Stream custom live channels using your own media
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// <auto-generated />
//
// To parse this JSON data, add NuGet 'System.Text.Json' then do:
//
// using ErsatzTV.Core.Next;
//
// var playout = Playout.FromJson(jsonString);
#nullable enable
#pragma warning disable CS8618
#pragma warning disable CS8601
#pragma warning disable CS8602
#pragma warning disable CS8603
namespace ErsatzTV.Core.Next
{
using System;
using System.Collections.Generic;
using System.Text.Json;
using System.Text.Json.Serialization;
using System.Globalization;
/// <summary>
/// A playout schedule for a single time window.
///
/// Files should be named `{start}_{finish}.json` using compact ISO 8601 (no separators),
/// e.g. `20260413T000000.000000000-0500_20260414T002131.620000000-0500.json`, so that the
/// channel can locate the correct file for the current time.
/// </summary>
public partial class Playout
{
/// <summary>
/// Ordered list of scheduled items for this window.
/// </summary>
[JsonPropertyName("items")]
public List<PlayoutItem> Items { get; set; }
/// <summary>
/// URI identifying the schema version, e.g. "https://ersatztv.org/playout/version/0.0.1".
/// </summary>
[JsonPropertyName("version")]
public string Version { get; set; }
}
/// <summary>
/// A single scheduled item in the playout.
///
/// An item must supply media for its tracks. You can do this two ways, and they can be
/// combined:
///
/// 1. Set `source` to use one shared source for every track. Track details (which stream,
/// etc.) are chosen naively, or may be refined via `tracks`.
/// 2. Set `tracks` to specify each track (video, audio) individually. A track may provide
/// its own `source`; if it doesn't, the item's top-level `source` is used.
///
/// At least one of `source` or `tracks` must be present, and every track that is selected
/// must have an effective source (either its own or the item's).
/// </summary>
public partial class PlayoutItem
{
/// <summary>
/// RFC3339 formatted finish time, e.g. 2026-04-13T00:54:21.527-05:00.
/// </summary>
[JsonPropertyName("finish")]
public DateTimeOffset Finish { get; set; }
/// <summary>
/// Stable identifier for this item, unique within the playout.
/// </summary>
[JsonPropertyName("id")]
public string Id { get; set; }
/// <summary>
/// The default source shared by any track that doesn't specify its own. Required unless
/// every selected track in `tracks` provides its own `source`.
/// </summary>
[JsonPropertyName("source")]
public Source? Source { get; set; }
/// <summary>
/// RFC3339 formatted start time, e.g. 2026-04-13T00:24:21.527-05:00.
/// </summary>
[JsonPropertyName("start")]
public DateTimeOffset Start { get; set; }
/// <summary>
/// Per-track selection. Omit to let the server pick the first video and first audio track of
/// the item's `source`.
/// </summary>
[JsonPropertyName("tracks")]
public PlayoutItemTracks? Tracks { get; set; }
/// <summary>
/// Watermark (image/video overlay) to composite on top of the primary content for the
/// duration of this item. Omit for no watermark.
/// </summary>
[JsonPropertyName("watermark")]
public Watermark? Watermark { get; set; }
}
/// <summary>
/// A file on the local filesystem reachable by the server.
///
/// A synthetic source produced by an ffmpeg lavfi filter graph.
///
/// A remote source fetched over HTTP(S).
///
/// A live stream pulled from an RTSP server (e.g. an IP camera). Always treated as live: it
/// is never seeked and cannot work ahead.
///
/// An external command whose stdout is an MPEG-TS stream, proxied to ffmpeg over loopback
/// HTTP.
///
/// A placeholder source resolved at playback time by fetching a `PlayoutItem` JSON document
/// over HTTP(S). The returned item replaces this one; its `start` is forced to the current
/// transcode position and its `finish` is clamped to the placeholder's `finish`. Because
/// `start` advances each tick, the resolver is re-hit while the transcode position remains
/// inside the placeholder window, allowing a sequence of distinct items to be returned for a
/// single placeholder. The resolved item's `source` may not itself be `dynamic`, but it may
/// carry its own `probe_hint`, which is honored exactly as for a directly-specified source.
///
/// The channel automatically injects the following request headers (in addition to any
/// configured via `headers`), all formatted per RFC 3339 for timestamps:
///
/// - `x-etv-channel` — the channel number this request is for.
/// - `x-etv-dynamic-id` — a stable identifier for the placeholder; resolvers can use it to
/// coalesce or cache decisions across the multiple calls that occur while transcoding stays
/// inside one placeholder window.
/// - `x-etv-now` — the current transcode position; this is the `start` that will be forced
/// onto the resolved item.
/// - `x-etv-until` — the placeholder's `finish`; the resolver should not return an item that
/// extends beyond this (it will be clamped if it does).
