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{{Short description|API for rendering audio}}
{{Short description|API for rendering audio}}
{{distinguish|OpenAI}}
{{Distinguish|OpenAI}}

{{more citations needed|date=September 2015}}
{{more citations needed|date=September 2015}}

{{Infobox software
{{Infobox software
|name = OpenAL
|name = OpenAL
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* "OpenAL" trademark: unclear, held by Creative Labs, Inc.
* "OpenAL" trademark: unclear, held by Creative Labs, Inc.
}}
}}
'''OpenAL''' ('''Open Audio Library''') is a [[cross-platform]] audio [[application programming interface]] (API). It is designed for efficient rendering of multichannel three-dimensional positional audio. Its API style and conventions deliberately resemble those of [[OpenGL]]. OpenAL is an environmental [[3D audio effect|3D audio]] library, which can add realism to a game by simulating [[Acoustic attenuation|attenuation]] (degradation of sound over distance), the [[Doppler effect]] (change in frequency as a result of motion), and material densities. OpenAL aimed to originally be an [[open standard]] and [[open-source software|open-source]] replacement for [[proprietary software|proprietary]] (and generally incompatible with one another) 3D audio APIs such as [[DirectSound]] and [[Core Audio]], though in practice has largely been implemented on various platforms as a [[Wrapper library|wrapper]] around said proprietary APIs or as a proprietary and vendor-specific fork. While the [[reference implementation]] later became proprietary, there are open source implementations such as [[#Implementations|OpenAL Soft]] available.
'''OpenAL''' ('''Open Audio Library''') is a [[cross-platform]] audio [[application programming interface]] (API). It is designed for efficient rendering of multichannel three-dimensional positional audio. Its API style and conventions deliberately resemble those of [[OpenGL]]. OpenAL is an environmental [[3D audio effect|3D audio]] library, which can add realism to a game by simulating [[Acoustic attenuation|attenuation]] (degradation of sound over distance), the [[Doppler effect]] (change in frequency as a result of motion), and material densities.
OpenAL aimed to originally be an [[open standard]] and [[open-source software|open-source]] replacement for [[proprietary software|proprietary]] (and generally incompatible with one another) 3D audio APIs such as [[DirectSound]] and [[Core Audio]], though in practice has largely been implemented on various platforms as a [[Wrapper library|wrapper]] around said proprietary APIs or as a proprietary and vendor-specific fork. While the [[reference implementation]] later became proprietary and unmaintained, there are open source implementations such as [[#Implementations|OpenAL Soft]] available.


==History==
==History==
OpenAL was originally developed in 2000 by [[Loki Software]] to help them in their business of [[porting]] [[Microsoft Windows|Windows]] games to [[Linux]].<ref>{{cite press release|url=http://linux.omnipotent.net/article.php?article_id=7626 |title=Press release with regards to OpenAL}}</ref> After the demise of Loki, the project was maintained for a time by the [[free software community|free software]]/[[open source community]], and implemented on [[NVIDIA]] nForce sound cards and motherboards. It was hosted (and largely developed) by [[Creative Technology]] until circa 2012.
OpenAL was originally developed in 2000 by [[Loki Software]] to help them in their business of [[porting]] [[Microsoft Windows|Windows]] games to [[Linux]].<ref>{{cite press release |url=http://linux.omnipotent.net/article.php?article_id=7626 |title=Press release with regards to OpenAL |access-date=2011-07-18 |archive-date=2016-03-06 |archive-url=https://web.archive.org/web/20160306095132/http://linux.omnipotent.net/article.php?article_id=7626 |url-status=dead }}</ref> After the demise of Loki, the project was maintained for a time by the [[free software community|free software]]/[[open source community]], and implemented on [[NVIDIA]] nForce sound cards and motherboards. It was hosted (and largely developed) by [[Creative Technology]] until circa 2012.


