_until_key(l: List(String)) -> Key {
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case
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internal_input.read_input()
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|> list.wrap
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|> list.append(l, _)
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|> from_list
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{
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Continue(l) -> {
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list.each(taps, process.send(_, l))
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read_input_until_key(l, taps)
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}
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Continue(l) -> read_input_until_key(l)
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k -> k
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}
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}
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@@ -2,14 +2,16 @@ import gleam/json
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import gleam/result
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import gleam/string
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import musicplayer/input/key.{type Key}
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import musicplayer/mpv/internal as internal_control
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import musicplayer/tcp/reason.{type Reason}
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import musicplayer/tcp/tcp.{type Socket}
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import input/key.{type Key}
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import mpv/internal/control as internal_control
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import tcp/reason.{type Reason}
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import tcp/tcp.{type Socket}
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pub type Control {
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TogglePlayPause
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Search
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Exit
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}
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@@ -17,7 +19,12 @@ pub type ControlError {
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ControlError(details: String)
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}
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// TODO this should also have a context:
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// `/` in "artist list" "context will should be`control.Search`
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// `<some char>` in "create new playlist" context should be `control.Input`
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// `q` in most contexts should be `Exit`, but in a popup it should be `Close`
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pub fn from_key(key: Key) -> Result(Control, Nil) {
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echo key
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case key {
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key.Char(char) -> char_control(char)
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_ -> Error(Nil)
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@@ -28,6 +35,7 @@ fn char_control(char: String) -> Result(Control, Nil) {
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case char {
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" " -> Ok(TogglePlayPause)
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"q" -> Ok(Exit)
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"/" -> Ok(Search)
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_ -> Error(Nil)
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}
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}
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123
src/mpv/mpv.gleam
Normal file
123
src/mpv/mpv.gleam
Normal file
@@ -0,0 +1,123 @@
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import gleam/erlang/process.{type Subject}
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import gleam/float
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import gleam/otp/actor
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import gleam/result
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import gleam/string
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import input/key.{type Key}
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import mpv/control.{type Control}
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import tcp/reason
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import tcp/tcp.{type Socket}
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type State(socket, inject_input, exit) {
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State(socket: Socket, inject_input: Subject(Key), exit: Subject(Nil))
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}
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pub fn new(exit: Subject(Nil)) -> Result(Nil, String) {
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// TODO start up mvp here, currently hi-jacking `naviterm`s socket
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let socket_path = "/tmp/naviterm_mpv"
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case tcp.connect(socket_path) {
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Error(r) -> Error("Could not connect to mpv: " <> reason.to_string(r))
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Ok(socket) -> {
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// `inject_input` is created by name to allow the process that
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// owns `read_input` to be able to register it, while the agent
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// also have a reference to it to be able to inject input
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let inject_input_name = process.new_name("inject_input")
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let inject_input = process.named_subject(inject_input_name)
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case
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actor.new(State(socket, inject_input, exit))
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|> actor.on_message(handle_message)
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|> actor.start
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{
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Error(start_error) ->
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Error("Could not start actor: " <> string.inspect(start_error))
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Ok(actor.Started(data:, ..)) -> {
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echo "waiting for input"
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key.start_raw_shell()
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process.spawn(fn() {
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let input = process.new_subject()
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let assert Ok(_) =
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process.register(process.self(), inject_input_name)
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process.send(input, key.Continue([]))
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read_input(data, input, inject_input)
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})
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Ok(Nil)
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}
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}
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}
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}
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}
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fn handle_message(
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state: State(socket, inject, exit),
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control: Control,
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) -> actor.Next(State(socket, inject, exit), Control) {
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case control {
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control.Search -> {
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process.send(state.inject_input, key.Continue([key.input_introducer]))
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actor.continue(state)
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}
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control.TogglePlayPause -> {
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echo "toggling play/pause"
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let _ =
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result.map_error(control.toggle_play_pause(state.socket), fn(err) {
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echo "Could not toggle play/pause: " <> err.details
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})
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let _ =
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result.map(control.get_playback_time(state.socket), fn(playback) {
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echo "playback: " <> float.to_string(playback.data)
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})
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actor.continue(state)
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}
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control.Exit -> {
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process.send(state.exit, Nil)
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actor.stop()
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}
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}
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}
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/// read_input selects from two subjects: `input` and `inject`
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/// `inject` can be used by the agent to send back input character(s)
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/// to force the input to be something other than user input.
