Plot layout Views on grid #10

Merged
alex merged 6 commits from plot-layout-on-grid into main 2025-12-25 19:50:42 +01:00
12 changed files with 461 additions and 438 deletions

View File

@@ -1,30 +1,58 @@
import gleam/string
import musicplayer/ui/layout
import musicplayer/input/key.{type Key} import musicplayer/input/key.{type Key}
pub type Mode {
Idle
Searching(input: String)
}
pub type Control { pub type Control {
TogglePlayPause TogglePlayPause
Search Search(input: String, capturing: Bool)
Raw(String) SetView(view_idx: layout.ViewIdx)
Return
Backspace
Exit Exit
} }
pub fn from_key(key: Key) -> Result(Control, Nil) { 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 { case key {
key.Return -> Ok(Return) key.Char(char) -> {
key.Backspace -> Ok(Backspace) case char {
key.Char(char) -> Ok(char_control(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) _ -> Error(Nil)
} }
} }
fn char_control(char: String) -> Control { pub fn searching_from_key(key: Key, input: String) -> Result(Control, Nil) {
case char { case key {
" " -> TogglePlayPause key.Char(char) -> Ok(Search(input <> char, True))
"/" -> Search key.Backspace -> Ok(Search(string.drop_end(input, 1), True))
"q" -> Exit key.Return -> Ok(Search(input, False))
_ -> Raw(char)
// NOOP
_ -> Error(Nil)
} }
} }

