2 Commits

Author SHA1 Message Date
Alexander Heldt
738798da3b Send some messages 2025-11-10 08:46:00 +01:00
Alexander Heldt
0fa2ce4d0e Add ipc module 2025-11-10 08:45:58 +01:00
35 changed files with 106 additions and 1992 deletions

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@@ -14,11 +14,6 @@ version = "1.0.0"
[dependencies]
gleam_stdlib = ">= 0.44.0 and < 2.0.0"
gleam_otp = ">= 1.2.0 and < 2.0.0"
gleam_erlang = ">= 1.3.0 and < 2.0.0"
simplifile = ">= 2.3.1 and < 3.0.0"
gleam_json = ">= 3.1.0 and < 4.0.0"
gleam_time = ">= 1.6.0 and < 2.0.0"
[dev-dependencies]
gleeunit = ">= 1.0.0 and < 2.0.0"

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@@ -2,21 +2,10 @@
# You typically do not need to edit this file
packages = [
{ name = "filepath", version = "1.1.2", build_tools = ["gleam"], requirements = ["gleam_stdlib"], otp_app = "filepath", source = "hex", outer_checksum = "B06A9AF0BF10E51401D64B98E4B627F1D2E48C154967DA7AF4D0914780A6D40A" },
{ name = "gleam_erlang", version = "1.3.0", build_tools = ["gleam"], requirements = ["gleam_stdlib"], otp_app = "gleam_erlang", source = "hex", outer_checksum = "1124AD3AA21143E5AF0FC5CF3D9529F6DB8CA03E43A55711B60B6B7B3874375C" },
{ name = "gleam_json", version = "3.1.0", build_tools = ["gleam"], requirements = ["gleam_stdlib"], otp_app = "gleam_json", source = "hex", outer_checksum = "44FDAA8847BE8FC48CA7A1C089706BD54BADCC4C45B237A992EDDF9F2CDB2836" },
{ name = "gleam_otp", version = "1.2.0", build_tools = ["gleam"], requirements = ["gleam_erlang", "gleam_stdlib"], otp_app = "gleam_otp", source = "hex", outer_checksum = "BA6A294E295E428EC1562DC1C11EA7530DCB981E8359134BEABC8493B7B2258E" },
{ name = "gleam_stdlib", version = "0.65.0", build_tools = ["gleam"], requirements = [], otp_app = "gleam_stdlib", source = "hex", outer_checksum = "7C69C71D8C493AE11A5184828A77110EB05A7786EBF8B25B36A72F879C3EE107" },
{ name = "gleam_time", version = "1.6.0", build_tools = ["gleam"], requirements = ["gleam_stdlib"], otp_app = "gleam_time", source = "hex", outer_checksum = "0DF3834D20193F0A38D0EB21F0A78D48F2EC276C285969131B86DF8D4EF9E762" },
{ name = "gleeunit", version = "1.9.0", build_tools = ["gleam"], requirements = ["gleam_stdlib"], otp_app = "gleeunit", source = "hex", outer_checksum = "DA9553CE58B67924B3C631F96FE3370C49EB6D6DC6B384EC4862CC4AAA718F3C" },
{ name = "simplifile", version = "2.3.1", build_tools = ["gleam"], requirements = ["filepath", "gleam_stdlib"], otp_app = "simplifile", source = "hex", outer_checksum = "957E0E5B75927659F1D2A1B7B75D7B9BA96FAA8D0C53EA71C4AD9CD0C6B848F6" },
]
[requirements]
gleam_erlang = { version = ">= 1.3.0 and < 2.0.0" }
gleam_json = { version = ">= 3.1.0 and < 4.0.0" }
gleam_otp = { version = ">= 1.2.0 and < 2.0.0" }
gleam_stdlib = { version = ">= 0.44.0 and < 2.0.0" }
gleam_time = { version = ">= 1.6.0 and < 2.0.0" }
gleeunit = { version = ">= 1.0.0 and < 2.0.0" }
simplifile = { version = ">= 2.3.1 and < 3.0.0" }

59
src/ipc.gleam Normal file
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@@ -0,0 +1,59 @@
import gleam/bytes_tree
pub type Socket
// https://www.erlang.org/doc/apps/kernel/inet#t:address_family/0
// local socket
type Local {
Local(socket_path: String)
}
type ModeValue {
Binary
}
type IPCOption {
Active(Bool)
Mode(ModeValue)
}
pub type IPCError {
IPCError(reason: String)
}
pub fn connect(socket_path: String) -> Result(Socket, IPCError) {
let options = [Mode(Binary), Active(False)]
// timeout in ms
let timeout = 1000
gen_tcp_connect(Local(socket_path), 0, options, timeout)
}
pub fn send(socket: Socket, message: String) -> Result(Nil, IPCError) {
gen_tcp_send(socket, bytes_tree.from_string(message))
}
pub fn close(socket: Socket) -> Nil {
gen_tcp_close(socket)
}
// https://www.erlang.org/doc/apps/kernel/gen_tcp.html#connect/4
@external(erlang, "gen_tcp", "connect")
fn gen_tcp_connect(
address: Local,
port: Int,
options: List(IPCOption),
timeout: Int,
) -> Result(Socket, IPCError)
// https://www.erlang.org/doc/apps/kernel/gen_tcp.html#send/2
@external(erlang, "ipc_ffi", "send")
fn gen_tcp_send(
socket: Socket,
packet: bytes_tree.BytesTree,
) -> Result(Nil, IPCError)
// https://www.erlang.org/doc/apps/kernel/gen_tcp.html#close/1
@external(erlang, "gen_tcp", "close")
fn gen_tcp_close(socket: Socket) -> Nil

8
src/ipc_ffi.erl Normal file
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@@ -0,0 +1,8 @@
-module(ipc_ffi).
-export([send/2]).
send(Socket, Packet) ->
case gen_tcp:send(Socket, Packet) of
ok -> {ok, nil};
Res -> Res
end.

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@@ -1,24 +1,37 @@
import gleam/erlang/process.{type Name}
import musicplayer/input/input
import musicplayer/input/key.{type Key}
import musicplayer/logging/logging
import musicplayer/mpv/mpv
import musicplayer/musicplayer
import musicplayer/ui/ui
import gleam/io
import ipc
pub fn main() -> Nil {
let assert Ok(_) = logging.initialize()
let socket_path = "/tmp/musicplayer.sock"
let input_keys_name: Name(Key) = process.new_name("input_keys")
input.new(input_keys_name)
case ipc.connect(socket_path) {
Error(err) -> io.println("Failed to connect to socket: " <> err.reason)
Ok(socket) -> {
io.println("connected")
let assert Ok(ui) = ui.new()
let assert Ok(mpv) = mpv.new()
let assert Ok(musicplayer_pid) = musicplayer.new(ui, mpv, input_keys_name)
let messages = ["hello, \n", "world!\n"]
let monitor = process.monitor(musicplayer_pid)
process.new_selector()
|> process.select_specific_monitor(monitor, fn(_) { Nil })
|> process.selector_receive_forever
messages |> send_messages(socket, _)
io.println("closing")
ipc.close(socket)
}
}
}
fn send_messages(socket: ipc.Socket, messages: List(String)) -> Nil {
case messages {
[] -> Nil
[message, ..rest] -> {
send_message(socket, message)
send_messages(socket, rest)
}
}
}
fn send_message(socket: ipc.Socket, message: String) -> Nil {
case ipc.send(socket, message) {
Error(err) -> io.println("Failed to send message to socket: " <> err.reason)
Ok(_) -> io.println("Sent message to socket")
}
}