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///
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/// This is useful to create a `Key` without the user having to
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/// input all of the character(s), to then be able to create a
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/// `Control` from that `Key`
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fn read_input(
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agent: Subject(Control),
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input: Subject(Key),
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inject_input: Subject(Key),
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) -> Nil {
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let buffer = case
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process.new_selector()
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|> process.select(input)
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|> process.select(inject_input)
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|> process.selector_receive_forever
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{
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key.Continue(buffer) -> buffer
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_ -> []
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}
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case
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key.read_input_until_key(buffer)
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|> control.from_key
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{
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Error(_) -> Nil
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Ok(control) -> process.send(agent, control)
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}
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// currently needed to allow injects to be received. not nice
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// maybe timed out select on inject first, then normal?
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process.sleep(100)
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process.send(input, key.Continue([]))
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read_input(agent, input, inject_input)
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}
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@@ -1,22 +1,8 @@
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import gleam/erlang/process.{type Name}
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import musicplayer/input/input.{type Listener}
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import musicplayer/input/key.{type Key}
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import musicplayer/mpv/mpv
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import gleam/erlang/process
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import mpv/mpv
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pub fn main() -> Nil {
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let exit = process.new_subject()
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// `inject_input` is created by name to allow the `input` process that
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// owns `read_input` to be able to register and receive from it,
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// while the any other processes can use the name reference to
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// inject input
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let inject_input_name: Name(Key) = process.new_name("inject_input")
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let assert Ok(mpv_listener) = mpv.new(exit)
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let listeners: List(Listener) = [mpv_listener]
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input.new(listeners, inject_input_name)
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let assert Ok(_) = mpv.new(exit)
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process.receive_forever(exit)
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}
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@@ -1,59 +0,0 @@
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import gleam/erlang/process.{type Name, type Subject}
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import gleam/list
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import gleam/option.{type Option, None, Some}
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import musicplayer/input/key.{type Key}
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pub type Listener {
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InputListener(final: Subject(Key), tap: Option(Subject(List(String))))
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}
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/// `new` accepts a list of listeners that are composed of two subjects;
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/// - one to get the final `Key` and
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/// - one to tap the input as it is read from i/o
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/// and
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/// - a subject name that is used to create a `Subject` that other processes
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/// know they can inject a `Key` into the input with
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pub fn new(listeners: List(Listener), inject_input_name: Name(Key)) -> Nil {
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let _ =
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process.spawn(fn() {
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let inject_input: Subject(Key) = process.named_subject(inject_input_name)
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let assert Ok(_) = process.register(process.self(), inject_input_name)
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// Extract all finals and taps (that are defined)
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let #(finals, taps) =
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list.fold(listeners, #([], []), fn(acc, listener) {
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let #(finals, taps) = acc
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let finals = [listener.final, ..finals]
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let taps = case listener.tap {
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Some(t) -> [t, ..taps]
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None -> taps
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}
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#(finals, taps)
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})
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read_input(finals, taps, inject_input)
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})
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Nil
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}
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fn read_input(
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finals: List(Subject(Key)),
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taps: List(Subject(List(String))),
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inject_input: Subject(Key),
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) -> Nil {
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let buffer = case process.receive(inject_input, 1) {
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Ok(key.Continue(buffer)) -> buffer
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Ok(_) | Error(_) -> []
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}
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let _ =
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key.read_input_until_key(buffer, taps)
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|> fn(k) { list.each(finals, process.send(_, k)) }
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read_input(finals, taps, inject_input)
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}
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@@ -1,89 +0,0 @@
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import gleam/erlang/process.{type Subject}
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import gleam/float
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import gleam/option.{None}
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import gleam/otp/actor
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import gleam/result
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import gleam/string
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import musicplayer/input/input.{type Listener, InputListener}
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import musicplayer/input/key.{type Key}
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import musicplayer/mpv/control.{type Control}