/// </summary>
public partial class Source
{
/// <summary>
/// Optional start offset into the source, in milliseconds.
/// </summary>
[JsonPropertyName("in_point_ms")]
public long? InPointMs { get; set; }
/// <summary>
/// Optional end offset into the source, in milliseconds.
/// </summary>
[JsonPropertyName("out_point_ms")]
public long? OutPointMs { get; set; }
/// <summary>
/// Absolute path to the media file.
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("path")]
public string? Path { get; set; }
/// <summary>
/// Optional pre-supplied probe metadata. When present, ffprobe is skipped and the source is
/// read only once (at playback). See `ProbeHint`.
///
/// Optional pre-supplied probe metadata. When present, ffprobe is skipped and the source is
/// read only once (at playback). Especially useful here: a scripted source (e.g. a yt-dlp
/// pipeline) is otherwise opened twice, once to probe and once to play. See `ProbeHint`.
/// </summary>
[JsonPropertyName("probe_hint")]
public ProbeHint? ProbeHint { get; set; }
[JsonPropertyName("source_type")]
public SourceType SourceType { get; set; }
/// <summary>
/// The lavfi filter graph parameters, passed verbatim to ffmpeg's `-f lavfi -i`.
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("params")]
public string? Params { get; set; }
/// <summary>
/// Custom HTTP headers, e.g. ["Authorization: Bearer {{TOKEN}}"].
///
/// Custom HTTP headers, e.g. ["Authorization: Bearer {{TOKEN}}"]. Supports {{TEMPLATE}}
/// expansion.
/// </summary>
[JsonPropertyName("headers")]
public List<string>? Headers { get; set; }
/// <summary>
/// Enable persistent connections in ffmpeg. Default: false.
/// </summary>
[JsonPropertyName("keep_alive")]
public bool? KeepAlive { get; set; }
/// <summary>
/// Enable reconnect on failure. Default: true.
/// </summary>
[JsonPropertyName("reconnect")]
public bool? Reconnect { get; set; }
/// <summary>
/// Maximum reconnect delay in seconds. Maps to ffmpeg's `reconnect_delay_max`.
/// </summary>
[JsonPropertyName("reconnect_delay_max")]
public long? ReconnectDelayMax { get; set; }
/// <summary>
/// Socket timeout in microseconds.
///
/// Request timeout in microseconds. Defaults to 10 seconds.
/// </summary>
[JsonPropertyName("timeout_us")]
public long? TimeoutUs { get; set; }
/// <summary>
/// URI template, e.g. "https://example.com/file.mkv?token={{MY_SECRET}}".
///
/// RTSP URI template, e.g. "rtsp://user:{{PASSWORD}}@camera.lan:554/stream".
///
/// URI template for the resolver endpoint, e.g.
/// "http://localhost:8409/fallback?channel=5&amp;token={{MY_SECRET}}". Must respond with a JSON
/// `PlayoutItem`.
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("uri")]
public string? Uri { get; set; }
/// <summary>
/// Custom User-Agent string.
///
/// Custom User-Agent string. Supports {{TEMPLATE}} expansion.
/// </summary>
[JsonPropertyName("user_agent")]
public string? UserAgent { get; set; }
/// <summary>
/// Optional arguments for the command. Supports {{TEMPLATE}} expansion. Defaults to [].
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("args")]
public List<string>? Args { get; set; }
/// <summary>
/// Command that writes an MPEG-TS stream to its stdout. Supports {{TEMPLATE}} expansion.
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("command")]
public string? Command { get; set; }
/// <summary>
/// Whether the content is live and therefore cannot work ahead. Default: false.
/// </summary>
[JsonPropertyName("is_live")]
public bool? IsLive { get; set; }
}
/// <summary>
/// Pre-supplied probe metadata for a source. When present, the server trusts these values
/// and skips running ffprobe entirely, so the source is opened only once (at playback)
/// instead of twice. This matters most for slow or expensive inputs such as scripted yt-dlp
/// pipelines.
///
/// The hint fully replaces probing: values are not validated up front, so incorrect metadata
/// surfaces as an ffmpeg error during playback rather than a probe failure. Provide an entry
/// for every stream the pipeline needs to select — typically one video and one audio, plus
/// any subtitle stream a track selects.
/// </summary>
public partial class ProbeHint
{
/// <summary>
/// Audio streams in the source. Omit (or use `[]`) for video-only sources; defaults to empty.
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("audio")]
public List<AudioHint>? Audio { get; set; }
/// <summary>
/// Source duration in milliseconds. Omit for live or unbounded sources.