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@@ -1,58 +0,0 @@
import gleam/string
import musicplayer/ui/layout
import musicplayer/input/key.{type Key}
pub type Mode {
Idle
Searching(input: String)
}
pub type Control {
TogglePlayPause
Search(input: String, capturing: Bool)
SetView(view_idx: layout.ViewIdx)
Exit
}
pub fn from_key(key: Key, mode: Mode) -> Result(Control, Nil) {
case mode {
Idle -> idle_from_key(key)
Searching(input) -> searching_from_key(key, input)
}
}
pub fn idle_from_key(key: Key) -> Result(Control, Nil) {
case key {
key.Char(char) -> {
case char {
// Views are zero indexed
"1" -> Ok(SetView(0))
"2" -> Ok(SetView(1))
" " -> Ok(TogglePlayPause)
"/" -> Ok(Search(input: "", capturing: True))
"q" -> Ok(Exit)
// NOOP
_ -> Error(Nil)
}
}
// NOOP
_ -> Error(Nil)
}
}
pub fn searching_from_key(key: Key, input: String) -> Result(Control, Nil) {
case key {
key.Char(char) -> Ok(Search(input <> char, True))
key.Backspace -> Ok(Search(string.drop_end(input, 1), True))
key.Return -> Ok(Search(input, False))
// NOOP
_ -> Error(Nil)
}
}

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@@ -1,15 +0,0 @@
import gleam/erlang/process.{type Name}
import musicplayer/input/key.{type Key}
/// `new` accepts a subject that all input will be sent to
pub fn new(input_keys_name: Name(Key)) -> Nil {
let _ =
process.spawn(fn() {
let input_keys = process.named_subject(input_keys_name)
key.read_input_until_key(input_keys)
})
key.start_raw_shell()
Nil
}

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@@ -1,15 +0,0 @@
import gleam/erlang/atom
pub fn read_input() -> String {
io_get_chars("", 1)
}
pub type NotUsed
// https://www.erlang.org/doc/apps/stdlib/shell.html#start_interactive/1
@external(erlang, "shell", "start_interactive")
pub fn shell_start_interactive(options: #(atom.Atom, atom.Atom)) -> NotUsed
// https://www.erlang.org/doc/apps/stdlib/io.html#get_chars/2
@external(erlang, "io", "get_chars")
fn io_get_chars(prompt: String, count: Int) -> String

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@@ -1,76 +0,0 @@
import gleam/erlang/atom
import gleam/erlang/process.{type Subject}
import gleam/list
import musicplayer/input/internal as internal_input
pub type Key {
Continue(buffer: List(String))
Char(String)
Left
Right
Up
Down
Return
Backspace
Unknown
}
pub const esc = "\u{001B}"
// control sequence introducer
pub const csi = "["
pub const return = "\r"
pub const backspace = "\u{007F}"
pub fn from_list(l: List(String)) -> Key {
case l {
[e, c, "D"] if e == esc && c == csi -> Left
[e, c, "C"] if e == esc && c == csi -> Right
[e, c, "A"] if e == esc && c == csi -> Up
[e, c, "B"] if e == esc && c == csi -> Down
[e, c] if e == esc && c == csi -> Continue(l)
[e] if e == esc -> Continue(l)
[bs] if bs == backspace -> Backspace
[rtn] if rtn == return -> Return
[char] -> Char(char)
[] -> Continue([])
_ -> Unknown
}
}
pub fn start_raw_shell() {
let no_shell = atom.create("noshell")
let raw = atom.create("raw")
internal_input.shell_start_interactive(#(no_shell, raw))
}
pub fn read_input_until_key(input_keys: Subject(Key)) -> Nil {
read_input_until_key_loop([], input_keys)
}
pub fn read_input_until_key_loop(
l: List(String),
input_keys: Subject(Key),
) -> Nil {
case
internal_input.read_input()
|> list.wrap
|> list.append(l, _)
|> from_list
{
Continue(l) -> read_input_until_key_loop(l, input_keys)
k -> {
process.send(input_keys, k)
read_input_until_key_loop([], input_keys)
}
}
}

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@@ -1,5 +0,0 @@
pub type Control {
Write(String)
Exit
}

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@@ -1,30 +0,0 @@
import gleam/result
import gleam/string
import gleam/time/calendar
import gleam/time/timestamp
import simplifile
const filepath = "/tmp/musicplayer.log"
pub fn initialize() -> Result(Nil, String) {
case simplifile.is_file(filepath) {
Ok(True) -> Ok(Nil)
_ -> simplifile.create_file(filepath)
}
|> result.map_error(fn(e) {
"Could not access or create log file: " <> string.inspect(e)
})
}
pub fn log(content: String) -> Nil {
let log_line =
timestamp.system_time()
|> timestamp.to_rfc3339(calendar.utc_offset)
<> ": "
<> content
<> "\n"
// Ignore any logging errors
let _ = simplifile.append(filepath, log_line)
Nil
}

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@@ -1,61 +0,0 @@
import gleam/erlang/process.{type Subject}
import gleam/json
import gleam/result
import gleam/string
import musicplayer/mpv/internal as internal_control
import musicplayer/tcp/reason.{type Reason}
import musicplayer/tcp/tcp.{type Socket}
pub type Control {
TogglePlayPause
GetPlaybackTime(reply_to: Subject(Result(PlaybackTime, ControlError)))
Exit(reply_to: Subject(Nil))
}
pub type ControlError {
ControlError(details: String)
}
pub fn toggle_play_pause(socket: Socket) -> Result(Nil, ControlError) {
let command =
json.object([#("command", json.array(["cycle", "pause"], of: json.string))])
case send_command(socket, command) {
Error(r) -> Error(ControlError(reason.to_string(r)))
Ok(_) -> Ok(Nil)
}
}
// https://mpv.io/manual/master/#command-interface-playback-time
pub type PlaybackTime {
PlaybackTime(data: Float)
}
pub fn get_playback_time(socket: Socket) -> Result(PlaybackTime, ControlError) {
let command =
json.object([
#(
"command",
json.array(["get_property_string", "playback-time"], of: json.string),
),
])
case send_command(socket, command) {
Error(r) -> Error(ControlError(reason.to_string(r)))
Ok(json_string) ->
case internal_control.parse_playback_time(json_string) {
Error(e) -> Error(ControlError(string.inspect(e)))
Ok(data) -> Ok(PlaybackTime(data))
}
}
}
fn send_command(socket: Socket, command: json.Json) -> Result(String, Reason) {
result.try(tcp.send(socket, json.to_string(command) <> "\n"), fn(_) {
let timeout_ms = 10_000
tcp.receive(socket, timeout_ms)
})
}

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@@ -1,25 +0,0 @@
import gleam/dynamic/decode
import gleam/float
import gleam/json
import gleam/string
pub fn parse_playback_time(
json_string: String,
) -> Result(Float, json.DecodeError) {
let decoder = {
let float_dececoder = fn(data_string) {
case float.parse(data_string) {
Error(_) -> decode.failure(0.0, "data")
Ok(float_value) -> decode.success(float_value)
}
}
use data <- decode.field(
"data",
decode.then(decode.string, float_dececoder),
)
decode.success(data)
}
json.parse(from: string.trim(json_string), using: decoder)
}

