The following settings are available in several source and destination formats and only explained once.
- Go this number of directories upwards to start file search: If a referenced sample (or other required file types of the format) cannot be found, this option configures how many folders upwards the search should be started. 0 means to start from the current directory where the source file is located and search downwards in the sub-folders as well.
If there are no metadata fields (category, creator, etc.) specified in the format, information is retrieved from Broadcast Audio Extension chunks in the WAV files. If no such chunks are present, ConvertWithMoss can detect from the name and path of the file. The following settings can be used to tweak the detection process:
- Prefer folder name: If enabled the name of the multi-sample will be extracted from the folder instead of the sample names.
- Default creator: The name which is set as the creator of the multi-samples, if no creator tag could be found.
- Creator tag(s): Here you can set a number of creator names, which need to be separated by comma. You can also use this to look up other things. For example, I set the names of the synthesizers which I sampled. My string looks like: "01W,FM8,Pro-53,Virus B,XV" (without the quotes).
If the format uses WAV files to store the samples, the following options to additionally write metadata information to the respective chunks are available:
- Broadcast Audio Metadata: This can contain a description text, the creator of the sample and the creation date and time.
- Instrument: Contains the root note, fine tuning, gain, the key range and the velocity range.
- Sample: Contains the root note, fine tuning and loop points.
- Remove JUNK, junk, FLLR and MD5 chunks: Enable this option to drop these chunks. Junk and filler chunks are only for aligning the following chunks to certain data positions. The MD5 chunk contains a checksum which is currently not updated and therefore should be dropped.
The following multi-sample formats are supported:
- 1010music bento
- 1010music blackbox, tangerine, bitbox
- Ableton Sampler
- Akai AKP/AKM (S5000/S6000/Z4/Z8/MPC4000) - read only
- Akai MPC Keygroups/Drum
- Akai MPC Project/Track
- Akai S1000/S3000 image - read only
- Akai MESA - read only
- Bitwig Multisample
- CWITEC TX16Wx
- DecentSampler
- discoDSP Bliss
- Expert Sleepers disting EX
- Fairlight CMI 3
- Kontakt NKI/NKM
- Korg KSC/KMP/KSF
- Korg wavestate/modwave
- Logic EXS24
- Native Instruments Maschine
- Propellerhead Reason NN-XT
- Sample files (AIFF, FLAC, NCW, OGG, WAV)
- SFZ
- SoundFont 2
- TAL Sampler
- Waldorf Quantum MkI, MkII / Iridium / Iridium Core
- Yamaha YSFC
This format can contain either a single patch (1 track) or all 8 tracks of a project. Each track contains an instrument engine. ConvertWithMoss only supports the multi-sample engine. All user patches need to be placed in the UserPatches/SampInst folder on the SD-card. The factory patches reside in Patches/SampInst. The main information of a preset is stored in a file which is always called patch.xml or project.xml for a project file. This file is located in a folder with the name of the preset/project.
The related samples need to be in the same folder as the patch.xml file.
If the format is selected as the source, there are two things to consider:
- One or multiple tracks contain a multi-sample: for each of the multi-samples a file in the destination format is created.
- Option to set the Interpolation Quality. Setting it to High requires a bit more processing power on the 1010music devices.
- Option to trim sample to range of zone start to end. Since the format does not support a sample start attribute for multi-sample, this fixes the issue.
If 'Performance' is selected as the destination type, some workarounds are applied:
- MIDI channel: There is no OMNI setting. They are currently set to Off.
- Key ranges: The 1010music devices do not support key-ranges which means a multi-sample is always sounding across the full note range. As a workaround a silent sample (a totally empty one-shot sample is used) is applied to the lower and upper range which should not sound.
This format is simply called a preset. A preset contains 16 slots and each slot can either contain a simple sample or a complex multi-sample. All presets need to be placed in the Presets folder on the SD-card. The main information of a preset is stored in a file which is always called preset.xml. This file is located in a folder with the name of the preset (eg. /Presets/MyLovelyPiano/preset.xml).
The related samples can be anywhere on the SD-card, if referenced accordingly in the preset.xml file. But to make the handling easier, the output of this tool puts all sample files in the same folder as the preset.xml file. Therefore, only one folder needs to be copied to the Presets folder on the SD-card.