Since 1.1 (2009), the sample implementation by Creative has turned proprietary,{{Citation needed|reason=Creative's SVN OpenAL source files dated from 2006 are marked with LGPL.|date=November 2021}} with the last releases in free licenses still accessible through the project's [[Apache Subversion|Subversion]] [[source code repository]]. However, [[#Implementations|OpenAL Soft]] is a widely used open source alternative and remains actively maintained and extended.
Since 1.1 (2009), the sample implementation by Creative has turned proprietary,{{Citation needed|reason=Creative's SVN OpenAL source files dated from 2006 are marked with LGPL.|date=November 2021}} with the last releases in free licenses still accessible through the project's [[Apache Subversion|Subversion]] [[source code repository]]. However, [[#Implementations|OpenAL Soft]] is a widely used open source alternative and remains actively maintained and extended.


While the OpenAL charter says that there will be an "Architecture Review Board" (ARB) modeled on the OpenGL ARB,{{cn}} no such organization has ever been formed and the OpenAL specification is generally handled and discussed via email on its public mailing list.
While the OpenAL charter says that there will be an "Architecture Review Board" (ARB) modeled on the OpenGL ARB,{{cn|date=April 2023}} no such organization has ever been formed and the OpenAL specification is generally handled and discussed via email on its public mailing list.


The original mailing list, openal-devel hosted by Creative, ran from March 2003 to circa August 2012.<ref>{{cite web |title=Wayback Machine prefix query: openal-devel archive |url=https://web.archive.org/web/*/http://opensource.creative.com/pipermail/openal-devel/* |website=web.archive.org |access-date=25 April 2023}}</ref> Ryan C. Gordon, a Loki veteran who went on to develop [[Simple DirectMedia Layer]], started a new mailing list and website at OpenAL.org in January 2014.<ref>{{cite web |title=The openal January 2014 Archive by thread |url=https://openal.org/pipermail/openal/2014-January/thread.html |website=openal.org}}</ref> As of February 2023, the list remains in use.
The original mailing list, openal-devel hosted by Creative, ran from March 2003 to circa August 2012.<ref>{{cite web |title=Wayback Machine prefix query: openal-devel archive |url=https://web.archive.org/web/*/http://opensource.creative.com/pipermail/openal-devel/* |access-date=25 April 2023}}</ref> Ryan C. Gordon, a Loki veteran who went on to develop [[Simple DirectMedia Layer]], started a new mailing list and website at OpenAL.org in January 2014.<ref>{{cite web |title=The openal January 2014 Archive by thread |url=https://openal.org/pipermail/openal/2014-January/thread.html |website=openal.org}}</ref> As of February 2023, the list remains in use.