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@@ -1,60 +0,0 @@
import gleam/erlang/process.{type Subject}
import gleam/otp/actor
import gleam/result
import gleam/string
import musicplayer/mpv/control.{type Control}
import musicplayer/tcp/reason
import musicplayer/tcp/tcp.{type Socket}
type State(socket) {
State(socket: Socket)
}
pub fn new() -> Result(Subject(Control), String) {
// TODO start up mvp here, currently hi-jacking `naviterm`s socket
let socket_path = "/tmp/naviterm_mpv"
case tcp.connect(socket_path) {
Error(r) -> Error("Could not connect to mpv: " <> reason.to_string(r))
Ok(socket) -> {
case
actor.new(State(socket))
|> actor.on_message(handle_message)
|> actor.start
{
Error(start_error) ->
Error("Could not start mpv: " <> string.inspect(start_error))
Ok(actor.Started(data: mpv, ..)) -> Ok(mpv)
}
}
}
}
fn handle_message(
state: State(socket),
control: Control,
) -> actor.Next(State(socket), Control) {
case control {
control.TogglePlayPause -> {
let _ =
result.map_error(control.toggle_play_pause(state.socket), fn(err) {
echo "Could not toggle play/pause: " <> err.details
})
actor.continue(state)
}
control.GetPlaybackTime(reply_to) -> {
let res = control.get_playback_time(state.socket)
process.send(reply_to, res)
actor.continue(state)
}
control.Exit(reply_to) -> {
tcp.close(state.socket)
process.send(reply_to, Nil)
actor.stop()
}
}
}

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@@ -1,175 +0,0 @@
import gleam/erlang/process.{type Name, type Pid, type Subject}
import gleam/otp/actor
import gleam/string
import musicplayer/control.{type Mode}
import musicplayer/input/key.{type Key}
import musicplayer/logging/logging
import musicplayer/mpv/control as mpv_control
import musicplayer/time/time
import musicplayer/ui/control as ui_control
import musicplayer/ui/layout
type State {
State(
mode: Mode,
ui: Subject(ui_control.Control),
mpv: Subject(mpv_control.Control),
)
}
pub fn new(
ui: Subject(ui_control.Control),
mpv: Subject(mpv_control.Control),
input_keys_name: Name(Key),
) -> Result(Pid, String) {
let input_keys = process.named_subject(input_keys_name)
case
actor.new(State(control.Idle, ui, mpv))
|> actor.on_message(handle_message)
|> actor.start
{
Error(start_error) ->
Error("Could not start actor: " <> string.inspect(start_error))
Ok(actor.Started(pid:, data: musicplayer)) -> {
logging.log("musicplayer - started")
process.spawn(fn() {
let assert Ok(_) = process.register(process.self(), input_keys_name)
forward_key(musicplayer, input_keys)
})
process.spawn(fn() { update_playback_time_loop(mpv, ui, 250) })
Ok(pid)
}
}
}
fn handle_message(state: State, key: Key) -> actor.Next(State, Key) {
case control.from_key(key, state.mode) {
Error(_) -> actor.continue(state)
Ok(c) ->
case c {
control.SetView(view_idx) -> {
logging.log(
"musicplayer - setting current view to: "
<> string.inspect(view_idx),
)
update_current_view(state.ui, view_idx)
actor.continue(state)
}
control.Search(input, capturing) -> {
case capturing {
True -> {
logging.log("musicplayer - searching: " <> input)
update_search(state.ui, "searching: " <> input)
actor.continue(State(..state, mode: control.Searching(input)))
}
False -> {
logging.log(
"musicplayer - recieved return. `input`: "
<> "'"
<> input
<> "'",
)
update_search(state.ui, "")
actor.continue(State(..state, mode: control.Idle))
}
}
}
control.TogglePlayPause -> {
logging.log("musicplayer - toggling play/pause")
process.send(state.mpv, mpv_control.TogglePlayPause)
update_playback_time(state.mpv, state.ui)
actor.continue(state)
}
control.Exit -> {
logging.log("musicplayer - initiating musicplayer shutdown")
// Close `mpv` socket
process.call(state.mpv, 1000, fn(reply_to) {
mpv_control.Exit(reply_to)
})
// Reset terminal state (show cursor etc.)
process.call(state.ui, 1000, fn(reply_to) {
ui_control.Exit(reply_to)
})
logging.log("musicplayer - stopped")
actor.stop()
}
}
}
}
fn update_playback_time_loop(
mpv: Subject(mpv_control.Control),
ui: Subject(ui_control.Control),
interval_ms: Int,
) {
process.sleep(interval_ms)
// TODO only update if state is playing
update_playback_time(mpv, ui)
update_playback_time_loop(mpv, ui, interval_ms)
}
fn update_playback_time(
mpv: Subject(mpv_control.Control),
ui: Subject(ui_control.Control),
) -> Nil {
case
process.call(mpv, 1000, fn(reply_to) {
mpv_control.GetPlaybackTime(reply_to)
})
{
Error(err) ->
process.send(
ui,
ui_control.UpdateHeading(
layout.PlaybackTime,
"playback time: N/A (err: " <> err.details <> ")",
),
)
Ok(mpv_control.PlaybackTime(data: playback_time)) ->
process.send(
ui,
ui_control.UpdateHeading(
layout.PlaybackTime,
"playback time: " <> time.to_duration_string(playback_time),
),
)
}
}
fn update_search(ui: Subject(ui_control.Control), content: String) -> Nil {
process.send(ui, ui_control.UpdateHeading(layout.Search, content))
}
fn update_current_view(
ui: Subject(ui_control.Control),
view_idx: layout.ViewIdx,
) {
process.send(ui, ui_control.SetView(view_idx))
}
/// `forward_key` listens to a subject onto which `input` will send messages with `Key`s
/// that is then forwarded to the `musicplayer` agent to handle
fn forward_key(musicplayer: Subject(Key), input_keys: Subject(Key)) -> Nil {
let _ =
process.new_selector()
|> process.select(input_keys)
|> process.selector_receive_forever
|> process.send(musicplayer, _)
forward_key(musicplayer, input_keys)
}