If the format is selected as the source, there are two things to consider:
- One or multiple slots contain a multi-sample: for each of the multi-samples a file in the destination format is created.
- All slots contain only single samples: one file in the destination format is created which combines all 16 slots. The notes are from 36 upwards if not configured differently in the preset.
- Option to set the Interpolation Quality. Setting it to High requires a bit more processing power on the 1010music devices.
- Option to trim sample to range of zone start to end. Since the format does not support a sample start attribute for multi-sample, this fixes the issue.
If 'Performance' is selected as the destination type, some workarounds are applied:
- MIDI channel: There is no explicit OMNI setting. Instead, if MIDI channel 1 is selected on the device it acts as the OMNI channel, which means it is always sounding and renders MIDI channel 1 to be unusable. As a solution all MIDI channels are increased by 1 (channel 1 is 2, channel 2 is 3, ...) and channel 16 is set to Off. All instruments which have OMNI configured are set to channel 1.
- Key ranges: The 1010music devices do not support key-ranges which means a multi-sample is always sounding across the full note range. As a workaround a silent sample (a totally empty one-shot sample is used) is applied to the lower and upper range which should not sound.
Ableton uses a generic preset format (.adv) for all of their devices. For combined rack presets another format (.adg) is used. All their formats are XML documents which are compressed with the open GZIP algorithm.
ConvertWithMoss can extract Sampler and Simpler presets from ADV files as well as all instances of Sampler or Simpler in ADG files when selected as a source. The presets from the Ableton libraries cannot be extracted since their AIFF files use a proprietary encryption algorithm. It writes ADV files as the destination.
ADV files and their samples need to be placed in the Ableton user library in the correct folders to allow Ableton to open it. Therefore, ConvertWithMoss creates the necessary folder structure which can be simply copied to the user library. If the source has sub-folders the global option Create folder structure should be deactivated otherwise it can be quite tedious to collect all the results files with their additional Ableton sub-folder structure.
This format uses a chunk based binary format with the ending AKP. It supports up to 99 key-groups. A key-group covers a note range with up to 4 velocity layers. AKM files are a multi configuration of up to 32 AKP preset files. The AKP files are only referenced from the AKM. Available parameters are the MIDI channel, panning, volume and key-range. AKP files are used if destination is Preset or Preset Library. AKM files are used if destination is Performance or Performance Library. Only reading of the AKP/AKM formats is supported.
The Akai S1000 and S3000 series are landmark professional digital samplers first introduced by Akai in the late 1980s and early 1990s. The S1000 became widely adopted in studios and electronic music production for its 16-bit PCM sampling, extensive on-board editing, and reliable MIDI integration. The S3000 series built on that legacy with expanded memory, improved filtering, and more advanced modulation and layering capabilities, offering deeper sound design flexibility.
The CD format used with the S1000/S3000 series was a proprietary Akai CD-ROM structure built on standard ISO-9660 physical media but organized according to Akai’s own disk architecture. Data was stored as 16-bit linear PCM sample files along with separate program and keygroup parameter data, arranged in volumes that the sampler’s operating system could index via SCSI. Unlike generic audio CDs (Red Book), these discs were data CDs containing structured directories and allocation tables specific to Akai’s file system, enabling direct loading of samples, programs, and partitions into memory. While ConvertWithMoss cannot directly read the CDs, it can read images created from them with other tools (normally named *.iso). There is no write support.
The Akai MESA S3P format is a computer-side representation of Akai S-series program data used by the original MESA (Mac/PC Multi-Editor and Sample Accelerator) librarian/editor software for the S-3000 family. In practice the .S3P extension contains a classic S3000-style Program (instrument) encoded in a format akin to MIDI SysEx dumps, with the sample waveforms stored externally as accompanying WAV files on a computer. Internally the Program’s structure—keygroups, sample references, mapping, filters and loop parameters—is essentially the same as an Akai S-series Program on disk; MESA simply encapsulates the Akai program data in its own file container for editing and transfer.
A MPC Keygroup or MPC Drum setup is stored in a folder. It contains a description file (.xpm) and the sample files (.WAV). Both keygroup and drum types are supported.
Restrictions are:
- A round robin keygroup can only contain up to 4/8 layers (groups). An error is displayed in this case but the file is converted anyway.
- Only 128 keygroups are allowed. An error is displayed in this case but the file is written anyway but might not be loadable.