/// </summary>
[JsonPropertyName("duration_ms")]
public long? DurationMs { get; set; }
/// <summary>
/// Container format name as reported by ffprobe's `format_name` (e.g. "mpegts", "image2",
/// "png_pipe"). Used to detect still images (a single video stream in an `image2` or
/// `*_pipe` container). Defaults to "mpegts" when omitted.
/// </summary>
[JsonPropertyName("format_name")]
public string? FormatName { get; set; }
/// <summary>
/// Subtitle streams in the source. Omit (or use `[]`) for sources without subtitles;
/// defaults to empty. Provide an entry for any subtitle stream a track selects, otherwise
/// the requested subtitle stream cannot be located and subtitles are dropped.
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("subtitle")]
public List<SubtitleHint>? Subtitle { get; set; }
/// <summary>
/// Video (and still-image) streams in the source. Omit (or use `[]`) for audio-only sources;
/// defaults to empty.
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("video")]
public List<VideoHint>? Video { get; set; }
}
/// <summary>
/// Probe metadata for a single audio stream.
/// </summary>
public partial class AudioHint
{
/// <summary>
/// Number of audio channels.
/// </summary>
[JsonPropertyName("channels")]
public long Channels { get; set; }
/// <summary>
/// Codec name as reported by ffprobe (e.g. "aac", "ac3", "mp2"). Compared case-insensitively.
/// </summary>
[JsonPropertyName("codec")]
public string Codec { get; set; }
/// <summary>
/// Zero-based index of this stream within the source.
/// </summary>
[JsonPropertyName("stream_index")]
public long StreamIndex { get; set; }
}
/// <summary>
/// Probe metadata for a single subtitle stream.
/// </summary>
public partial class SubtitleHint
{
/// <summary>
/// Codec name as reported by ffprobe (e.g. "subrip", "ass", "hdmv_pgs_subtitle",
/// "dvd_subtitle"). Compared case-insensitively; image-based codecs are handled differently
/// from text-based ones.
/// </summary>
[JsonPropertyName("codec")]
public string Codec { get; set; }
/// <summary>
/// Zero-based index of this stream within the source.
/// </summary>
[JsonPropertyName("stream_index")]
public long StreamIndex { get; set; }
}
/// <summary>
/// Probe metadata for a single video (or still-image) stream. Optional fields left out
/// assume progressive, square-pixel, SDR content at 24 fps — the same fallbacks used when
/// ffprobe omits a field.
/// </summary>
public partial class VideoHint
{
/// <summary>
/// Codec name as reported by ffprobe (e.g. "h264", "hevc", "mpeg2video", "png"). Compared
/// case-insensitively.
/// </summary>
[JsonPropertyName("codec")]
public string Codec { get; set; }
/// <summary>
/// Color primaries (e.g. "bt709", "bt2020"). Omit if unknown.
/// </summary>
[JsonPropertyName("color_primaries")]
public string? ColorPrimaries { get; set; }
/// <summary>
/// Color range (e.g. "tv", "pc"). Omit if unknown.
/// </summary>
[JsonPropertyName("color_range")]
public string? ColorRange { get; set; }
/// <summary>
/// Color space / matrix coefficients (e.g. "bt709", "bt2020nc"). Omit if unknown.
/// </summary>
[JsonPropertyName("color_space")]
public string? ColorSpace { get; set; }
/// <summary>
/// Color transfer characteristics (e.g. "bt709", "smpte2084", "arib-std-b67"). The values
/// "smpte2084" and "arib-std-b67" mark the stream as HDR. Omit for SDR.
/// </summary>
[JsonPropertyName("color_transfer")]
public string? ColorTransfer { get; set; }
/// <summary>
/// Display aspect ratio, e.g. "16:9". Omit if unknown.
/// </summary>
[JsonPropertyName("display_aspect_ratio")]
public string? DisplayAspectRatio { get; set; }
/// <summary>
/// Interlacing field order as reported by ffprobe ("progressive", "tt", "bb", "tb", "bt").
/// Omit for progressive.
/// </summary>
[JsonPropertyName("field_order")]
public string? FieldOrder { get; set; }
/// <summary>
/// Frame rate as a number or rational string (e.g. "24", "30000/1001"). Defaults to 24 when
/// omitted.
/// </summary>
[JsonPropertyName("frame_rate")]
public string? FrameRate { get; set; }
/// <summary>
/// Coded frame height in pixels.
/// </summary>
[JsonPropertyName("height")]
public long Height { get; set; }
/// <summary>
/// Pixel format (e.g. "yuv420p", "yuv420p10le").
/// </summary>
[JsonPropertyName("pix_fmt")]
public string PixFmt { get; set; }
/// <summary>
/// Codec profile (e.g. "high", "main 10"). Compared case-insensitively. Omit if unknown.
/// </summary>
[JsonPropertyName("profile")]
public string? Profile { get; set; }
/// <summary>
/// Sample (pixel) aspect ratio, e.g. "1:1". Omit for square pixels.