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@@ -1,240 +0,0 @@
pub type Reason {
/// from `connect`
Timeout
/// from `send`
Closed
/// Address already in use
Eaddrinuse
/// Cannot assign requested address
Eaddrnotavail
/// Address family not supported by protocol family
Eafnosupport
/// Operation already in progress
Ealready
/// Software caused connection abort
Econnaborted
/// Connection refused
Econnrefused
/// Connection reset by peer
Econnreset
/// Destination address required
Edestaddrreq
/// Host is down
Ehostdown
/// Host is unreachable
Ehostunreach
/// Operation now in progress
Einprogress
/// Socket is already connected
Eisconn
/// Message too long
Emsgsize
/// Network is down
Enetdown
/// Network is unreachable
Enetunreach
/// Package not installed
Enopkg
/// Bad protocol option
Enoprotoopt
/// Socket is not connected
Enotconn
/// Inappropriate device for ioctl
Enotty
/// Socket operation on non-socket
Enotsock
/// Protocol error
Eproto
/// Protocol not supported
Eprotonosupport
/// Wrong protocol type for socket
Eprototype
/// Socket type not supported
Esocktnosupport
/// Connection timed out
Etimedout
/// Operation would block
Ewouldblock
/// Invalid exchange
Exbadport
/// Invalid sequence number
Exbadseq
/// Permission denied
Eacces
/// Resource temporarily unavailable
Eagain
/// Bad file number
Ebadf
/// Not a data message
Ebadmsg
/// File busy
Ebusy
/// Resource deadlock avoided
Edeadlk
/// Resource deadlock avoided
Edeadlock
/// Disk quota exceeded
Edquot
/// File already exists
Eexist
/// Bad address in system call argument
Efault
/// File too large
Efbig
/// Inappropriate file type or format
Eftype
/// Interrupted system call
Eintr
/// Invalid argument
Einval
/// I/O error
Eio
/// Illegal operation on a directory
Eisdir
/// Too many levels of symbolic links
Eloop
/// Too many open files
Emfile
/// Too many links
Emlink
/// Multihop attempted
Emultihop
/// Filename too long
Enametoolong
/// File table overflow
Enfile
/// No buffer space available
Enobufs
/// No such device
Enodev
/// No locks available
Enolck
/// Link has been severed
Enolink
/// No such file or directory
Enoent
/// Not enough memory
Enomem
/// No space left on device
Enospc
/// Out of stream resources or not a stream device
Enosr
/// Not a stream device
Enostr
/// Function not implemented
Enosys
/// Block device required
Enotblk
/// Not a directory
Enotdir
/// Operation not supported
Enotsup
/// No such device or address
Enxio
/// Operation not supported on socket
Eopnotsupp
/// Value too large for defined data type
Eoverflow
/// Not owner
Eperm
/// Broken pipe
Epipe
/// Math result unrepresentable
Erange
/// Read-only filesystem
Erofs
/// Invalid seek
Espipe
/// No such process
Esrch
/// Stale remote file handle
Estale
/// Text file or pseudo-device busy
Etxtbsy
/// Cross-device link
Exdev
}
pub fn to_string(reason: Reason) -> String {
case reason {
Closed -> "Connection closed (closed)"
Eacces -> "Permission denied (eacces)"
Eaddrinuse -> "Address already in use (eaddrinuse)"
Eaddrnotavail -> "Cannot assign requested address (eaddrnotavail)"
Eafnosupport ->
"Address family not supported by protocol family (eafnosupport)"
Eagain -> "Resource temporarily unavailable (eagain)"
Ealready -> "Operation already in progress (ealready)"
Ebadf -> "Bad file number (ebadf)"
Ebadmsg -> "Not a data message (ebadmsg)"
Ebusy -> "File busy (ebusy)"
Econnaborted -> "Software caused connection abort (econnaborted)"
Econnrefused -> "Connection refused (econnrefused)"
Econnreset -> "Connection reset by peer (econnreset)"
Edeadlk -> "Resource deadlock avoided (edeadlk)"
Edeadlock -> "Resource deadlock avoided (edeadlock)"
Edestaddrreq -> "Destination address required (edestaddrreq)"
Edquot -> "Disk quota exceeded (edquot)"
Eexist -> "File already exists (eexist)"
Efault -> "Bad address in system call argument (efault)"
Efbig -> "File too large (efbig)"
Eftype -> "Inappropriate file type or format (eftype)"
Ehostdown -> "Host is down (ehostdown)"
Ehostunreach -> "Host is unreachable (ehostunreach)"
Einprogress -> "Operation now in progress (einprogress)"
Eintr -> "Interrupted system call (eintr)"
Einval -> "Invalid argument (einval)"
Eio -> "I/O error (eio)"
Eisconn -> "Socket is already connected (eisconn)"
Eisdir -> "Illegal operation on a directory (eisdir)"
Eloop -> "Too many levels of symbolic links (eloop)"
Emfile -> "Too many open files (emfile)"
Emlink -> "Too many links (emlink)"
Emsgsize -> "Message too long (emsgsize)"
Emultihop -> "Multihop attempted (emultihop)"
Enametoolong -> "Filename too long (enametoolong)"
Enetdown -> "Network is down (enetdown)"
Enetunreach -> "Network is unreachable (enetunreach)"
Enfile -> "File table overflow (enfile)"
Enobufs -> "No buffer space available (enobufs)"
Enodev -> "No such device (enodev)"
Enoent -> "No such file or directory (enoent)"
Enolck -> "No locks available (enolck)"
Enolink -> "Link has been severed (enolink)"
Enomem -> "Not enough memory (enomem)"
Enopkg -> "Package not installed (enopkg)"
Enoprotoopt -> "Bad protocol option (enoprotoopt)"
Enospc -> "No space left on device (enospc)"
Enosr -> "Out of stream resources or not a stream device (enosr)"
Enostr -> "Not a stream device (enostr)"
Enosys -> "Function not implemented (enosys)"
Enotblk -> "Block device required (enotblk)"
Enotconn -> "Socket is not connected (enotconn)"
Enotdir -> "Not a directory (enotdir)"
Enotsock -> "Socket operation on non-socket (enotsock)"
Enotsup -> "Operation not supported (enotsup)"
Enotty -> "Inappropriate device for ioctl (enotty)"
Enxio -> "No such device or address (enxio)"
Eopnotsupp -> "Operation not supported on socket (eopnotsupp)"
Eoverflow -> "Value too large for defined data type (eoverflow)"
Eperm -> "Not owner (eperm)"
Epipe -> "Broken pipe (epipe)"
Eproto -> "Protocol error (eproto)"
Eprotonosupport -> "Protocol not supported (eprotonosupport)"
Eprototype -> "Wrong protocol type for socket (eprototype)"
Erange -> "Math result unrepresentable (erange)"
Erofs -> "Read-only filesystem (erofs)"
Esocktnosupport -> "Socket type not supported (esocktnosupport)"
Espipe -> "Invalid seek (espipe)"
Esrch -> "No such process (esrch)"
Estale -> "Stale remote file handle (estale)"
Etimedout -> "Connection timed out (etimedout)"
Etxtbsy -> "Text file or pseudo-device busy (etxtbsy)"
Ewouldblock -> "Operation would block (ewouldblock)"
Exbadport -> "Invalid exchange (exbadport)"
Exbadseq -> "Invalid sequence number (exbadseq)"
Exdev -> "Cross-device link (exdev)"
Timeout -> "Operation timed out (timeout)"
}
}