- Ignore Loops: There are XPM files which do not contain loops but the related WAV files do (seems to happen with the MPC Autosampler). ConvertWithMoss uses the loops from the WAV files in that case. This might not be what you intended if a multi-sample should be one-shot. Enable this option to ignore the loops.
- Limit layers to: MPC Firmware 3.4 increased the number of possible layers in a keygroup to 8. This option allows you to choose between 4 (for older firmware revisions) or 8.
A track file (.xty) is a MPC v3 specific file that saves all settings, samples, macros, FX and MIDI data associated with a track. A track consists of two elements; the track file itself and a trackData folder containing the samples used within the track (ending with '_[TrackData]'). If the track contains a keygroup it is extracted as a multi-sample source. A project file (.xpj) contains all track and project settings. All tracks which contain a keygroup are extracted as a multi-sample source.
- Ignore Loops: There are XPM files which do not contain loops but the related WAV files do (seems to happen with the MPC Autosampler). ConvertWithMoss uses the loops from the WAV files in that case. This might not be what you intended if a multi-sample should be one-shot. Enable this option to ignore the loops.
This open format is currently supported by the stock sampler in Bitwig Studio and Presonus Studio One. A multisample file is a zip archive which contains all samples in WAV format and a metadata file in XML format. It supports multiple groups, key and velocity crossfades as well as several metadata information: creator, sound category and keywords.
The parser supports all information from the format except the group color and select parameters 1 to 3, which are not mappable.
This converter supports (split) stereo uncompressed and IEEE float 32 bit formats for the WAV files.
TX16Wx is a free sampler plug-in available for Windows and MacOS. TX16Wx Professional is the commercial expansion of TX16Wx. It adds some advanced features like effects, signal routing or trigger switching. But the free version is already very powerful and covers all of the features that ConvertWithMoss supports.
The format uses a XML format and keeps the samples separate.
The Decent Sampler plugin is a free (but closed source) sample player plugin that allows you to play sample libraries in the DecentSampler format (files with extensions: dspreset and dslibrary). See https://www.decentsamples.com/product/decent-sampler-plugin/ The format specification is available here: https://www.decentsamples.com/wp-content/uploads/2020/06/format-documentation.html#the-sample-element
A dspreset file contains a single preset and the description of the multi-sample. The related samples are normally kept in a separate folder. WAV and FLAC files are supported. A dslibrary file contains several dspreset files including the samples compressed in ZIP format. A dsbundle is similar but uncompressed.
There are no metadata fields (category, creator, etc.) specified in the format. Therefore, information is stored and retrieved from Broadcast Audio Extension chunks in the WAV files. If no such chunks are present an automatic detection is applied.
- Log unused XML elements and attributes: If enabled the XML elements and attributes which are not used in the translation process are logged.
- Output Format - Create Bundle: Choose to create a bundle (instead of single presets or a library).
- Make monophonic: Restricts the sound to 1 note, use e.g. for lead sounds.
- Add low-pass filter to all groups if none is present: This always adds a low-pass filter on a group level, if no filter is present yet in the source material. Enable it if you want to have controls for a filter envelope in your template.
- Template and resources folder: Allows to modify the UI and effects section of the presets (see below).
- Options to write/update WAV Chunk Information.
If no 'Template and resources folder' is configured the default template is used which creates several controls for an amp envelope, a lowpass filter with envelope, a delay and reverb as well as pitch-modulation via mod-wheel. To modify this template, first create an empty folder somewhere on your disc. Select this folder in the 'Template and resources folder' field. Then click on the button 'Create template in the selected folder'. This copies the template 'ui.xml' into this folder. You can copy additional images and documentation files to the folder. These resource files will be added to the output as well. This template will be applied to all created dspresets. But note that you can have multiple templates if you use several template folders which can then be switched for each conversion run.
The template can contain 1 effects, modulators, midi and ui tag. The content of the modulators-tag will be added to the existing modulators-tag which gets created by ConvertWithMoss. Make sure to use the correct indices!
There are two issues with amplitude envelopes:
- If an envelope is applied to a certain level (sample, group or instrument) it does not work to change the values with a knob on a different level. Therefore, ConvertWithMoss tries to set the envelope on the highest possible level (the instrument) if all of the sample envelopes are identical.