/// </summary>
[JsonPropertyName("sample_aspect_ratio")]
public string? SampleAspectRatio { get; set; }
/// <summary>
/// Zero-based index of this stream within the source.
/// </summary>
[JsonPropertyName("stream_index")]
public long StreamIndex { get; set; }
/// <summary>
/// Coded frame width in pixels.
/// </summary>
[JsonPropertyName("width")]
public long Width { get; set; }
}
/// <summary>
/// Per-track overrides for a playout item. Omit a field to use the server default for that
/// track kind (first stream of that kind in the item's `source`, if any).
/// </summary>
public partial class PlayoutItemTracks
{
/// <summary>
/// Audio track selection.
/// </summary>
[JsonPropertyName("audio")]
public TrackSelection? Audio { get; set; }
/// <summary>
/// Subtitle track selection.
/// </summary>
[JsonPropertyName("subtitle")]
public TrackSelection? Subtitle { get; set; }
/// <summary>
/// Video track selection.
/// </summary>
[JsonPropertyName("video")]
public TrackSelection? Video { get; set; }
}
/// <summary>
/// Selects a single track (video or audio).
///
/// - `source` absent: inherit the parent `PlayoutItem.source`.
/// - `source` present: use this source for this track, overriding the parent.
/// - `stream_index` absent: server picks the first stream of the track's kind in the
/// effective source.
/// - `stream_index` present: use this specific stream within the effective source.
/// </summary>
public partial class TrackSelection
{
/// <summary>
/// Source to pull this track from. If omitted, inherits from the parent `PlayoutItem.source`.
/// </summary>
[JsonPropertyName("source")]
public Source? Source { get; set; }
/// <summary>
/// Zero-based stream index within the effective source. If omitted, the server picks the
/// first stream of this track's kind.
/// </summary>
[JsonPropertyName("stream_index")]
public long? StreamIndex { get; set; }
}
/// <summary>
/// An image or video overlay composited on top of the primary content. Sized and positioned
/// relative to the primary content's frame.
/// </summary>
public partial class Watermark
{
/// <summary>
/// Horizontal offset from the anchor `location`, as a percent of primary content width
/// (0–100). Omit for 0.
/// </summary>
[JsonPropertyName("horizontal_margin_percent")]
[JsonConverter(typeof(MinMaxValueCheckConverter))]
public double? HorizontalMarginPercent { get; set; }
/// <summary>
/// Anchor position within the primary content frame.
/// </summary>
[JsonPropertyName("location")]
public WatermarkLocation Location { get; set; }
/// <summary>
/// Opacity as a percent (0–100). Omit for fully opaque (100).
/// </summary>
[JsonPropertyName("opacity_percent")]
[JsonConverter(typeof(MinMaxValueCheckConverter))]
public double? OpacityPercent { get; set; }
/// <summary>
/// The source providing the watermark media (typically an image, but any `PlayoutItemSource`
/// is accepted).
/// </summary>
[JsonPropertyName("source")]
public PlayoutItemSource Source { get; set; }
/// <summary>
/// Zero-based stream index within the source. If omitted, the server picks the first video
/// stream.
/// </summary>
[JsonPropertyName("stream_index")]
public long? StreamIndex { get; set; }
/// <summary>
/// Visibility schedule for the watermark. Omit for an always-on watermark.
/// </summary>
[JsonPropertyName("timing")]
public Timing? Timing { get; set; }
/// <summary>
/// Vertical offset from the anchor `location`, as a percent of primary content height
/// (0–100). Omit for 0.
/// </summary>
[JsonPropertyName("vertical_margin_percent")]
[JsonConverter(typeof(MinMaxValueCheckConverter))]
public double? VerticalMarginPercent { get; set; }
/// <summary>
/// Scale the watermark to this percent of the primary content width (0–100). Omit to use the
/// watermark's actual size.
/// </summary>
[JsonPropertyName("width_percent")]
[JsonConverter(typeof(MinMaxValueCheckConverter))]
public double? WidthPercent { get; set; }
/// <summary>
/// When true, position margins are measured from the edges of the source content rather than
/// the padded output frame, so letterbox/pillarbox bars push the watermark inward and keep
/// it inside the visible content. When false, margins are relative to the full padded frame,
/// so a 0% margin can land inside the bars. Has no effect when the primary content fills the
/// output (crop/stretch). Omit for false.
/// </summary>
[JsonPropertyName("within_source_content")]
public bool? WithinSourceContent { get; set; }
}
/// <summary>
/// A media source. Exactly one variant, distinguished by `source_type`.
///
/// The source providing the watermark media (typically an image, but any `PlayoutItemSource`
/// is accepted).
///
/// A file on the local filesystem reachable by the server.
