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ConcatenationMultipleInputs.cs
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ConcatenationMultipleInputs.cs
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using System;
using System.Collections.Generic;
using System.IO;
using System.Linq;
using System.Threading.Tasks;
using Bitmovin.Api.Sdk.Common.Logging;
using Bitmovin.Api.Sdk.Examples.common;
using Bitmovin.Api.Sdk.Models;
using Stream = Bitmovin.Api.Sdk.Models.Stream;
namespace Bitmovin.Api.Sdk.Examples
{
/// <summary>
/// This example demonstrates how to use concatenation and trimming to combine multiple input files into a single output.
/// This script is the full version of the script documented in the tutorial on concatenation and trimming
/// https://bitmovin.com/docs/encoding/tutorials/stitching-and-trimming-part-1-the-basics <para />
///
/// The following configuration parameters are expected:
/// <list type="bullet">
/// <item>
/// <term>BITMOVIN_API_KEY</term>
/// <description>Your API key for the Bitmovin API</description>
/// </item>
/// <item>
/// <term>BITMOVIN_TENANT_ORG_ID</term>
/// <description>(optional) The ID of the Organisation in which you want to perform the encoding.</description>
/// </item>
/// <item>
/// <term>HTTP_INPUT_HOST</term>
/// <description>The Hostname or IP address of the HTTP server hosting your input files, e.g.: my-storage.biz</description>
/// </item>
/// <item>
/// <term>HTTP_INPUT_FILE_PATH</term>
/// <description>The path to your input file on the provided HTTP server Example:
/// videos/1080p_Sintel.mp4</description>
/// </item>
/// <item>
/// <term>HTTP_INPUT_BUMPER_FILE_PATH</term>
/// <description>The path to your input file on the provided HTTP server to be concatenated before HTTP_INPUT_FILE_PATH:
/// videos/bumper.mp4</description>
/// </item>
/// <item>
/// <term>HTTP_INPUT_PROMO_FILE_PATH</term>
/// <description>The path to your input file on the provided HTTP server to be concatenated after HTTP_INPUT_FILE_PATH:
/// videos/promo.mp4</description>
/// </item>
/// <item>
/// <term>S3_OUTPUT_BUCKET_NAME</term>
/// <description>The name of your S3 output bucket. Example: my-bucket-name</description>
/// </item>
/// <item>
/// <term>S3_OUTPUT_ACCESS_KEY</term>
/// <description>The access key of your S3 output bucket</description>
/// </item>
/// <item>
/// <term>S3_OUTPUT_SECRET_KEY</term>
/// <description>The secret key of your S3 output bucket</description>
/// </item>
/// <item>
/// <term>S3_OUTPUT_BASE_PATH</term>
/// <description>The base path on your S3 output bucket where content will be written.
/// Example: /outputs</description>
/// </item>
/// </list><para />
///
/// Configuration parameters will be retrieved from these sources in the listed order:
/// <list type="bullet">
/// <item>
/// <term>command line arguments</term>
/// <description>(eg BITMOVIN_API_KEY=xyz)</description>
/// </item>
/// <item>
/// <term>properties file located in the root folder of the C# examples at ./examples.properties</term>
/// <description>(see examples.properties.template as reference)</description>
/// </item>
/// <item>
/// <term>environment variables</term>
/// </item>
/// <item>
/// <term>properties file located in the home folder at ~/.bitmovin/examples.properties</term>
/// <description>(see examples.properties.template as reference)</description>
/// </item>
/// </list>
/// </summary>
public class ConcatenationMultipleInputs : IExample
{
private ConfigProvider _configProvider;
private BitmovinApi _bitmovinApi;
private const string ClassName = "ConcatenationMultipleInputs";
private readonly string DATE_STRING = string.Concat(DateTime.UtcNow.ToString("s"), "Z");
public async Task RunExample(string[] args)
{
_configProvider = new ConfigProvider(args);
_bitmovinApi = BitmovinApi.Builder
.WithApiKey(_configProvider.GetBitmovinApiKey())
// uncomment the following line if you are working with a multi-tenant account
// .WithTenantOrgIdKey(_configProvider.GetBitmovinTenantOrgId())
.WithLogger(new ConsoleLogger())
.Build();
var encoding = await CreateEncoding(ClassName,"Encoding with a concatenation in MP4 muxing");
var httpInput = await CreateHttpInput(_configProvider.GetHttpInputHost());