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@@ -1,117 +0,0 @@
import gleam/bit_array
import gleam/erlang/atom
import gleam/result
import musicplayer/tcp/reason.{type Reason}
pub type Socket
// https://www.erlang.org/doc/apps/kernel/inet#t:address_family/0
// local socket
type Local {
Local(socket_path: String)
}
type ModeValue {
Binary
}
type TCPOption {
Active(Bool)
Mode(ModeValue)
Reuseaddr(Bool)
Ifaddr(Local)
ExitOnClose(Bool)
}
pub fn listen(socket_path: String) -> Result(Socket, Reason) {
let options = [
Mode(Binary),
Active(False),
Reuseaddr(True),
Ifaddr(Local(socket_path)),
ExitOnClose(False),
]
// port zero with `local` address
let port = 0
gen_tcp_listen(port, options)
}
pub fn accept(listen_socket: Socket) -> Result(Socket, Reason) {
gen_tcp_accept(listen_socket)
}
pub fn receive(socket: Socket, timeout: Int) -> Result(String, Reason) {
// Get all bytes
let length = 0
use bits <- result.try(gen_tcp_recv(socket, length, timeout))
case bits |> bit_array.to_string {
// TODO what error is best?
Error(_) -> Error(reason.Ebadmsg)
Ok(s) -> Ok(s)
}
}
pub fn connect(socket_path: String) -> Result(Socket, Reason) {
let options = [Mode(Binary), Active(False)]
// port zero with `local` address
let port = 0
// timeout in ms
let timeout = 1000
gen_tcp_connect(Local(socket_path), port, options, timeout)
}
pub fn send(socket: Socket, message: String) -> Result(Nil, Reason) {
gen_tcp_send(socket, bit_array.from_string(message))
}
pub fn close(socket: Socket) -> Nil {
gen_tcp_close(socket)
}
pub fn shutdown(socket: Socket) -> Result(Nil, Reason) {
let how = atom.create("write")
gen_tcp_shutdown(socket, how)
}
// https://www.erlang.org/doc/apps/kernel/gen_tcp.html#listen/2
@external(erlang, "gen_tcp", "listen")
fn gen_tcp_listen(port: Int, option: List(TCPOption)) -> Result(Socket, Reason)
// https://www.erlang.org/doc/apps/kernel/gen_tcp.html#accept/1
@external(erlang, "gen_tcp", "accept")
fn gen_tcp_accept(listen_socket: Socket) -> Result(Socket, Reason)
// https://www.erlang.org/doc/apps/kernel/gen_tcp.html#recv/3
@external(erlang, "gen_tcp", "recv")
fn gen_tcp_recv(
socket: Socket,
length: Int,
timeout: Int,
) -> Result(BitArray, Reason)
// https://www.erlang.org/doc/apps/kernel/gen_tcp.html#connect/4
@external(erlang, "gen_tcp", "connect")
fn gen_tcp_connect(
address: Local,
port: Int,
options: List(TCPOption),
timeout: Int,
) -> Result(Socket, Reason)
// https://www.erlang.org/doc/apps/kernel/gen_tcp.html#send/2
@external(erlang, "tcp_ffi", "send")
fn gen_tcp_send(socket: Socket, packet: BitArray) -> Result(Nil, Reason)
// https://www.erlang.org/doc/apps/kernel/gen_tcp.html#close/1
@external(erlang, "gen_tcp", "close")
fn gen_tcp_close(socket: Socket) -> Nil
// https://www.erlang.org/doc/apps/kernel/gen_tcp.html#shutdown/2
@external(erlang, "tcp_ffi", "shutdown")
fn gen_tcp_shutdown(socket: Socket, how: atom.Atom) -> Result(Nil, Reason)

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@@ -1,14 +0,0 @@
-module(tcp_ffi).
-export([send/2, shutdown/2]).
send(Socket, Packet) ->
case gen_tcp:send(Socket, Packet) of
ok -> {ok, nil};
Res -> Res
end.
shutdown(Socket, How) ->
case gen_tcp:shutdown(Socket, How) of
ok -> {ok, nil};
Res -> Res
end.

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@@ -1,23 +0,0 @@
import gleam/float
import gleam/int
import gleam/string
pub fn to_duration_string(seconds: Float) -> String {
let total =
seconds
|> float.max(0.0)
|> float.truncate
let minutes = total / 60
let seconds = total % 60
let mins =
int.to_string(minutes)
|> string.pad_start(to: 2, with: "0")
let secs =
int.to_string(seconds)
|> string.pad_start(to: 2, with: "0")
mins <> ":" <> secs
}

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@@ -1,11 +0,0 @@
import gleam/erlang/process.{type Subject}
import musicplayer/ui/layout.{type Section, type ViewIdx}
pub type Control {
UpdateDimensions(columns: Int, rows: Int)
UpdateHeading(section: Section, heading: String)
SetView(view_idx: ViewIdx)
Exit(reply_to: Subject(Nil))
}

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@@ -1,41 +0,0 @@
import gleam/int
import gleam/io
// https://en.wikipedia.org/wiki/ANSI_escape_code#Control_Sequence_Introducer_commands
pub const move_to_home = "\u{001B}[H"
pub const disable_auto_wrap = "\u{001B}[?7l"
pub const enable_auto_wrap = "\u{001B}[?7h"
pub fn update(frame: String) -> Nil {
io.print(disable_auto_wrap <> move_to_home <> frame <> enable_auto_wrap)
}
pub fn clear_screen() -> Nil {
io.print("\u{001B}[2J\u{001B}[H")
}
pub fn chars_at(chars: String, x: Int, y: Int) -> String {
let seq = "\u{001B}[" <> int.to_string(y) <> ";" <> int.to_string(x) <> "H"
seq <> chars
}
pub fn hide_cursor() -> Nil {
io.print("\u{001B}[?25l")
}
pub fn show_cursor() -> Nil {
io.print("\u{001B}[?25h")
}
pub type Enotsup
// https://www.erlang.org/doc/apps/stdlib/io.html#rows/0
@external(erlang, "io", "rows")
pub fn io_get_rows() -> Result(Int, Enotsup)
// https://www.erlang.org/doc/apps/stdlib/io.html#columns/0
@external(erlang, "io", "columns")
pub fn io_get_columns() -> Result(Int, Enotsup)