- If controls are assigned to an envelope value to change it, it will not pick up this value but will use the value set for the control-element instead. To work around this issue the following variables can be used in the template and will be replaced with the instrument amplitude values:
- %ENV_ATTACK_VALUE%
- %ENV_DECAY_VALUE%
- %ENV_SUSTAIN_VALUE%
- %ENV_RELEASE_VALUE%
- %ENV_VELOCITY_SENSITIVITY%
Bliss is a multi-platform (Windows, MacOS & Linux) sampler by discoDSP (https://www.discodsp.com/bliss/). It provides support for multi-samples and a bank system (containing up to 128 patches). Both the program (.zbp) as well as the bank (.zbb) are stored as monoliths (zipped) with a XML description file and all samples. The samples are stored in FLAC format (16/24 bit). The full format specification is available here: https://github.com/reales/bliss-format.
The disting EX is a multi-function Eurorack module which provides many different algorithms. On of them is the SD Multisample algorithm which is an eight voice polyphonic, three part multi-timbral, sample playback instrument, playing WAV files from the MicroSD card. It can have up to 3 input CV/gate pairs, or can be played via MIDI or I2C. It supports both velocity switches and round robins per sample. The basic multi-sample setup is encoded in the file-names of the samples. Further information like the amplitude envelope are stored in a preset (*.dexpreset). The preset references only the name of the folder which contains the related samples. All samples in the folder considered to be belonging to the multi-sample.
- Re-sample to 16bit/44.1kHz: If enabled, samples will be resampled to 16bit and 44.1kHz. While the device can play higher resolutions as well it decrease the number of voices it can play.
- Trim sample to range of zone start to end: Since the format does not support a sample start attribute, this fixes the issue.
We've all heard stories about and uses of the Fairlight CMI IIx and earlier. The Series III was one of the first 16-bit samplers, second only to the Synclavier. Extensive reverse engineering effort of the self-contained voice format was applied to make it available as a source format, but unfortunately, current constraints combined with the strict third party user community makes it unfeasible to use as a destination format at this time.
Note that this will not work with IIx or earlier voices despite the same VC extension used.
Filter parameters are currently not supported, but then, as a variable clock DAC sampler, the original hardware had no interpolation anyway.
Kontakt is a sampler from Native Instruments which uses a plethora of file formats which all are sadly proprietary and therefore no documentation is publicly available. Nevertheless, several people analyzed the format and by now sufficient information is available to provide the support as the source.
However, the format changed many times across the different Kontakt versions. So far, the following formats are known and supported as a source:
| Kontakt Version |
|---|
| 1 |
| 1.5 |
| 2 - 4.1.x |
| 4.2.2+ |
| 5 - 7 |
A NKI file contains one instrument which is a multi-sample with many parameters. Currently, the usual multi-sample parameters are supported incl. loops. Furthermore, metadata information, the amplitude, pitch and filter cutoff envelope, filter parameters as well as pitchbend. (Most) NCW encoded sample files can be read as well. A NKM file contains up to 64 instruments and is supported as well as a source.
Encrypted files are not supported.
If selected as a destination, a NKI file is written and all samples are placed in a sub-folder with the same name.
If selected as a source and 'Performance' is selected as the destination type, only NKM files are used as sources.
- Output Format: Currently, only the Kontakt 1 format is supported which sadly does not contain any metadata information.
The KSC/KMP/KSF format (*.KSC, *.KMP, *.KSF) was first introduced in the Korg Trinity workstation (1995) and since then supported in many Korg workstations and entertainment keyboards up to the latest Korg Nautilus (2020). The following devices are known to support the format:
- Trinity
- Triton
- OASYS
- M3
- Kronos
- KROSS (only for pads)
- PA1X/PA800/PA2X/PA3X/PA4X
- Nautilus
The format is documented in detail (more or less) in the appendix of the respective parameter guides. A multi-sample is distributed across 4 types of files which makes the handling a bit tricky:
- KSF: One KSF file contains one single mono sample. Even if the KSF files can store stereo files, they do not work. Therefore, they need to be split into 2 KSF files. The format only supports uncompressed 8 or 16 bit samples up to 48kHz. Files in other formats are automatically converted.
- KMP: The KMP format contains 1 layer of a multi-sample, which means there are only key splits but no groups and no velocity settings. The file references several KSF files which contain the sample data for each key region.
- KSC: A KSC contains a list of KMP files (and sometimes other files) which allows to load them in one go. It contains no other additional information.