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@@ -1,9 +1,8 @@
import gleam/erlang/process.{type Name, type Pid, type Subject} import gleam/erlang/process.{type Name, type Pid, type Subject}
import gleam/otp/actor import gleam/otp/actor
import gleam/result
import gleam/string import gleam/string
import musicplayer/control.{type Control} import musicplayer/control.{type Mode}
import musicplayer/input/key.{type Key} import musicplayer/input/key.{type Key}
import musicplayer/logging/logging import musicplayer/logging/logging
import musicplayer/mpv/control as mpv_control import musicplayer/mpv/control as mpv_control
@@ -11,19 +10,9 @@ import musicplayer/time/time
import musicplayer/ui/control as ui_control import musicplayer/ui/control as ui_control
import musicplayer/ui/layout import musicplayer/ui/layout
type Mode {
Idle
Searching
}
type Input {
Input(capturing: Bool, content: String)
}
type State { type State {
State( State(
mode: Mode, mode: Mode,
input: Input,
ui: Subject(ui_control.Control), ui: Subject(ui_control.Control),
mpv: Subject(mpv_control.Control), mpv: Subject(mpv_control.Control),
) )
@@ -36,10 +25,8 @@ pub fn new(
) -> Result(Pid, String) { ) -> Result(Pid, String) {
let input_keys = process.named_subject(input_keys_name) let input_keys = process.named_subject(input_keys_name)
let input = Input(False, "")
case case
actor.new(State(Idle, input, ui, mpv)) actor.new(State(control.Idle, ui, mpv))
|> actor.on_message(handle_message) |> actor.on_message(handle_message)
|> actor.start |> actor.start
{ {
@@ -49,75 +36,53 @@ pub fn new(
logging.log("musicplayer - started") logging.log("musicplayer - started")
process.spawn(fn() { process.spawn(fn() {
let assert Ok(_) = process.register(process.self(), input_keys_name) let assert Ok(_) = process.register(process.self(), input_keys_name)
handle_key(musicplayer, input_keys) forward_key(musicplayer, input_keys)
}) })
process.spawn(fn() { update_playback_time_loop(mpv, ui, 1000) }) process.spawn(fn() { update_playback_time_loop(mpv, ui, 250) })
Ok(pid) Ok(pid)
} }
} }
} }
fn handle_message(state: State, control: Control) -> actor.Next(State, Control) { fn handle_message(state: State, key: Key) -> actor.Next(State, Key) {
case control { case control.from_key(key, state.mode) {
control.Search -> { Error(_) -> actor.continue(state)
logging.log("musicplayer - initiating search") Ok(c) ->
case c {
update_search(state.ui, "searching: ") control.SetView(view_idx) -> {
actor.continue(
State(
..state,
mode: Searching,
input: Input(..state.input, capturing: True),
),
)
}
control.Raw(content) -> {
logging.log("musicplayer - recieved raw input: " <> content)
let content = case state.mode {
Idle -> state.input.content
Searching -> {
let updated = state.input.content <> content
update_search(state.ui, "searching: " <> updated)
updated
}
}
actor.continue(State(..state, input: Input(..state.input, content:)))
}
control.Backspace -> {
logging.log("musicplayer - recieved backspace")
let content = case state.mode {
Idle -> state.input.content
Searching -> string.drop_end(state.input.content, 1)
}
actor.continue(State(..state, input: Input(..state.input, content:)))
}
control.Return -> {
logging.log( logging.log(
"musicplayer - recieved return. `input.capture`: " "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`: "
<> "'" <> "'"
<> state.input.content <> input
<> "'", <> "'",
) )
// Note: state.input.content is now the final input, use it update_search(state.ui, "")
// before it is reset
case state.mode {
Idle -> Nil
Searching -> update_search(state.ui, "")
}
actor.continue( actor.continue(State(..state, mode: control.Idle))
State(..state, mode: Idle, input: Input(capturing: False, content: "")), }
) }
} }
control.TogglePlayPause -> { control.TogglePlayPause -> {
logging.log("musicplayer - toggling play/pause") logging.log("musicplayer - toggling play/pause")
@@ -128,16 +93,21 @@ fn handle_message(state: State, control: Control) -> actor.Next(State, Control)
control.Exit -> { control.Exit -> {
logging.log("musicplayer - initiating musicplayer shutdown") logging.log("musicplayer - initiating musicplayer shutdown")
// Close `mpv` socket // Close `mpv` socket
process.call(state.mpv, 1000, fn(reply_to) { mpv_control.Exit(reply_to) }) process.call(state.mpv, 1000, fn(reply_to) {
mpv_control.Exit(reply_to)
})
// Reset terminal state (show cursor etc.) // Reset terminal state (show cursor etc.)
process.call(state.ui, 1000, fn(reply_to) { ui_control.Exit(reply_to) }) process.call(state.ui, 1000, fn(reply_to) {
ui_control.Exit(reply_to)
})
logging.log("musicplayer - stopped") logging.log("musicplayer - stopped")
actor.stop() actor.stop()
} }
} }
}
} }
fn update_playback_time_loop( fn update_playback_time_loop(
@@ -185,14 +155,21 @@ fn update_search(ui: Subject(ui_control.Control), content: String) -> Nil {
process.send(ui, ui_control.UpdateState(layout.Search, content)) process.send(ui, ui_control.UpdateState(layout.Search, content))
} }
/// `handle_key` listens to a subject onto which `input` will send messages with `Key`s fn update_current_view(
fn handle_key(musicplayer: Subject(Control), input_keys: Subject(Key)) -> Nil { 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 _ = let _ =
process.new_selector() process.new_selector()
|> process.select(input_keys) |> process.select(input_keys)
|> process.selector_receive_forever |> process.selector_receive_forever
|> control.from_key |> process.send(musicplayer, _)
|> result.map(process.send(musicplayer, _))
handle_key(musicplayer, input_keys) forward_key(musicplayer, input_keys)
} }

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@@ -1,42 +0,0 @@
import gleam/list
import gleam/string
import gleam/string_tree
import musicplayer/ui/internal
pub fn text(chars: String, x: Int, y: Int) {
internal.chars_at(chars, x, y)
}
pub fn box(x: Int, y: Int, width: Int, height: Int) -> String {
let box_chars = #("", "", "", "", "", "")
let #(tl, tr, bl, br, h, v) = box_chars
// Add top of box
let tree =
string_tree.new()
|> string_tree.append(internal.chars_at(
tl <> string.repeat(h, width - 2) <> tr,
x,
y,
))
// Add sides of box
let tree_with_sides =
list.range(1, height - 2)
|> list.map(fn(row) {
tree
|> string_tree.append(internal.chars_at(v, x, y + row))
|> string_tree.append(internal.chars_at(v, x + width - 1, y + row))
})
|> string_tree.concat
// Add bottom of box
tree_with_sides
|> string_tree.append(internal.chars_at(
bl <> string.repeat(h, width - 2) <> br,
x,
y + height - 1,
))
|> string_tree.to_string
}