///
/// A synthetic source produced by an ffmpeg lavfi filter graph.
///
/// A remote source fetched over HTTP(S).
///
/// A live stream pulled from an RTSP server (e.g. an IP camera). Always treated as live: it
/// is never seeked and cannot work ahead.
///
/// An external command whose stdout is an MPEG-TS stream, proxied to ffmpeg over loopback
/// HTTP.
///
/// A placeholder source resolved at playback time by fetching a `PlayoutItem` JSON document
/// over HTTP(S). The returned item replaces this one; its `start` is forced to the current
/// transcode position and its `finish` is clamped to the placeholder's `finish`. Because
/// `start` advances each tick, the resolver is re-hit while the transcode position remains
/// inside the placeholder window, allowing a sequence of distinct items to be returned for a
/// single placeholder. The resolved item's `source` may not itself be `dynamic`, but it may
/// carry its own `probe_hint`, which is honored exactly as for a directly-specified source.
///
/// The channel automatically injects the following request headers (in addition to any
/// configured via `headers`), all formatted per RFC 3339 for timestamps:
///
/// - `x-etv-channel` — the channel number this request is for.
/// - `x-etv-dynamic-id` — a stable identifier for the placeholder; resolvers can use it to
/// coalesce or cache decisions across the multiple calls that occur while transcoding stays
/// inside one placeholder window.
/// - `x-etv-now` — the current transcode position; this is the `start` that will be forced
/// onto the resolved item.
/// - `x-etv-until` — the placeholder's `finish`; the resolver should not return an item that
/// extends beyond this (it will be clamped if it does).
/// </summary>
public partial class PlayoutItemSource
{
/// <summary>
/// Optional start offset into the source, in milliseconds.
/// </summary>
[JsonPropertyName("in_point_ms")]
public long? InPointMs { get; set; }
/// <summary>
/// Optional end offset into the source, in milliseconds.
/// </summary>
[JsonPropertyName("out_point_ms")]
public long? OutPointMs { get; set; }
/// <summary>
/// Absolute path to the media file.
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("path")]
public string? Path { get; set; }
/// <summary>
/// Optional pre-supplied probe metadata. When present, ffprobe is skipped and the source is
/// read only once (at playback). See `ProbeHint`.
///
/// Optional pre-supplied probe metadata. When present, ffprobe is skipped and the source is
/// read only once (at playback). Especially useful here: a scripted source (e.g. a yt-dlp
/// pipeline) is otherwise opened twice, once to probe and once to play. See `ProbeHint`.
/// </summary>
[JsonPropertyName("probe_hint")]
public ProbeHint? ProbeHint { get; set; }
[JsonPropertyName("source_type")]
public SourceType SourceType { get; set; }
/// <summary>
/// The lavfi filter graph parameters, passed verbatim to ffmpeg's `-f lavfi -i`.
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("params")]
public string? Params { get; set; }
/// <summary>
/// Custom HTTP headers, e.g. ["Authorization: Bearer {{TOKEN}}"].
///
/// Custom HTTP headers, e.g. ["Authorization: Bearer {{TOKEN}}"]. Supports {{TEMPLATE}}
/// expansion.
/// </summary>
[JsonPropertyName("headers")]
public List<string>? Headers { get; set; }
/// <summary>
/// Enable persistent connections in ffmpeg. Default: false.
/// </summary>
[JsonPropertyName("keep_alive")]
public bool? KeepAlive { get; set; }
/// <summary>
/// Enable reconnect on failure. Default: true.
/// </summary>
[JsonPropertyName("reconnect")]
public bool? Reconnect { get; set; }
/// <summary>
/// Maximum reconnect delay in seconds. Maps to ffmpeg's `reconnect_delay_max`.
/// </summary>
[JsonPropertyName("reconnect_delay_max")]
public long? ReconnectDelayMax { get; set; }
/// <summary>
/// Socket timeout in microseconds.
///
/// Request timeout in microseconds. Defaults to 10 seconds.
/// </summary>
[JsonPropertyName("timeout_us")]
public long? TimeoutUs { get; set; }
/// <summary>
/// URI template, e.g. "https://example.com/file.mkv?token={{MY_SECRET}}".
///
/// RTSP URI template, e.g. "rtsp://user:{{PASSWORD}}@camera.lan:554/stream".
///
/// URI template for the resolver endpoint, e.g.
/// "http://localhost:8409/fallback?channel=5&amp;token={{MY_SECRET}}". Must respond with a JSON
/// `PlayoutItem`.
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("uri")]
public string? Uri { get; set; }
/// <summary>
/// Custom User-Agent string.
///
/// Custom User-Agent string. Supports {{TEMPLATE}} expansion.