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@@ -1,251 +0,0 @@
import gleam/dict
import gleam/int
import gleam/list
import gleam/option.{type Option, None, Some}
import gleam/pair
import gleam/set
import gleam/string
import musicplayer/ui/internal
import musicplayer/ui/plot.{type Buffer}
import musicplayer/ui/style.{type Style, Percent, Style}
pub const root_section = "reserved_root_section"
pub type Section {
Section(String)
Header
Search
PlaybackTime
}
pub type Node {
Row(heading: Option(String), style: Style, children: List(Section))
Cell(heading: Option(String), style: Style)
}
pub type ViewIdx =
Int
pub type View =
dict.Dict(Section, Node)
// Layout consists of a list Views, and only one View is rendered at a time
pub type Layout {
Layout(
columns: Int,
rows: Int,
current_view: ViewIdx,
views: dict.Dict(ViewIdx, View),
)
}
pub fn new(
columns: Int,
rows: Int,
views: List(List(#(Section, Node))),
) -> Layout {
let views =
list.index_map(views, fn(view_nodes, i) { #(i, view_nodes) })
|> list.fold(dict.new(), fn(view_acc, iv) {
let #(i, view_nodes) = iv
dict.insert(view_acc, i, view_loop(i, view_nodes))
})
Layout(columns:, rows:, current_view: 0, views:)
}
fn view_loop(i: ViewIdx, view_nodes: List(#(Section, Node))) -> View {
let children =
view_nodes
|> list.flat_map(fn(node) {
case pair.second(node) {
Row(children: c, ..) -> c
Cell(..) -> []
}
})
|> set.from_list
// All sections that are not children of other nodes will be added as
// children to the root
let orphans =
view_nodes
|> list.map(pair.first)
|> list.filter(fn(node) { !set.contains(children, node) })
dict.from_list(view_nodes)
|> dict.insert(
view_index_section(i),
Row(
heading: None,
style: Style(dimensions: Percent(width: 100, height: 100), border: None),
children: orphans,
),
)
}
/// Takes a ViewIndex and create a Section key from it
fn view_index_section(view_idx: ViewIdx) -> Section {
Section(string.append("view_", int.to_string(view_idx)))
}
pub fn update_section_heading(
layout: Layout,
section: Section,
heading: String,
) -> Layout {
case dict.get(layout.views, layout.current_view) {
Error(_) -> layout
Ok(view) ->
case dict.get(view, section) {
Error(_) -> layout
Ok(node) -> {
let updated_node = case node {
Cell(..) -> Cell(..node, heading: Some(heading))
Row(..) -> Row(..node, heading: Some(heading))
}
let updated_view = dict.insert(view, section, updated_node)
Layout(
..layout,
views: dict.insert(layout.views, layout.current_view, updated_view),
)
}
}
}
}
pub fn update_dimensions(layout: Layout, columns: Int, rows: Int) -> Layout {
Layout(..layout, columns:, rows:)
}
pub fn update_current_view(layout: Layout, view_idx: ViewIdx) -> Layout {
Layout(..layout, current_view: view_idx)
}
pub fn render(layout: Layout) -> Nil {
let context =
RenderContext(
parent_width: layout.columns,
parent_height: layout.rows,
parent_top_left_x: 1,
parent_top_left_y: 1,
position_index: 0,
)
case dict.get(layout.views, layout.current_view) {
Error(_) -> Nil
Ok(view) -> {
let buffer: Buffer = dict.new()
render_loop(
view,
context,
view_index_section(layout.current_view),
buffer,
)
|> plot.flush_buffer(layout.columns, layout.rows)
|> internal.update
}
}
}
pub type RenderContext {
RenderContext(
parent_width: Int,
parent_height: Int,
parent_top_left_x: Int,
parent_top_left_y: Int,
position_index: Int,
)
}
pub fn render_loop(
view: View,
context: RenderContext,
from: Section,
buffer: Buffer,
) -> Buffer {
case dict.get(view, from) {
Error(_) -> buffer
Ok(node) -> {
// Margin between container and the node being rendered
let margin = 2
let #(node_width, node_height) = case node.style.dimensions {
Percent(width:, height:) -> {
let width = { context.parent_width * width } / 100
let height = { context.parent_height * height } / 100
#(width, height)
}
}
// Check if this node should be placed to the left or below the parent
let #(node_top_left_x, node_top_left_y) = case node {
Row(..) -> #(
context.parent_top_left_x,
context.parent_top_left_y + { context.position_index * node_height },
)
Cell(..) -> #(
context.parent_top_left_x + { context.position_index * node_width },
context.parent_top_left_y,
)
}
let parent = case node.heading {
None ->
plot.box(
buffer,
node_top_left_x,
node_top_left_y,
node_width,
node_height,
)
option.Some(heading) ->
plot.box_with_heading(
buffer,
node_top_left_x,
node_top_left_y,
node_width,
node_height,
heading,
)
}
case node {
Cell(..) -> parent
Row(children:, ..) -> {
list.index_map(children, fn(child, i) { #(i, child) })
|> list.fold(parent, fn(acc_buffer, ic) {
let #(i, child) = ic
let #(child_width, child_height) = case node.style.dimensions {
Percent(width:, height:) -> {
let width = { { context.parent_width * width } / 100 } - margin
let height =
{ { context.parent_height * height } / 100 } - margin
#(width, height)
}
}
let context =
RenderContext(
parent_width: child_width,
parent_height: child_height,
parent_top_left_x: context.parent_top_left_x + 1,
parent_top_left_y: context.parent_top_left_y + 1,
position_index: i,
)
render_loop(view, context, child, acc_buffer)
})
}
}
}
}
}

View File

@@ -1,73 +0,0 @@
import gleam/option.{Some}
import musicplayer/ui/internal
import musicplayer/ui/layout.{Section}
import musicplayer/ui/layout_examples/wait_for_input.{wait_for_input}
import musicplayer/ui/style.{Percent, Style}
pub fn main() {
let assert Ok(columns) = internal.io_get_columns()
let assert Ok(rows) = internal.io_get_rows()
two_rows_with_cells(columns, rows)
|> layout.render
wait_for_input()
}
/// Two rows:
/// First row has two cells
/// Second row has no cells
fn two_rows_with_cells(columns: Int, rows: Int) -> layout.Layout {
let views = [
[
#(
Section("Row1"),
layout.Row(
heading: Some("row 1"),
style: Style(
dimensions: Percent(width: 100, height: 50),
border: Some(style.BorderSingle),
),
children: [
Section("A"),
Section("B"),
],
),
),
#(
Section("A"),
layout.Cell(
heading: Some("cell 1"),
style: Style(
dimensions: Percent(width: 50, height: 50),
border: Some(style.BorderSingle),
),
),
),
#(
Section("B"),
layout.Cell(
heading: Some("cell 2"),
style: Style(
dimensions: Percent(width: 50, height: 50),
border: Some(style.BorderSingle),
),
),
),
#(
Section("Row2"),
layout.Row(
heading: Some("row 2"),
style: Style(
dimensions: Percent(width: 50, height: 50),
border: Some(style.BorderSingle),
),
children: [],
),
),
],
]
layout.new(columns, rows, views)
}

View File

@@ -1,15 +0,0 @@
import gleam/erlang/process.{type Name}
import musicplayer/input/input
import musicplayer/input/key.{type Key}
pub fn wait_for_input() {
let input_keys_name: Name(Key) = process.new_name("input_keys")
let assert Ok(_) = process.register(process.self(), input_keys_name)
input.new(input_keys_name)
process.new_selector()
|> process.select(process.named_subject(input_keys_name))
|> process.selector_receive_forever
}

View File

@@ -1,85 +0,0 @@
import gleam/dict.{type Dict}
import gleam/list
import gleam/string
pub type Buffer =
Dict(#(Int, Int), String)
pub fn flush_buffer(buffer: Buffer, columns: Int, rows: Int) -> String {
list.range(1, rows)
|> list.map(fn(y) {
list.range(1, columns)
|> list.map(fn(x) {
case dict.get(buffer, #(x, y)) {
Ok(char) -> char
Error(_) -> " "
}
})
|> string.join("")
})
|> string.join("\r\n")
}
pub fn text(buffer: Buffer, text: String, x: Int, y: Int) -> Buffer {
text
|> string.to_graphemes
|> list.index_fold(buffer, fn(acc, char, i) {
dict.insert(acc, #(x + i, y), char)
})
}
pub fn box(buffer: Buffer, x: Int, y: Int, width: Int, height: Int) -> Buffer {
// TODO move box style to `layout.Style`
let box_chars = #("", "", "", "", "", "")
let #(tl, tr, bl, br, hor, ver) = box_chars
case width < 2 || height < 2 {
True -> buffer
False -> {
buffer
|> dict.insert(#(x, y), tl)
|> dict.insert(#(x + width - 1, y), tr)
|> dict.insert(#(x, y + height - 1), bl)
|> dict.insert(#(x + width - 1, y + height - 1), br)
|> horizontal_line(x + 1, y, width - 2, hor)
|> horizontal_line(x + 1, y + height - 1, width - 2, hor)
|> vertical_line(x, y + 1, height - 2, ver)
|> vertical_line(x + width - 1, y + 1, height - 2, ver)
}
}
}
pub fn box_with_heading(
buffer: Buffer,
x: Int,
y: Int,
width: Int,
height: Int,
heading: String,
) -> Buffer {
let heading_margin = 1
box(buffer, x, y, width, height)
|> text(heading, x + heading_margin, y)
}
fn horizontal_line(
buffer: Buffer,
x: Int,
y: Int,
len: Int,
char: String,
) -> Buffer {
list.range(0, len - 1)
|> list.fold(buffer, fn(acc, i) { dict.insert(acc, #(x + i, y), char) })
}
fn vertical_line(
buffer: Buffer,
x: Int,
y: Int,
len: Int,
char: String,
) -> Buffer {
list.range(0, len - 1)
|> list.fold(buffer, fn(acc, i) { dict.insert(acc, #(x, y + i), char) })
}