var mainFilePath = _configProvider.GetHttpInputFilePath();
var bumperFilePath = _configProvider.GetHttpInputBumperFilePath();
var promoFilePath = _configProvider.GetHttpInputPromoFilePath();
var output = await CreateS3Output(_configProvider.GetS3OutputBucketName(),
_configProvider.GetS3OutputAccessKey(),
_configProvider.GetS3OutputSecretKey());
// Define a video and audio stream as an IngestInputStream to represent each input file (main, bumper, and promo)
var main = await CreateIngestInputStream(encoding, httpInput, mainFilePath);
var bumper = await CreateIngestInputStream(encoding, httpInput, bumperFilePath);
var promo = await CreateIngestInputStream(encoding, httpInput, promoFilePath);
// In this example, we trim the main input file and create two separated streams as TimeBasedTrimmingInputStream
var mainPart1 = await CreateTimeBasedTrimmingInputStream(encoding, main, 10.0, 90.0);
var mainPart2 = await CreateTimeBasedTrimmingInputStream(encoding, main, 100.0, 60.0);
// Define each concatenation input configuration with "isMain" flag and "position" setting
// And create a concatenation input stream for the main part 1 and 2 together with bumper and promo
var bumperConfig = new ConcatenationInputConfiguration()
{
InputStreamId = mainPart1.Id,
IsMain = false,
Position = 0
};
var part1Config = new ConcatenationInputConfiguration()
{
InputStreamId = mainPart1.Id,
IsMain = true,
Position = 1
};
var promo1Config = new ConcatenationInputConfiguration()
{
InputStreamId = promo.Id,
IsMain = false,
Position = 2
};
var part2Config = new ConcatenationInputConfiguration()
{
InputStreamId = mainPart2.Id,
IsMain = false,
Position = 3
};
var promo2Config = new ConcatenationInputConfiguration()
{
InputStreamId = promo.Id,
IsMain = false,
Position = 4
};
var concatenationInputConfigurations = new List<ConcatenationInputConfiguration>() {bumperConfig, part1Config, promo1Config, part2Config, promo2Config};
var allTogether = await CreateConcatenationInputStream(encoding, concatenationInputConfigurations);
// Create an audio codec configuration and the stream
// In this sample, we use AAc with 128kbps as a pre-defined audio codec
var aacAudioConfiguration = await CreateAacAudioConfiguration();
var aacAudioStream = await CreateStreamWithConcatenationInputStream(encoding, allTogether, aacAudioConfiguration);
// Create a video codec configuration and the stream
var videoConfiguration = await CreateH264VideoConfiguration(1080, 4800000);
var videoStream = await CreateStreamWithConcatenationInputStream(encoding, allTogether, videoConfiguration);
await CreateMp4Muxing(encoding, output,"/MultipleInputsConcatenation", new List<Stream>(){videoStream, aacAudioStream}, "MultipleInputsConcatenationMp4");
await ExecuteEncoding(encoding);
}
/// <summary>
/// Starts the actual encoding process and periodically polls its status until it reaches a final state<para />
///
/// API endpoints:
/// https://bitmovin.com/docs/encoding/api-reference/all#/Encoding/PostEncodingEncodingsStartByEncodingId
/// https://bitmovin.com/docs/encoding/api-reference/sections/encodings#/Encoding/GetEncodingEncodingsStatusByEncodingId
/// <para />
/// Please note that you can also use our webhooks API instead of polling the status. For more
/// information consult the API spec:
/// https://bitmovin.com/docs/encoding/api-reference/sections/notifications-webhooks
/// </summary>
/// <param name="encoding">The encoding to be started</param>
/// <exception cref="System.SystemException"></exception>
private async Task ExecuteEncoding(Models.Encoding encoding)
{
await _bitmovinApi.Encoding.Encodings.StartAsync(encoding.Id);
ServiceTaskStatus task;
do
{
await Task.Delay(5000);
task = await _bitmovinApi.Encoding.Encodings.StatusAsync(encoding.Id);
Console.WriteLine($"Encoding status is {task.Status} (progress: {task.Progress} %)");
} while (task.Status != Status.FINISHED && task.Status != Status.ERROR);
if (task.Status == Status.ERROR)
{
LogTaskErrors(task);
throw new SystemException("Encoding failed");
}
Console.WriteLine("Encoding finished successfully");
}
/// <summary>
/// Creates an Encoding object. This is the base object to configure your encoding.<para />
///