/// </summary>
[JsonPropertyName("user_agent")]
public string? UserAgent { get; set; }
/// <summary>
/// Optional arguments for the command. Supports {{TEMPLATE}} expansion. Defaults to [].
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("args")]
public List<string>? Args { get; set; }
/// <summary>
/// Command that writes an MPEG-TS stream to its stdout. Supports {{TEMPLATE}} expansion.
/// </summary>
[JsonIgnore(Condition = JsonIgnoreCondition.WhenWritingNull)]
[JsonPropertyName("command")]
public string? Command { get; set; }
/// <summary>
/// Whether the content is live and therefore cannot work ahead. Default: false.
/// </summary>
[JsonPropertyName("is_live")]
public bool? IsLive { get; set; }
}
/// <summary>
/// Controls when the watermark is shown. Exactly one variant, distinguished by
/// `timing_type`.
///
/// Cyclical visibility: the watermark fades in, holds, and fades out once every
/// `frequency_ms`. Cycle length is start-to-start, so `2 * fade_ms + hold_ms` must be ≤
/// `frequency_ms`, and `fade_ms` must be ≤ `hold_ms`.
/// </summary>
public partial class Timing
{
/// <summary>
/// Reference clock used to position cycles.
/// </summary>
[JsonPropertyName("clock")]
public PeriodicClock Clock { get; set; }
/// <summary>
/// Cap on the time, measured from the start of the playout item in milliseconds, during
/// which new appearances are allowed to begin. An appearance already in progress at the cap
/// is allowed to fade out cleanly. Omit for no cap.
/// </summary>
[JsonPropertyName("disable_after_ms")]
public long? DisableAfterMs { get; set; }
/// <summary>
/// Fade-in and fade-out duration in milliseconds (symmetric). Must be ≤ `hold_ms`. Omit for
/// 1000; set to 0 for hard cuts.
/// </summary>
[JsonPropertyName("fade_ms")]
public long? FadeMs { get; set; }
/// <summary>
/// Period of the cycle, start-to-start, in milliseconds.
/// </summary>
[JsonPropertyName("frequency_ms")]
public long FrequencyMs { get; set; }
/// <summary>
/// Time held fully visible between fade-in and fade-out, in milliseconds.
/// </summary>
[JsonPropertyName("hold_ms")]
public long HoldMs { get; set; }
/// <summary>
/// Shift the cycle by this many milliseconds. With `clock: wall` and `frequency_ms: 300000`,
/// an offset of 0 puts an appearance start at every wall-clock 5-minute boundary; 120000
/// shifts to :02, :07, :12, etc. Omit for 0.
/// </summary>
[JsonPropertyName("phase_offset_ms")]
public long? PhaseOffsetMs { get; set; }
[JsonPropertyName("timing_type")]
public TimingType TimingType { get; set; }
}
public enum SourceType { Dynamic, Http, Lavfi, Local, Rtsp, Script };
/// <summary>
/// Anchor position within the primary content frame.
///
/// Nine-position anchor within the primary content frame. Read like a 3×3 grid: rows
/// top/center/bottom, columns left/center/right; the dead center is `center`.
/// </summary>
public enum WatermarkLocation { BottomCenter, BottomLeft, BottomRight, Center, CenterLeft, CenterRight, TopCenter, TopLeft, TopRight };
/// <summary>
/// Reference clock used to position cycles.
///
/// Reference clock for periodic timing. `wall` aligns cycles to wall-clock time (so a viewer
/// tuning in at any moment sees the same phase). `content` measures from the start of the
/// containing playout item.