==API structure and functionality==
==API structure and functionality==
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==Supported platforms==
==Supported platforms==
The API is available on the following [[platform (computing)|platforms]] and [[Operating system]]s:<ref>{{cite web|url=http://www.adalin.com/index.html?frame2=product_aeonwave.html|title=OpenAL – Platforms|access-date=May 10, 2012}}</ref> [[Android (operating system)|Android]] (supports [[OpenSL ES]]), [[AmigaOS]] 3.x and 4.x,<ref>{{cite web |url=http://se.aminet.net/dev/lib/openal-soft.readme |title=Archived copy |website=se.aminet.net |access-date=6 June 2022 |archive-url=https://web.archive.org/web/20180316151848/http://se.aminet.net/dev/lib/openal-soft.readme |archive-date=16 March 2018 |url-status=dead}}</ref> [[Bada]], [[BlackBerry 10]],<ref>{{cite web|url=https://github.com/blackberry/OpenAL|title=blackberry/OpenAL 路 GitHub|website=Github.com|access-date=January 14, 2013}}</ref> [[BlackBerry PlayBook]], [[BSD]], [[iOS]] (supports [[Core Audio]]), [[IRIX]], [[Linux]] (supports [[ALSA (Linux)|ALSA]], [[Open Sound System|OSS]], [[PortAudio]] and [[PulseAudio]]), [[Mac OS 8]], [[Mac OS 9]] and [[macOS|Mac OS X]] ([[Core Audio]]), [[Microsoft Windows]] (supports [[DirectSound]], [[Windows Multimedia API]] and Windows Multimedia Device (MMDevice) API), [[MorphOS]], [[OpenBSD]],<ref>{{cite web|url=http://openports.se/audio/openal|title=OpenAL for OpenBSD}}</ref> [[Solaris (operating system)|Solaris]], [[QNX]], and [[AROS]].<ref>{{cite web|url=http://aros-exec.org/modules/newbb/viewtopic.php?post_id=33758|title=OpenAL/alut/ogg/vorbis [Forum – Development (General)|publisher=AROS-Exec|access-date=June 16, 2013}}</ref>
The API is available on the following [[computing platform|platforms]] and [[operating system]]s:<ref>{{cite web|url=http://www.adalin.com/index.html?frame2=product_aeonwave.html|title=OpenAL – Platforms|access-date=May 10, 2012}}</ref> [[Android (operating system)|Android]] (supports [[OpenSL ES]]), [[AmigaOS]] 3.x and 4.x,<ref>{{cite web |url=http://se.aminet.net/dev/lib/openal-soft.readme |title=Archived copy |website=se.aminet.net |access-date=6 June 2022 |archive-url=https://web.archive.org/web/20180316151848/http://se.aminet.net/dev/lib/openal-soft.readme |archive-date=16 March 2018 |url-status=dead}}</ref> [[Bada]], [[BlackBerry 10]],<ref>{{cite web|url=https://github.com/blackberry/OpenAL|title=blackberry/OpenAL 路 GitHub|website=Github.com|access-date=January 14, 2013}}</ref> [[BlackBerry PlayBook]], [[BSD]], [[iOS]] (supports [[Core Audio]]), [[IRIX]], [[Linux]] (supports [[ALSA (Linux)|ALSA]], [[Open Sound System|OSS]], [[PortAudio]] and [[PulseAudio]]), [[Mac OS 8]], [[Mac OS 9]] and [[macOS|Mac OS X]] ([[Core Audio]]), [[Microsoft Windows]] (supports [[DirectSound]], [[Windows Multimedia API]] and Windows Multimedia Device (MMDevice) API), [[MorphOS]], [[OpenBSD]],<ref>{{cite web|url=http://openports.se/audio/openal|title=OpenAL for OpenBSD|access-date=2011-07-18|archive-date=2012-03-18|archive-url=https://web.archive.org/web/20120318180218/http://openports.se/audio/openal|url-status=dead}}</ref> [[Solaris (operating system)|Solaris]], [[QNX]], and [[AROS]].<ref>{{cite web|url=http://aros-exec.org/modules/newbb/viewtopic.php?post_id=33758|title=OpenAL/alut/ogg/vorbis [Forum – Development (General)|publisher=AROS-Exec|access-date=June 16, 2013|archive-date=May 26, 2013|archive-url=https://web.archive.org/web/20130526135417/http://aros-exec.org/modules/newbb/viewtopic.php?post_id=33758|url-status=dead}}</ref>