- PCG: This contains a full program which combines several KMPs into a complete multi-sample (stereo positioning and velocity layers). Since these are different for each workstation and not publicly documented, they are currently not supported.
- Use KSC files as the input: By default ConvertWithMoss searches for KPM files. If enabled, KSC files are searched and the KMP files referenced in a KSC file are loaded (if found). Furthermore, it tries to combine stereo-split files into stereo files by the prefixes of the KMP names and the long names stored in the KSF files (they normally end with -L for the left and -R for the right channel).
- Write group KMPs: Writes a KMP for each group in the source multi-sample. This option will be ignored for split stereo source files.
- Enable the +12dB option: Increases the volume of each sample by +12dB. Use for low volume samples.
- Set sample volume to +99: If enabled, sets all sample volumes to +99. Use for very low volume samples.
The korgmultisample format is currently used by the Korg wavestate and modwave keyboards as well as their VST plugin siblings. Files in that format (*.korgmultisample) can be opened with the Korg Sample Builder software and transferred to the keyboard.
Since the format is pretty simple all data stored in the file is available for the conversion.
Since the format supports only one group of a multi-sample, multiple destination files are created for each group available in the source. If there is more than one group in the source the name of the created file has the velocity range of the group added. Using that information a multi-sample with up to 4 groups can be created as a Performance in the device.
The Logic EXS24 format is a proprietary sample format used by Logic Pro, a digital audio workstation. It is primarily used for storing and playback of sampled instruments and sounds within Logic Pro. The format allows for comprehensive mapping and editing of samples, as well as providing various modulation and performance options.
The format only stores absolute paths to the sample files. Therefore, the easiest way to make the converter find the sample files is to place them in the same folder as the EXS file. If it cannot be found in this folder the sample file is searched recursively starting from a number of levels up from the source folder of the EXS. The number of folders can be configured.
MSND is a binary format for Maschine 1. It got dropped completely in later versions and it cannot even be opened in Maschine 2/3. You can use ConvertWithMoss to convert it e.g. into Maschine 2 or 3 format (MXSND).
The MXSND format is a proprietary binary format used by Maschine 2 and 3. MXSND uses the same container wrapper format as Kontakt 5+. Maschine 1 used a different format with the ending MSND which is currently not supported.
Only MXSND files which contain an instance of a Maschine Sampler can be read. The Maschine Sampler supports basic features but has e.g. no groups or release layers (see the detailed parameter documentation).
Note that Maschine contains an auto-sampler with which you can sample plugins or external synths and writes MXSND as the output. This means that you can then convert it to other formats with ConvertWithMoss.
- Scan for Maschine 1 MSND files: Scans the source folder for files ending with *.msnd (Maschine 1 format) as well. If the source is a library which contains both version, deactivate this option to prevent duplicates.
- Output Format: Select the Maschine output format. Selecting Maschine 1 will create a MSND file, otherwise a MXSND file is created.
The Propellerhead Reason NN-XT is a software sampler that is included in the Reason software package. Reason is a digital audio workstation (DAW) software developed by Propellerhead Software. It allows users to load and play back sampled sounds, such as instruments or drum hits. The file ending is sxt.
There are metadata fields for creator and a creator URL.
This powerful algorithm allows to create multi-samples from single sample files incl. detection of metadata.
All files of the same type located in the same folder are considered as a part of one multi-sample. You can also select a top folder. If you do so, all sub-folders are checked for potential multi-sample folders.
WAV files can already contain metadata to configure a complete multi-sample (but sadly rarely used). Therefore, all WAV files of a folder are checked if they contain instrument chunks. If this is the case they are used to create the layout of the multi-sample (range and velocity splits as well as gain and pitch settings). If no such information is available the same algorithm is applied as for the other supported formats: it tries to detect the necessary key range and velocity information from the names of the WAV files as well as metadata:
- Notes are first detected from the files metadata (if supported by the format). If none is present, different parser settings are applied on the file name to detect a note name (or MIDI note value).
- A category is extracted from the file name as well based on a list of several synonyms and abbreviations (e.g. Solo as a synonym for Lead). If this fails the same logic is applied to the folder names (e.g. you might have sorted your lead sounds in a folder called Lead).
- Characterizations like hard are extracted as well with a similar algorithm as for the category.