/// </summary>
public enum PeriodicClock { Content, Wall };
public enum TimingType { Periodic };
public partial class Playout
{
public static Playout FromJson(string json) => JsonSerializer.Deserialize<Playout>(json, ErsatzTV.Core.Next.Converter.Settings);
}
public static class Serialize
{
public static string ToJson(this Playout self) => JsonSerializer.Serialize(self, ErsatzTV.Core.Next.Converter.Settings);
}
public static class Converter
{
public static readonly JsonSerializerOptions Settings = new(JsonSerializerDefaults.General)
{
DefaultIgnoreCondition = JsonIgnoreCondition.WhenWritingNull,
Converters =
{
SourceTypeConverter.Singleton,
WatermarkLocationConverter.Singleton,
PeriodicClockConverter.Singleton,
TimingTypeConverter.Singleton,
new DateOnlyConverter(),
new TimeOnlyConverter(),
IsoDateTimeOffsetConverter.Singleton
},
};
}
internal class SourceTypeConverter : JsonConverter<SourceType>
{
public override bool CanConvert(Type t) => t == typeof(SourceType);
public override SourceType Read(ref Utf8JsonReader reader, Type typeToConvert, JsonSerializerOptions options)
{
var value = reader.GetString();
switch (value)
{
case "dynamic":
return SourceType.Dynamic;
case "http":
return SourceType.Http;
case "lavfi":
return SourceType.Lavfi;
case "local":
return SourceType.Local;
case "rtsp":
return SourceType.Rtsp;
case "script":
return SourceType.Script;
}
throw new Exception("Cannot unmarshal type SourceType");
}
public override void Write(Utf8JsonWriter writer, SourceType value, JsonSerializerOptions options)
{
switch (value)
{
case SourceType.Dynamic:
JsonSerializer.Serialize(writer, "dynamic", options);
return;
case SourceType.Http:
JsonSerializer.Serialize(writer, "http", options);
return;
case SourceType.Lavfi:
JsonSerializer.Serialize(writer, "lavfi", options);
return;
case SourceType.Local:
JsonSerializer.Serialize(writer, "local", options);
return;
case SourceType.Rtsp:
JsonSerializer.Serialize(writer, "rtsp", options);
return;
case SourceType.Script:
JsonSerializer.Serialize(writer, "script", options);
return;
}
throw new Exception("Cannot marshal type SourceType");
}
public static readonly SourceTypeConverter Singleton = new SourceTypeConverter();
}
internal class MinMaxValueCheckConverter : JsonConverter<double>
{
public override bool CanConvert(Type t) => t == typeof(double);
public override double Read(ref Utf8JsonReader reader, Type typeToConvert, JsonSerializerOptions options)
{
var value = reader.GetDouble();
if (value >= 0 && value <= 100)
{
return value;
}
throw new Exception("Cannot unmarshal type double");
}
public override void Write(Utf8JsonWriter writer, double value, JsonSerializerOptions options)
{
if (value >= 0 && value <= 100)
{
JsonSerializer.Serialize(writer, value, options);
return;
}
throw new Exception("Cannot marshal type double");
}
public static readonly MinMaxValueCheckConverter Singleton = new MinMaxValueCheckConverter();
}
internal class WatermarkLocationConverter : JsonConverter<WatermarkLocation>
{
public override bool CanConvert(Type t) => t == typeof(WatermarkLocation);
public override WatermarkLocation Read(ref Utf8JsonReader reader, Type typeToConvert, JsonSerializerOptions options)
{
var value = reader.GetString();
switch (value)
{
case "bottom_center":
return WatermarkLocation.BottomCenter;
case "bottom_left":
return WatermarkLocation.BottomLeft;
case "bottom_right":
return WatermarkLocation.BottomRight;
case "center":
return WatermarkLocation.Center;
case "center_left":
return WatermarkLocation.CenterLeft;
case "center_right":
return WatermarkLocation.CenterRight;
case "top_center":
return WatermarkLocation.TopCenter;
case "top_left":
return WatermarkLocation.TopLeft;
case "top_right":
return WatermarkLocation.TopRight;
}
throw new Exception("Cannot unmarshal type WatermarkLocation");
}
public override void Write(Utf8JsonWriter writer, WatermarkLocation value, JsonSerializerOptions options)
{
switch (value)
{
case WatermarkLocation.BottomCenter:
JsonSerializer.Serialize(writer, "bottom_center", options);
return;
case WatermarkLocation.BottomLeft:
JsonSerializer.Serialize(writer, "bottom_left", options);
return;
case WatermarkLocation.BottomRight:
JsonSerializer.Serialize(writer, "bottom_right", options);
return;
case WatermarkLocation.Center:
JsonSerializer.Serialize(writer, "center", options);
return;
case WatermarkLocation.CenterLeft:
JsonSerializer.Serialize(writer, "center_left", options);
return;
case WatermarkLocation.CenterRight:
JsonSerializer.Serialize(writer, "center_right", options);
return;
case WatermarkLocation.TopCenter:
JsonSerializer.Serialize(writer, "top_center", options);
return;
case WatermarkLocation.TopLeft:
JsonSerializer.Serialize(writer, "top_left", options);
return;
case WatermarkLocation.TopRight:
JsonSerializer.Serialize(writer, "top_right", options);
return;
}