Supported gaming devices are for instance: [[GameCube]], [[PlayStation 2]], [[PlayStation 3]], [[Xbox (console)|Xbox]], [[Xbox 360]], [[Wii]], and [[PlayStation Portable]].
Supported gaming devices are for instance: [[GameCube]], [[PlayStation 2]], [[PlayStation 3]], [[Xbox (console)|Xbox]], [[Xbox 360]], [[Wii]], and [[PlayStation Portable]].
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: The OpenAL Sample Implementation is the original implementation, from Loki, and is not currently maintained.
: The OpenAL Sample Implementation is the original implementation, from Loki, and is not currently maintained.
;OpenAL Soft
;OpenAL Soft
: OpenAL Soft is an LGPL-licensed, cross-platform, software implementation. The library is meant as a free compatible update/replacement to the now-deprecated and proprietary OpenAL Sample Implementation. OpenAL Soft supports mono, stereo (including HRTF and UHJ), 4-channel, 5.1, 6.1, 7.1, and B-Format output. Ambisonic assets supported.<ref>{{cite web|url=http://openal-soft.org/|title=OpenAL Soft – Software 3D Audio |publisher=openal-soft.org|access-date=January 4, 2014}}</ref><ref>{{cite web|title=OpenAL Soft Git repository|url=http://repo.or.cz/w/openal-soft.git|access-date=December 26, 2013}}</ref>
: OpenAL Soft is an LGPL-licensed, cross-platform, software implementation. The library is meant as a free compatible update/replacement to the now-deprecated and proprietary OpenAL Sample Implementation. OpenAL Soft supports mono, stereo (including HRTF and UHJ), 4-channel, 5.1, 6.1, 7.1, and B-Format output. Ambisonic assets are supported.<ref>{{cite web|url=http://openal-soft.org/|title=OpenAL Soft – Software 3D Audio |publisher=openal-soft.org|access-date=January 4, 2014}}</ref><ref>{{cite web|title=OpenAL Soft Git repository|url=http://repo.or.cz/w/openal-soft.git|access-date=December 26, 2013}}</ref>
;AeonWave-OpenAL
;AeonWave-OpenAL
: AeonWave-OpenAL is an LGPL-licensed OpenAL emulation layer that takes advantage of the hardware acceleration provided by the [[Proprietary software|non-free]] but low cost AeonWave 4D-audio library for Linux and Windows made by [[Adalin B.V.]] The author claims that AeonWave-OpenAL implementation renders 3D audio five (on an [[AMD Athlon 64 X2]]) to seven (on an [[Intel Atom#Performance|Intel Atom N270]]) times faster than either [[#Implementations|OpenAL SI]] or [[#Implementations|OpenAL Soft]] under the same conditions.<ref>{{cite web|url=http://opensource.creative.com/pipermail/openal-devel/2012-May/005903.html|title=&#91;Openal-devel&#93; Announcement: AeonWave-OpenAL 1.1.7 released|date=May 9, 2012|author=Hofman, Erik|access-date=December 9, 2012|quote=Test have shown that AeonWave-OpenAL renders audio five times faster (on an AMD Athlon-64 X2 processor) and up to seven times faster (on an Intel Atom-N270 processor) than both OpenAL-Soft and OpenAL-Sample. Rendering 32 sounds on the Atom-N270 (the maximum for OpenAL-Soft) saves 1 Watt of continuous power consumption according to powertop.|url-status=dead|archive-url=https://archive.today/20130119200045/http://opensource.creative.com/pipermail/openal-devel/2012-May/005903.html|archive-date=January 19, 2013}}</ref> By using the [[AeonWave]] library this implementation supports HRTF as well as spatialised surround sound for up to eight speakers.
: AeonWave-OpenAL is an LGPL-licensed OpenAL emulation layer that takes advantage of the hardware acceleration provided by the [[Proprietary software|non-free]] but low cost AeonWave 4D-audio library for Linux and Windows made by [[Adalin B.V.]] The author claims that AeonWave-OpenAL implementation renders 3D audio five (on an [[AMD Athlon 64 X2]]) to seven (on an [[Intel Atom#Performance|Intel Atom N270]]) times faster than either [[#Implementations|OpenAL SI]] or [[#Implementations|OpenAL Soft]] under the same conditions.<ref>{{cite web|url=http://opensource.creative.com/pipermail/openal-devel/2012-May/005903.html|title=&#91;Openal-devel&#93; Announcement: AeonWave-OpenAL 1.1.7 released|date=May 9, 2012|author=Hofman, Erik|access-date=December 9, 2012|quote=Test have shown that AeonWave-OpenAL renders audio five times faster (on an AMD Athlon-64 X2 processor) and up to seven times faster (on an Intel Atom-N270 processor) than both OpenAL-Soft and OpenAL-Sample. Rendering 32 sounds on the Atom-N270 (the maximum for OpenAL-Soft) saves 1 Watt of continuous power consumption according to powertop.|url-status=dead|archive-url=https://archive.today/20130119200045/http://opensource.creative.com/pipermail/openal-devel/2012-May/005903.html|archive-date=January 19, 2013}}</ref> By using the [[AeonWave]] library this implementation supports HRTF as well as spatialised surround sound for up to eight speakers.
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:* High quality sample rate conversion (used for various purposes including Doppler shift).
:* High quality sample rate conversion (used for various purposes including Doppler shift).
:* High quality effects and filters.
:* High quality effects and filters.
:* Directional sound sources.
:* Support for multi-channel sound sources (including assets encoded using [[Ambisonics]]).
:* Support for multi-channel sound sources (including assets encoded using [[Ambisonics]]).
:* The only limit on the number of sources or effects is CPU power, can render hundreds of sound sources and multiple effects on relatively old hardware.
:* The only limit on the number of sources or effects is CPU power, can render hundreds of sound sources and multiple effects on relatively old hardware.
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==See also==
==See also==
{{Portal|Free and open-source software}}
{{Portal|Free and open-source software}}
*[[OpenCL]]
* [[OpenCL]]
*[[Khronos Group|OpenML]]
* [[Khronos Group|OpenML]]
*[[OpenMAX AL]]
* [[OpenMAX AL]]
*[[FMOD]]
* [[FMOD]]
*[[Java OpenAL]]
* [[Java OpenAL]]
*[[Irrlicht engine extensions#irrKlang|irrKlang]]
* [[Irrlicht engine extensions#irrKlang|irrKlang]]
*[[Lightweight Java Game Library]]
* [[Lightweight Java Game Library]]
* [[Web Audio]] &ndash; defines an API similar in some ways to OpenAL