View File

@@ -1,10 +1,11 @@
import gleam/erlang/process.{type Subject} import gleam/erlang/process.{type Subject}
import musicplayer/ui/layout.{type Section} import musicplayer/ui/layout.{type Section, type ViewIdx}
pub type Control { pub type Control {
UpdateDimensions(columns: Int, rows: Int) UpdateDimensions(columns: Int, rows: Int)
UpdateState(section: Section, content: String) UpdateState(section: Section, content: String)
SetView(view_idx: ViewIdx)
Exit(reply_to: Subject(Nil)) Exit(reply_to: Subject(Nil))
} }

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@@ -3,6 +3,16 @@ import gleam/io
// https://en.wikipedia.org/wiki/ANSI_escape_code#Control_Sequence_Introducer_commands // 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 { pub fn clear_screen() -> Nil {
io.print("\u{001B}[2J\u{001B}[H") io.print("\u{001B}[2J\u{001B}[H")
} }
@@ -12,10 +22,6 @@ pub fn chars_at(chars: String, x: Int, y: Int) -> String {
seq <> chars seq <> chars
} }
pub fn print(chars: String) -> Nil {
io.print(chars)
}
pub fn hide_cursor() -> Nil { pub fn hide_cursor() -> Nil {
io.print("\u{001B}[?25l") io.print("\u{001B}[?25l")
} }