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import musicplayer/tcp/reason
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import musicplayer/tcp/tcp.{type Socket}
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type State(socket, exit) {
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State(socket: Socket, exit: Subject(Nil))
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}
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pub fn new(exit: Subject(Nil)) -> Result(Listener, String) {
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// TODO start up mvp here, currently hi-jacking `naviterm`s socket
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let socket_path = "/tmp/naviterm_mpv"
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case tcp.connect(socket_path) {
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Error(r) -> Error("Could not connect to mpv: " <> reason.to_string(r))
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Ok(socket) -> {
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let final_input_name = process.new_name("mpv_final_input")
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let final_input: Subject(Key) = process.named_subject(final_input_name)
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case
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actor.new(State(socket, exit))
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|> actor.on_message(handle_message)
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|> actor.start
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{
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Error(start_error) ->
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Error("Could not start actor: " <> string.inspect(start_error))
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Ok(actor.Started(data:, ..)) -> {
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echo "waiting for input"
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key.start_raw_shell()
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process.spawn(fn() {
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let assert Ok(_) =
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process.register(process.self(), final_input_name)
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handle_key(final_input, data)
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})
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Ok(InputListener(final: final_input, tap: None))
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}
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}
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}
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}
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}
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fn handle_message(
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state: State(socket, exit),
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control: Control,
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) -> actor.Next(State(socket, exit), Control) {
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case control {
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control.TogglePlayPause -> {
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echo "toggling play/pause"
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let _ =
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result.map_error(control.toggle_play_pause(state.socket), fn(err) {
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echo "Could not toggle play/pause: " <> err.details
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})
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let _ =
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result.map(control.get_playback_time(state.socket), fn(playback) {
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echo "playback: " <> float.to_string(playback.data)
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})
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actor.continue(state)
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}
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control.Exit -> {
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process.send(state.exit, Nil)
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actor.stop()
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}
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}
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}
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/// `handle_key` listens to a subject onto which `input` will send messages with
|
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/// parsed `Key`s which will be mapped to `Control`s (if possible)
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fn handle_key(final_input: Subject(Key), subject: Subject(Control)) -> Nil {
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let _ =
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process.receive_forever(final_input)
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|> control.from_key
|
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|> result.map(process.send(subject, _))
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handle_key(final_input, subject)
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}
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@@ -2,7 +2,7 @@ import gleam/bit_array
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import gleam/erlang/atom
|
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import gleam/result
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|
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import musicplayer/tcp/reason.{type Reason}
|
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import tcp/reason.{type Reason}
|
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|
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pub type Socket
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|
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@@ -4,8 +4,8 @@ import gleam/otp/actor
|
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import gleam/result
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import gleam/string
|
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|
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import musicplayer/tcp/reason.{type Reason}
|
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import musicplayer/tcp/tcp
|
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import tcp/reason.{type Reason}
|
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import tcp/tcp
|
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|
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pub type Message {
|
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Shutdown
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|
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@@ -1,7 +1,7 @@
|
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import gleam/list
|
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import gleeunit
|
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|
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import musicplayer/input/key.{type Key, Char, csi, esc, input_introducer as ii}
|
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import input/key.{type Key, Char, csi, esc}
|
||||
|
||||
pub fn main() -> Nil {
|
||||
gleeunit.main()
|
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@@ -27,11 +27,10 @@ pub fn key_from_list_test() {
|
||||
]
|
||||
|
||||
let input_tests = [
|
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TestCase([ii], key.Continue([ii])),
|
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TestCase([ii, "a"], key.Continue([ii, "a"])),
|
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TestCase([ii, "a", "b"], key.Continue([ii, "ab"])),
|
||||
TestCase([ii, "ab", "\u{007F}"], key.Continue([ii, "a"])),
|
||||
TestCase([ii, "ab", "\r"], key.Input("ab")),
|
||||
TestCase(["$"], key.Continue(["$"])),
|
||||
TestCase(["$", "a"], key.Continue(["$", "a"])),
|
||||
TestCase(["$", "a", "b"], key.Continue(["$", "ab"])),
|
||||
TestCase(["$", "ab", "\r"], key.Input("ab")),
|
||||
]
|
||||
|
||||
let test_cases = [base_tests, char_tests, escape_tests, input_tests]
|
||||
@@ -1,9 +1,9 @@
|
||||
import gleam/list
|
||||
import gleeunit
|
||||
|
||||
import musicplayer/input/key.{type Key, Char}
|
||||
import musicplayer/mpv/control.{type Control}
|
||||
import musicplayer/mpv/internal as control_internal
|
||||
import input/key.{type Key, Char}
|
||||
import mpv/control.{type Control}
|
||||
import mpv/internal/control as control_internal
|
||||
|
||||
pub fn main() -> Nil {
|
||||
gleeunit.main()
|
||||
@@ -3,7 +3,7 @@ import gleeunit
|
||||
import simplifile
|
||||
|
||||
import echo_server
|
||||
import musicplayer/tcp/tcp
|
||||
import tcp/tcp
|
||||
|
||||
pub fn main() -> Nil {
|
||||
gleeunit.main()
|
||||
Reference in New Issue
Block a user