==References==
==References==
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==External links==
==External links==
* [https://openal.org/games/ OpenAL official website]
* [https://openal.org OpenAL official website]

* [http://www.openal-soft.org/ OpenAL Soft]
Implementations:
* [http://www.adalin.com/index.html?frame2=product_aeonwave.html AeonWave-OpenAL]
* [https://github.com/kcat/openal-soft OpenAL Soft]
* [https://web.archive.org/web/20040803034419/http://www.devmaster.net/articles.php?catID=6 DevMaster.net OpenAL Tutorials] (Note: these tutorials are showing their age slightly by, for instance, using deprecated functions such as alutLoadWAVFile) {{Dead link|date=January 2016}}
* [http://www.blueripplesound.com/index.php?target=technology Rapture3D] advanced OpenAL 1.1 driver
* [https://www.adalin.com/index.html?frame2=product_aeonwave.html AeonWave-OpenAL]
* [https://www.blueripplesound.com/index.php?target=technology Rapture3D] advanced OpenAL 1.1 driver
* [https://conan.io/center/openal/1.19.1/ OpenAL package for C++]

Developer resources:
* [https://web.archive.org/web/20040803034419/http://www.devmaster.net/articles.php?catID=6 DevMaster.net OpenAL Tutorials] (Note: these tutorials are showing their age slightly by, for instance, using deprecated functions such as alutLoadWAVFile)
* [https://github.com/Raulshc/OpenAL-EXT-Repository OpenAL extension repository] (maintained by Raulshc as of 2023; with table of supported extensions per implementation)
* [https://conan.io/center/openal/ OpenAL package] in Conan, a C++ package manager


{{Creative Technology}}
{{Creative Technology}}
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[[Category:Computer libraries]]
[[Category:Computer libraries]]
[[Category:Cross-platform software]]
[[Category:Cross-platform software]]
[[Category:Formerly free software]]
[[Category:Formerly open-source or free software]]
[[Category:Linux APIs]]
[[Category:Linux APIs]]
[[Category:Video game engines]]
[[Category:Video game engines]]

Latest revision as of 01:06, 6 March 2024

OpenAL
Original author(s)Loki Software
Developer(s)Creative Technology
Stable release
1.1 (installer 2.1.0.0)[1] / November 2009; 14 years ago (2009-11)
Written inC
Operating system15 operating systems
See: Supported platforms
TypeApplication programming interface
License
  • Sample Implementation: Proprietary since v1.1, LGPL before v1.1, BSD in early versions[2]
  • "OpenAL" trademark: unclear, held by Creative Labs, Inc.
Websitewww.openal.org Edit this on Wikidata

OpenAL (Open Audio Library) is a cross-platform audio application programming interface (API). It is designed for efficient rendering of multichannel three-dimensional positional audio. Its API style and conventions deliberately resemble those of OpenGL. OpenAL is an environmental 3D audio library, which can add realism to a game by simulating attenuation (degradation of sound over distance), the Doppler effect (change in frequency as a result of motion), and material densities.