/// API endpoint:
/// https://bitmovin.com/docs/encoding/api-reference/sections/encodings#/Encoding/PostEncodingEncodings
/// </summary>
/// <param name="name">This is the name of the encoding</param>
/// <param name="description">This is the description of the encoding</param>
private Task<Models.Encoding> CreateEncoding(string name, string description)
{
var encoding = new Models.Encoding()
{
Name = name,
Description = description,
};
return _bitmovinApi.Encoding.Encodings.CreateAsync(encoding);
}
/// <summary>
/// Creates a resource representing an HTTP server providing the input files. For alternative input
/// methods see list of supported input and output storages
/// (https://bitmovin.com/docs/encoding/articles/supported-input-output-storages)<para />
///
/// For reasons of simplicity, a new input resource is created on each execution of this
/// example. In production use, this method should be replaced by a get call to retrieve an existing resource.
/// (https://bitmovin.com/docs/encoding/api-reference/sections/inputs#/Encoding/GetEncodingInputsHttpByInputId)
/// <para />
/// API endpoint:
/// https://bitmovin.com/docs/encoding/api-reference/sections/inputs#/Encoding/PostEncodingInputsHttp
/// </summary>
/// <param name="host">The hostname or IP address of the HTTP server e.g.: my-storage.biz</param>
private Task<HttpInput> CreateHttpInput(string host)
{
var input = new HttpInput()
{
Host = host
};
return _bitmovinApi.Encoding.Inputs.Http.CreateAsync(input);
}
/// <summary>
/// Creates a resource representing an AWS S3 cloud storage bucket to which generated content will
/// be transferred. For alternative output methods see
/// https://bitmovin.com/docs/encoding/articles/supported-input-output-storages for the list of
/// supported input and output storages.<para />
///
/// The provided credentials need to allow read, write and list operations.
/// delete should also be granted to allow overwriting of existing files. See
/// https://bitmovin.com/docs/encoding/faqs/how-do-i-create-a-aws-s3-bucket-which-can-be-used-as-output-location
/// for creating an S3 bucket and setting permissions for further information<para />
///
/// For reasons of simplicity, a new output resource is created on each execution of this
/// example. In production use, this method should be replaced by a get call
/// (https://bitmovin.com/docs/encoding/api-reference/sections/outputs#/Encoding/GetEncodingOutputsS3)
/// retrieving an existing resource.<para />
///
/// API endpoint:
/// https://bitmovin.com/docs/encoding/api-reference/sections/outputs#/Encoding/PostEncodingOutputsS3
/// </summary>
/// <param name="bucketName">The name of the S3 bucket</param>
/// <param name="accessKey">The access key of your S3 account</param>
/// <param name="secretKey">The secret key of your S3 account</param>
private Task<S3Output> CreateS3Output(string bucketName, string accessKey, string secretKey)
{
var s3Output = new S3Output()
{
BucketName = bucketName,
AccessKey = accessKey,
SecretKey = secretKey
};
return _bitmovinApi.Encoding.Outputs.S3.CreateAsync(s3Output);
}
/// <summary>
/// Creates an IngestInputStream and adds it to an encoding.
/// The IngestInputStream is used to define where a file to read a stream from is located. <para />
///
/// API endpoint:
/// https://bitmovin.com/docs/encoding/api-reference/sections/encodings#/Encoding/PostEncodingEncodingsInputStreamsIngestByEncodingId
/// </summary>
/// <param name="encoding">The encoding to add the stream onto</param>
/// <param name="input">The input resource providing the input file</param>
/// <param name="inputPath">The path to the input file.</param>
/// <param name="streamSelectionMode">The algorithm how the stream in the input file will be selected.</param>
private Task<IngestInputStream> CreateIngestInputStream(Models.Encoding encoding, Input input, String inputPath)
{
var ingestInputStream = new IngestInputStream()
{
InputId = input.Id,
InputPath = inputPath,
SelectionMode = StreamSelectionMode.AUTO
};
return _bitmovinApi.Encoding.Encodings.InputStreams.Ingest.CreateAsync(encoding.Id, ingestInputStream);
}
/// <summary>
/// Creates a TimeBasedTrimmingInputStream and adds it to an encoding.