As a destination only WAV files are supported.
Detected groups will be equally distributed across the velocity range. E.g. if 2 groups are detected the first will be mapped to the velocity range of 0-63 and the second to 64-127.
- Detection pattern: Comma separated list of patterns to detect groups. The pattern must contain a star character ("*"), which indicates the position which contains the group number.
- Order of group numbering: Enable to map groups inversed. This means that the highest number will be mapped to the lowest velocity range.
WAV file can contain different sample formats. This converter supports (split) stereo uncompressed and IEEE float 32 bit formats. Only WAV files in Mono or Stereo are supported. Stereo samples might be split up into 2 mono files (the left and right channel). This tool will combine them into a stereo file.
- Left channel detection pattern: Comma separated list of patterns to detect the left channel from the filename. E.g. "_L".
- Crossfade notes: You can automatically create crossfades between the different note ranges. This makes especially sense if you only sampled a couple of notes. Set the number of notes, which should be cross-faded between two samples (0-127). If you set a too high number the crossfade is automatically limited to the maximum number of notes between the two neighboring samples.
- Crossfade velocities: You can automatically create crossfades between the different groups. This makes especially sense if you sampled several sample groups with different velocity values. Set the number of velocity steps (0-127), which should be crossfaded between two samples. If you set a too high number the crossfade is automatically limited to the maximum number of velocity steps between the two neighbouring samples.
- Post-fix text to remove: The algorithm automatically removes the note information to extract the name of the multi-sample but there might be further text at the end of the name, which you might want to remove. For example the multi-samples I created with SampleRobot have a group information like "_ms0_0". You can set a comma separated list of such post-fix texts in that field.
- Ignore loops: Sometimes the source files contain wrong loops. Especially helpful for one-shot samples.
"The SFZ format is a file format to define how a collection of samples are arranged for performance. The goal behind the SFZ format is to provide a free, simple, minimalistic and expandable format to arrange, distribute and use audio samples with the highest possible quality and the highest possible performance flexibility" (cited from https://sfzformat.com/).
The SFZ file contains only the description of the multi-sample. The related samples are normally kept in a separate folder. The converter supports samples in WAV, OGG and FLAC format.
- Log unsupported SFZ opcodes: If enabled, opcodes which are found in the source but are not used (not supported) as input for the conversion are logged.
- Convert to FLAC format: If enabled, the sample files are converted to FLAC.
The original SoundFont file format was developed in the early 1990s by E-mu Systems and Creative Labs. It was first used on the Sound Blaster AWE32 sound card for its General MIDI support.
A SoundFont can contain several presets grouped into banks. Presets refer to one or more instruments which are distributed over a keyboard by key and velocity ranges. The sample data contained in the file is in mono or split stereo with 16 or 24 bit.
The conversion process creates one destination file for each preset found in a SoundFont file. The mono files are combined into stereo files. If the left and right channel mono samples contain different loops, the loop of the left channel is used.
There are metadata fields for creator and some description specified in the format. However, additional information like a category is retrieved from Broadcast Audio Extension chunks in the WAV files. If no such chunks are present an automatic detection is applied.
- Log unused SF2 generators: If enabled, generators which are found in the source but are not used (not supported) as input for the conversion are logged.
- Prefix with file name: If enabled, the name of the Soundfont file is added to all resulting destination files.
- Prefix with program number: If enabled, the preset number of the preset is added to the resulting destination file.
- Re-sample 24-bit to 16-bit: If enabled, 24-bit source samples are converted to 16-bit files. Use this prevent issues with certain software which can only handle 16-bit samples.
TAL-Sampler is an analog modeled synthesizer with a sampler engine as the sound source, including a modulation matrix and self-oscillating filters. Most of the presets in it's library store the sample files in an encrypted format (*.wavsmpl), this format is not supported. Only presets using plain WAV or AIFF files are supported.
Choosing TAL Sampler as the destination format, creates a talsmpl file and stores all samples in a sub-folder by the same name. The samples of the source groups are distributed across the 4 layers of TAL Sampler in such a way that the key and velocity splits do not overlap. This is a workaround for the fact that TAL Sampler does not support overlapping samples. Since groups have only the name and trigger type as attributes, which are not supported in TAL Sampler anyway, this should work in most cases. If there are still overlapping samples a warning is displayed.