OpenAL aimed to originally be an open standard and open-source replacement for proprietary (and generally incompatible with one another) 3D audio APIs such as DirectSound and Core Audio, though in practice has largely been implemented on various platforms as a wrapper around said proprietary APIs or as a proprietary and vendor-specific fork. While the reference implementation later became proprietary and unmaintained, there are open source implementations such as OpenAL Soft available.

History[edit]

OpenAL was originally developed in 2000 by Loki Software to help them in their business of porting Windows games to Linux.[3] After the demise of Loki, the project was maintained for a time by the free software/open source community, and implemented on NVIDIA nForce sound cards and motherboards. It was hosted (and largely developed) by Creative Technology until circa 2012.

Since 1.1 (2009), the sample implementation by Creative has turned proprietary,[citation needed] with the last releases in free licenses still accessible through the project's Subversion source code repository. However, OpenAL Soft is a widely used open source alternative and remains actively maintained and extended.

While the OpenAL charter says that there will be an "Architecture Review Board" (ARB) modeled on the OpenGL ARB,[citation needed] no such organization has ever been formed and the OpenAL specification is generally handled and discussed via email on its public mailing list.

The original mailing list, openal-devel hosted by Creative, ran from March 2003 to circa August 2012.[4] Ryan C. Gordon, a Loki veteran who went on to develop Simple DirectMedia Layer, started a new mailing list and website at OpenAL.org in January 2014.[5] As of February 2023, the list remains in use.

API structure and functionality[edit]

The general functionality of OpenAL is encoded in source objects, audio buffers and a single listener. A source object contains a pointer to a buffer, the velocity, position and direction of the sound, and the intensity of the sound. The listener object contains the velocity, position and direction of the listener, and the general gain applied to all sound. Buffers contain audio data in PCM format, either 8- or 16-bit, in either monaural or stereo format. The rendering engine performs all necessary calculations for distance attenuation, Doppler effect, etc.

The net result of all of this for the end user is that in a properly written OpenAL application, sounds behave quite naturally as the user moves through the three-dimensional space of the virtual world. From a programmer's perspective, very little additional work is required to make this happen in an existing OpenGL-based 3D graphical application.

Unlike the OpenGL specification, the OpenAL specification includes two subsections of the API: the core consisting of the actual OpenAL function calls, and the ALC (Audio Library Context) API which is used to manage rendering contexts, resource usage and locking in a cross platform manner. There is also an 'ALUT' (Audio Library Utility Toolkit) library that provides higher level 'convenience' functions — exactly analogous to OpenGL's 'GLUT'.

In order to provide additional functionality in the future, OpenAL utilizes an extension mechanism. Individual vendors are thereby able to include their own extensions into distributions of OpenAL, commonly for the purpose of exposing additional functionality on their proprietary hardware. Extensions can be promoted to ARB (Architecture Review Board) status, indicating a standard extension which will be maintained for backwards compatibility. ARB extensions have the prospect of being added to the core API after a period of time.

For advanced digital signal processing and hardware-accelerated sound effects, the EFX (Effects Extension) or environmental audio extensions (EAX) can be used.

Limitations[edit]

The single listener model in OpenAL is tailored to a single human user and is not fit for artificial intelligence or robotic simulations or multiple human participants as in collaborative musical performances.[6] In these cases a multiple listener model is required. OpenAL also fails to take into account sound propagation delays (the speed of sound is used for the Doppler effect only). The distance to a sound source only translates into an amplitude effect (attenuation) and not a delay. Hence OpenAL cannot be used for time difference of arrival calculations unless that functionality is added in separately.[7]