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@@ -4,11 +4,9 @@ import gleam/list
import gleam/pair import gleam/pair
import gleam/set import gleam/set
import gleam/string import gleam/string
import gleam/string_tree
import musicplayer/logging/logging
import musicplayer/ui/ansi
import musicplayer/ui/internal import musicplayer/ui/internal
import musicplayer/ui/plot.{type Buffer}
pub const root_section = "reserved_root_section" pub const root_section = "reserved_root_section"
@@ -34,13 +32,41 @@ pub type Node {
Cell(content: String, style: Style) Cell(content: 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 { pub type Layout {
Layout(columns: Int, rows: Int, nodes: dict.Dict(Section, Node)) Layout(
columns: Int,
rows: Int,
current_view: ViewIdx,
views: dict.Dict(ViewIdx, View),
)
} }
pub fn new(columns: Int, rows: Int, nodes: List(#(Section, Node))) -> Layout { 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 = let children =
nodes view_nodes
|> list.flat_map(fn(node) { |> list.flat_map(fn(node) {
case pair.second(node) { case pair.second(node) {
Row(children: c, ..) -> c Row(children: c, ..) -> c
@@ -52,22 +78,24 @@ pub fn new(columns: Int, rows: Int, nodes: List(#(Section, Node))) -> Layout {
// All sections that are not children of other nodes will be added as // All sections that are not children of other nodes will be added as
// children to the root // children to the root
let orphans = let orphans =
nodes view_nodes
|> list.map(pair.first) |> list.map(pair.first)
|> list.filter(fn(node) { !set.contains(children, node) }) |> list.filter(fn(node) { !set.contains(children, node) })
let nodes = dict.from_list(view_nodes)
dict.from_list(nodes)
|> dict.insert( |> dict.insert(
Section(root_section), view_index_section(i),
Row( Row(
content: "", content: "",
style: Style(dimensions: Percent(width: 100, height: 100)), style: Style(dimensions: Percent(width: 100, height: 100)),
children: orphans, children: orphans,
), ),
) )
}
Layout(columns:, rows:, nodes:) /// 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( pub fn update_section(
@@ -75,15 +103,24 @@ pub fn update_section(
section: Section, section: Section,
content: String, content: String,
) -> Layout { ) -> Layout {
case dict.get(layout.nodes, section) { case dict.get(layout.views, layout.current_view) {
Error(_) -> layout
Ok(view) ->
case dict.get(view, section) {
Error(_) -> layout Error(_) -> layout
Ok(node) -> { Ok(node) -> {
let updated = case node { let updated_node = case node {
Cell(..) -> Cell(..node, content: content) Cell(..) -> Cell(..node, content: content)
Row(..) -> Row(..node, content: content) Row(..) -> Row(..node, content: content)
} }
Layout(..layout, nodes: dict.insert(layout.nodes, section, updated)) let updated_view = dict.insert(view, section, updated_node)
Layout(
..layout,
views: dict.insert(layout.views, layout.current_view, updated_view),
)
}
} }
} }
} }
@@ -92,15 +129,11 @@ pub fn update_dimensions(layout: Layout, columns: Int, rows: Int) -> Layout {
Layout(..layout, columns:, rows:) 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 { pub fn render(layout: Layout) -> Nil {
internal.clear_screen()
[layout.columns, layout.rows]
|> list.map(int.to_string)
|> string.join(" ")
|> string.append("layout - render: ", _)
|> logging.log
let context = let context =
RenderContext( RenderContext(
parent_width: layout.columns, parent_width: layout.columns,
@@ -110,29 +143,21 @@ pub fn render(layout: Layout) -> Nil {
position_index: 0, position_index: 0,
) )
let ansi_renders = case dict.get(layout.views, layout.current_view) {
Renders( Error(_) -> Nil
text: fn(tree, chars, x, y) { Ok(view) -> {
string_tree.append(tree, ansi.text(chars, x, y)) let buffer: Buffer = dict.new()
},
box: fn(tree, x, y, w, h) {
string_tree.append(tree, ansi.box(x, y, w, h))
},
)
string_tree.new() render_loop(
|> render_generic(layout, context, Section(root_section), _, ansi_renders) view,
|> string_tree.to_string context,
|> internal.print view_index_section(layout.current_view),
} buffer,
pub type Renders(into) {
Renders(
// into, chars, x, y
text: fn(into, String, Int, Int) -> into,
// into, x, y, width, height
box: fn(into, Int, Int, Int, Int) -> into,
) )
|> plot.flush_buffer(layout.columns, layout.rows)
|> internal.update
}
}
} }
pub type RenderContext { pub type RenderContext {
@@ -145,17 +170,16 @@ pub type RenderContext {
) )
} }
pub fn render_generic( pub fn render_loop(
layout: Layout, view: View,
context: RenderContext, context: RenderContext,
from: Section, from: Section,
render_into: into, buffer: Buffer,
renders: Renders(into), ) -> Buffer {
) -> into { case dict.get(view, from) {
case dict.get(layout.nodes, from) { Error(_) -> buffer
Error(_) -> render_into
Ok(node) -> { Ok(node) -> {
// Margin between container and the node being rendere // Margin between container and the node being rendered
let margin = 2 let margin = 2
let #(node_width, node_height) = case node.style.dimensions { let #(node_width, node_height) = case node.style.dimensions {
@@ -180,20 +204,20 @@ pub fn render_generic(
} }
let parent = let parent =
render_into plot.box(
|> renders.box( buffer,
node_top_left_x, node_top_left_x,
node_top_left_y, node_top_left_y,
node_width, node_width,
node_height, node_height,
) )
|> renders.text(node.content, node_top_left_x, node_top_left_y) |> plot.text(node.content, node_top_left_x, node_top_left_y)
case node { case node {
Cell(..) -> parent Cell(..) -> parent
Row(children:, ..) -> { Row(children:, ..) -> {
list.index_map(children, fn(child, i) { #(i, child) }) list.index_map(children, fn(child, i) { #(i, child) })
|> list.fold(parent, fn(acc_into, ic) { |> list.fold(parent, fn(acc_buffer, ic) {
let #(i, child) = ic let #(i, child) = ic
let #(child_width, child_height) = case node.style.dimensions { let #(child_width, child_height) = case node.style.dimensions {
@@ -215,7 +239,7 @@ pub fn render_generic(
position_index: i, position_index: i,
) )
render_generic(layout, context, child, acc_into, renders) render_loop(view, context, child, acc_buffer)
}) })
} }
} }

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@@ -16,7 +16,8 @@ pub fn main() {
/// First row has two cells /// First row has two cells
/// Second row has no cells /// Second row has no cells
fn two_rows_with_cells(columns: Int, rows: Int) -> layout.Layout { fn two_rows_with_cells(columns: Int, rows: Int) -> layout.Layout {
let nodes = [ let views = [
[
#( #(
Section("Row1"), Section("Row1"),
layout.Row( layout.Row(
@@ -50,7 +51,8 @@ fn two_rows_with_cells(columns: Int, rows: Int) -> layout.Layout {
children: [], children: [],
), ),
), ),
],
] ]
layout.new(columns, rows, nodes) layout.new(columns, rows, views)
} }