View File

@@ -1,34 +0,0 @@
import gleam/option.{type Option}
pub type Dimension {
Percent(width: Int, height: Int)
// TODO add Flex that flows
}
pub type Border {
BorderNone
BorderSingle
}
pub type Style {
Style(dimensions: Dimension, border: Option(Border))
}
pub type BorderChars {
BorderChars(
top_left: String,
top_right: String,
bottom_left: String,
bottom_right: String,
horisontal: String,
vertical: String,
)
}
// https://en.wikipedia.org/wiki/Box-drawing_characters
pub fn border_chars(border: Border) -> BorderChars {
case border {
BorderNone -> BorderChars("", "", "", "", "", "")
BorderSingle -> BorderChars("", "", "", "", "", "")
}
}

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@@ -1,175 +0,0 @@
import gleam/erlang/process.{type Subject}
import gleam/int
import gleam/list
import gleam/option.{None, Some}
import gleam/otp/actor
import gleam/string
import musicplayer/logging/logging
import musicplayer/ui/control.{type Control}
import musicplayer/ui/internal
import musicplayer/ui/layout.{type Layout}
import musicplayer/ui/style
pub type State(redraw, content) {
State(redraw: Subject(Layout), layout: Layout)
}
pub fn new() -> Result(Subject(Control), String) {
let redraw_name = process.new_name("redraw")
let redraw: Subject(Layout) = process.named_subject(redraw_name)
let layout =
[
[
#(
layout.Header,
layout.Row(
heading: Some("Foo <1> | Bar (2)"),
style: style.Style(
dimensions: style.Percent(width: 100, height: 50),
border: Some(style.BorderSingle),
),
children: [],
),
),
#(
layout.PlaybackTime,
layout.Row(
heading: None,
style: style.Style(
dimensions: style.Percent(width: 100, height: 50),
border: Some(style.BorderSingle),
),
children: [],
),
),
],
[
#(
layout.Header,
layout.Row(
heading: Some("Foo (1) | Bar <2>"),
style: style.Style(
dimensions: style.Percent(width: 100, height: 33),
border: Some(style.BorderSingle),
),
children: [],
),
),
#(
layout.Search,
layout.Row(
heading: None,
style: style.Style(
dimensions: style.Percent(width: 100, height: 33),
border: Some(style.BorderSingle),
),
children: [],
),
),
#(
layout.PlaybackTime,
layout.Row(
heading: None,
style: style.Style(
dimensions: style.Percent(width: 100, height: 33),
border: Some(style.BorderSingle),
),
children: [],
),
),
],
]
|> layout.new(0, 0, _)
case
actor.new(State(redraw, layout))
|> actor.on_message(handle_message)
|> actor.start
{
Error(start_error) ->
Error("Could not start actor: " <> string.inspect(start_error))
Ok(actor.Started(data: ui, ..)) -> {
process.spawn(fn() {
let update_dimensions_interval_ms = 300
update_dimensions_on_interval(ui, update_dimensions_interval_ms)
})
process.spawn(fn() {
let assert Ok(_) = process.register(process.self(), redraw_name)
internal.clear_screen()
internal.hide_cursor()
redraw_loop(redraw)
})
Ok(ui)
}
}
}
fn handle_message(
state: State(redraw, layout),
control: Control,
) -> actor.Next(State(redraw, layout), Control) {
case control {
control.UpdateDimensions(columns, rows) -> {
let current_dimensions = #(state.layout.columns, state.layout.rows)
case #(columns, rows) == current_dimensions {
True -> actor.continue(state)
False -> {
[columns, rows]
|> list.map(int.to_string)
|> string.join(" ")
|> string.append("ui - updating dimensions: ", _)
|> logging.log
let layout = layout.update_dimensions(state.layout, columns, rows)
process.send(state.redraw, layout)
actor.continue(State(..state, layout:))
}
}
}
control.UpdateHeading(section, heading) -> {
let layout = layout.update_section_heading(state.layout, section, heading)
actor.send(state.redraw, layout)
actor.continue(State(..state, layout:))
}
control.Exit(reply_to) -> {
internal.show_cursor()
process.send(reply_to, Nil)
actor.stop()
}
control.SetView(view_idx) -> {
let layout = layout.update_current_view(state.layout, view_idx)
actor.send(state.redraw, layout)
actor.continue(State(..state, layout:))
}
}
}
fn redraw_loop(redraw: Subject(Layout)) -> Nil {
process.receive_forever(redraw)
|> layout.render
redraw_loop(redraw)
}
fn update_dimensions_on_interval(ui: Subject(Control), interval_ms: Int) {
case internal.io_get_columns(), internal.io_get_rows() {
Ok(width), Ok(height) -> {
process.send(ui, control.UpdateDimensions(width, height))
}
_, _ -> logging.log("ui - failed to update dimensions")
}
process.sleep(interval_ms)
update_dimensions_on_interval(ui, interval_ms)
}

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@@ -1,81 +0,0 @@
import gleam/erlang/process.{type Subject}
import gleam/io
import gleam/otp/actor
import gleam/result
import gleam/string
import musicplayer/tcp/reason.{type Reason}
import musicplayer/tcp/tcp
pub type Message {
Shutdown
ReadyToAccept(subject: Subject(Message), listen_socket: tcp.Socket)
}
pub fn new(socket_path: String) -> Result(tcp.Socket, String) {
let server = actor.new(Nil) |> actor.on_message(handle_message) |> actor.start
case tcp.listen(socket_path), server {
Error(r), _ -> Error(reason.to_string(r))
_, Error(start_error) ->
case start_error {
actor.InitExited(_) -> Error("InitExited")
actor.InitFailed(_) -> Error("InitFailed")
actor.InitTimeout -> Error("InitTimeout")
}
Ok(listen_socket), Ok(b) -> {
let subject = b.data
actor.send(subject, ReadyToAccept(subject, listen_socket))
Ok(listen_socket)
}
}
}
fn handle_message(_: Nil, message: Message) -> actor.Next(Nil, Message) {
case message {
Shutdown -> actor.stop()
ReadyToAccept(subject, listen_socket) -> {
case tcp.accept(listen_socket) {
Error(r) ->
actor.stop_abnormal(
"Could not accept connection :" <> reason.to_string(r),
)
Ok(socket) -> {
case receive_from_connection(socket) {
Error(r) ->
io.println_error(
"Failed to receive from connection :" <> reason.to_string(r),
)
Ok(_) -> Nil
}
actor.send(subject, ReadyToAccept(subject, listen_socket))
actor.continue(Nil)
}
}
}
}
}
fn receive_from_connection(socket: tcp.Socket) -> Result(Nil, Reason) {
result.try(receive_until_closed(socket, ""), fn(data) {
let _ = tcp.send(socket, data)
tcp.close(socket)
Ok(Nil)
})
}
fn receive_until_closed(
socket: tcp.Socket,
result: String,
) -> Result(String, Reason) {
case tcp.receive(socket, 10_000) {
Error(reason.Closed) -> Ok(result)
Error(err) -> Error(err)
Ok(data) -> {
let result = data |> string.append(result, _)
receive_until_closed(socket, result)
}
}
}