throw new Exception("Cannot marshal type WatermarkLocation");
}
public static readonly WatermarkLocationConverter Singleton = new WatermarkLocationConverter();
}
internal class PeriodicClockConverter : JsonConverter<PeriodicClock>
{
public override bool CanConvert(Type t) => t == typeof(PeriodicClock);
public override PeriodicClock Read(ref Utf8JsonReader reader, Type typeToConvert, JsonSerializerOptions options)
{
var value = reader.GetString();
switch (value)
{
case "content":
return PeriodicClock.Content;
case "wall":
return PeriodicClock.Wall;
}
throw new Exception("Cannot unmarshal type PeriodicClock");
}
public override void Write(Utf8JsonWriter writer, PeriodicClock value, JsonSerializerOptions options)
{
switch (value)
{
case PeriodicClock.Content:
JsonSerializer.Serialize(writer, "content", options);
return;
case PeriodicClock.Wall:
JsonSerializer.Serialize(writer, "wall", options);
return;
}
throw new Exception("Cannot marshal type PeriodicClock");
}
public static readonly PeriodicClockConverter Singleton = new PeriodicClockConverter();
}
internal class TimingTypeConverter : JsonConverter<TimingType>
{
public override bool CanConvert(Type t) => t == typeof(TimingType);
public override TimingType Read(ref Utf8JsonReader reader, Type typeToConvert, JsonSerializerOptions options)
{
var value = reader.GetString();
if (value == "periodic")
{
return TimingType.Periodic;
}
throw new Exception("Cannot unmarshal type TimingType");
}
public override void Write(Utf8JsonWriter writer, TimingType value, JsonSerializerOptions options)
{
if (value == TimingType.Periodic)
{
JsonSerializer.Serialize(writer, "periodic", options);
return;
}
throw new Exception("Cannot marshal type TimingType");
}
public static readonly TimingTypeConverter Singleton = new TimingTypeConverter();
}
public class DateOnlyConverter : JsonConverter<DateOnly>
{
private readonly string serializationFormat;
public DateOnlyConverter() : this(null) { }
public DateOnlyConverter(string? serializationFormat)
{
this.serializationFormat = serializationFormat ?? "yyyy-MM-dd";
}
public override DateOnly Read(ref Utf8JsonReader reader, Type typeToConvert, JsonSerializerOptions options)
{
var value = reader.GetString();
return DateOnly.Parse(value!);
}
public override void Write(Utf8JsonWriter writer, DateOnly value, JsonSerializerOptions options)
=> writer.WriteStringValue(value.ToString(serializationFormat));
}
public class TimeOnlyConverter : JsonConverter<TimeOnly>
{
private readonly string serializationFormat;
public TimeOnlyConverter() : this(null) { }
public TimeOnlyConverter(string? serializationFormat)
{
this.serializationFormat = serializationFormat ?? "HH:mm:ss.fff";
}
public override TimeOnly Read(ref Utf8JsonReader reader, Type typeToConvert, JsonSerializerOptions options)
{
var value = reader.GetString();
return TimeOnly.Parse(value!);
}
public override void Write(Utf8JsonWriter writer, TimeOnly value, JsonSerializerOptions options)
=> writer.WriteStringValue(value.ToString(serializationFormat));
}
internal class IsoDateTimeOffsetConverter : JsonConverter<DateTimeOffset>
{
public override bool CanConvert(Type t) => t == typeof(DateTimeOffset);
private const string DefaultDateTimeFormat = "yyyy'-'MM'-'dd'T'HH':'mm':'ss.FFFFFFFK";
private DateTimeStyles _dateTimeStyles = DateTimeStyles.RoundtripKind;
private string? _dateTimeFormat;
private CultureInfo? _culture;
public DateTimeStyles DateTimeStyles
{
get => _dateTimeStyles;
set => _dateTimeStyles = value;
}
public string? DateTimeFormat
{
get => _dateTimeFormat ?? string.Empty;
set => _dateTimeFormat = (string.IsNullOrEmpty(value)) ? null : value;
}
public CultureInfo Culture
{
get => _culture ?? CultureInfo.CurrentCulture;
set => _culture = value;
}
public override void Write(Utf8JsonWriter writer, DateTimeOffset value, JsonSerializerOptions options)
{
string text;
if ((_dateTimeStyles & DateTimeStyles.AdjustToUniversal) == DateTimeStyles.AdjustToUniversal
|| (_dateTimeStyles & DateTimeStyles.AssumeUniversal) == DateTimeStyles.AssumeUniversal)
{
value = value.ToUniversalTime();
}
text = value.ToString(_dateTimeFormat ?? DefaultDateTimeFormat, Culture);
writer.WriteStringValue(text);
}
public override DateTimeOffset Read(ref Utf8JsonReader reader, Type typeToConvert, JsonSerializerOptions options)
{
string? dateText = reader.GetString();
if (string.IsNullOrEmpty(dateText) == false)
{
if (!string.IsNullOrEmpty(_dateTimeFormat))
{
return DateTimeOffset.ParseExact(dateText, _dateTimeFormat, Culture, _dateTimeStyles);
}
else
{
return DateTimeOffset.Parse(dateText, Culture, _dateTimeStyles);
}
}
else
{
return default(DateTimeOffset);
}
}
public static readonly IsoDateTimeOffsetConverter Singleton = new IsoDateTimeOffsetConverter();
}
}
#pragma warning restore CS8618
#pragma warning restore CS8601
#pragma warning restore CS8602
#pragma warning restore CS8603