View File

@@ -0,0 +1,72 @@
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)
}
}
}
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

@@ -18,20 +18,16 @@ pub fn new() -> Result(Subject(Control), String) {
let redraw: Subject(Layout) = process.named_subject(redraw_name) let redraw: Subject(Layout) = process.named_subject(redraw_name)
let layout = let layout =
[
[ [
#( #(
layout.Header, layout.Header,
layout.Row( layout.Row(
content: "Foo (1) | Bar (2) | Baz (3)", content: "Foo <1> | Bar (2)",
style: layout.Style(dimensions: layout.Percent(width: 100, height: 33)), style: layout.Style(dimensions: layout.Percent(
children: [], width: 100,
), height: 50,
), )),
#(
layout.Search,
layout.Row(
content: "",
style: layout.Style(dimensions: layout.Percent(width: 100, height: 33)),
children: [], children: [],
), ),
), ),
@@ -39,10 +35,49 @@ pub fn new() -> Result(Subject(Control), String) {
layout.PlaybackTime, layout.PlaybackTime,
layout.Row( layout.Row(
content: "00:00", content: "00:00",
style: layout.Style(dimensions: layout.Percent(width: 100, height: 33)), style: layout.Style(dimensions: layout.Percent(
width: 100,
height: 50,
)),
children: [], children: [],
), ),
), ),
],
[
#(
layout.Header,
layout.Row(
content: "Foo (1) | Bar <2>",
style: layout.Style(dimensions: layout.Percent(
width: 100,
height: 33,
)),
children: [],
),
),
#(
layout.Search,
layout.Row(
content: "",
style: layout.Style(dimensions: layout.Percent(
width: 100,
height: 33,
)),
children: [],
),
),
#(
layout.PlaybackTime,
layout.Row(
content: "00:00",
style: layout.Style(dimensions: layout.Percent(
width: 100,
height: 33,
)),
children: [],
),
),
],
] ]
|> layout.new(0, 0, _) |> layout.new(0, 0, _)
@@ -109,6 +144,12 @@ fn handle_message(
process.send(reply_to, Nil) process.send(reply_to, Nil)
actor.stop() 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:))
}
} }
} }

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@@ -1,7 +1,7 @@
import gleam/list import gleam/list
import gleeunit import gleeunit
import musicplayer/control.{type Control} import musicplayer/control.{type Control, type Mode}
import musicplayer/input/key.{type Key, Char} import musicplayer/input/key.{type Key, Char}
pub fn main() -> Nil { pub fn main() -> Nil {
@@ -9,16 +9,24 @@ pub fn main() -> Nil {
} }
type TestCase { type TestCase {
TestCase(key: Key, expected: Result(Control, Nil)) TestCase(key: Key, mode: Mode, expected: Result(Control, Nil))
} }
pub fn control_from_key_test() { pub fn control_from_key_test() {
let test_cases = [ let idle_tests = [
TestCase(Char(" "), Ok(control.TogglePlayPause)), TestCase(Char(" "), control.Idle, Ok(control.TogglePlayPause)),
TestCase(Char("q"), Ok(control.Exit)), TestCase(Char("/"), control.Idle, Ok(control.Search("", True))),
TestCase(Char("q"), control.Idle, Ok(control.Exit)),
] ]
list.each(test_cases, fn(tc) { let search_tests = [
assert tc.expected == control.from_key(tc.key) 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)
}) })
} }