/// The TimeBasedTrimmingInputStream is used to define a section of an IngestInputStream using an offset and a duration
/// expressed in seconds. <para />
///
/// API endpoint:
/// https://bitmovin.com/docs/encoding/api-reference/sections/encodings#/Encoding/PostEncodingEncodingsInputStreamsTrimmingTimeBasedByEncodingId
/// </summary>
/// <param name="encoding">The encoding to add the stream onto</param>
/// <param name="ingestInputStream">The IngestInputStream instance created from the input file</param>
/// <param name="offset">Defines the offset in seconds at which the encoding should start, beginning at 0.</param>
/// <param name="duration">Defines how many seconds of the input will be encoded.</param>
private Task<TimeBasedTrimmingInputStream> CreateTimeBasedTrimmingInputStream(Models.Encoding encoding, IngestInputStream ingestInputStream,
double offset, double duration)
{
var timeBasedTrimmingInputStream = new TimeBasedTrimmingInputStream()
{
InputStreamId = ingestInputStream.Id,
Offset = offset,
Duration = duration
};
return _bitmovinApi.Encoding.Encodings.InputStreams.Trimming.TimeBased.CreateAsync(encoding.Id, timeBasedTrimmingInputStream);
}
/// <summary>
/// Creates a ConcatenationInputStream and adds it to an encoding.
/// The ConcatenationInputStream is used to define a concatenated stream from multiple input files. <para />
///
/// API endpoint:
/// https://bitmovin.com/docs/encoding/api-reference/sections/encodings#/Encoding/PostEncodingEncodingsInputStreamsConcatenationByEncodingId
/// </summary>
/// <param name="encoding">The encoding to add the stream onto</param>
/// <param name="concatenationInputs">List of ConcatenationInputConfiguration which include each concatenation configuration</param>
private Task<ConcatenationInputStream> CreateConcatenationInputStream(Models.Encoding encoding,
List<ConcatenationInputConfiguration> concatenationInputConfigurations)
{
var concatenationInputStream = new ConcatenationInputStream()
{
Concatenation = concatenationInputConfigurations
};
return _bitmovinApi.Encoding.Encodings.InputStreams.Concatenation.CreateAsync(encoding.Id, concatenationInputStream);
}
/// <summary>
/// Creates a configuration for the H.264 video codec to be applied to video streams.<para />
///
/// The output resolution is defined by setting the height to 1080 pixels. Width will be determined
/// automatically to maintain the aspect ratio of your input video.<para />
///
/// To keep things simple, we use a quality-optimized VoD preset configuration, which will apply proven settings
/// for the codec. See How to optimize your H264 codec configuration for different use-cases
/// (https://bitmovin.com/docs/encoding/tutorials/how-to-optimize-your-h264-codec-configuration-for-different-use-cases)
/// for alternative presets.<para />
///
/// API endpoint:
/// https://bitmovin.com/docs/encoding/api-reference/sections/configurations#/Encoding/PostEncodingConfigurationsVideoH264
/// </summary>
private Task<H264VideoConfiguration> CreateH264VideoConfiguration(int height, long bitrate)
{
var config = new H264VideoConfiguration()
{
Name = $"H.264 {height}p",
PresetConfiguration = PresetConfiguration.VOD_STANDARD,
Height = height,
Bitrate = bitrate
};
return _bitmovinApi.Encoding.Configurations.Video.H264.CreateAsync(config);
}
/// <summary>
/// Adds an audio mix input stream to an encoding
///
/// API endpoint:
/// https://bitmovin.com/docs/encoding/api-reference/sections/encodings#/Encoding/PostEncodingEncodingsStreamsByEncodingId
/// </summary>
/// <param name="encoding">The encoding to which the stream will be added</param>
/// <param name="concatenationInputStream">The input resource providing the input file</param>
/// <param name="codecConfiguration">The codec configuration to be applied to the stream</param>
