189 lines
5.1 KiB
Zig
189 lines
5.1 KiB
Zig
const std = @import("std");
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const main = @import("main.zig");
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const backends = @import("backends.zig");
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const util = @import("util.zig");
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const default_sample_rate = 44_100; // Hz
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const dummy_playback = main.Device{
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.id = "dummy-playback",
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.name = "Dummy Device",
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.mode = .playback,
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.channels = undefined,
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.formats = std.meta.tags(main.Format),
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.sample_rate = .{
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.min = main.min_sample_rate,
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.max = main.max_sample_rate,
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},
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};
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const dummy_capture = main.Device{
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.id = "dummy-capture",
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.name = "Dummy Device",
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.mode = .capture,
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.channels = undefined,
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.formats = std.meta.tags(main.Format),
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.sample_rate = .{
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.min = main.min_sample_rate,
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.max = main.max_sample_rate,
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},
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};
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pub const Context = struct {
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allocator: std.mem.Allocator,
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devices_info: util.DevicesInfo,
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pub fn init(allocator: std.mem.Allocator, options: main.Context.Options) !backends.Context {
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_ = options;
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const ctx = try allocator.create(Context);
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errdefer allocator.destroy(ctx);
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ctx.* = .{
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.allocator = allocator,
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.devices_info = util.DevicesInfo.init(),
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};
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return .{ .dummy = ctx };
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}
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pub fn deinit(ctx: *Context) void {
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for (ctx.devices_info.list.items) |d|
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freeDevice(ctx.allocator, d);
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ctx.devices_info.list.deinit(ctx.allocator);
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ctx.allocator.destroy(ctx);
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}
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pub fn refresh(ctx: *Context) !void {
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for (ctx.devices_info.list.items) |d|
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freeDevice(ctx.allocator, d);
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ctx.devices_info.clear();
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try ctx.devices_info.list.append(ctx.allocator, dummy_playback);
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try ctx.devices_info.list.append(ctx.allocator, dummy_capture);
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ctx.devices_info.setDefault(.playback, 0);
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ctx.devices_info.setDefault(.capture, 1);
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ctx.devices_info.list.items[0].channels = try ctx.allocator.alloc(main.ChannelPosition, 1);
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ctx.devices_info.list.items[1].channels = try ctx.allocator.alloc(main.ChannelPosition, 1);
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ctx.devices_info.list.items[0].channels[0] = .front_center;
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ctx.devices_info.list.items[1].channels[0] = .front_center;
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}
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pub fn devices(ctx: Context) []const main.Device {
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return ctx.devices_info.list.items;
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}
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pub fn defaultDevice(ctx: Context, mode: main.Device.Mode) ?main.Device {
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return ctx.devices_info.default(mode);
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}
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pub fn createPlayer(ctx: *Context, device: main.Device, writeFn: main.WriteFn, options: main.StreamOptions) !backends.Player {
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_ = writeFn;
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const player = try ctx.allocator.create(Player);
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player.* = .{
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.allocator = ctx.allocator,
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.is_paused = false,
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.vol = 1.0,
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.channels = device.channels,
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.format = options.format,
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.sample_rate = options.sample_rate orelse default_sample_rate,
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};
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return .{ .dummy = player };
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}
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pub fn createRecorder(ctx: *Context, device: main.Device, readFn: main.ReadFn, options: main.StreamOptions) !backends.Recorder {
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_ = readFn;
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const recorder = try ctx.allocator.create(Recorder);
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recorder.* = .{
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.allocator = ctx.allocator,
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.is_paused = false,
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.vol = 1.0,
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.channels = device.channels,
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.format = options.format,
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.sample_rate = options.sample_rate orelse default_sample_rate,
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};
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return .{ .dummy = recorder };
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}
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};
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pub const Player = struct {
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allocator: std.mem.Allocator,
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is_paused: bool,
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vol: f32,
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channels: []main.ChannelPosition,
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format: main.Format,
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sample_rate: u24,
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pub fn deinit(player: *Player) void {
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player.allocator.destroy(player);
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}
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pub fn start(player: *Player) !void {
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_ = player;
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}
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pub fn play(player: *Player) !void {
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player.is_paused = false;
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}
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pub fn pause(player: *Player) !void {
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player.is_paused = true;
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}
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pub fn paused(player: *Player) bool {
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return player.is_paused;
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}
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pub fn setVolume(player: *Player, vol: f32) !void {
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player.vol = vol;
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}
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pub fn volume(player: *Player) !f32 {
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return player.vol;
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}
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};
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pub const Recorder = struct {
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allocator: std.mem.Allocator,
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is_paused: bool,
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vol: f32,
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channels: []main.ChannelPosition,
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format: main.Format,
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sample_rate: u24,
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pub fn deinit(recorder: *Recorder) void {
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recorder.allocator.destroy(recorder);
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}
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pub fn start(recorder: *Recorder) !void {
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_ = recorder;
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}
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pub fn record(recorder: *Recorder) !void {
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recorder.is_paused = false;
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}
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pub fn pause(recorder: *Recorder) !void {
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recorder.is_paused = true;
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}
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pub fn paused(recorder: *Recorder) bool {
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return recorder.is_paused;
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}
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pub fn setVolume(recorder: *Recorder, vol: f32) !void {
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recorder.vol = vol;
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}
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pub fn volume(recorder: *Recorder) !f32 {
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return recorder.vol;
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}
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};
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fn freeDevice(allocator: std.mem.Allocator, device: main.Device) void {
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allocator.free(device.channels);
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}
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