View File

@@ -1,17 +1,19 @@
import gleam/dict
import gleam/io import gleam/io
import gleam/string import gleam/string
import gleeunit import gleeunit
import gleeunit/should import gleeunit/should
import musicplayer/ui/virtual_ansi
import musicplayer/ui/layout.{Percent, Section, Style} import musicplayer/ui/layout.{Percent, RenderContext, Section, Style}
import musicplayer/ui/plot
pub fn main() -> Nil { pub fn main() -> Nil {
gleeunit.main() gleeunit.main()
} }
pub fn percent_layout_test() { pub fn percent_layout_test() {
let nodes = [ let views = [
[
#( #(
Section("Row1"), Section("Row1"),
layout.Row( layout.Row(
@@ -45,11 +47,12 @@ pub fn percent_layout_test() {
children: [], children: [],
), ),
), ),
],
] ]
let columns = 80 let columns = 80
let rows = 20 let rows = 20
let layout = layout.new(columns, rows, nodes) let layout = layout.new(columns, rows, views)
let expected = let expected =
" "
@@ -74,9 +77,30 @@ pub fn percent_layout_test() {
│└────────────────────────────────────────────────────────────────────────────┘│ │└────────────────────────────────────────────────────────────────────────────┘│
└──────────────────────────────────────────────────────────────────────────────┘ └──────────────────────────────────────────────────────────────────────────────┘
" "
|> string.replace(each: "\n", with: "\r\n")
|> string.trim
let visual = virtual_ansi.render(layout) let context =
case visual == string.trim(expected) { 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 True -> Nil
False -> { False -> {
io.println("Test failed") io.println("Test failed")
@@ -84,9 +108,9 @@ pub fn percent_layout_test() {
io.println(string.trim(expected)) io.println(string.trim(expected))
io.println("Got:") io.println("Got:")
io.println(visual) io.println(flushed)
should.equal(visual, expected) should.equal(flushed, expected)
} }
} }
} }

View File

@@ -1,118 +0,0 @@
import gleam/dict
import gleam/int
import gleam/list
import gleam/string
import musicplayer/ui/layout.{type Layout, RenderContext, Renders}
pub type Screen =
dict.Dict(#(Int, Int), String)
pub fn render(layout: Layout) -> String {
let test_renders =
Renders(
text: fn(screen, chars, x, y) { text(screen, chars, x, y) },
box: fn(screen, x, y, w, h) { box(screen, x, y, w, h) },
)
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 screen =
layout.render_generic(
layout,
context,
layout.Section(layout.root_section),
dict.new(),
test_renders,
)
screen_to_string(screen)
}
pub fn screen_to_string(screen: Screen) -> String {
let keys = dict.keys(screen)
// Find the bounding box of the drawing
let max_x = list.fold(keys, 0, fn(m, k) { int.max(m, k.0) })
let max_y = list.fold(keys, 0, fn(m, k) { int.max(m, k.1) })
// We start from 1 because ANSI is 1-based
let min_y = list.fold(keys, 1000, fn(m, k) { int.min(m, k.1) })
list.range(min_y, max_y)
|> list.map(fn(y) {
list.range(1, max_x)
|> list.map(fn(x) {
case dict.get(screen, #(x, y)) {
Ok(char) -> char
Error(_) -> " "
// Fill gaps with space
}
})
|> string.join("")
})
|> string.join("\n")
}
pub fn text(screen: Screen, text: String, start_x: Int, y: Int) -> Screen {
// We use to_graphemes to ensure Unicode characters (like emoji or box lines)
// are treated as single visual units
text
|> string.to_graphemes
|> list.index_fold(screen, fn(acc, char, i) {
dict.insert(acc, #(start_x + i, y), char)
})
}
pub fn box(screen: Screen, x: Int, y: Int, w: Int, h: Int) -> Screen {
let box_chars = #("", "", "", "", "", "")
let #(tl, tr, bl, br, hor, ver) = box_chars
// Don't draw impossible boxes
case w < 2 || h < 2 {
True -> screen
False -> {
screen
// 1. Corners
|> dict.insert(#(x, y), tl)
|> dict.insert(#(x + w - 1, y), tr)
|> dict.insert(#(x, y + h - 1), bl)
|> dict.insert(#(x + w - 1, y + h - 1), br)
// 2. Top and Bottom edges
|> horizontal_line(x + 1, y, w - 2, hor)
|> horizontal_line(x + 1, y + h - 1, w - 2, hor)
// 3. Side edges
|> vertical_line(x, y + 1, h - 2, ver)
|> vertical_line(x + w - 1, y + 1, h - 2, ver)
}
}
}
fn horizontal_line(
screen: Screen,
x: Int,
y: Int,
len: Int,
char: String,
) -> Screen {
list.range(0, len - 1)
|> list.fold(screen, fn(acc, i) { dict.insert(acc, #(x + i, y), char) })
}
fn vertical_line(
screen: Screen,
x: Int,
y: Int,
len: Int,
char: String,
) -> Screen {
list.range(0, len - 1)
|> list.fold(screen, fn(acc, i) { dict.insert(acc, #(x, y + i), char) })
}