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@@ -1,32 +0,0 @@
import gleam/list
import gleeunit
import musicplayer/control.{type Control, type Mode}
import musicplayer/input/key.{type Key, Char}
pub fn main() -> Nil {
gleeunit.main()
}
type TestCase {
TestCase(key: Key, mode: Mode, expected: Result(Control, Nil))
}
pub fn control_from_key_test() {
let idle_tests = [
TestCase(Char(" "), control.Idle, Ok(control.TogglePlayPause)),
TestCase(Char("/"), control.Idle, Ok(control.Search("", True))),
TestCase(Char("q"), control.Idle, Ok(control.Exit)),
]
let search_tests = [
TestCase(Char("a"), control.Searching(""), Ok(control.Search("a", True))),
TestCase(Char("b"), control.Searching("a"), Ok(control.Search("ab", True))),
]
let test_cases = [idle_tests, search_tests]
list.each(list.flatten(test_cases), fn(tc) {
assert tc.expected == control.from_key(tc.key, tc.mode)
})
}

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@@ -1,39 +0,0 @@
import gleam/list
import gleeunit
import musicplayer/input/key.{type Key, Char, backspace, csi, esc, return}
pub fn main() -> Nil {
gleeunit.main()
}
type TestCase {
TestCase(input: List(String), expected: Key)
}
pub fn key_from_list_test() {
let base_tests = [TestCase([], key.Continue([]))]
let char_tests = [TestCase(["c"], Char("c"))]
let escape_tests = [
TestCase([esc, csi], key.Continue([esc, csi])),
TestCase([esc], key.Continue([esc])),
TestCase([esc, csi, "D"], key.Left),
TestCase([esc, csi, "C"], key.Right),
TestCase([esc, csi, "A"], key.Up),
TestCase([esc, csi, "B"], key.Down),
]
let input_tests = [
TestCase([return], key.Return),
TestCase([backspace], key.Backspace),
]
let test_cases = [base_tests, char_tests, escape_tests, input_tests]
list.each(list.flatten(test_cases), fn(tc) {
assert tc.expected == key.from_list(tc.input)
})
}

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@@ -1,15 +0,0 @@
import gleeunit
import musicplayer/mpv/internal
pub fn main() -> Nil {
gleeunit.main()
}
pub fn parse_playback_time_test() {
let json_string =
"{\"data\":\"123.456789\",\"request_id\":0,\"error\":\"success\"}\n"
let assert Ok(data) = internal.parse_playback_time(json_string)
assert data == 123.456789
}

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@@ -1,30 +0,0 @@
import gleam/list
import gleeunit
import simplifile
import echo_server
import musicplayer/tcp/tcp
pub fn main() -> Nil {
gleeunit.main()
}
pub fn tcp_send_shutdown_receive_test() {
let socket_path = "/tmp/musicplayer-test.sock"
let assert Ok(_) = echo_server.new(socket_path)
let assert Ok(socket) = tcp.connect(socket_path)
let messages = ["hello, ", "world!\n"]
list.each(messages, fn(message) {
let assert Ok(_) = tcp.send(socket, message)
})
let assert Ok(_) = tcp.shutdown(socket)
let timeout_ms = 100
assert Ok("hello, world!\n") == tcp.receive(socket, timeout_ms)
// TODO find better way to always do cleanup
simplifile.delete(socket_path)
}

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@@ -1,32 +0,0 @@
import gleam/list
import gleeunit
import musicplayer/time/time
pub fn main() -> Nil {
gleeunit.main()
}
type TestCase {
TestCase(seconds: Float, expected: String)
}
pub fn to_duration_string_test() {
let test_cases = [
TestCase(-1.0, "00:00"),
TestCase(0.0, "00:00"),
TestCase(9.0, "00:09"),
TestCase(10.0, "00:10"),
TestCase(11.0, "00:11"),
TestCase(60.0, "01:00"),
TestCase(61.0, "01:01"),
TestCase(120.0, "02:00"),
TestCase(600.0, "10:00"),
TestCase(6000.0, "100:00"),
TestCase(6001.0, "100:01"),
]
list.each(test_cases, fn(tc) {
assert tc.expected == time.to_duration_string(tc.seconds)
})
}

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@@ -1,130 +0,0 @@
import gleam/dict
import gleam/io
import gleam/option.{Some}
import gleam/string
import gleeunit
import gleeunit/should
import musicplayer/ui/layout.{RenderContext, Section}
import musicplayer/ui/plot
import musicplayer/ui/style.{Percent, Style}
pub fn main() -> Nil {
gleeunit.main()
}
pub fn percent_layout_test() {
let views = [
[
#(
Section("Row1"),
layout.Row(
heading: Some("row 1"),
style: Style(
dimensions: Percent(width: 100, height: 50),
border: Some(style.BorderSingle),
),
children: [
Section("A"),
Section("B"),
],
),
),
#(
Section("A"),
layout.Cell(
heading: Some("cell 1"),
style: Style(
dimensions: Percent(width: 50, height: 100),
border: Some(style.BorderSingle),
),
),
),
#(
Section("B"),
layout.Cell(
heading: Some("cell 2"),
style: Style(
dimensions: Percent(width: 50, height: 100),
border: Some(style.BorderSingle),
),
),
),
#(
Section("Row2"),
layout.Row(
heading: Some("row 1"),
style: Style(
dimensions: Percent(width: 100, height: 50),
border: Some(style.BorderSingle),
),
children: [],
),
),
],
]
let columns = 80
let rows = 20
let layout = layout.new(columns, rows, views)
let expected =
"
┌──────────────────────────────────────────────────────────────────────────────┐
│┌row 1───────────────────────────────────────────────────────────────────────┐│
││┌cell 1──────────────────────────────┐┌cell 2──────────────────────────────┐││
│││ ││ │││
│││ ││ │││
│││ ││ │││
│││ ││ │││
│││ ││ │││
││└────────────────────────────────────┘└────────────────────────────────────┘││
│└────────────────────────────────────────────────────────────────────────────┘│
│┌row 1───────────────────────────────────────────────────────────────────────┐│
││ ││
││ ││
││ ││
││ ││
││ ││
││ ││
││ ││
│└────────────────────────────────────────────────────────────────────────────┘│
└──────────────────────────────────────────────────────────────────────────────┘
"
|> string.replace(each: "\n", with: "\r\n")
|> string.trim
let context =
RenderContext(
parent_width: layout.columns,
parent_height: layout.rows,
parent_top_left_x: 1,
parent_top_left_y: 1,
position_index: 0,
)
let assert Ok(view) = dict.get(layout.views, layout.current_view)
let flushed =
layout.render_loop(
view,
context,
Section(string.append("view_", string.inspect(layout.current_view))),
dict.new(),
)
|> plot.flush_buffer(layout.columns, layout.rows)
case flushed == expected {
True -> Nil
False -> {
io.println("Test failed")
io.println("Expected:")
io.println(string.trim(expected))
io.println("Got:")
io.println(flushed)
should.equal(flushed, expected)
}
}
}

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@@ -3,3 +3,11 @@ import gleeunit
pub fn main() -> Nil {
gleeunit.main()
}
// gleeunit test functions end in `_test`
pub fn hello_world_test() {
let name = "Joe"
let greeting = "Hello, " <> name <> "!"
assert greeting == "Hello, Joe!"
}