private Task<Stream> CreateStreamWithConcatenationInputStream(Models.Encoding encoding, ConcatenationInputStream concatenationInputStream,
CodecConfiguration codecConfiguration)
{
var streamInput = new StreamInput()
{
InputStreamId = concatenationInputStream.Id
};
var inputStreams = new List<StreamInput>() {streamInput};
var stream = new Stream()
{
InputStreams = inputStreams,
CodecConfigId = codecConfiguration.Id
};
return _bitmovinApi.Encoding.Encodings.Streams.CreateAsync(encoding.Id, stream);
}
/// <summary>
/// Creates a configuration for the AAC audio codec to be applied to audio streams.<para />
///
/// API endpoint:
/// https://bitmovin.com/docs/encoding/api-reference/sections/configurations#/Encoding/PostEncodingConfigurationsAudioAac
/// </summary>
private Task<AacAudioConfiguration> CreateAacAudioConfiguration()
{
var config = new AacAudioConfiguration()
{
Name = "AAC 128 kbit/s",
Bitrate = 128_000L
};
return _bitmovinApi.Encoding.Configurations.Audio.Aac.CreateAsync(config);
}
/// <summary>
/// Creates a MP4 muxing.
///
/// API endpoint:
/// https://bitmovin.com/docs/encoding/api-reference/sections/encodings#/Encoding/PostEncodingEncodingsMuxingsMp4ByEncodingId
/// </summary>
/// <param name="encoding">The encoding to add the MP4 muxing to</param>
/// <param name="output">The output that should be used for the muxing to write the segments to</param>
/// <param name="outputPath">The output path where the fragments will be written to</param>
/// <param name="stream">A list of streams to be added to the muxing</param>
/// <param name="fileName"> The name of the file that will be written to the output
private Task<Mp4Muxing> CreateMp4Muxing(Models.Encoding encoding, Output output, string outputPath,
List<Stream> streams, String filename)
{
var muxingStreams = new List<MuxingStream>();
foreach(Stream stream in streams)
{
var muxingSteam = new MuxingStream()
{
StreamId = stream.Id,
};
muxingStreams.Add(muxingSteam);
}
var muxing = new Mp4Muxing()
{
Filename = filename,
Outputs = new List<EncodingOutput>() {BuildEncodingOutput(output, outputPath)},
Streams = muxingStreams,
};
return _bitmovinApi.Encoding.Encodings.Muxings.Mp4.CreateAsync(encoding.Id, muxing);
}
/// <summary>
/// Builds an EncodingOutput object which defines where the output content (e.g. of a muxing) will
/// be written to. Public read permissions will be set for the files written, so they can be
/// accessed easily via HTTP.
/// </summary>
/// <param name="output">The output resource to be used by the EncodingOutput</param>
/// <param name="outputPath">The path where the content will be written to</param>
private EncodingOutput BuildEncodingOutput(Output output, string outputPath)
{
var aclEntry = new AclEntry()
{
Permission = AclPermission.PUBLIC_READ
};
var encodingOutput = new EncodingOutput()
{
OutputPath = BuildAbsolutePath(outputPath),
OutputId = output.Id,
Acl = new List<AclEntry>() {aclEntry}
};
return encodingOutput;
}
/// <summary>
/// Builds an absolute path by concatenating the S3_OUTPUT_BASE_PATH configuration parameter, the
/// name of this example class and the given relative path<para />
///
/// e.g.: /s3/base/path/ClassName/relative/path
/// </summary>
/// <param name="relativePath">The relative path that is concatenated</param>
private string BuildAbsolutePath(string relativePath)
{
return Path.Join(_configProvider.GetS3OutputBasePath(), $"{ClassName}-{DATE_STRING}", relativePath);
}
/// <summary>
/// Print all task errors
/// </summary>
/// <param name="task">Task with the errors</param>
private void LogTaskErrors(ServiceTaskStatus task)
{
foreach (var message in task.Messages.Where(message => message.Type == MessageType.ERROR))
{
Console.WriteLine(message.Text);
}
}
}
}