In order to take full speed advantage of OpenAL, a vendor/hardware specific implementation is needed and these are seldom released as open source. Many supported platforms in fact implement OpenAL as a wrapper which simply translates calls to the platform's native, and often proprietary, audio API. On Windows, if a vendor specific implementation is not detected it will fall back to the wrap_oal.dll wrapper library that translates OpenAL into DirectSound (Generic Software) or DirectSound3D (Generic Hardware); the removal of the latter from Windows Vista onward has effectively broken generic hardware acceleration on modern versions of Windows.[8][9]

Supported platforms[edit]

The API is available on the following platforms and operating systems:[10] Android (supports OpenSL ES), AmigaOS 3.x and 4.x,[11] Bada, BlackBerry 10,[12] BlackBerry PlayBook, BSD, iOS (supports Core Audio), IRIX, Linux (supports ALSA, OSS, PortAudio and PulseAudio), Mac OS 8, Mac OS 9 and Mac OS X (Core Audio), Microsoft Windows (supports DirectSound, Windows Multimedia API and Windows Multimedia Device (MMDevice) API), MorphOS, OpenBSD,[13] Solaris, QNX, and AROS.[14]

Supported gaming devices are for instance: GameCube, PlayStation 2, PlayStation 3, Xbox, Xbox 360, Wii, and PlayStation Portable.

Applications[edit]

Games[edit]

The following video games are known to use OpenAL:

Other applications[edit]

  • Blender – 3D modelling and rendering tool uses OpenAL for its built-in game engine[needs update?]
  • 3DMark06 – Gamer's benchmarking tool
  • Dolphin (emulator) – GameCube and Wii emulator
  • Vanda Engine[26] – uses OpenAL 1.1 to simulate 2D and 3D sounds
  • Croquet Project[27]
  • Bino[28] - Video player software that has support for stereoscopic 3D video and multi-display video

Implementations[edit]

OpenAL SI
The OpenAL Sample Implementation is the original implementation, from Loki, and is not currently maintained.
OpenAL Soft
OpenAL Soft is an LGPL-licensed, cross-platform, software implementation. The library is meant as a free compatible update/replacement to the now-deprecated and proprietary OpenAL Sample Implementation. OpenAL Soft supports mono, stereo (including HRTF and UHJ), 4-channel, 5.1, 6.1, 7.1, and B-Format output. Ambisonic assets are supported.[29][30]
AeonWave-OpenAL
AeonWave-OpenAL is an LGPL-licensed OpenAL emulation layer that takes advantage of the hardware acceleration provided by the non-free but low cost AeonWave 4D-audio library for Linux and Windows made by Adalin B.V. The author claims that AeonWave-OpenAL implementation renders 3D audio five (on an AMD Athlon 64 X2) to seven (on an Intel Atom N270) times faster than either OpenAL SI or OpenAL Soft under the same conditions.[31] By using the AeonWave library this implementation supports HRTF as well as spatialised surround sound for up to eight speakers.
Rapture3D OpenAL Driver
The Rapture3D OpenAL Driver is a non-free, commercial, Windows only, software implementation made by Blue Ripple Sound. The library is intended as a high performance drop-in replacement for other implementations. It features:[32]
  • 32bit floating point audio path.
  • High quality sample rate conversion (used for various purposes including Doppler shift).
  • High quality effects and filters.
  • Support for multi-channel sound sources (including assets encoded using Ambisonics).
  • The only limit on the number of sources or effects is CPU power, can render hundreds of sound sources and multiple effects on relatively old hardware.
  • Higher-order Ambisonics (HOA) bus running at up to fourth order.
Apple OpenAL[33]
Apple ships an implementation of OpenAL in macOS and iOS. It is a very thin layer over the 3D Mixer (kAudioUnitSubType_3DMixer) feature in the operating system. This implementation was originally written by Ryan C. Gordon for Altivec Mac OS X systems.[34]
MojoAL
Tiny (single-file), full OpenAL 1.1 implementation built on top of SDL2 by Ryan C. Gordon.[35]

See also[edit]

References[edit]