This family of Waldorf synthesizers supports the playback of multi-samples. One preset can contain 2 layers. A layer is a complete preset in itself and simply concatenates 2 single presets. Each preset can have up to 3 oscillators of which each oscillator can contain its own multi-sample. If this format is used as the source it produces 1 or 2 output presets, one for each layer. If used as the destination format, each group of the source multi-sample is applied to one of the 3 oscillators. If the source contains more than 3 groups, all zones of the additional groups are added to the multi-sample of the 3rd oscillator.
- Re-sample to 16bit/44.1kHz: If enabled, samples will be resampled to 16bit and 44.1kHz. While the device can play higher resolutions as well it might impact the performance.
- Options to write/update WAV Chunk Information
This format is used in many Yamaha Workstation. While the format is the same, the content is different.
The following file formats are supported as a source:
- Motif XS: X0A, X0W
- Motif XF: X3A, X3W
- MOXF: X6A, X6W
- Montage: X7A, X7L, X7U
- MODX/MODX+: X8A, X8L, X8U
- Montage M: Y2U, Y2L
The wave files in professional Yamaha libraries are often compressed. Such files are not supported. Furthermore, only self-contained libraries (= libraries which do not reference samples in other libraries) are supported.
So far, reading of Performances is only supported for some formats. This means that for all other formats only the basic multi-sample data is converted (no filter and envelopes data is converted).
| Format | Performance Data |
|---|---|
| Motif XS: X0A, X0W | |
| Motif XF: X3A, X3W | |
| MOXF: X6A, X6W | |
| Montage: X7A, X7L, X7U with Performance Data | Yes |
| MODX/MODX+: X8A, X8L, X8U with Performance Data | Yes |
| Montage M: Y2U, Y2L |
- Create multi-samples for:
- Waveforms: this reads only the raw-multi-sample(s) without additional Performance information. Use this option if the Performances do not reference all multi-samples in the library/user-bank.
- Performances: Only supported for Montage and MODX/MODX+ files and when Performance data is present in the file. This sill create one multi-sample source for each Performance.
Currently, the user and library formats of the Montage (not Montage M!) and MODX/MODX+ are available as the destination format. The backup formats X7A and X8A are supported only as a source. The structure is as follows (bottom-up):
- A key-group references several samples which form a multi-sample setup (key-/velocity ranges)
- An element references 1 key-group (adds synthesis parameters)
- A part can contain up to 8 elements (this forms already a complex setup with layers and ranges)
- A performance can contain up to 16 parts (e.g. to perform a song by muting, soloing parts via scenes)
- A library contains several performances
Destination Type: Preset or Preset Library
When creating presets or libraries as the destination type, each multi-sample source creates one performance with one active part. Each group of the the multi-sample source is assigned to 1 element for which 1 key-group is created as well which contains the samples. If there are more groups than elements, the remaining groups are all added to the last element. If there are no groups all samples will be assigned to key-group/element one.
Note: There are no checks that the created libraries stay in the boundaries of the workstation specifications (e.g. the number of the maximum allowed samples or the required memory size)!
Destination Type: Performance or Performance Library
When creating (ConvertWithMoss) performances as the destination type, each performance source creates one (Yamaha) performance with one active part for each multi-sample (instrument) of the source. Since the parts 9-16 can only be addressed externally and even worse they have a fixed MIDI channel only the parts 1-8 are used. MIDI channels of the instrument sources are mapped to scenes. Scene 1 represents first MIDI channel of the instrument sources, Scene 2 the second and so on until Scene 8. Each instrument source is assigned to 1 part. The keyboard is enabled for the scene with the respective MIDI channel. If the MIDI channel is set to OMNI it is active for all scenes.
If there are more than 8 instruments sources the following strategy is applied to reduce them to a maximum of 8:
- All instrument sources are grouped by their MIDI channel. If there are more than 8 different MIDI channels, the highest of them are removed since they couldn't be mapped to scenes anyway.
- If there are still more than 8 instrument sources, 2 instrument sources with the same MIDI channel and (if possible) the same key-range are aggregated into 1 instrument. Such aggregations are repeated until there are no more than 8 instrument sources.
- Each of the up to 8 instrument sources is finally mapped to 1 performance part.
Other mappings are identical to creating presets/libraries.
- File Format: Chooses the output format which is created.
- Create only Waveforms: No Performances will be written. Only Waveform data.