  1. ^ "OpenAL: Cross Platform 3D Audio". openal.org.
  2. ^ "OpenAL License". Archived from the original on December 30, 2012. Retrieved November 10, 2012.
  3. ^ "Press release with regards to OpenAL" (Press release). Archived from the original on 2016-03-06. Retrieved 2011-07-18.
  4. ^ "Wayback Machine prefix query: openal-devel archive". Retrieved 25 April 2023.
  5. ^ "The openal January 2014 Archive by thread". openal.org.
  6. ^ Wozniewski, Mike; Settel, Zack; Cooperstock, Jeremy (2007). "User-specific audio rendering and steerable sound for distributed virtual environments" (PDF). Proceedings of International conference on auditory displays (ICAD). Retrieved August 5, 2012.
  7. ^ Open Source FPS Game Alien Arena 2009 Released #28412367
  8. ^ Enumeration with OpenAL on Windows
  9. ^ OpenAL® and Windows Vista™
  10. ^ "OpenAL – Platforms". Retrieved May 10, 2012.
  11. ^ "Archived copy". se.aminet.net. Archived from the original on 16 March 2018. Retrieved 6 June 2022.{{cite web}}: CS1 maint: archived copy as title (link)
  12. ^ "blackberry/OpenAL 路 GitHub". Github.com. Retrieved January 14, 2013.
  13. ^ "OpenAL for OpenBSD". Archived from the original on 2012-03-18. Retrieved 2011-07-18.
  14. ^ "OpenAL/alut/ogg/vorbis [Forum – Development (General)". AROS-Exec. Archived from the original on May 26, 2013. Retrieved June 16, 2013.
  15. ^ "Overview". 0 A.D. Game Info. Wildfire Games. Archived from the original on September 26, 2013. Retrieved December 5, 2012.
  16. ^ a b c d e f g h i j k l m n o p q r s t u v w x y z aa ab "Games". OpenAL.org.[self-published source?]
  17. ^ a b "SCS Software forum". Archived from the original on June 5, 2019. Retrieved June 5, 2019.
  18. ^ "HPL Engine – Mod DB". Retrieved November 20, 2012.
  19. ^ "Troubleshooting: Reinstall OpenAL : Beamdog". Retrieved May 29, 2014.
  20. ^ "Bit.Trip Runner - PCGamingWiki". Retrieved October 8, 2022.
  21. ^ "ioquake3 website".
  22. ^ "Blue Ripple Sound". Retrieved September 23, 2017.
  23. ^ "Blue Ripple Sound". Retrieved September 23, 2017.
  24. ^ "Modulaatio Games". Archived from the original on September 6, 2012.
  25. ^ "Compatible OpenAL Games". Blue Ripple Sound.
  26. ^ "Vanda Engine".
  27. ^ Thalmann, Florian; Gaelli, Markus (2006). "Jam Tomorrow: Collaborative Music Generation in Croquet Using OpenAL". Jam Tomorrow: Collaborative Music Generation in Croquet Using OpenAL - IEEE Conference Publication. pp. 73–78. CiteSeerX 10.1.1.67.8139. doi:10.1109/C5.2006.22. ISBN 978-0-7695-2563-1. S2CID 5577203.
  28. ^ Lambers, Martin. "Bino: free 3D video player - About". bino3d.org.
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  30. ^ "OpenAL Soft Git repository". Retrieved December 26, 2013.
  31. ^ Hofman, Erik (May 9, 2012). "[Openal-devel] Announcement: AeonWave-OpenAL 1.1.7 released". Archived from the original on January 19, 2013. Retrieved December 9, 2012. Test have shown that AeonWave-OpenAL renders audio five times faster (on an AMD Athlon-64 X2 processor) and up to seven times faster (on an Intel Atom-N270 processor) than both OpenAL-Soft and OpenAL-Sample. Rendering 32 sounds on the Atom-N270 (the maximum for OpenAL-Soft) saves 1 Watt of continuous power consumption according to powertop.
  32. ^ "Developers". Blue Ripple Sound Limited. 2009. Retrieved January 24, 2011.
  33. ^ "Source Browser".
  34. ^ "An OpenAL implementation for MacOS X". icculus.org.
  35. ^ "MojoAL". icculus.org.

External links[edit]

Implementations:

Developer resources: