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Author SHA1 Message Date
Adam Honse befb783f2d Add ROG Strix Scope TKL to Aura Keyboard detector 2021-06-05 15:29:55 -05:00
805 changed files with 25662 additions and 92791 deletions
-17
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@@ -1,17 +0,0 @@
# EditorConfig helps developers define and maintain consistent coding styles between different editors and IDEs
# editorconfig.org
root = true
[*]
indent_style = space
indent_size = 4
# We recommend you to keep these unchanged
charset = utf-8
trim_trailing_whitespace = true
insert_final_newline = true
[*.md]
trim_trailing_whitespace = false
indent_size = 4
+6 -108
View File
@@ -1,113 +1,11 @@
# This file is used to ignore files that should not be pushed to the repo.
# ----------------------------------------------------------------------------
# OpenRGB Specific
*.pro.user*
*.o
ui_*
moc_*
qrc_*
OpenRGB
openrgb
Makefile
OpenRGB-x86_64.AppImage
# Directories
.build/
.cache/
.moc/
.obj/
.pch/
.rcc/
.uic/
.clangd/
*_debug/
*_release/
debug/
release/
build/
Build/
.qmake.cache
.qmake.stash
.vscode
.vs
# Generic Files
.DS_Store
Thumbs.db
# Binaries
*.exe
!dependencies/**/*.exe
*.bat
!dependencies/**/*.bat
# C++ objects and libs
*.slo
*.lo
*.o
*.a
*.la
*.lai
*.so
*.so.*
*.dll
!dependencies/**/*.dll
*.dylib
# Qt-es
object_script.*.Release
object_script.*.Debug
*_plugin_import.cpp
*.pro.user
*.pro.user.*
*.qbs.user
*.qbs.user.*
*.moc
moc_*.cpp
moc_*.h
qrc_*.cpp
ui_*.h
*.qmlc
*.jsc
Makefile*
*build-*
*.qm
*.prl
# Qt unit tests
target_wrapper.*
# QtCreator
*.autosave
# QtCreator Qml
*.qmlproject.user
*.qmlproject.user.*
# QtCreator CMake
CMakeLists.txt.user*
# QtCreator 4.8< compilation database
compile_commands.json
# QtCreator local machine specific files for imported projects
*creator.user*
*_qmlcache.qrc
# Visual Studio generated files
*.ib_pdb_index
*.idb
*.ilk
*.ncb
*.opensdf
*.pdb
*.sdf
*.sln
*.suo
*.vcproj
*.vcxproj
*vcproj.*.*.user
*vcxproj.*
# MinGW generated files
*.Debug
*.Release
# Clang tooling files
compile_commands.json
+174 -145
View File
@@ -13,7 +13,7 @@
- shared-windows
- windows
- windows-1809
stages:
- build
- test
@@ -32,12 +32,12 @@ before_script:
#-----------------------------------------------------------------------#
"Linux 32 AppImage":
<<: *ccache_init
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:bullseye-32
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:buster-32
stage: build
script:
- export $(dpkg-architecture)
- ./scripts/build-appimage.sh
artifacts:
name: "${CI_PROJECT_NAME}_Linux_32_${CI_COMMIT_SHORT_SHA}"
paths:
@@ -51,12 +51,12 @@ before_script:
#-----------------------------------------------------------------------#
"Linux 64 AppImage":
<<: *ccache_init
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:bullseye-64
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:buster-64
stage: build
script:
- export $(dpkg-architecture)
- ./scripts/build-appimage.sh
artifacts:
name: "${CI_PROJECT_NAME}_Linux_64_${CI_COMMIT_SHORT_SHA}"
paths:
@@ -66,9 +66,9 @@ before_script:
expire_in: 30 days
#-----------------------------------------------------------------------#
# Linux (.deb) Debian Buster (Legacy) 32-bit Build Target #
# Linux (.deb) 32-bit Build Target #
#-----------------------------------------------------------------------#
"Linux 32 .deb (Debian Buster)":
"Linux 32 deb":
<<: *ccache_init
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:buster-32
stage: build
@@ -87,9 +87,9 @@ before_script:
expire_in: 30 days
#-----------------------------------------------------------------------#
# Linux (.deb) Debian Buster (Legacy) 64-bit Build Target #
# Linux (.deb) 64-bit Build Target #
#-----------------------------------------------------------------------#
"Linux 64 .deb (Debian Buster)":
"Linux 64 deb":
<<: *ccache_init
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:buster-64
stage: build
@@ -108,52 +108,10 @@ before_script:
expire_in: 30 days
#-----------------------------------------------------------------------#
# Linux (.deb) Debian Bullseye 32-bit Build Target #
# Linux (.rpm) 64-bit Build Target #
#-----------------------------------------------------------------------#
"Linux 32 .deb (Debian Bullseye)":
<<: *ccache_init
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:bullseye-32
stage: build
script:
- dpkg-architecture -l
- dpkg-buildpackage --target-arch i386 -us -B
- rm -v ../openrgb-dbgsym*.deb
- mv -v ../openrgb*.deb ./
artifacts:
name: "${CI_PROJECT_NAME}_Linux_32_deb_${CI_COMMIT_SHORT_SHA}"
paths:
- openrgb*.deb
exclude:
- openrgb-dbgsym*.deb
expire_in: 30 days
#-----------------------------------------------------------------------#
# Linux (.deb) Debian Bullseye 64-bit Build Target #
#-----------------------------------------------------------------------#
"Linux 64 .deb (Debian Bullseye)":
<<: *ccache_init
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:bullseye-64
stage: build
script:
- dpkg-architecture -l
- dpkg-buildpackage -us -B
- rm -v ../openrgb-dbgsym*.deb
- mv -v ../openrgb*.deb ./
artifacts:
name: "${CI_PROJECT_NAME}_Linux_64_deb_${CI_COMMIT_SHORT_SHA}"
paths:
- openrgb*.deb
exclude:
- openrgb-dbgsym*.deb
expire_in: 30 days
#-----------------------------------------------------------------------#
# Linux (.rpm, f35) 64-bit Build Target #
#-----------------------------------------------------------------------#
"Linux 64 f35 rpm":
image: fedora:35
"Linux 64 rpm":
image: fedora:34
stage: build
script:
- dnf install rpmdevtools dnf-plugins-core -y
@@ -175,32 +133,51 @@ before_script:
paths:
- openrgb*.rpm
expire_in: 30 days
#-----------------------------------------------------------------------#
# Linux (.rpm, f36) 64-bit Build Target #
# Linux (.deb) Debian Bullseye 32-bit Build Target #
#-----------------------------------------------------------------------#
"Linux 64 f36 rpm":
image: fedora:36
"Linux 32 deb Bullseye":
<<: *ccache_init
image: i386/debian:bullseye
stage: build
script:
- dnf install rpmdevtools dnf-plugins-core libcurl-devel -y
- rpmdev-setuptree
- ls /root/
- cp fedora/OpenRGB.spec /root/rpmbuild/SPECS
- cp ../OpenRGB /root/rpmbuild/SOURCES/ -r
- cd /root/rpmbuild/SOURCES
- tar -cf OpenRGB.tar.gz OpenRGB/
- cd ..
- dnf builddep SPECS/OpenRGB.spec -y
- rpmbuild -ba SPECS/OpenRGB.spec
- cd RPMS/x86_64/
- mv openrgb*.rpm ${CI_PROJECT_DIR}/
- cd ${CI_PROJECT_DIR}
- apt update
- apt install -y build-essential qtcreator qtbase5-dev libusb-1.0-0-dev libhidapi-dev libmbedtls-dev pkgconf wget git file debhelper
- dpkg-architecture -l
- dpkg-buildpackage --target-arch i386 -us -B
- rm -v ../openrgb-dbgsym*.deb
- mv -v ../openrgb*.deb ./
artifacts:
name: "${CI_PROJECT_NAME}_Linux_64_rpm_${CI_COMMIT_SHORT_SHA}"
name: "${CI_PROJECT_NAME}_Linux_32_deb_${CI_COMMIT_SHORT_SHA}"
paths:
- openrgb*.rpm
- openrgb*.deb
exclude:
- openrgb-dbgsym*.deb
expire_in: 30 days
#-----------------------------------------------------------------------#
# Linux (.deb) Debian Bullseye 64-bit Build Target #
#-----------------------------------------------------------------------#
"Linux 64 deb Bullseye":
<<: *ccache_init
image: debian:bullseye
stage: build
script:
- apt update
- apt install -y build-essential qtcreator qtbase5-dev libusb-1.0-0-dev libhidapi-dev libmbedtls-dev pkgconf wget git file debhelper
- dpkg-architecture -l
- dpkg-buildpackage -us -B
- rm -v ../openrgb-dbgsym*.deb
- mv -v ../openrgb*.deb ./
artifacts:
name: "${CI_PROJECT_NAME}_Linux_64_deb_${CI_COMMIT_SHORT_SHA}"
paths:
- openrgb*.deb
exclude:
- openrgb-dbgsym*.deb
expire_in: 30 days
#-----------------------------------------------------------------------#
@@ -216,26 +193,9 @@ before_script:
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 32 .deb (Debian Buster)"
- "Linux 32 deb"
needs:
- "Linux 32 .deb (Debian Buster)"
#-----------------------------------------------------------------------#
# Debian 64 Buster test #
#-----------------------------------------------------------------------#
"Debian 64 Buster":
image: amd64/debian:buster
stage: test
script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*amd64.deb
- openrgb --version
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 64 .deb (Debian Buster)"
needs:
- "Linux 64 .deb (Debian Buster)"
- "Linux 32 deb"
#-----------------------------------------------------------------------#
# Debian 32 Bullseye test #
@@ -250,15 +210,49 @@ before_script:
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 32 .deb (Debian Bullseye)"
- "Linux 32 deb"
needs:
- "Linux 32 .deb (Debian Bullseye)"
- "Linux 32 deb"
# #-----------------------------------------------------------------------#
# # Ubuntu 32 18.04LTS test #
# #-----------------------------------------------------------------------#
# "Ubuntu 32 18.04LTS":
# image: i386/ubuntu:bionic
# stage: test
# script:
# - apt update
# - DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*i386.deb
# - openrgb --version
# - openrgb -l
# - apt remove -y openrgb
# dependencies:
# - "Linux 32 deb"
# needs:
# - "Linux 32 deb"
# #-----------------------------------------------------------------------#
# # Mint 32 19.3 test #
# #-----------------------------------------------------------------------#
# "Mint 32 20.1":
# image: linuxmintd/mint19.3-i386
# stage: test
# script:
# - apt update
# - DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*i386.deb
# - openrgb --version
# - openrgb -l
# - apt remove -y openrgb
# dependencies:
# - "Linux 32 deb"
# needs:
# - "Linux 32 deb"
#-----------------------------------------------------------------------#
# Debian 64 Bullseye test #
# Debian 64 Buster test #
#-----------------------------------------------------------------------#
"Debian 64 Bullseye":
image: amd64/debian:bullseye
"Debian 64 Buster":
image: debian:buster
stage: test
script:
- apt update
@@ -267,9 +261,59 @@ before_script:
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 64 .deb (Debian Bullseye)"
- "Linux 64 deb"
needs:
- "Linux 64 .deb (Debian Bullseye)"
- "Linux 64 deb"
#-----------------------------------------------------------------------#
# Debian 64 Bullseye test #
#-----------------------------------------------------------------------#
"Debian 64 Bullseye":
image: debian:bullseye
stage: test
script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*amd64.deb
- openrgb --version
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 64 deb"
needs:
- "Linux 64 deb"
#-----------------------------------------------------------------------#
# Fedora 64 v34 test #
#-----------------------------------------------------------------------#
"Fedora 64 v34":
image: fedora:34
stage: test
script:
- yum -y localinstall ./openrgb*64.rpm
- openrgb --version
- openrgb -l
- yum -y remove openrgb
dependencies:
- "Linux 64 rpm"
needs:
- "Linux 64 rpm"
# #-----------------------------------------------------------------------#
# # Ubuntu 64 18.04LTS test #
# #-----------------------------------------------------------------------#
# "Ubuntu 64 18.04LTS":
# image: ubuntu:bionic
# stage: test
# script:
# - apt update
# - DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*amd64.deb
# - openrgb --version
# - openrgb -l
# - apt remove -y openrgb
# dependencies:
# - "Linux 64 deb"
# needs:
# - "Linux 64 deb"
#-----------------------------------------------------------------------#
# Ubuntu 64 20.04LTS test #
@@ -284,15 +328,15 @@ before_script:
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 64 .deb (Debian Buster)"
- "Linux 64 deb"
needs:
- "Linux 64 .deb (Debian Buster)"
- "Linux 64 deb"
#-----------------------------------------------------------------------#
# Ubuntu 64 21.10 test #
# Ubuntu 64 20.10 test #
#-----------------------------------------------------------------------#
"Ubuntu 64 21.10":
image: ubuntu:impish
"Ubuntu 64 20.10":
image: ubuntu:groovy
stage: test
script:
- apt update
@@ -301,41 +345,26 @@ before_script:
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 64 .deb (Debian Bullseye)"
- "Linux 64 deb"
needs:
- "Linux 64 .deb (Debian Bullseye)"
- "Linux 64 deb"
#-----------------------------------------------------------------------#
# Fedora 64 v35 test #
# Mint 64 20.1 test #
#-----------------------------------------------------------------------#
"Fedora 64 v35":
image: fedora:35
"Mint 64 20.1":
image: linuxmintd/mint20.1-amd64
stage: test
script:
- yum -y localinstall ./openrgb*64.rpm
- apt update
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*amd64.deb
- openrgb --version
- openrgb -l
- yum -y remove openrgb
- apt remove -y openrgb
dependencies:
- "Linux 64 f35 rpm"
- "Linux 64 deb"
needs:
- "Linux 64 f35 rpm"
#-----------------------------------------------------------------------#
# Fedora 64 v36 test #
#-----------------------------------------------------------------------#
"Fedora 64 v36":
image: fedora:36
stage: test
script:
- yum -y localinstall ./openrgb*64.rpm
- openrgb --version
- openrgb -l
- yum -y remove openrgb
dependencies:
- "Linux 64 f36 rpm"
needs:
- "Linux 64 f36 rpm"
- "Linux 64 deb"
#-----------------------------------------------------------------------#
# Windows (32-bit) Build Target #
@@ -357,42 +386,42 @@ before_script:
- '& cmd.exe /C "vcvarsall.bat x86 & set" | Foreach-Object { if ($_ -match "(.*?)=(.*)") { Set-Item -force -path "Env:\$($matches[1])" -value "$($matches[2])" } }'
- Pop-Location
- _fold_final_
- _fold_start_ 'downloading precompiled versions of qtbase, qttools (for windeployqt) and jom (for a more parallel nmake)'
- mkdir _qt
- mkdir _qt_download
- Push-Location _qt_download
- curl.exe -LJ -o qt-base.7z 'https://qt-mirror.dannhauer.de/online/qtsdkrepository/windows_x86/desktop/qt5_5150/qt.qt5.5150.win32_msvc2019/5.15.0-0-202005150700qtbase-Windows-Windows_10-MSVC2019-Windows-Windows_10-X86.7z'
- curl.exe -LJ -o qt-base.7z 'https://qt-mirror.dannhauer.de/online/qtsdkrepository/windows_x86/desktop/qt5_5150/qt.qt5.5150.win32_msvc2019/5.15.0-0-202005150700qtbase-Windows-Windows_10-MSVC2019-Windows-Windows_10-X86.7z'
- curl.exe -LJ -o qt-tools.7z 'https://qt-mirror.dannhauer.de/online/qtsdkrepository/windows_x86/desktop/qt5_5150/qt.qt5.5150.win32_msvc2019/5.15.0-0-202005150700qttools-Windows-Windows_10-MSVC2019-Windows-Windows_10-X86.7z'
- curl.exe -LJ -o qt-jom.zip 'https://qt-mirror.dannhauer.de/official_releases/jom/jom.zip'
- _fold_final_
- _fold_start_ 'extracting the downloaded qt binaries'
- 7z x qt-base.7z '-o../_qt' -y
- 7z x qt-tools.7z '-o../_qt' -y
- 7z x qt-jom.zip '-o../_qt' -y
- _fold_final_
- _fold_start_ 'turn the qt install from enterprise to foss; remove the licensing checks'
- ${qconfig-pri-folder} = '..\_qt\5.15.0\msvc2019\mkspecs\qconfig.pri'
- (Get-Content ${qconfig-pri-folder}).replace('QT_EDITION = Enterprise', 'QT_EDITION = OpenSource') | Set-Content ${qconfig-pri-folder}
- (Get-Content ${qconfig-pri-folder}).replace('QT_LICHECK = licheck.exe', '') | Set-Content ${qconfig-pri-folder}
- Pop-Location
- _fold_final_
- _fold_start_ 'run qmake and generate the msvc nmake makefile'
- mkdir _build; cd _build
- ..\_qt\5.15.0\msvc2019\bin\qmake ..\OpenRGB.pro
- _fold_final_
- _fold_start_ 'start the actual build with jom instead of nmake; for speed'
- ..\_qt\jom
- _fold_final_
- _fold_start_ 'run windeployqt to automatically copy the needed dll files'
- ..\_qt\5.15.0\msvc2019\bin\windeployqt --no-angle --no-translations --no-opengl-sw --no-system-d3d-compiler --no-compiler-runtime --no-webkit2 .\release\
- _fold_final_
- _fold_start_ 'Moving results for upload'
- mv release ../'OpenRGB Windows 32-bit'
- _fold_final_
@@ -426,42 +455,42 @@ before_script:
- '& cmd.exe /C "vcvarsall.bat x64 & set" | Foreach-Object { if ($_ -match "(.*?)=(.*)") { Set-Item -force -path "Env:\$($matches[1])" -value "$($matches[2])" } }'
- Pop-Location
- _fold_final_
- _fold_start_ 'downloading precompiled versions of qtbase, qttools (for windeployqt) and jom (for a more parallel nmake)'
- mkdir _qt
- mkdir _qt_download
- Push-Location _qt_download
- curl.exe -LJ -o qt-base.7z 'https://qt-mirror.dannhauer.de/online/qtsdkrepository/windows_x86/desktop/qt5_5150/qt.qt5.5150.win64_msvc2019_64/5.15.0-0-202005150700qtbase-Windows-Windows_10-MSVC2019-Windows-Windows_10-X86_64.7z'
- curl.exe -LJ -o qt-base.7z 'https://qt-mirror.dannhauer.de/online/qtsdkrepository/windows_x86/desktop/qt5_5150/qt.qt5.5150.win64_msvc2019_64/5.15.0-0-202005150700qtbase-Windows-Windows_10-MSVC2019-Windows-Windows_10-X86_64.7z'
- curl.exe -LJ -o qt-tools.7z 'https://qt-mirror.dannhauer.de/online/qtsdkrepository/windows_x86/desktop/qt5_5150/qt.qt5.5150.win64_msvc2019_64/5.15.0-0-202005150700qttools-Windows-Windows_10-MSVC2019-Windows-Windows_10-X86_64.7z'
- curl.exe -LJ -o qt-jom.zip 'https://qt-mirror.dannhauer.de/official_releases/jom/jom.zip'
- _fold_final_
- _fold_start_ 'extracting the downloaded qt binaries'
- 7z x qt-base.7z '-o../_qt' -y
- 7z x qt-tools.7z '-o../_qt' -y
- 7z x qt-jom.zip '-o../_qt' -y
- _fold_final_
- _fold_start_ 'turn the qt install from enterprise to foss; remove the licensing checks'
- ${qconfig-pri-folder} = '..\_qt\5.15.0\msvc2019_64\mkspecs\qconfig.pri'
- (Get-Content ${qconfig-pri-folder}).replace('QT_EDITION = Enterprise', 'QT_EDITION = OpenSource') | Set-Content ${qconfig-pri-folder}
- (Get-Content ${qconfig-pri-folder}).replace('QT_LICHECK = licheck.exe', '') | Set-Content ${qconfig-pri-folder}
- Pop-Location
- _fold_final_
- _fold_start_ 'run qmake and generate the msvc nmake makefile'
- mkdir _build; cd _build
- ..\_qt\5.15.0\msvc2019_64\bin\qmake ..\OpenRGB.pro
- _fold_final_
- _fold_start_ 'start the actual build with jom instead of nmake; for speed'
- ..\_qt\jom
- _fold_final_
- _fold_start_ 'run windeployqt to automatically copy the needed dll files'
- ..\_qt\5.15.0\msvc2019_64\bin\windeployqt --no-angle --no-translations --no-opengl-sw --no-system-d3d-compiler --no-compiler-runtime --no-webkit2 .\release\
- _fold_final_
- _fold_start_ 'Moving results for upload'
- mv release ../'OpenRGB Windows 64-bit'
- _fold_final_
-106
View File
@@ -1,106 +0,0 @@
# OpenRGB CODEOWNERS
# Default Code Owner
* @Calcprogrammer1
CODEOWNERS @Calcprogrammer1
#-----------------------------------------------------------------------------#
# Controllers - Directories #
#-----------------------------------------------------------------------------#
[Controllers]
/Controllers/AMDWraithPrismController/
/Controllers/ASRockPolychromeSMBusController/
/Controllers/ASRockPolychromeUSBController/
/Controllers/AlienwareController/
/Controllers/AlienwareKeyboardController/
/Controllers/AnnePro2Controller/
/Controllers/AsusAuraCoreController/
/Controllers/AsusAuraGPUController/
/Controllers/AsusAuraUSBController/
/Controllers/AsusTUFLaptopController/
/Controllers/BlinkyTapeController/
/Controllers/CoolerMasterController/ @Dr_No
/Controllers/CorsairCommanderCoreController/
/Controllers/CorsairDominatorPlatinumController/
/Controllers/CorsairHydroController/
/Controllers/CorsairHydroPlatinumController/
/Controllers/CorsairLightingNodeController/
/Controllers/CorsairPeripheralController/
/Controllers/CorsairVengeanceController/
/Controllers/CorsairVengeanceProController/
/Controllers/CorsairWirelessController/
/Controllers/CreativeController/
/Controllers/CrucialController/
/Controllers/DasKeyboardController/
/Controllers/DebugController/
/Controllers/DuckyKeyboardController/
/Controllers/DygmaRaiseController/
/Controllers/E131Controller/
/Controllers/EKController/ @Dr_No
/Controllers/ENESMBusController/
/Controllers/EVGAAmpereGPUController/ @TheRogueZeta
/Controllers/EVGAGP102GPUController/
/Controllers/EVGAPascalGPUController/
/Controllers/EVGATuringGPUController/ @TheRogueZeta
/Controllers/EVGAUSBController/ @Dr_No
/Controllers/EVisionKeyboardController/
/Controllers/EspurnaController/
/Controllers/FanBusController/
/Controllers/FaustusController/
/Controllers/GainwardGPUController/
/Controllers/GalaxGPUController/
/Controllers/GigabyteAorusCPUCoolerController/
/Controllers/GigabyteRGBFusion2DRAMController/
/Controllers/GigabyteRGBFusion2GPUController/
/Controllers/GigabyteRGBFusion2SMBusController/ @Dr_No
/Controllers/GigabyteRGBFusion2USBController/ @Dr_No
/Controllers/GigabyteRGBFusionController/
/Controllers/GigabyteRGBFusionGPUController/
/Controllers/HPOmen30LController/
/Controllers/HoltekController/
/Controllers/HyperXDRAMController/
/Controllers/HyperXKeyboardController/
/Controllers/HyperXMouseController/
/Controllers/HyperXMousematController/
/Controllers/LEDStripController/
/Controllers/LianLiController/
/Controllers/LinuxLEDController/
/Controllers/LogitechController/ @Dr_No
/Controllers/MSI3ZoneController/
/Controllers/MSIGPUController/
/Controllers/MSIMysticLightController/
/Controllers/MSIRGBController/
/Controllers/NZXTHue2Controller/
/Controllers/NZXTHuePlusController/
/Controllers/NZXTKrakenController/
/Controllers/OpenRazerController/
/Controllers/PNYGPUController/
/Controllers/PatriotViperController/
/Controllers/PhilipsHueController/
/Controllers/PhilipsWizController/
/Controllers/QMKOpenRGBController/
/Controllers/RazerController/
/Controllers/RedragonController/
/Controllers/RoccatController/
/Controllers/SapphireGPUController/
/Controllers/SinowealthController/
/Controllers/SonyDS4Controller/
/Controllers/SteelSeriesController/
/Controllers/TecknetController/
/Controllers/ThermaltakePoseidonZRGBController/
/Controllers/ThermaltakeRiingController/
/Controllers/ThingMController/
/Controllers/WootingKeyboardController/ @Dr_No
/Controllers/YeelightController/
/Controllers/ZalmanZSyncController/
#-----------------------------------------------------------------------------#
# Controllers - File exceptions #
# #
# As sections get combined and the last rule applies any specific file #
# that is an exception to the above should be explicitly named here #
#-----------------------------------------------------------------------------#
[Controllers]
/Controllers/ASRockPolychromeSMBusController/ASRockPolychromeSMBusController.cpp @TheRogueZeta
/Controllers/ASRockPolychromeSMBusController/ASRockPolychromeSMBusController.h @TheRogueZeta
-14
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<!--
Found a bug? Something isn't working as expected?
To help us keep track of the requests please start the title with [Bug Report]
But before that, first you should check it out with the latest pipeline.
-->
### Description of Bug
@@ -11,20 +10,7 @@ Explain any steps taken to reproduce the bug
and what you expect the correct behavior to be.
-->
### Attached Log
<!--
Please attach a verbose log, you can do it by running the exe from cmd with '--loglevel 6' flag.
You can locate them using the Settings tab and click the 'Open Settings Folder' button.
Important!! Please upload the logs made with the latest pipeline build of OpenRGB.
-->
### Operating System
<!--
Please write down which OS and which version did you encounter the issue with.
-->
~"OS - Linux"
~"OS - MacOS"
~"OS - Windows"
### Hardware Configuration
<!--
Please list the RGB hardware that you are using with OpenRGB.
@@ -1,24 +0,0 @@
<!--
Please put "Initial commit for" name of the product, including manufacturer above this line
and a description of the additions / removals / changes done below the line.
-->
<!-- For admin purposes: Please leave this section as is -->
# Checklist for Accepting a Merge Request for a New Device
- [ ] The `New Device` issue raised for this device is linked to this MR with a keyword `Closes / Resolves / Implements`
- [ ] There is a device protocol page in the [Developer Wiki](https://gitlab.com/OpenRGBDevelopers/OpenRGB-Wiki) or there is enough information / captures in the `New Device` issue to provide ongoing support.
- [ ] The code to be merged follows the style guide and change requirements as [documented in the contributing guide](https://gitlab.com/CalcProgrammer1/OpenRGB/-/blob/master/CONTRIBUTING.md).
<!--
The metadata for this controller is required to produce both the udev permissions and
the supported device page for this device. A stub can be found in the RGBController_Dummy.cpp
-->
- [ ] Meta data for the device is included in `RGBController_*` file
- [ ] This device is detected and is working on Windows 10 and / or 11
- [ ] This device is detected and is working on Linux (Please specify distribution and releases tested)
- [ ] Logging for Info, Warnings and Errors has been added for troubleshooting purposes
<!-- For admin purposes: Please leave this section as is -->
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[submodule "razer-drivers-win32"]
path = razer-drivers-win32
url = https://github.com/rsandoz/razer-drivers-win32
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@@ -0,0 +1,744 @@
#---------------------------------------------------------------#
# OpenRGB udev rules #
# #
# Adam Honse (CalcProgrammer1) 5/29/2020 #
#---------------------------------------------------------------#
#---------------------------------------------------------------#
# User I2C/SMBus Access #
#---------------------------------------------------------------#
KERNEL=="i2c-[0-99]*", TAG+="uaccess"
#---------------------------------------------------------------#
# Super I/O Access #
#---------------------------------------------------------------#
KERNEL=="port", TAG+="uaccess"
#---------------------------------------------------------------#
# User hidraw Access #
#---------------------------------------------------------------#
KERNEL=="hidraw*", SUBSYSTEM=="hidraw", TAG+="uaccess"
#---------------------------------------------------------------#
# AMD Wraith Prism #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="2516", ATTR{idProduct}=="0051", TAG+="uaccess"
#---------------------------------------------------------------#
# Aorus Devices #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1044", ATTR{idProduct}=="7a42", TAG+="uaccess"
#---------------------------------------------------------------#
# ASRock Devices #
# #
# ASRock Polychrome USB #
# ASRock Deskmini Addressable LED Strip #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="26CE", ATTR{idProduct}=="01A2", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="26CE", ATTR{idProduct}=="01A6", TAG+="uaccess"
#---------------------------------------------------------------#
# ASUS Aura Core Devices #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="1854", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="1869", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="1866", TAG+="uaccess"
#---------------------------------------------------------------#
# ASUS Aura USB Devices #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="1867", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="1872", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="1889", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="18a3", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="18f3", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="18a5", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="1939", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="18af", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="18dd", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="1845", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="1875", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="1877", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="18cd", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="18cf", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="18e5", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="18e3", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0b05", ATTR{idProduct}=="1958", TAG+="uaccess"
#---------------------------------------------------------------#
# ASUS TUF Laptops (faustus) #
#---------------------------------------------------------------#
ACTION=="add", SUBSYSTEM=="platform", KERNEL=="faustus", RUN+="/bin/chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_blue"
ACTION=="add", SUBSYSTEM=="platform", KERNEL=="faustus", RUN+="/bin/chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_flags"
ACTION=="add", SUBSYSTEM=="platform", KERNEL=="faustus", RUN+="/bin/chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_green"
ACTION=="add", SUBSYSTEM=="platform", KERNEL=="faustus", RUN+="/bin/chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_mode"
ACTION=="add", SUBSYSTEM=="platform", KERNEL=="faustus", RUN+="/bin/chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_red"
ACTION=="add", SUBSYSTEM=="platform", KERNEL=="faustus", RUN+="/bin/chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_set"
ACTION=="add", SUBSYSTEM=="platform", KERNEL=="faustus", RUN+="/bin/chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_speed"
#---------------------------------------------------------------#
# Cooler Master Peripheral Devices #
# #
# Mousemats: #
# Cooler Master MP750 #
# Controllers: #
# ARGB Device #
# Small ARGB Device #
# Graphics Cards: #
# Radeon RX6000 Series Reference Cards #
# Keyboards: #
# Masterkeys Pro L #
# Masterkeys Pro L White #
# Masterkeys Pro S #
# Masterkeys MK750 #
# Masterkeys SK630 #
# Masterkeys SK650 #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="2516", ATTR{idProduct}=="0109", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="2516", ATTR{idProduct}=="0105", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="2516", ATTR{idProduct}=="1011", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="2516", ATTR{idProduct}=="1000", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="2516", ATTR{idProduct}=="014d", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="2516", ATTR{idProduct}=="0047", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="2516", ATTR{idProduct}=="003c", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="2516", ATTR{idProduct}=="0067", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="2516", ATTR{idProduct}=="0089", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="2516", ATTR{idProduct}=="008d", TAG+="uaccess"
#---------------------------------------------------------------#
# Corsair Hydro Series Devices #
# #
# Corsair H100i Pro RGB #
# Corsair H115i Pro RGB #
# Corsair H150i Pro RGB #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c15", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c13", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c12", TAG+="uaccess"
#---------------------------------------------------------------#
# Corsair Hydro Platinum Series Devices #
# #
# Corsair H100i Platinum RGB #
# Corsair H100i Platinum SE RGB #
# Corsair H115i Platinum RGB #
# Corsair H100i Pro XT RGB #
# Corsair H115i Pro XT RGB #
# Corsair H150i Pro XT RGB #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c18", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c19", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c17", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c20", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c21", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c22", TAG+="uaccess"
#---------------------------------------------------------------#
# Corsair Lighting Node Devices #
# #
# Corsair Lighting Node Core #
# Corsair Lighting Node Pro #
# Corsair Commander Pro #
# Corsair LS100 #
# Corsair 1000D Obsidian #
# Corsair Spec Omega RGB #
# Corsair LT100 #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c1a", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c0b", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c10", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c1e", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1d00", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1d04", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0c23", TAG+="uaccess"
#---------------------------------------------------------------#
# Corsair Peripheral Devices #
# #
# Keyboards: #
# Corsair K55 RGB #
# Corsair K65 RGB #
# Corsair K65 RGB Lux #
# Corsair K65 RGB Rapidfire #
# Corsair K68 RGB #
# Corsair K70 RGB #
# Corsair K70 RGB Lux #
# Corsair K70 RGB Rapidfire #
# Corsair K70 RGB MK2 #
# Corsair K70 RGB MK2 SE #
# Corsair K70 RGB MK2 LP #
# Corsair K95 RGB #
# Corsair K95 Platinum #
# Corsair Strafe #
# Corsair Strafe MK2 #
# #
# Mice: #
# Corsair M65 Pro #
# Corsair M65 RGB Elite #
# Corsair Glaive RGB #
# Corsair Glaive RGB Pro #
# Corsair Harpoon RGB #
# Corsair Harpoon RGB Pro #
# Corsair Scimitar Pro RGB #
# Corsair Sabre RGB #
# #
# Mousemats: #
# Corsair MM800 RGB Polaris #
# #
# Headset Stands: #
# Corsair ST100 #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b3d", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b17", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b37", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b39", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b4f", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b13", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b33", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b38", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b49", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b6b", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b55", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b11", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b2d", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b20", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b48", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b34", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b74", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b3c", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b75", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b2e", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b5a", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b3e", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b2f", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b3b", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="0a34", TAG+="uaccess"
#---------------------------------------------------------------#
# Corsair Wireless Devices #
# #
# Keyboards: #
# Corsair K57 RGB Wired #
# Corsair K57 RGB Wireless #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b6e", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1b1c", ATTR{idProduct}=="1b62", TAG+="uaccess"
#---------------------------------------------------------------#
# Creative Devices #
# #
# Devices: #
# Creative SoundblasterX G6 #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="041e", ATTR{idProduct}=="3256", TAG+="uaccess"
#---------------------------------------------------------------#
# Ducky Keyboard Devices #
# #
# Keyboards: #
# Ducky Shine 7 One 2 RGB #
# Ducky One 2 RGB TKL #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="04d9", ATTR{idProduct}=="0348", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="04d9", ATTR{idProduct}=="0356", TAG+="uaccess"
#---------------------------------------------------------------#
# EK Controller Devices #
# #
# Controllers: #
# EK Loop Connect #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="0483", ATTR{idProduct}=="5750", TAG+="uaccess"
#---------------------------------------------------------------#
# Holtek Devices #
# #
# Mice: #
# Holtek A070 #
# Mousemats: #
# Holtek A1FA #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="04d9", ATTR{idProduct}=="a070", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="04d9", ATTR{idProduct}=="a1fa", TAG+="uaccess"
#---------------------------------------------------------------#
# HyperX Peripheral Devices #
# #
# Keyboards: #
# HyperX Alloy Elite #
# HyperX Alloy Elite 2 #
# HyperX Alloy FPS RGB #
# HyperX Alloy Origins #
# HyperX Alloy Origins Core #
# #
# Mice: #
# HyperX Pulsefire Surge #
# HyperX Pulsefire FPS Pro #
# HyperX Pulsefire Dart Wireless #
# HyperX Pulsefire Dart Wired #
# #
# Mousemats: #
# HyperX Fury Ultra #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="0951", ATTR{idProduct}=="16be", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0951", ATTR{idProduct}=="1711", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0951", ATTR{idProduct}=="16dc", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0951", ATTR{idProduct}=="16e5", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0951", ATTR{idProduct}=="16e6", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0951", ATTR{idProduct}=="16d3", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0951", ATTR{idProduct}=="16d7", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0951", ATTR{idProduct}=="16e1", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0951", ATTR{idProduct}=="16e2", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0951", ATTR{idProduct}=="1705", TAG+="uaccess"
#---------------------------------------------------------------#
# Lian Li Uni Hub #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="0cf2", ATTR{idProduct}=="7750", TAG+="uaccess"
#---------------------------------------------------------------#
# Logitech Peripheral Devices #
# #
# Keyboards: #
# Logitech G213 #
# Logitech G512 #
# Logitech G512 RGB #
# Logitech G610 #1 #
# Logitech G610 #2 #
# Logitech G810 #1 #
# Logitech G810 #2 #
# Logitech G813 #
# Logitech G815 #
# #
# Mice: #
# Logitech G203 Prodigy #
# Logitech G203 Lightsync #
# Logitech G303 #
# Logitech G403 Prodigy #
# Logitech G403 Hero #
# Logitech G502 Proteus Spectrum #
# Logitech G502 Hero #
# Logitech G502 Wireless #
# Logitech G703 Wireless #
# Logitech G900 Wireless #
# Logitech G903 Wireless #
# Logitech G Lightspeed Wireless Gaming Mouse #
# Logitech G Pro Wireless Gaming Mouse (Wired) #
# Logitech G Pro Hero Gaming Mouse (Wired) #
# #
# Mousemats: #
# Logitech G Powerplay Mousepad with Lightspeed #
# #
# Speakers: #
# Logitech G560 #
# #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c336", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c342", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c33c", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c333", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c338", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c331", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c337", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c232", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c33f", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c084", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c092", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c083", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c08f", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c082", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="405d", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c332", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c08b", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c08d", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="407f", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c087", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="4070", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c081", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="4053", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c086", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="4067", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c539", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c085", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c08c", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c088", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="4079", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="c53a", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="046d", ATTR{idProduct}=="0a78", TAG+="uaccess"
#---------------------------------------------------------------#
# Metadot Das Keyboard 4Q + 5Q #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="24f0", ATTR{idProduct}=="2037", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="24f0", ATTR{idProduct}=="2020", TAG+="uaccess"
#---------------------------------------------------------------#
# MSI Mysticlight #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="3EA4", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="4459", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7B10", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7B12", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7B17", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7B85", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7B93", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7B94", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7B96", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C34", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C35", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C36", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C37", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C42", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C56", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C59", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C60", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C67", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C70", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C71", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C73", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C75", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C76", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C77", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C79", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C80", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C81", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C82", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C83", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C84", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C85", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C86", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C87", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C88", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C89", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C90", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C91", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C92", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C94", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C95", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C96", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C98", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7C99", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="7D09", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1462", ATTR{idProduct}=="905D", TAG+="uaccess"
#---------------------------------------------------------------#
# MSI/SteelSeries 3-Zone Laptop Keyboard #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1770", ATTR{idProduct}=="FF00", TAG+="uaccess"
#---------------------------------------------------------------#
# NZXT Hue+ #
#---------------------------------------------------------------#
KERNEL=="ttyACM[0-9]*", ATTR{idVendor}=="04D8", ATTR{idProduct}=="00DF", TAG+="uaccess"
#---------------------------------------------------------------#
# NZXT Hue 2 Devices #
# #
# NZXT Hue 2 #
# NZXT Hue 2 Ambient #
# NZXT Motherboard #
# NZXT Smart Device V2 #
# NZXT Kraken X3 #
# NZXT RGB Fan Controller #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1e71", ATTR{idProduct}=="2001", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1e71", ATTR{idProduct}=="2002", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1e71", ATTR{idProduct}=="2005", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1e71", ATTR{idProduct}=="2006", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1e71", ATTR{idProduct}=="2007", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1e71", ATTR{idProduct}=="2009", TAG+="uaccess"
#---------------------------------------------------------------#
# NZXT Kraken #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1e71", ATTR{idProduct}=="170e", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1e71", ATTR{idProduct}=="1715", TAG+="uaccess"
#---------------------------------------------------------------#
# Razer Devices #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0241", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0203", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0209", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0221", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0228", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0237", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0235", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0211", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0216", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="021A", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="020F", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0224", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0233", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="023B", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0240", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="023A", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0246", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0245", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="024D", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0253", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0255", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="026F", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0210", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0225", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="022F", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0234", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="024C", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0205", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0220", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="022D", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0232", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0239", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="024A", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0252", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0259", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="022A", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="023F", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="025E", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0204", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0226", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0227", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0243", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0207", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="021E", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="025D", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0208", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="022B", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0020", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="005E", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="006A", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="006B", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0042", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="005B", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0062", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0064", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0065", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0083", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0038", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="004F", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0037", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0016", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0054", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0043", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="005C", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="006E", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0071", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="008C", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0084", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="007C", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="007D", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="004C", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="002F", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0060", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0059", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="005A", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0070", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="006F", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0024", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0025", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0044", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0045", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0073", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0072", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="006C", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0046", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="002E", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0040", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0053", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="003F", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="003E", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0041", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0036", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0050", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0067", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0013", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0039", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0048", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0032", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0034", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="008A", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0078", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="007A", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="007B", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0506", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0501", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0F19", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0504", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0527", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0510", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0F03", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0F08", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0F20", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0F26", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0F1F", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0F09", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0F07", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0F0E", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0215", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0068", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0C00", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0C04", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0C02", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0C01", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0F1D", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0517", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1532", ATTR{idProduct}=="0518", TAG+="uaccess"
#---------------------------------------------------------------#
# Roccat Devices #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1e7d", ATTR{idProduct}=="2e2c", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1e7d", ATTR{idProduct}=="2e27", TAG+="uaccess"
#---------------------------------------------------------------#
# Redragon Peripheral Devices #
# #
# Keyboards: #
# Redragon K550 Yama #
# Redragon K552 Kumara #
# Redragon K556 Devarajas #
# Tecware Phantom Elite #
# #
# Mice: #
# Redragon M711 Cobra #
# Redragon M715 Dagger #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="0c45", ATTR{idProduct}=="5204", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0c45", ATTR{idProduct}=="5104", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0c45", ATTR{idProduct}=="5004", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="0c45", ATTR{idProduct}=="652f", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="04d9", ATTR{idProduct}=="fc30", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="04d9", ATTR{idProduct}=="fc39", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="04d9", ATTR{idProduct}=="fc4d", TAG+="uaccess"
#---------------------------------------------------------------#
# Gigabyte/Aorus RGB Fusion 2 USB #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="048d", ATTR{idProduct}=="8297", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="048d", ATTR{idProduct}=="5702", TAG+="uaccess"
#---------------------------------------------------------------#
# Sinowealth USB #
# Glorious Model O / O- #
# Glorious Model D / D- #
# Everest GT-100 RGB #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="258a", ATTR{idProduct}=="0036", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="258a", ATTR{idProduct}=="0033", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="258a", ATTR{idProduct}=="0029", TAG+="uaccess"
#---------------------------------------------------------------#
# Sony Devices #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="054c", ATTR{idProduct}=="05c4", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="054c", ATTR{idProduct}=="09cc", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="054c", ATTR{idProduct}=="0ba0", TAG+="uaccess"
#---------------------------------------------------------------#
# SteelSeries Peripheral Devices #
# #
# Mice: #
# SteelSeries Rival 100 #
# SteelSeries Rival 100 DotA 2 Edition #
# SteelSeries Rival 105 #
# SteelSeries Rival 110 #
# SteelSeries Rival 300 #
# Acer Predator Gaming Mouse (Rival 300) #
# SteelSeries Rival 300 CS:GO Fade Edition #
# SteelSeries Rival 300 CS:GO Fade Edition (stm32) #
# SteelSeries Rival 300 CS:GO Hyperbeast Edition #
# SteelSeries Rival 300 Dota 2 Edition #
# SteelSeries Rival 300 HP Omen Edition #
# SteelSeries Rival 300 Blackops Edition #
# SteelSeries Rival 310 #
# SteelSeries Rival 310 CS:GO Howl Edition #
# SteelSeries Rival 310 PubG Edition #
# SteelSeries Rival Sensei Ten #
# SteelSeries Rival Sensei Ten CS:GO Neon Rider #
# SteelSeries Rival Sensei 310 #
# Headsets: #
# SteelSeries Siberia 350 #
# Keyboards: #
# SteelSeries Apex 5 #
# SteelSeries Apex 7 #
# SteelSeries Apex 7 TKL #
# SteelSeries Apex Pro #
# SteelSeries Apex Pro TKL #
# SteelSeries Apex M750 #
# SteelSeries Apex OG #
# SteelSeries Apex 350 #
# Mousemats: #
# SteelSeries QCK Prism Cloth #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1702", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="170c", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1814", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1729", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1710", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1714", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1394", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1716", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="171a", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1392", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1718", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1720", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="171e", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1736", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1832", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1834", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1722", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1229", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="161c", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1612", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1618", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1610", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1614", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="0616", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1202", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="1206", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="1038", ATTR{idProduct}=="150d", TAG+="uaccess"
#---------------------------------------------------------------#
# Tecknet Devices #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="04d9", ATTR{idProduct}=="fc05", TAG+="uaccess"
#---------------------------------------------------------------#
# Thermaltake Poseidon Z RGB Keyboard #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="264a", ATTR{idProduct}=="3006", TAG+="uaccess"
#---------------------------------------------------------------#
# Thermaltake Riing Controllers #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="264a", ATTR{idProduct}=="1FA[5-9]", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="264a", ATTR{idProduct}=="1FA[A-F]", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="264a", ATTR{idProduct}=="1FB[0-5]", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="264a", ATTR{idProduct}=="226[0-3]", TAG+="uaccess"
#---------------------------------------------------------------#
# Wooting Devices #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="03eb", ATTR{idProduct}=="ff01", TAG+="uaccess"
SUBSYSTEMS=="usb", ATTR{idVendor}=="03eb", ATTR{idProduct}=="ff02", TAG+="uaccess"
#---------------------------------------------------------------#
# Zalman ZSync Devices #
#---------------------------------------------------------------#
SUBSYSTEMS=="usb", ATTR{idVendor}=="1c57", ATTR{idProduct}=="7ed0", TAG+="uaccess"
-174
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#include "AutoStart-FreeBSD.h"
#include "LogManager.h"
#include "filesystem.h"
#include <fstream>
#include <iostream>
#include <unistd.h>
#include <sstream>
/*-----------------------------------------------------*\
| FreeBSD AutoStart Implementation |
| Public Methods |
\*-----------------------------------------------------*/
AutoStart::AutoStart(std::string name)
{
InitAutoStart(name);
}
bool AutoStart::DisableAutoStart()
{
std::error_code autostart_file_remove_errcode;
bool success = false;
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
/*---------------------------------------------*\
| If file doesn't exist, disable is successful |
\*---------------------------------------------*/
if(!filesystem::exists(autostart_file))
{
success = true;
}
/*---------------------------------------------*\
| Otherwise, delete the file |
\*---------------------------------------------*/
else
{
success = filesystem::remove(autostart_file, autostart_file_remove_errcode);
if(!success)
{
LOG_ERROR("[AutoStart] An error occurred removing the auto start file.");
}
}
}
else
{
LOG_ERROR("Could not establish correct autostart file path.");
}
return(success);
}
bool AutoStart::EnableAutoStart(AutoStartInfo autostart_info)
{
bool success = false;
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
std::ofstream autostart_file_stream(autostart_file, std::ios::out | std::ios::trunc);
/*---------------------------------------------*\
| Error out if the file could not be opened |
\*---------------------------------------------*/
if(!autostart_file_stream)
{
LOG_ERROR("Could not open %s for writing.", autostart_file.c_str());
success = false;
}
/*---------------------------------------------*\
| Otherwise, write the file |
\*---------------------------------------------*/
else
{
//autostart_file_stream << desktop_file;
autostart_file_stream.close();
success = !autostart_file_stream.fail();
if (!success)
{
LOG_ERROR("An error occurred writing the auto start file.");
}
}
}
else
{
LOG_ERROR("Could not establish correct autostart file path.");
}
return(success);
}
bool AutoStart::IsAutoStartEnabled()
{
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
return(filesystem::exists(autostart_file));
}
else
{
return(false);
}
}
std::string AutoStart::GetExePath()
{
/*-------------------------------------------------*\
| Create the OpenRGB executable path |
\*-------------------------------------------------*/
char exepath[ PATH_MAX ];
ssize_t count = readlink("/proc/self/exe", exepath, PATH_MAX);
return(std::string(exepath, (count > 0) ? count : 0));
}
void AutoStart::InitAutoStart(std::string name)
{
std::string autostart_dir;
autostart_name = name;
/*-------------------------------------------------*\
| Get home and config paths |
\*-------------------------------------------------*/
const char *xdg_config_home = getenv("XDG_CONFIG_HOME");
const char *home = getenv("HOME");
/*-------------------------------------------------*\
| Determine where the autostart .desktop files are |
| kept |
\*-------------------------------------------------*/
if(xdg_config_home != NULL)
{
autostart_dir = xdg_config_home;
autostart_dir = autostart_dir + "/autostart/";
}
else if(home != NULL)
{
autostart_dir = home;
autostart_dir = autostart_dir + "/.config/autostart/";
}
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_dir != "")
{
std::error_code ec;
bool success = true;
if(!filesystem::exists(autostart_dir))
{
success = filesystem::create_directories(autostart_dir, ec);
}
if(success)
{
autostart_file = autostart_dir + autostart_name + ".desktop";
}
}
}
-19
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@@ -1,19 +0,0 @@
#pragma once
#include <string>
#include "AutoStart.h"
class AutoStart: public AutoStartInterface
{
public:
AutoStart(std::string name);
bool DisableAutoStart();
bool EnableAutoStart(AutoStartInfo autostart_info);
bool IsAutoStartEnabled();
std::string GetExePath();
private:
void InitAutoStart(std::string name);
std::string GenerateLaunchAgentFile(AutoStartInfo autostart_info);
};
-212
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#include "AutoStart-Linux.h"
#include "LogManager.h"
#include "filesystem.h"
#include <fstream>
#include <iostream>
#include <unistd.h>
#include <linux/limits.h>
/*-----------------------------------------------------*\
| Linux AutoStart Implementation |
| Public Methods |
\*-----------------------------------------------------*/
AutoStart::AutoStart(std::string name)
{
InitAutoStart(name);
}
bool AutoStart::DisableAutoStart()
{
std::error_code autostart_file_remove_errcode;
bool success = false;
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
/*---------------------------------------------*\
| If file doesn't exist, disable is successful |
\*---------------------------------------------*/
if(!filesystem::exists(autostart_file))
{
success = true;
}
/*---------------------------------------------*\
| Otherwise, delete the file |
\*---------------------------------------------*/
else
{
success = filesystem::remove(autostart_file, autostart_file_remove_errcode);
if(!success)
{
LOG_ERROR("[AutoStart] An error occurred removing the auto start file.");
}
}
}
else
{
LOG_ERROR("Could not establish correct autostart file path.");
}
return(success);
}
bool AutoStart::EnableAutoStart(AutoStartInfo autostart_info)
{
bool success = false;
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
std::string desktop_file = GenerateDesktopFile(autostart_info);
std::ofstream autostart_file_stream(autostart_file, std::ios::out | std::ios::trunc);
/*---------------------------------------------*\
| Error out if the file could not be opened |
\*---------------------------------------------*/
if(!autostart_file_stream)
{
LOG_ERROR("Could not open %s for writing.", autostart_file.c_str());
success = false;
}
/*---------------------------------------------*\
| Otherwise, write the file |
\*---------------------------------------------*/
else
{
autostart_file_stream << desktop_file;
autostart_file_stream.close();
success = !autostart_file_stream.fail();
if (!success)
{
LOG_ERROR("An error occurred writing the auto start file.");
}
}
}
else
{
LOG_ERROR("Could not establish correct autostart file path.");
}
return(success);
}
bool AutoStart::IsAutoStartEnabled()
{
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
return(filesystem::exists(autostart_file));
}
else
{
return(false);
}
}
std::string AutoStart::GetExePath()
{
/*-------------------------------------------------*\
| Create the OpenRGB executable path |
\*-------------------------------------------------*/
char exepath[ PATH_MAX ];
ssize_t count = readlink("/proc/self/exe", exepath, PATH_MAX);
return(std::string(exepath, (count > 0) ? count : 0));
}
/*-----------------------------------------------------*\
| Linux AutoStart Implementation |
| Private Methods |
\*-----------------------------------------------------*/
std::string AutoStart::GenerateDesktopFile(AutoStartInfo autostart_info)
{
/*-------------------------------------------------*\
| Generate a .desktop file from the AutoStart |
| parameters |
\*-------------------------------------------------*/
std::stringstream fileContents;
fileContents << "[Desktop Entry]" << std::endl;
fileContents << "Categories=" << autostart_info.category << std::endl;
fileContents << "Comment=" << autostart_info.desc << std::endl;
fileContents << "Icon=" << autostart_info.icon << std::endl;
fileContents << "Name=" << GetAutoStartName() << std::endl;
fileContents << "StartupNotify=true" << std::endl;
fileContents << "Terminal=false" << std::endl;
fileContents << "Type=Application" << std::endl;
/*-------------------------------------------------*\
| Add the executable path and arguments |
\*-------------------------------------------------*/
fileContents << "Exec=" << autostart_info.path;
if (autostart_info.args != "")
{
fileContents << " " << autostart_info.args;
}
fileContents << std::endl;
return(fileContents.str());
}
void AutoStart::InitAutoStart(std::string name)
{
std::string autostart_dir;
autostart_name = name;
/*-------------------------------------------------*\
| Get home and config paths |
\*-------------------------------------------------*/
const char *xdg_config_home = getenv("XDG_CONFIG_HOME");
const char *home = getenv("HOME");
/*-------------------------------------------------*\
| Determine where the autostart .desktop files are |
| kept |
\*-------------------------------------------------*/
if(xdg_config_home != NULL)
{
autostart_dir = xdg_config_home;
autostart_dir = autostart_dir + "/autostart/";
}
else if(home != NULL)
{
autostart_dir = home;
autostart_dir = autostart_dir + "/.config/autostart/";
}
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_dir != "")
{
std::error_code ec;
bool success = true;
if(!filesystem::exists(autostart_dir))
{
success = filesystem::create_directories(autostart_dir, ec);
}
if(success)
{
autostart_file = autostart_dir + autostart_name + ".desktop";
}
}
}
-19
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@@ -1,19 +0,0 @@
#pragma once
#include <string>
#include "AutoStart.h"
class AutoStart: public AutoStartInterface
{
public:
AutoStart(std::string name);
bool DisableAutoStart();
bool EnableAutoStart(AutoStartInfo autostart_info);
bool IsAutoStartEnabled();
std::string GetExePath();
private:
void InitAutoStart(std::string name);
std::string GenerateDesktopFile(AutoStartInfo autostart_info);
};
-208
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@@ -1,208 +0,0 @@
#include "AutoStart-MacOS.h"
#include "LogManager.h"
#include "filesystem.h"
#include <fstream>
#include <sstream>
#include <iostream>
#include <unistd.h>
#include <mach-o/dyld.h>
/*-----------------------------------------------------*\
| MacOS AutoStart Implementation |
| Public Methods |
\*-----------------------------------------------------*/
AutoStart::AutoStart(std::string name)
{
InitAutoStart(name);
}
bool AutoStart::DisableAutoStart()
{
std::error_code autostart_file_remove_errcode;
bool success = false;
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
/*---------------------------------------------*\
| If file doesn't exist, disable is successful |
\*---------------------------------------------*/
if(!filesystem::exists(autostart_file))
{
success = true;
}
/*---------------------------------------------*\
| Otherwise, delete the file |
\*---------------------------------------------*/
else
{
success = filesystem::remove(autostart_file, autostart_file_remove_errcode);
if(!success)
{
LOG_ERROR("[AutoStart] An error occurred removing the auto start file.");
}
}
}
else
{
LOG_ERROR("Could not establish correct autostart file path.");
}
return(success);
}
bool AutoStart::EnableAutoStart(AutoStartInfo autostart_info)
{
bool success = false;
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
std::string desktop_file = GenerateLaunchAgentFile(autostart_info);
std::ofstream autostart_file_stream(autostart_file, std::ios::out | std::ios::trunc);
/*---------------------------------------------*\
| Error out if the file could not be opened |
\*---------------------------------------------*/
if(!autostart_file_stream)
{
LOG_ERROR("Could not open %s for writing.", autostart_file.c_str());
success = false;
}
/*---------------------------------------------*\
| Otherwise, write the file |
\*---------------------------------------------*/
else
{
autostart_file_stream << desktop_file;
autostart_file_stream.close();
success = !autostart_file_stream.fail();
if (!success)
{
LOG_ERROR("An error occurred writing the auto start file.");
}
}
}
else
{
LOG_ERROR("Could not establish correct autostart file path.");
}
return(success);
}
bool AutoStart::IsAutoStartEnabled()
{
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
return(filesystem::exists(autostart_file));
}
else
{
return(false);
}
}
std::string AutoStart::GetExePath()
{
/*-------------------------------------------------*\
| Create the OpenRGB executable path |
\*-------------------------------------------------*/
char exepath[ PATH_MAX ];
uint32_t exesize = PATH_MAX;
int ret_val = _NSGetExecutablePath(exepath, &exesize);
return(std::string(exepath, (ret_val == 0) ? strlen(exepath) : 0));
return("");
}
/*-----------------------------------------------------*\
| MacOS AutoStart Implementation |
| Private Methods |
\*-----------------------------------------------------*/
std::string AutoStart::GenerateLaunchAgentFile(AutoStartInfo autostart_info)
{
/*-------------------------------------------------*\
| Generate a .plist file from the AutoStart |
| parameters |
\*-------------------------------------------------*/
std::stringstream fileContents;
fileContents << "<?xml version=\"1.0\" encoding=\"UTF-8\"?>" << std::endl;
fileContents << "<!DOCTYPE plist PUBLIC \"-//Apple//DTD PLIST 1.0//EN\" \"http://www.apple.com/DTDs/PropertyList-1.0.dtd\">" << std::endl;
fileContents << "<plist version=\"1.0\">" << std::endl;
fileContents << "<dict>" << std::endl;
fileContents << " <key>Label</key>" << std::endl;
fileContents << " <string>org.openrgb</string>" << std::endl;
fileContents << " <key>ProgramArguments</key>" << std::endl;
fileContents << " <array>" << std::endl;
fileContents << " <string>" << autostart_info.path << "</string>" << std::endl;
if(autostart_info.args != "")
{
std::istringstream arg_parser(autostart_info.args);
std::string arg;
while(arg_parser >> arg)
{
fileContents << " <string>" << arg << "</string>" << std::endl;
}
}
fileContents << " </array>" << std::endl;
fileContents << " <key>RunAtLoad</key><true/>" << std::endl;
fileContents << "</dict>" << std::endl;
fileContents << "</plist>" << std::endl;
return(fileContents.str());
}
void AutoStart::InitAutoStart(std::string name)
{
std::string autostart_dir;
autostart_name = name;
/*-------------------------------------------------*\
| Determine where the autostart .desktop files are |
| kept |
\*-------------------------------------------------*/
autostart_dir = getenv("HOME");
autostart_dir = autostart_dir + "/Library/LaunchAgents/";
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_dir != "")
{
std::error_code ec;
bool success = true;
if(!filesystem::exists(autostart_dir))
{
success = filesystem::create_directories(autostart_dir, ec);
}
if(success)
{
autostart_file = autostart_dir + autostart_name + ".plist";
}
}
}
-19
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@@ -1,19 +0,0 @@
#pragma once
#include <string>
#include "AutoStart.h"
class AutoStart: public AutoStartInterface
{
public:
AutoStart(std::string name);
bool DisableAutoStart();
bool EnableAutoStart(AutoStartInfo autostart_info);
bool IsAutoStartEnabled();
std::string GetExePath();
private:
void InitAutoStart(std::string name);
std::string GenerateLaunchAgentFile(AutoStartInfo autostart_info);
};
-204
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@@ -1,204 +0,0 @@
#include "AutoStart-Windows.h"
#include "LogManager.h"
#include "filesystem.h"
#include <fstream>
#include <iostream>
#include "windows.h"
#include <shlobj.h>
/*-----------------------------------------------------*\
| Windows AutoStart Implementation |
| Public Methods |
\*-----------------------------------------------------*/
AutoStart::AutoStart(std::string name)
{
InitAutoStart(name);
}
bool AutoStart::DisableAutoStart()
{
std::error_code autostart_file_remove_errcode;
bool success = false;
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
/*---------------------------------------------*\
| If file doesn't exist, disable is successful |
\*---------------------------------------------*/
if(!filesystem::exists(autostart_file))
{
success = true;
}
/*---------------------------------------------*\
| Otherwise, delete the file |
\*---------------------------------------------*/
else
{
success = filesystem::remove(autostart_file, autostart_file_remove_errcode);
if(!success)
{
LOG_ERROR("An error occurred removing the auto start file.");
}
}
}
else
{
LOG_ERROR("Could not establish correct autostart file path.");
}
return(success);
}
bool AutoStart::EnableAutoStart(AutoStartInfo autostart_info)
{
bool success = false;
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
bool weInitialised = false;
HRESULT result;
IShellLinkW* shellLink = NULL;
std::wstring exepathw = utf8_decode(autostart_info.path);
std::wstring argumentsw = utf8_decode(autostart_info.args);
std::wstring startupfilepathw = utf8_decode(autostart_file);
std::wstring descriptionw = utf8_decode(autostart_info.desc);
std::wstring iconw = utf8_decode(autostart_info.path);
result = CoCreateInstance(CLSID_ShellLink, NULL, CLSCTX_ALL, IID_IShellLinkW, (void**)&shellLink);
/*---------------------------------------------*\
| If not initialized, initialize |
\*---------------------------------------------*/
if(result == CO_E_NOTINITIALIZED)
{
weInitialised = true;
CoInitializeEx(NULL, COINIT_APARTMENTTHREADED);
result = CoCreateInstance(CLSID_ShellLink, NULL, CLSCTX_ALL, IID_IShellLinkW, (void**)&shellLink);
}
/*---------------------------------------------*\
| If successfully initialized, save a shortcut |
| from the AutoStart parameters |
\*---------------------------------------------*/
if(SUCCEEDED(result))
{
shellLink->SetPath(exepathw.c_str());
shellLink->SetArguments(argumentsw.c_str());
shellLink->SetDescription(descriptionw.c_str());
shellLink->SetIconLocation(iconw.c_str(), 0);
IPersistFile* persistFile;
result = shellLink->QueryInterface(IID_IPersistFile, (void**)&persistFile);
if(SUCCEEDED(result))
{
result = persistFile->Save(startupfilepathw.c_str(), TRUE);
success = SUCCEEDED(result);
persistFile->Release();
}
shellLink->Release();
}
/*---------------------------------------------*\
| Uninitialize when done |
\*---------------------------------------------*/
if(weInitialised)
{
CoUninitialize();
}
}
else
{
LOG_ERROR("Could not establish correct autostart file path.");
}
return success;
}
bool AutoStart::IsAutoStartEnabled()
{
/*-------------------------------------------------*\
| Check if the filename is valid |
\*-------------------------------------------------*/
if(autostart_file != "")
{
return(filesystem::exists(autostart_file));
}
else
{
return(false);
}
}
std::string AutoStart::GetExePath()
{
/*-------------------------------------------------*\
| Create the OpenRGB executable path |
\*-------------------------------------------------*/
char exepath[MAX_PATH] = "";
DWORD count = GetModuleFileNameA(NULL, exepath, MAX_PATH);
return(std::string(exepath, (count > 0) ? count : 0));
}
/*-----------------------------------------------------*\
| Windows AutoStart Implementation |
| Private Methods |
\*-----------------------------------------------------*/
void AutoStart::InitAutoStart(std::string name)
{
char startMenuPath[MAX_PATH];
autostart_name = name;
/*-------------------------------------------------*\
| Get startup applications path |
\*-------------------------------------------------*/
HRESULT result = SHGetFolderPathA(NULL, CSIDL_PROGRAMS, NULL, 0, startMenuPath);
if(SUCCEEDED(result))
{
autostart_file = std::string(startMenuPath);
autostart_file += "\\Startup\\" + autostart_name + ".lnk";
}
else
{
autostart_file.clear();
}
}
/*-----------------------------------------------------*\
| Convert an UTF8 string to a wide Unicode String |
| (from wmi.cpp) |
\*-----------------------------------------------------*/
std::wstring AutoStart::utf8_decode(const std::string& str)
{
if(str.empty())
{
return std::wstring();
}
int size_needed = MultiByteToWideChar(CP_UTF8, 0, &str[0], (int) str.size(), nullptr, 0);
std::wstring wstrTo(size_needed, 0);
MultiByteToWideChar(CP_UTF8, 0, &str[0], (int) str.size(), &wstrTo[0], size_needed);
return(wstrTo);
}
-19
View File
@@ -1,19 +0,0 @@
#pragma once
#include <string>
#include "AutoStart.h"
class AutoStart: public AutoStartInterface
{
public:
AutoStart(std::string name);
bool DisableAutoStart();
bool EnableAutoStart(AutoStartInfo autostart_info);
bool IsAutoStartEnabled();
std::string GetExePath();
private:
void InitAutoStart(std::string name);
std::wstring utf8_decode(const std::string& str);
};
-16
View File
@@ -1,16 +0,0 @@
#include "AutoStart.h"
/*-----------------------------------------------------*\
| Common AutoStart Implementation |
| Public Methods |
\*-----------------------------------------------------*/
std::string AutoStartInterface::GetAutoStartFile()
{
return(autostart_file);
}
std::string AutoStartInterface::GetAutoStartName()
{
return(autostart_name);
}
-44
View File
@@ -1,44 +0,0 @@
#pragma once
#include <string>
struct AutoStartInfo
{
std::string path;
std::string args;
std::string desc;
std::string icon;
std::string category;
};
class AutoStartInterface
{
public:
virtual bool DisableAutoStart() = 0;
virtual bool EnableAutoStart(AutoStartInfo autostart_info) = 0;
virtual bool IsAutoStartEnabled() = 0;
virtual std::string GetExePath() = 0;
std::string GetAutoStartFile();
std::string GetAutoStartName();
protected:
std::string autostart_file;
std::string autostart_name;
};
#ifdef _WIN32
#include "AutoStart-Windows.h"
#endif
#ifdef __linux__
#include "AutoStart-Linux.h"
#endif
#ifdef __APPLE__
#include "AutoStart-MacOS.h"
#endif
#ifdef __FreeBSD__
#include "AutoStart-FreeBSD.h"
#endif
-58
View File
@@ -1,58 +0,0 @@
# Contributing to OpenRGB
The OpenRGB project welcomes contributions from the community. The project would not support the number of devices it does today without the amazing contributions from community developers. If you want to add a new device, fix a bug, or add a feature, feel free to open a merge request on the OpenRGB GitLab (https://gitlab.com/CalcProgrammer1/OpenRGB).
## Creating a Merge Request
To create a merge request, log into GitLab and fork the OpenRGB project. Push your changes to your fork and then use the Create Merge Request option. Before opening a merge request, please review the following best practices to help your merge request get merged without excessive delay.
* Please keep the scope of each merge request limited to one functional area. If you wish to add a new device controller, for instance, don't also do code cleanup in another controller as part of the same merge request.
* Explain what your merge request is changing, why you feel the change is necessary, and add any additional information you feel is needed to best understand your change in the merge request description.
* Mark your merge request as a draft (start title with "Draft:") until it has been tested and verified working.
* Follow the Style Guidelines below when making your code changes.
* Avoid using `git merge` when updating your fork. The OpenRGB project uses a linear git history, meaning all changes are rebased onto the tip of master. By using `git rebase` to update your fork, you will make it easier to accept merge requests.
## Style Guidelines
OpenRGB is written in C++, uses the Qt framework for UI, and uses the QMake build system. While OpenRGB does use C++, I am primarily a C programmer and prefer doing things "C Style" vs. C++ style. C++'s object oriented programming features fit the needs of a program such as OpenRGB where there are many implementations of a single interface so I chose to write it in C++ over C. Still, however, I prefer using C-style code where possible. When making changes to existing code files, try to follow the existing style. Merge requests that go out of their way to restyle code will not be accepted and will be sent back for rework.
### Functional Style
* Limit use of C++ std library data types
* For fixed-length containers, use C arrays
* For list constants, use const C arrays
* For fixed-length strings, use C char buffers ("C strings"), though using std::string is acceptable if the value will be placed in a std::string
* For basic types, prefer using the non-typedef'd basic types (char, short, int, etc) over typedef'd (uint8_t, uint16_t, uint32_t, etc)
* Unless defined in an OpenRGB API or the file is implementing an existing API using these types (such as i2c_smbus)
* For hard-coded values, use `#define`s over const variables unless you need a pointer to the value
* For variable-length containers, use std::vector
* For variable-length strings, use std::string
* `struct` should not include any functions, only variables
* `class` should only be used for objects containing functions
* Other std types may be used sparingly if necessary
* Only use Qt libraries, types, and functionality in user interface files
* Anything under the qt/ folder basically
* Do not use QDebug, use our LogManager instead. If you use QDebug during development, please remove it before submitting your merge request
* Use C-style indexed for loops when iterating through an array or vector
* Use C-style casts unless necessary
* Avoid the `auto` type. It makes code more difficult to read
* Do not use `printf` or `cout` for debug messages, use LogManager instead
* Don't define namespaces unless necessary
### Non-functional Style
* Set your editor's tab settings to insert spaces, using 4 spaces per tab stop
* Always put opening and closing braces `{`, `}` on their own lines
* Indent code inside the braces, do not indent the braces themselves
* Capitalize hexadecimal literals (`0xFF` not `0xff`) except in the udev rules file (which must be lowercase to work)
* No space between keyword and open parenthesis (`if(TRUE)` not `if (TRUE)`). There are some instances of this that haven't been cleaned up in the code.
* Generally, `snake_case` is used for variable names and `CamelCase` is used for function and class names
* Add a header comment to new files with the filename, description, original author, and date (this is missing on most Detect files)
* Line up `=` when doing a lot of assignments together
* Use this comment box style when adding comments:
```
/*--------------------------------*\
| This is a comment |
\*_-------------------------------*/
```
-153
View File
@@ -1,153 +0,0 @@
#ifndef COLORS_H
#define COLORS_H
#define COLOR_BLACK 0x000000
#define COLOR_NAVY 0x000080
#define COLOR_DARKBLUE 0x00008b
#define COLOR_MEDIUMBLUE 0x0000cd
#define COLOR_BLUE 0x0000ff
#define COLOR_DARKGREEN 0x006400
#define COLOR_GREEN 0x008000
#define COLOR_TEAL 0x008080
#define COLOR_DARKCYAN 0x008b8b
#define COLOR_DEEPSKYBLUE 0x00bfff
#define COLOR_DARKTURQUOISE 0x00ced1
#define COLOR_MEDIUMSPRINGGREEN 0x00fa9a
#define COLOR_LIME 0x00ff00
#define COLOR_SPRINGGREEN 0x00ff7f
#define COLOR_AQUA 0x00ffff
#define COLOR_CYAN 0x00ffff
#define COLOR_MIDNIGHTBLUE 0x191970
#define COLOR_DODGERBLUE 0x1e90ff
#define COLOR_LIGHTSEAGREEN 0x20b2aa
#define COLOR_FORESTGREEN 0x228b22
#define COLOR_SEAGREEN 0x2e8b57
#define COLOR_DARKSLATEGRAY 0x2f4f4f
#define COLOR_DARKSLATEGREY 0x2f4f4f
#define COLOR_LIMEGREEN 0x32cd32
#define COLOR_MEDIUMSEAGREEN 0x3cb371
#define COLOR_TURQUOISE 0x40e0d0
#define COLOR_ROYALBLUE 0x4169e1
#define COLOR_STEELBLUE 0x4682b4
#define COLOR_DARKSLATEBLUE 0x483d8b
#define COLOR_MEDIUMTURQUOISE 0x48d1cc
#define COLOR_INDIGO 0x4b0082
#define COLOR_DARKOLIVEGREEN 0x556b2f
#define COLOR_CADETBLUE 0x5f9ea0
#define COLOR_CORNFLOWERBLUE 0x6495ed
#define COLOR_MEDIUMAQUAMARINE 0x66cdaa
#define COLOR_DIMGRAY 0x696969
#define COLOR_DIMGREY 0x696969
#define COLOR_SLATEBLUE 0x6a5acd
#define COLOR_OLIVEDRAB 0x6b8e23
#define COLOR_SLATEGRAY 0x708090
#define COLOR_SLATEGREY 0x708090
#define COLOR_LIGHTSLATEGRAY 0x778899
#define COLOR_LIGHTSLATEGREY 0x778899
#define COLOR_MEDIUMSLATEBLUE 0x7b68ee
#define COLOR_LAWNGREEN 0x7cfc00
#define COLOR_CHARTREUSE 0x7fff00
#define COLOR_AQUAMARINE 0x7fffd4
#define COLOR_MAROON 0x800000
#define COLOR_PURPLE 0x800080
#define COLOR_ELECTRIC_ULTRAMARINE 0x4000FF
#define COLOR_OLIVE 0x808000
#define COLOR_GRAY 0x808080
#define COLOR_GREY 0x808080
#define COLOR_SKYBLUE 0x87ceeb
#define COLOR_LIGHTSKYBLUE 0x87cefa
#define COLOR_BLUEVIOLET 0x8a2be2
#define COLOR_DARKRED 0x8b0000
#define COLOR_DARKMAGENTA 0x8b008b
#define COLOR_SADDLEBROWN 0x8b4513
#define COLOR_DARKSEAGREEN 0x8fbc8f
#define COLOR_LIGHTGREEN 0x90ee90
#define COLOR_MEDIUMPURPLE 0x9370db
#define COLOR_DARKVIOLET 0x9400d3
#define COLOR_PALEGREEN 0x98fb98
#define COLOR_DARKORCHID 0x9932cc
#define COLOR_YELLOWGREEN 0x9acd32
#define COLOR_SIENNA 0xa0522d
#define COLOR_BROWN 0xa52a2a
#define COLOR_DARKGRAY 0xa9a9a9
#define COLOR_DARKGREY 0xa9a9a9
#define COLOR_LIGHTBLUE 0xadd8e6
#define COLOR_GREENYELLOW 0xadff2f
#define COLOR_PALETURQUOISE 0xafeeee
#define COLOR_LIGHTSTEELBLUE 0xb0c4de
#define COLOR_POWDERBLUE 0xb0e0e6
#define COLOR_FIREBRICK 0xb22222
#define COLOR_DARKGOLDENROD 0xb8860b
#define COLOR_MEDIUMORCHID 0xba55d3
#define COLOR_ROSYBROWN 0xbc8f8f
#define COLOR_DARKKHAKI 0xbdb76b
#define COLOR_SILVER 0xc0c0c0
#define COLOR_MEDIUMVIOLETRED 0xc71585
#define COLOR_INDIANRED 0xcd5c5c
#define COLOR_PERU 0xcd853f
#define COLOR_CHOCOLATE 0xd2691e
#define COLOR_TAN 0xd2b48c
#define COLOR_LIGHTGRAY 0xd3d3d3
#define COLOR_LIGHTGREY 0xd3d3d3
#define COLOR_THISTLE 0xd8bfd8
#define COLOR_ORCHID 0xda70d6
#define COLOR_GOLDENROD 0xdaa520
#define COLOR_PALEVIOLETRED 0xdb7093
#define COLOR_CRIMSON 0xdc143c
#define COLOR_GAINSBORO 0xdcdcdc
#define COLOR_PLUM 0xdda0dd
#define COLOR_BURLYWOOD 0xdeb887
#define COLOR_LIGHTCYAN 0xe0ffff
#define COLOR_LAVENDER 0xe6e6fa
#define COLOR_DARKSALMON 0xe9967a
#define COLOR_VIOLET 0xee82ee
#define COLOR_PALEGOLDENROD 0xeee8aa
#define COLOR_LIGHTCORAL 0xf08080
#define COLOR_KHAKI 0xf0e68c
#define COLOR_ALICEBLUE 0xf0f8ff
#define COLOR_HONEYDEW 0xf0fff0
#define COLOR_AZURE 0xf0ffff
#define COLOR_SANDYBROWN 0xf4a460
#define COLOR_WHEAT 0xf5deb3
#define COLOR_BEIGE 0xf5f5dc
#define COLOR_WHITESMOKE 0xf5f5f5
#define COLOR_MINTCREAM 0xf5fffa
#define COLOR_GHOSTWHITE 0xf8f8ff
#define COLOR_SALMON 0xfa8072
#define COLOR_ANTIQUEWHITE 0xfaebd7
#define COLOR_LINEN 0xfaf0e6
#define COLOR_LIGHTGOLDENRODYELLOW 0xfafad2
#define COLOR_OLDLACE 0xfdf5e6
#define COLOR_RED 0xff0000
#define COLOR_FUCHSIA 0xff00ff
#define COLOR_MAGENTA 0xff00ff
#define COLOR_DEEPPINK 0xff1493
#define COLOR_ORANGERED 0xff4500
#define COLOR_TOMATO 0xff6347
#define COLOR_HOTPINK 0xff69b4
#define COLOR_CORAL 0xff7f50
#define COLOR_DARKORANGE 0xff8c00
#define COLOR_LIGHTSALMON 0xffa07a
#define COLOR_ORANGE 0xffa500
#define COLOR_LIGHTPINK 0xffb6c1
#define COLOR_PINK 0xffc0cb
#define COLOR_GOLD 0xffd700
#define COLOR_PEACHPUFF 0xffdab9
#define COLOR_NAVAJOWHITE 0xffdead
#define COLOR_MOCCASIN 0xffe4b5
#define COLOR_BISQUE 0xffe4c4
#define COLOR_MISTYROSE 0xffe4e1
#define COLOR_BLANCHEDALMOND 0xffebcd
#define COLOR_PAPAYAWHIP 0xffefd5
#define COLOR_LAVENDERBLUSH 0xfff0f5
#define COLOR_SEASHELL 0xfff5ee
#define COLOR_CORNSILK 0xfff8dc
#define COLOR_LEMONCHIFFON 0xfffacd
#define COLOR_FLORALWHITE 0xfffaf0
#define COLOR_SNOW 0xfffafa
#define COLOR_YELLOW 0xffff00
#define COLOR_LIGHTYELLOW 0xffffe0
#define COLOR_IVORY 0xfffff0
#define COLOR_WHITE 0xffffff
#endif // COLORS_H
@@ -19,20 +19,17 @@ AMDWraithPrismController::AMDWraithPrismController(hid_device* dev_handle, const
strcpy(device_name, "AMD Wraith Prism");
current_fan_mode = AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC;
current_fan_speed = 0xFF;
current_fan_random_color = false;
current_fan_brightness = 0xFF;
current_fan_mode = AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC;
current_fan_speed = 0xFF;
current_fan_random_color = false;
current_logo_mode = AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC;
current_logo_speed = 0xFF;
current_logo_random_color = false;
current_logo_brightness = 0xFF;
current_logo_mode = AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC;
current_logo_speed = 0xFF;
current_logo_random_color = false;
current_ring_mode = AMD_WRAITH_PRISM_EFFECT_CHANNEL_STATIC;
current_ring_speed = 0xFF;
current_ring_direction = false;
current_ring_brightness = 0xFF;
current_ring_mode = AMD_WRAITH_PRISM_EFFECT_CHANNEL_STATIC;
current_ring_speed = 0xFF;
current_ring_direction = false;
SendEnableCommand();
}
@@ -150,11 +147,10 @@ std::string AMDWraithPrismController::GetFirmwareVersionString()
return(ret_string);
}
void AMDWraithPrismController::SetFanMode(unsigned char mode, unsigned char speed, unsigned char brightness, bool random_color)
void AMDWraithPrismController::SetFanMode(unsigned char mode, unsigned char speed, bool random_color)
{
current_fan_mode = mode;
current_fan_speed = speed_values_fan_logo[mode][speed];
current_fan_brightness = brightness;
current_fan_random_color = random_color;
}
@@ -167,18 +163,17 @@ void AMDWraithPrismController::SetFanColor(unsigned char red, unsigned char gree
false,
current_fan_random_color,
current_fan_mode,
current_fan_brightness,
max_brightness_fan_logo[current_fan_mode],
red,
green,
blue
);
}
void AMDWraithPrismController::SetLogoMode(unsigned char mode, unsigned char speed, unsigned char brightness, bool random_color)
void AMDWraithPrismController::SetLogoMode(unsigned char mode, unsigned char speed, bool random_color)
{
current_logo_mode = mode;
current_logo_speed = speed_values_fan_logo[mode][speed];
current_logo_brightness = brightness;
current_logo_random_color = random_color;
}
@@ -191,19 +186,18 @@ void AMDWraithPrismController::SetLogoColor(unsigned char red, unsigned char gre
false,
current_logo_random_color,
current_logo_mode,
current_logo_brightness,
max_brightness_fan_logo[current_logo_mode],
red,
green,
blue
);
}
void AMDWraithPrismController::SetRingMode(unsigned char mode, unsigned char speed, unsigned char brightness, bool direction, bool random_color)
void AMDWraithPrismController::SetRingMode(unsigned char mode, unsigned char speed, bool direction, bool random_color)
{
current_ring_mode = mode;
current_ring_speed = speed_values_ring[mode][speed];
current_ring_direction = direction;
current_ring_brightness = brightness;
current_ring_random_color = random_color;
}
@@ -218,7 +212,7 @@ void AMDWraithPrismController::SetRingColor(unsigned char red, unsigned char gre
current_ring_direction,
current_ring_random_color,
mode_value_ring[current_ring_mode],
current_ring_brightness,
max_brightness_ring[current_ring_mode],
red,
green,
blue
@@ -12,8 +12,13 @@
#pragma once
#define AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX 0xFF
#define AMD_WRAITH_PRISM_FAN_BRIGHTNESS_CYCLE_MAX 0x7F
static const unsigned char max_brightness_fan_logo[] =
{
0x00,
0xFF,
0x7F,
0xFF
};
static const unsigned char speed_values_fan_logo[][5] =
{
@@ -23,6 +28,22 @@ static const unsigned char speed_values_fan_logo[][5] =
{ 0x3C, 0x37, 0x31, 0x2C, 0x26 }, /* Breathing */
};
static const unsigned char max_brightness_ring[] =
{
0xFF,
0xFF,
0x7F,
0x00,
0x00,
0x00,
0x00,
0xFF,
0xFF,
0xFF,
0xFF,
0xFF
};
static const unsigned char mode_value_ring[] =
{
0xFF,
@@ -100,13 +121,13 @@ public:
void SetRingEffectChannel(unsigned char channel);
void SetFanMode(unsigned char mode, unsigned char speed, unsigned char brightness, bool random_color);
void SetFanMode(unsigned char mode, unsigned char speed, bool random_color);
void SetFanColor(unsigned char red, unsigned char green, unsigned char blue);
void SetLogoMode(unsigned char mode, unsigned char speed, unsigned char brightness, bool random_color);
void SetLogoMode(unsigned char mode, unsigned char speed, bool random_color);
void SetLogoColor(unsigned char red, unsigned char green, unsigned char blue);
void SetRingMode(unsigned char mode, unsigned char speed, unsigned char brightness, bool direction, bool random_color);
void SetRingMode(unsigned char mode, unsigned char speed, bool direction, bool random_color);
void SetRingColor(unsigned char red, unsigned char green, unsigned char blue);
private:
@@ -116,17 +137,14 @@ private:
unsigned char current_fan_mode;
unsigned char current_fan_speed;
unsigned char current_fan_brightness;
bool current_fan_random_color;
unsigned char current_logo_mode;
unsigned char current_logo_speed;
unsigned char current_logo_brightness;
bool current_logo_random_color;
unsigned char current_ring_mode;
unsigned char current_ring_speed;
unsigned char current_ring_brightness;
bool current_ring_direction;
bool current_ring_random_color;
@@ -20,7 +20,7 @@ void DetectAMDWraithPrismControllers(hid_device_info* info, const std::string&)
hid_device* dev = hid_open_path(info->path);
if( dev )
{
AMDWraithPrismController* controller = new AMDWraithPrismController(dev, info->path);
AMDWraithPrismController* controller = new AMDWraithPrismController(dev, info->path);
RGBController_AMDWraithPrism* rgb_controller = new RGBController_AMDWraithPrism(controller);
// Constructor sets the name
ResourceManager::get()->RegisterRGBController(rgb_controller);
@@ -9,121 +9,87 @@
#include "RGBController_AMDWraithPrism.h"
/**------------------------------------------------------------------*\
@name AMD Wraith Prism
@type USB
@save :x:
@direct :white_check_mark:
@effects :warning:
@detectors DetectAMDWraithPrismControllers
@comment The Wraith Prism comes with 2 cables but is only detectable
and controlable when using the USB cable. `Morse Code` and `Mirage`
modes have not been implemented. Saving to flash is supported by
the device but not yet implemented.
\*-------------------------------------------------------------------*/
RGBController_AMDWraithPrism::RGBController_AMDWraithPrism(AMDWraithPrismController* controller_ptr)
RGBController_AMDWraithPrism::RGBController_AMDWraithPrism(AMDWraithPrismController* wraith_ptr)
{
controller = controller_ptr;
wraith = wraith_ptr;
name = "AMD Wraith Prism";
vendor = "Cooler Master";
type = DEVICE_TYPE_COOLER;
description = "AMD Wraith Prism Device";
version = controller->GetFirmwareVersionString();
location = controller->GetLocationString();
version = wraith->GetFirmwareVersionString();
location = wraith->GetLocationString();
/*-----------------------------------------------------*\
| Don't use HID serial string, it is inconsistent on my |
| Wraith Prism |
\*-----------------------------------------------------*/
serial = "";//controller->GetSerialString();
serial = "";//wraith->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_STATIC;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Direct.brightness_min = 0;
Direct.brightness_max = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX;
Direct.brightness = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX;
Direct.color_mode = MODE_COLORS_PER_LED;
Direct.name = "Direct";
Direct.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_STATIC;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Breathing.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Breathing.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Breathing.brightness_min = 0;
Breathing.brightness_max = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX;
Breathing.brightness = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX;
Breathing.color_mode = MODE_COLORS_PER_LED;
Breathing.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
Breathing.name = "Breathing";
Breathing.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Breathing.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Breathing.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Breathing.color_mode = MODE_COLORS_PER_LED;
Breathing.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(Breathing);
mode ColorCycle;
ColorCycle.name = "Color Cycle";
ColorCycle.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_COLOR_CYCLE;
ColorCycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_BRIGHTNESS;
ColorCycle.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
ColorCycle.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
ColorCycle.brightness_min = 0;
ColorCycle.brightness_max = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_CYCLE_MAX;
ColorCycle.brightness = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_CYCLE_MAX;
ColorCycle.color_mode = MODE_COLORS_NONE;
ColorCycle.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
ColorCycle.name = "Color Cycle";
ColorCycle.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_COLOR_CYCLE;
ColorCycle.flags = MODE_FLAG_HAS_SPEED;
ColorCycle.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
ColorCycle.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
ColorCycle.color_mode = MODE_COLORS_NONE;
ColorCycle.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(ColorCycle);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_BRIGHTNESS;
Rainbow.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Rainbow.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Rainbow.brightness_min = 0;
Rainbow.brightness_max = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX;
Rainbow.brightness = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX; //The Ring zone can not get brighter but Logo / Fan can
Rainbow.color_mode = MODE_COLORS_NONE;
Rainbow.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
Rainbow.name = "Rainbow";
Rainbow.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Rainbow.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Rainbow.color_mode = MODE_COLORS_NONE;
Rainbow.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(Rainbow);
mode Bounce;
Bounce.name = "Bounce";
Bounce.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_BOUNCE;
Bounce.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_BRIGHTNESS;
Bounce.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Bounce.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Bounce.brightness_min = 0;
Bounce.brightness_max = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX;
Bounce.brightness = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX; //The Ring zone can not get brighter but Logo / Fan can
Bounce.color_mode = MODE_COLORS_NONE;
Bounce.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
Bounce.name = "Bounce";
Bounce.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_BOUNCE;
Bounce.flags = MODE_FLAG_HAS_SPEED;
Bounce.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Bounce.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Bounce.color_mode = MODE_COLORS_NONE;
Bounce.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(Bounce);
mode Chase;
Chase.name = "Chase";
Chase.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_CHASE;
Chase.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Chase.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Chase.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Chase.brightness_min = 0;
Chase.brightness_max = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX;
Chase.brightness = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX;
Chase.color_mode = MODE_COLORS_PER_LED;
Chase.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
Chase.name = "Chase";
Chase.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_CHASE;
Chase.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Chase.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Chase.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Chase.color_mode = MODE_COLORS_PER_LED;
Chase.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(Chase);
mode Swirl;
Swirl.name = "Swirl";
Swirl.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_SWIRL;
Swirl.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Swirl.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Swirl.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Swirl.brightness_min = 0;
Swirl.brightness_max = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX;
Swirl.brightness = AMD_WRAITH_PRISM_FAN_BRIGHTNESS_DEFAULT_MAX;
Swirl.color_mode = MODE_COLORS_PER_LED;
Swirl.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
Swirl.name = "Swirl";
Swirl.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_SWIRL;
Swirl.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Swirl.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Swirl.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Swirl.color_mode = MODE_COLORS_PER_LED;
Swirl.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(Swirl);
SetupZones();
@@ -131,7 +97,7 @@ RGBController_AMDWraithPrism::RGBController_AMDWraithPrism(AMDWraithPrismControl
RGBController_AMDWraithPrism::~RGBController_AMDWraithPrism()
{
delete controller;
delete wraith;
}
void RGBController_AMDWraithPrism::SetupZones()
@@ -196,17 +162,17 @@ void RGBController_AMDWraithPrism::DeviceUpdateLEDs()
unsigned char red = RGBGetRValue(colors[0]);
unsigned char grn = RGBGetGValue(colors[0]);
unsigned char blu = RGBGetBValue(colors[0]);
controller->SetLogoColor(red, grn, blu);
wraith->SetLogoColor(red, grn, blu);
red = RGBGetRValue(colors[1]);
grn = RGBGetGValue(colors[1]);
blu = RGBGetBValue(colors[1]);
controller->SetFanColor(red, grn, blu);
wraith->SetFanColor(red, grn, blu);
red = RGBGetRValue(colors[2]);
grn = RGBGetGValue(colors[2]);
blu = RGBGetBValue(colors[2]);
controller->SetRingColor(red, grn, blu);
wraith->SetRingColor(red, grn, blu);
}
void RGBController_AMDWraithPrism::UpdateZoneLEDs(int zone)
@@ -218,15 +184,15 @@ void RGBController_AMDWraithPrism::UpdateZoneLEDs(int zone)
if(zone == 0)
{
controller->SetLogoColor(red, grn, blu);
wraith->SetLogoColor(red, grn, blu);
}
else if(zone == 1)
{
controller->SetFanColor(red, grn, blu);
wraith->SetFanColor(red, grn, blu);
}
else if(zone == 2)
{
controller->SetRingColor(red, grn, blu);
wraith->SetRingColor(red, grn, blu);
}
}
@@ -244,36 +210,32 @@ void RGBController_AMDWraithPrism::DeviceUpdateMode()
{
bool random = (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
controller->SetRingMode(modes[active_mode].value, modes[active_mode].speed, modes[active_mode].brightness, modes[active_mode].direction, random);
wraith->SetRingMode(modes[active_mode].value, modes[active_mode].speed, modes[active_mode].direction, random);
switch(modes[active_mode].value)
{
case AMD_WRAITH_PRISM_EFFECT_CHANNEL_COLOR_CYCLE:
controller->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, modes[active_mode].brightness, random);
controller->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, modes[active_mode].brightness, random);
break;
case AMD_WRAITH_PRISM_EFFECT_CHANNEL_RAINBOW:
case AMD_WRAITH_PRISM_EFFECT_CHANNEL_BOUNCE:
controller->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, (modes[active_mode].brightness >> 1), random);
controller->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, (modes[active_mode].brightness >> 1), random);
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, random);
break;
case AMD_WRAITH_PRISM_EFFECT_CHANNEL_BREATHING:
controller->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_BREATHING, modes[active_mode].speed, modes[active_mode].brightness, random);
controller->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_BREATHING, modes[active_mode].speed, modes[active_mode].brightness, random);
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_BREATHING, modes[active_mode].speed, random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_BREATHING, modes[active_mode].speed, random);
break;
default:
if(random)
{
controller->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, modes[active_mode].brightness, random);
controller->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, modes[active_mode].brightness, random);
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, random);
}
else
{
controller->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC, modes[active_mode].speed, modes[active_mode].brightness, random);
controller->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC, modes[active_mode].speed, modes[active_mode].brightness, random);
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC, modes[active_mode].speed, random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC, modes[active_mode].speed, random);
}
break;
}
@@ -1,33 +1,33 @@
/*-----------------------------------------*\
| RGBController_AMDWraithPrism.h |
| |
| Generic RGB Interface for AMD Wraith |
| Prism |
| |
| Adam Honse (CalcProgrammer1) 12/25/2019 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AMDWraithPrismController.h"
class RGBController_AMDWraithPrism : public RGBController
{
public:
RGBController_AMDWraithPrism(AMDWraithPrismController* controller_ptr);
~RGBController_AMDWraithPrism();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
AMDWraithPrismController* controller;
};
/*-----------------------------------------*\
| RGBController_AMDWraithPrism.h |
| |
| Generic RGB Interface for AMD Wraith |
| Prism |
| |
| Adam Honse (CalcProgrammer1) 12/25/2019 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AMDWraithPrismController.h"
class RGBController_AMDWraithPrism : public RGBController
{
public:
RGBController_AMDWraithPrism(AMDWraithPrismController* wraith_ptr);
~RGBController_AMDWraithPrism();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
AMDWraithPrismController* wraith;
};
@@ -10,9 +10,6 @@
#include "ASRockPolychromeSMBusController.h"
#include <cstring>
#include "dependencies/dmiinfo.h"
#include "LogManager.h"
#define ASROCK_ZONE_LED_COUNT_MESSAGE_EN "[%s] Zone %i LED count: %02d"
using namespace std::chrono_literals;
@@ -23,39 +20,36 @@ PolychromeController::PolychromeController(i2c_smbus_interface* bus, polychrome_
DMIInfo dmi;
device_name = "ASRock " + dmi.getMainboard();
fw_version = ReadFirmwareVersion();
unsigned char major_version = fw_version >> 8;
unsigned short fw_version = ReadFirmwareVersion();
unsigned char major_version = fw_version >> 8;
/*-----------------------------------------------------*\
| Determine whether the device uses ASR LED or |
| Polychrome protocol by checking firmware version. |
| Versions: 1.xx are ASR RGB LED |
| 2.xx are Polychrome v1 |
| 3.xx are Polychrome v2 |
| Versions 1.xx and 2.xx use ASR LED, 3.xx uses |
| Polychrome |
\*-----------------------------------------------------*/
switch(major_version)
{
case ASROCK_TYPE_ASRLED:
LOG_TRACE("[%s] Device type is ASR RGB LED", ASROCK_CONTROLLER_NAME);
device_name = "ASRock " + dmi.getMainboard();
asrock_type = ASROCK_TYPE_ASRLED;
memset(zone_led_count, 0, sizeof(zone_led_count));
break;
case ASROCK_TYPE_POLYCHROME_V1:
LOG_TRACE("[%s] Device type is Polychrome v1", ASROCK_CONTROLLER_NAME);
device_name = "ASRock " + dmi.getMainboard();
asrock_type = ASROCK_TYPE_POLYCHROME_V1;
ReadLEDConfiguration();
break;
case ASROCK_TYPE_POLYCHROME_V2:
LOG_TRACE("[%s] Device type is Polychrome v2", ASROCK_CONTROLLER_NAME);
device_name = "ASRock " + dmi.getMainboard();
asrock_type = ASROCK_TYPE_POLYCHROME_V2;
ReadLEDConfiguration();
break;
default:
LOG_TRACE("[%s] Got Unknown version!", ASROCK_CONTROLLER_NAME);
asrock_type = ASROCK_TYPE_UNKNOWN;
break;
}
@@ -88,6 +82,7 @@ std::string PolychromeController::GetDeviceName()
std::string PolychromeController::GetFirmwareVersion()
{
unsigned short fw_version = ReadFirmwareVersion();
unsigned char major_version = fw_version >> 8;
unsigned char minor_version = fw_version & 0xFF;
@@ -98,20 +93,17 @@ unsigned short PolychromeController::ReadFirmwareVersion()
{
// The firmware register holds two bytes, so the first read should return 2
// If not, report invalid firmware revision FFFF
LOG_DEBUG("[%s] Reading back device firmware version", ASROCK_CONTROLLER_NAME);
// Version response array needs to be 32 bytes to prevent non ASRock board from stack smashing
unsigned char asrock_version[I2C_SMBUS_BLOCK_MAX] = { 0x00, 0x00 };
if (bus->i2c_smbus_read_block_data(dev, ASROCK_REG_FIRMWARE_VER, asrock_version) == 0x02)
if (bus->i2c_smbus_read_byte_data(dev, ASROCK_REG_FIRMWARE_VER) == 0x02)
{
unsigned char major = asrock_version[0];
unsigned char minor = asrock_version[1];
std::this_thread::sleep_for(1ms);
unsigned char major = bus->i2c_smbus_read_byte(dev);
std::this_thread::sleep_for(1ms);
unsigned char minor = bus->i2c_smbus_read_byte(dev);
LOG_DEBUG("[%s] Device firmware version: v%02d.%02d", ASROCK_CONTROLLER_NAME, major, minor);
return((major << 8) | minor);
}
else
{
LOG_WARNING("[%s] Firmware readback failed; Returning 0xFFFF", ASROCK_CONTROLLER_NAME);
return(0xFFFF);
}
}
@@ -122,26 +114,23 @@ void PolychromeController::ReadLEDConfiguration()
| The LED configuration register holds 6 bytes, so the first read should return 6 |
| If not, set all zone sizes to zero |
\*---------------------------------------------------------------------------------*/
LOG_DEBUG("[%s] Reading LED config from controller", ASROCK_CONTROLLER_NAME);
unsigned char asrock_zone_count[I2C_SMBUS_BLOCK_MAX] = { 0x0, 0x0, 0x0, 0x0, 0x0, 0x0 };
if (bus->i2c_smbus_read_block_data(dev, POLYCHROME_REG_LED_CONFIG, asrock_zone_count) == 0x06)
if (bus->i2c_smbus_read_byte_data(dev, POLYCHROME_REG_LED_CONFIG) == 0x06)
{
zone_led_count[POLYCHROME_ZONE_1] = asrock_zone_count[0];
zone_led_count[POLYCHROME_ZONE_2] = asrock_zone_count[1];
zone_led_count[POLYCHROME_ZONE_3] = asrock_zone_count[2];
zone_led_count[POLYCHROME_ZONE_4] = asrock_zone_count[3];
zone_led_count[POLYCHROME_ZONE_5] = asrock_zone_count[4];
zone_led_count[POLYCHROME_ZONE_ADDRESSABLE] = asrock_zone_count[5];
LOG_DEBUG(ASROCK_ZONE_LED_COUNT_MESSAGE_EN, ASROCK_CONTROLLER_NAME, POLYCHROME_ZONE_1, zone_led_count[POLYCHROME_ZONE_1]);
LOG_DEBUG(ASROCK_ZONE_LED_COUNT_MESSAGE_EN, ASROCK_CONTROLLER_NAME, POLYCHROME_ZONE_2, zone_led_count[POLYCHROME_ZONE_2]);
LOG_DEBUG(ASROCK_ZONE_LED_COUNT_MESSAGE_EN, ASROCK_CONTROLLER_NAME, POLYCHROME_ZONE_3, zone_led_count[POLYCHROME_ZONE_3]);
LOG_DEBUG(ASROCK_ZONE_LED_COUNT_MESSAGE_EN, ASROCK_CONTROLLER_NAME, POLYCHROME_ZONE_4, zone_led_count[POLYCHROME_ZONE_4]);
LOG_DEBUG(ASROCK_ZONE_LED_COUNT_MESSAGE_EN, ASROCK_CONTROLLER_NAME, POLYCHROME_ZONE_5, zone_led_count[POLYCHROME_ZONE_5]);
LOG_DEBUG("[%s] Addressable Zone LED count: %02d", ASROCK_CONTROLLER_NAME, zone_led_count[POLYCHROME_ZONE_ADDRESSABLE]);
std::this_thread::sleep_for(1ms);
zone_led_count[POLYCHROME_ZONE_1] = bus->i2c_smbus_read_byte(dev);
std::this_thread::sleep_for(1ms);
zone_led_count[POLYCHROME_ZONE_2] = bus->i2c_smbus_read_byte(dev);
std::this_thread::sleep_for(1ms);
zone_led_count[POLYCHROME_ZONE_3] = bus->i2c_smbus_read_byte(dev);
std::this_thread::sleep_for(1ms);
zone_led_count[POLYCHROME_ZONE_4] = bus->i2c_smbus_read_byte(dev);
std::this_thread::sleep_for(1ms);
zone_led_count[POLYCHROME_ZONE_5] = bus->i2c_smbus_read_byte(dev);
std::this_thread::sleep_for(1ms);
zone_led_count[POLYCHROME_ZONE_ADDRESSABLE] = bus->i2c_smbus_read_byte(dev);
}
else
{
LOG_WARNING("[%s] LED config read failed", ASROCK_CONTROLLER_NAME);
memset(zone_led_count, 0, sizeof(zone_led_count));
}
}
@@ -15,11 +15,6 @@
typedef unsigned char polychrome_dev_id;
#define ASROCK_CONTROLLER_NAME "ASRock Polychrome SMBus Controller"
#define ASROCK_DETECTOR_NAME "ASRock Polychrome SMBus Detect"
#define VENDOR_NAME "ASRock"
#define SMBUS_ADDRESS 0x6A
enum
{
ASROCK_TYPE_UNKNOWN = 0x00, /* Unknown Type or Not ASRock Device */
@@ -191,53 +186,9 @@ enum
enum
{
POLYCHROME_V2_BREATHING_SPEED_MIN = 0x0A, /* Slowest speed */
POLYCHROME_V2_BREATHING_SPEED_DEFAULT = 0x06, /* Default speed */
POLYCHROME_V2_BREATHING_SPEED_MAX = 0x02, /* Fastest speed */
POLYCHROME_V2_STROBE_SPEED_MIN = 0xA0, /* Slowest speed */
POLYCHROME_V2_STROBE_SPEED_DEFAULT = 0x4D, /* Default speed */
POLYCHROME_V2_STROBE_SPEED_MAX = 0x05, /* Fastest speed */
POLYCHROME_V2_SPECTRUM_CYCLE_SPEED_MIN = 0xA0, /* Slowest speed */
POLYCHROME_V2_SPECTRUM_CYCLE_SPEED_DEFAULT = 0x50, /* Default speed */
POLYCHROME_V2_SPECTRUM_CYCLE_SPEED_MAX = 0x0A, /* Fastest speed */
POLYCHROME_V2_RANDOM_SPEED_MIN = 0xA0, /* Slowest speed */
POLYCHROME_V2_RANDOM_SPEED_DEFAULT = 0x4D, /* Default speed */
POLYCHROME_V2_RANDOM_SPEED_MAX = 0x05, /* Fastest speed */
POLYCHROME_V2_WAVE_SPEED_MIN = 0x06, /* Slowest speed */
POLYCHROME_V2_WAVE_SPEED_DEFAULT = 0x03, /* Default speed */
POLYCHROME_V2_WAVE_SPEED_MAX = 0x01, /* Fastest speed */
POLYCHROME_V2_SPRING_SPEED_MIN = 0x20, /* Slowest speed */
POLYCHROME_V2_SPRING_SPEED_DEFAULT = 0x11, /* Default speed */
POLYCHROME_V2_SPRING_SPEED_MAX = 0x02, /* Fastest speed */
POLYCHROME_V2_STACK_SPEED_MIN = 0x20, /* Slowest speed */
POLYCHROME_V2_STACK_SPEED_DEFAULT = 0x11, /* Default speed */
POLYCHROME_V2_STACK_SPEED_MAX = 0x02, /* Fastest speed */
POLYCHROME_V2_CRAM_SPEED_MIN = 0x20, /* Slowest speed */
POLYCHROME_V2_CRAM_SPEED_DEFAULT = 0x11, /* Default speed */
POLYCHROME_V2_CRAM_SPEED_MAX = 0x02, /* Fastest speed */
POLYCHROME_V2_SCAN_SPEED_MIN = 0x20, /* Slowest speed */
POLYCHROME_V2_SCAN_SPEED_DEFAULT = 0x11, /* Default speed */
POLYCHROME_V2_SCAN_SPEED_MAX = 0x02, /* Fastest speed */
POLYCHROME_V2_NEON_SPEED_MIN = 0x20, /* Slowest speed */
POLYCHROME_V2_NEON_SPEED_DEFAULT = 0x11, /* Default speed */
POLYCHROME_V2_NEON_SPEED_MAX = 0x02, /* Fastest speed */
POLYCHROME_V2_WATER_SPEED_MIN = 0x20, /* Slowest speed */
POLYCHROME_V2_WATER_SPEED_DEFAULT = 0x11, /* Default speed */
POLYCHROME_V2_WATER_SPEED_MAX = 0x02, /* Fastest speed */
POLYCHROME_V2_RAINBOW_SPEED_MIN = 0x12, /* Slowest speed */
POLYCHROME_V2_RAINBOW_SPEED_DEFAULT = 0x08, /* Default speed */
POLYCHROME_V2_RAINBOW_SPEED_MAX = 0x02, /* Fastest speed */
POLYCHROME_V2_SPEED_MIN = 0x05, /* Slowest speed */
POLYCHROME_V2_SPEED_DEFAULT = 0x03, /* Default speed */
POLYCHROME_V2_SPEED_MAX = 0x00, /* Fastest speed */
};
class PolychromeController
@@ -258,7 +209,6 @@ public:
private:
unsigned int asrock_type;
unsigned short fw_version;
std::string device_name;
unsigned char active_zone;
unsigned char active_mode;
@@ -1,6 +1,5 @@
#include "Detector.h"
#include "ASRockPolychromeSMBusController.h"
#include "LogManager.h"
#include "RGBController.h"
#include "RGBController_ASRockPolychromeSMBus.h"
#include "i2c_smbus.h"
@@ -47,40 +46,28 @@ bool TestForPolychromeSMBusController(i2c_smbus_interface* bus, unsigned char ad
void DetectPolychromeSMBusControllers(std::vector<i2c_smbus_interface*>& busses)
{
for(unsigned int bus = 0; bus < busses.size(); bus++)
PolychromeController* new_polychrome;
RGBController_Polychrome* new_controller;
for (unsigned int bus = 0; bus < busses.size(); bus++)
{
IF_MOBO_SMBUS(busses[bus]->pci_vendor, busses[bus]->pci_device)
{
if(busses[bus]->pci_subsystem_vendor == ASROCK_SUB_VEN)
// Check for Polychrome controller at 0x6A
if (TestForPolychromeSMBusController(busses[bus], 0x6A))
{
LOG_DEBUG(SMBUS_CHECK_DEVICE_MESSAGE_EN, ASROCK_DETECTOR_NAME, bus, VENDOR_NAME, SMBUS_ADDRESS);
// Check for Polychrome controller at 0x6A
if(TestForPolychromeSMBusController(busses[bus], SMBUS_ADDRESS))
{
LOG_DEBUG("[%s] Detected a device at address %02X, testing for a known controller", ASROCK_DETECTOR_NAME, SMBUS_ADDRESS);
PolychromeController* controller = new PolychromeController(busses[bus], SMBUS_ADDRESS);
new_polychrome = new PolychromeController(busses[bus], 0x6A);
if(controller->GetASRockType() != ASROCK_TYPE_UNKNOWN)
{
LOG_DEBUG("[%s] Found a known Polychrome device", ASROCK_DETECTOR_NAME);
RGBController_Polychrome* rgb_controller = new RGBController_Polychrome(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
else
{
LOG_DEBUG("[%s] Not a Polychrome device or unknown type", ASROCK_DETECTOR_NAME);
delete controller;
}
if(new_polychrome->GetASRockType() != ASROCK_TYPE_UNKNOWN)
{
new_controller = new RGBController_Polychrome(new_polychrome);
ResourceManager::get()->RegisterRGBController(new_controller);
}
else
{
LOG_DEBUG("[%s] Bus %02d no response at %02X", ASROCK_DETECTOR_NAME, bus, SMBUS_ADDRESS);
delete new_polychrome;
}
}
else
{
LOG_DEBUG(SMBUS_CHECK_DEVICE_FAILURE_EN, ASROCK_DETECTOR_NAME, bus, VENDOR_NAME);
}
}
}
@@ -32,32 +32,21 @@ static const char* polychrome_v2_zone_names[] =
"Addressable Header"
};
/**------------------------------------------------------------------*\
@name ASRock Polychrome SMBus
@type SMBus
@save :warning:
@direct :x:
@effects :white_check_mark:
@detectors DetectPolychromeSMBusControllers
@comment ASRock Polychrome controllers will save with each update.
Per ARGB LED support is not possible with these devices.
\*-------------------------------------------------------------------*/
RGBController_Polychrome::RGBController_Polychrome(PolychromeController* controller_ptr)
RGBController_Polychrome::RGBController_Polychrome(PolychromeController* polychrome_ptr)
{
controller = controller_ptr;
polychrome = polychrome_ptr;
name = controller->GetDeviceName();
name = polychrome->GetDeviceName();
vendor = "ASRock";
version = controller->GetFirmwareVersion();
version = polychrome->GetFirmwareVersion();
type = DEVICE_TYPE_MOTHERBOARD;
location = controller->GetDeviceLocation();
location = polychrome->GetDeviceLocation();
switch(controller->GetASRockType())
switch(polychrome->GetASRockType())
{
case ASROCK_TYPE_ASRLED:
{
description = "ASRock ASR RGB LED Device";
description = "ASRock ASR LED Device";
mode Off;
Off.name = "Off";
@@ -306,9 +295,9 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
Breathing.name = "Breathing";
Breathing.value = POLYCHROME_V2_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.speed_min = POLYCHROME_V2_BREATHING_SPEED_MIN;
Breathing.speed_max = POLYCHROME_V2_BREATHING_SPEED_MAX;
Breathing.speed = POLYCHROME_V2_BREATHING_SPEED_DEFAULT;
Breathing.speed_min = POLYCHROME_V2_SPEED_MIN;
Breathing.speed_max = POLYCHROME_V2_SPEED_MAX;
Breathing.speed = POLYCHROME_V2_SPEED_DEFAULT;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
@@ -316,9 +305,9 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
Strobe.name = "Strobe";
Strobe.value = POLYCHROME_V2_MODE_STROBE;
Strobe.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Strobe.speed_min = POLYCHROME_V2_STROBE_SPEED_MIN;
Strobe.speed_max = POLYCHROME_V2_STROBE_SPEED_MAX;
Strobe.speed = POLYCHROME_V2_STROBE_SPEED_DEFAULT;
Strobe.speed_min = POLYCHROME_V2_SPEED_MIN;
Strobe.speed_max = POLYCHROME_V2_SPEED_MAX;
Strobe.speed = POLYCHROME_V2_SPEED_DEFAULT;
Strobe.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Strobe);
@@ -326,9 +315,9 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = POLYCHROME_V2_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED;
SpectrumCycle.speed_min = POLYCHROME_V2_SPECTRUM_CYCLE_SPEED_MIN;
SpectrumCycle.speed_max = POLYCHROME_V2_SPECTRUM_CYCLE_SPEED_MAX;
SpectrumCycle.speed = POLYCHROME_V2_SPECTRUM_CYCLE_SPEED_DEFAULT;
SpectrumCycle.speed_min = POLYCHROME_V2_SPEED_MIN;
SpectrumCycle.speed_max = POLYCHROME_V2_SPEED_MAX;
SpectrumCycle.speed = POLYCHROME_V2_SPEED_DEFAULT;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
@@ -336,9 +325,9 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
Random.name = "Random";
Random.value = POLYCHROME_V2_MODE_RANDOM;
Random.flags = MODE_FLAG_HAS_SPEED;
Random.speed_min = POLYCHROME_V2_RANDOM_SPEED_MIN;
Random.speed_max = POLYCHROME_V2_RANDOM_SPEED_MAX;
Random.speed = POLYCHROME_V2_RANDOM_SPEED_DEFAULT;
Random.speed_min = POLYCHROME_V2_SPEED_MIN;
Random.speed_max = POLYCHROME_V2_SPEED_MAX;
Random.speed = POLYCHROME_V2_SPEED_DEFAULT;
Random.color_mode = MODE_COLORS_NONE;
modes.push_back(Random);
@@ -346,9 +335,9 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
Wave.name = "Wave";
Wave.value = POLYCHROME_V2_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_SPEED;
Wave.speed_min = POLYCHROME_V2_WAVE_SPEED_MIN;
Wave.speed_max = POLYCHROME_V2_WAVE_SPEED_MAX;
Wave.speed = POLYCHROME_V2_WAVE_SPEED_DEFAULT;
Wave.speed_min = POLYCHROME_V2_SPEED_MIN;
Wave.speed_max = POLYCHROME_V2_SPEED_MAX;
Wave.speed = POLYCHROME_V2_SPEED_DEFAULT;
Wave.color_mode = MODE_COLORS_NONE;
modes.push_back(Wave);
@@ -356,9 +345,9 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
Spring.name = "Spring";
Spring.value = POLYCHROME_V2_MODE_SPRING;
Spring.flags = MODE_FLAG_HAS_SPEED;
Spring.speed_min = POLYCHROME_V2_SPRING_SPEED_MIN;
Spring.speed_max = POLYCHROME_V2_SPRING_SPEED_MAX;
Spring.speed = POLYCHROME_V2_SPRING_SPEED_DEFAULT;
Spring.speed_min = POLYCHROME_V2_SPEED_MIN;
Spring.speed_max = POLYCHROME_V2_SPEED_MAX;
Spring.speed = POLYCHROME_V2_SPEED_DEFAULT;
Spring.color_mode = MODE_COLORS_NONE;
modes.push_back(Spring);
@@ -366,9 +355,9 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
Stack.name = "Stack";
Stack.value = POLYCHROME_V2_MODE_STACK;
Stack.flags = MODE_FLAG_HAS_SPEED;
Stack.speed_min = POLYCHROME_V2_STACK_SPEED_MIN;
Stack.speed_max = POLYCHROME_V2_STACK_SPEED_MAX;
Stack.speed = POLYCHROME_V2_STACK_SPEED_DEFAULT;
Stack.speed_min = POLYCHROME_V2_SPEED_MIN;
Stack.speed_max = POLYCHROME_V2_SPEED_MAX;
Stack.speed = POLYCHROME_V2_SPEED_DEFAULT;
Stack.color_mode = MODE_COLORS_NONE;
modes.push_back(Stack);
@@ -376,9 +365,9 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
Cram.name = "Cram";
Cram.value = POLYCHROME_V2_MODE_CRAM;
Cram.flags = MODE_FLAG_HAS_SPEED;
Cram.speed_min = POLYCHROME_V2_CRAM_SPEED_MIN;
Cram.speed_max = POLYCHROME_V2_CRAM_SPEED_MAX;
Cram.speed = POLYCHROME_V2_CRAM_SPEED_DEFAULT;
Cram.speed_min = POLYCHROME_V2_SPEED_MIN;
Cram.speed_max = POLYCHROME_V2_SPEED_MAX;
Cram.speed = POLYCHROME_V2_SPEED_DEFAULT;
Cram.color_mode = MODE_COLORS_NONE;
modes.push_back(Cram);
@@ -386,19 +375,16 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
Scan.name = "Scan";
Scan.value = POLYCHROME_V2_MODE_SCAN;
Scan.flags = MODE_FLAG_HAS_SPEED;
Scan.speed_min = POLYCHROME_V2_SCAN_SPEED_MIN;
Scan.speed_max = POLYCHROME_V2_SCAN_SPEED_MAX;
Scan.speed = POLYCHROME_V2_SCAN_SPEED_DEFAULT;
Scan.speed_min = POLYCHROME_V2_SPEED_MIN;
Scan.speed_max = POLYCHROME_V2_SPEED_MAX;
Scan.speed = POLYCHROME_V2_SPEED_DEFAULT;
Scan.color_mode = MODE_COLORS_NONE;
modes.push_back(Scan);
mode Neon;
Neon.name = "Neon";
Neon.value = POLYCHROME_V2_MODE_NEON;
Neon.flags = MODE_FLAG_HAS_SPEED;
Neon.speed_min = POLYCHROME_V2_NEON_SPEED_MIN;
Neon.speed_max = POLYCHROME_V2_NEON_SPEED_MAX;
Neon.speed = POLYCHROME_V2_NEON_SPEED_DEFAULT;
Neon.flags = 0;
Neon.color_mode = MODE_COLORS_NONE;
modes.push_back(Neon);
@@ -406,9 +392,9 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
Water.name = "Water";
Water.value = POLYCHROME_V2_MODE_WATER;
Water.flags = MODE_FLAG_HAS_SPEED;
Water.speed_min = POLYCHROME_V2_WATER_SPEED_MIN;
Water.speed_max = POLYCHROME_V2_WATER_SPEED_MAX;
Water.speed = POLYCHROME_V2_WATER_SPEED_DEFAULT;
Water.speed_min = POLYCHROME_V2_SPEED_MIN;
Water.speed_max = POLYCHROME_V2_SPEED_MAX;
Water.speed = POLYCHROME_V2_SPEED_DEFAULT;
Water.color_mode = MODE_COLORS_NONE;
modes.push_back(Water);
@@ -416,9 +402,9 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
Rainbow.name = "Rainbow";
Rainbow.value = POLYCHROME_V2_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = POLYCHROME_V2_RAINBOW_SPEED_MIN;
Rainbow.speed_max = POLYCHROME_V2_RAINBOW_SPEED_MAX;
Rainbow.speed = POLYCHROME_V2_RAINBOW_SPEED_DEFAULT;
Rainbow.speed_min = POLYCHROME_V2_SPEED_MIN;
Rainbow.speed_max = POLYCHROME_V2_SPEED_MAX;
Rainbow.speed = POLYCHROME_V2_SPEED_DEFAULT;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
}
@@ -430,12 +416,12 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* control
RGBController_Polychrome::~RGBController_Polychrome()
{
delete controller;
delete polychrome;
}
void RGBController_Polychrome::SetupZones()
{
switch(controller->GetASRockType())
switch(polychrome->GetASRockType())
{
/*---------------------------------------------------------*\
| ASR LED motherboards only have a single zone/LED |
@@ -491,14 +477,14 @@ void RGBController_Polychrome::SetupZones()
\*---------------------------------------------------------*/
for(unsigned int zone_idx = 0; zone_idx < POLYCHROME_ZONE_COUNT; zone_idx++)
{
if(controller->zone_led_count[zone_idx] > 0)
if(polychrome->zone_led_count[zone_idx] > 0)
{
zone* new_zone = new zone();
/*---------------------------------------------------------*\
| Set zone name to channel name |
\*---------------------------------------------------------*/
if(controller->GetASRockType() == ASROCK_TYPE_POLYCHROME_V1)
if(polychrome->GetASRockType() == ASROCK_TYPE_POLYCHROME_V1)
{
new_zone->name = polychrome_v1_zone_names[zone_idx];
}
@@ -515,9 +501,9 @@ void RGBController_Polychrome::SetupZones()
}
else
{
new_zone->leds_min = controller->zone_led_count[zone_idx];
new_zone->leds_max = controller->zone_led_count[zone_idx];
new_zone->leds_count = controller->zone_led_count[zone_idx];
new_zone->leds_min = polychrome->zone_led_count[zone_idx];
new_zone->leds_max = polychrome->zone_led_count[zone_idx];
new_zone->leds_count = polychrome->zone_led_count[zone_idx];
}
if(new_zone->leds_count > 1)
@@ -544,16 +530,16 @@ void RGBController_Polychrome::SetupZones()
\*---------------------------------------------------------*/
for(unsigned int zone_idx = 0; zone_idx < POLYCHROME_ZONE_COUNT; zone_idx++)
{
if(controller->zone_led_count[zone_idx] > 0)
if(polychrome->zone_led_count[zone_idx] > 0)
{
for(unsigned int led_idx = 0; led_idx < controller->zone_led_count[zone_idx]; led_idx++)
for(unsigned int led_idx = 0; led_idx < polychrome->zone_led_count[zone_idx]; led_idx++)
{
/*---------------------------------------------------------*\
| Each zone only has one LED |
\*---------------------------------------------------------*/
led* new_led = new led();
if(controller->GetASRockType() == ASROCK_TYPE_POLYCHROME_V1)
if(polychrome->GetASRockType() == ASROCK_TYPE_POLYCHROME_V1)
{
new_led->name = polychrome_v1_zone_names[zone_idx];
}
@@ -565,7 +551,7 @@ void RGBController_Polychrome::SetupZones()
new_led->name.append(" " + std::to_string(led_idx + 1));
new_led->value = 0;
if(controller->GetASRockType() == ASROCK_TYPE_POLYCHROME_V1)
if(polychrome->GetASRockType() == ASROCK_TYPE_POLYCHROME_V1)
{
new_led->value = zone_idx;
}
@@ -630,7 +616,7 @@ void RGBController_Polychrome::UpdateSingleLED(int led)
led = leds[led].value;
}
controller->SetColorsAndSpeed(led, red, grn, blu);
polychrome->SetColorsAndSpeed(led, red, grn, blu);
}
void RGBController_Polychrome::SetCustomMode()
@@ -640,16 +626,16 @@ void RGBController_Polychrome::SetCustomMode()
void RGBController_Polychrome::DeviceUpdateMode()
{
if(controller->GetASRockType() == ASROCK_TYPE_POLYCHROME_V1)
if(polychrome->GetASRockType() == ASROCK_TYPE_POLYCHROME_V1)
{
for(unsigned int led_idx = 0; led_idx < leds.size(); led_idx++)
for(unsigned int led_idx = 0; led_idx <= leds.size(); led_idx++)
{
controller->SetMode(led_idx, modes[active_mode].value, modes[active_mode].speed);
polychrome->SetMode(led_idx, modes[active_mode].value, modes[active_mode].speed);
}
}
else
{
controller->SetMode(0, modes[active_mode].value, modes[active_mode].speed);
polychrome->SetMode(0, modes[active_mode].value, modes[active_mode].speed);
}
DeviceUpdateLEDs();
@@ -1,34 +1,34 @@
/*-----------------------------------------*\
| RGBController_ASRockPolychromeSMBus.h |
| |
| Generic RGB Interface for OpenRGB |
| ASRock ASR LED and Polychrome RGB Driver |
| |
| Adam Honse (CalcProgrammer1) 12/15/2019 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "ASRockPolychromeSMBusController.h"
class RGBController_Polychrome : public RGBController
{
public:
RGBController_Polychrome(PolychromeController* controller_ptr);
~RGBController_Polychrome();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
PolychromeController* controller;
};
/*-----------------------------------------*\
| RGBController_ASRockPolychromeSMBus.h |
| |
| Generic RGB Interface for OpenRGB |
| ASRock ASR LED and Polychrome RGB Driver |
| |
| Adam Honse (CalcProgrammer1) 12/15/2019 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "ASRockPolychromeSMBusController.h"
class RGBController_Polychrome : public RGBController
{
public:
RGBController_Polychrome(PolychromeController* polychrome_ptr);
~RGBController_Polychrome();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
PolychromeController* polychrome;
};
@@ -76,19 +76,11 @@ void PolychromeUSBController::SetDeviceInfo()
{
if(configtable[zonecnt] == 0x1E)
{
/*-----------------------------------------------------------------------*\
| If we don't have this device type (0x1E) we will skip it and continue. |
\*-----------------------------------------------------------------------*/
continue;
break;
}
newdev_info.num_leds = configtable[zonecnt];
/*--------------------------------------------------------------------------------------------------*\
| We will need to know what zone type this is, so that we can look up the name and make calls later. |
\*--------------------------------------------------------------------------------------------------*/
newdev_info.zone_type = zonecnt;
switch (zonecnt)
{
/*-----------------------------------------*\
@@ -132,12 +124,6 @@ void PolychromeUSBController::WriteZone
bool allzone = false
)
{
/*----------------------------------------------------*\
| Get the device info so we can look up the zone type. |
\*----------------------------------------------------*/
PolychromeDeviceInfo device_info = GetPolychromeDevices()[zone];
unsigned char usb_buf[65];
/*-----------------------------------------------------*\
@@ -149,7 +135,7 @@ void PolychromeUSBController::WriteZone
| Set up message packet with leading 00 |
\*-----------------------------------------------------*/
usb_buf[0x01] = POLYCHROME_USB_SET_ZONE;
usb_buf[0x03] = device_info.zone_type;
usb_buf[0x03] = zone;
usb_buf[0x04] = mode;
usb_buf[0x05] = RGBGetRValue(rgb);
usb_buf[0x06] = RGBGetGValue(rgb);
@@ -225,13 +211,9 @@ void PolychromeUSBController::WriteHeader
PolychromeZoneInfo PolychromeUSBController::GetZoneConfig(unsigned char zone)
{
/*-----------------------------------------------------*\
| Get the device info so we can look up the zone type |
\*-----------------------------------------------------*/
PolychromeDeviceInfo device_info = GetPolychromeDevices()[zone];
unsigned char usb_buf[65];
PolychromeZoneInfo zoneinfo;
//unsigned char all;
unsigned char r;
unsigned char g;
unsigned char b;
@@ -245,7 +227,7 @@ PolychromeZoneInfo PolychromeUSBController::GetZoneConfig(unsigned char zone)
| Set up config table request packet |
\*-----------------------------------------------------*/
usb_buf[0x01] = POLYCHROME_USB_READ_ZONE_CONFIG;
usb_buf[0x03] = device_info.zone_type;
usb_buf[0x03] = zone;
/*-----------------------------------------------------*\
| Send packet |
@@ -266,6 +248,7 @@ PolychromeZoneInfo PolychromeUSBController::GetZoneConfig(unsigned char zone)
zoneinfo.color = ToRGBColor(r,g,b);
zoneinfo.speed = usb_buf[0x08];
zoneinfo.zone = usb_buf[0x03];
//all = usb_buf[0x10];
return(zoneinfo);
}
@@ -99,7 +99,6 @@ struct PolychromeDeviceInfo
{
unsigned char effect_channel;
unsigned char num_leds;
unsigned char zone_type;
PolychromeDeviceType device_type;
};
@@ -13,26 +13,15 @@
#define ASROCK_USB_MAX_ZONES 8
#define ASROCK_ADDRESSABLE_MAX_LEDS 100
/**------------------------------------------------------------------*\
@name ASrock Polychrome USB
@type USB
@save :warning:
@direct :x:
@effects :white_check_mark:
@detectors DetectPolychromeUSBControllers
@comment ASRock Polychrome controllers will save with each update.
Per ARGB LED support is not possible with these devices.
\*-------------------------------------------------------------------*/
RGBController_PolychromeUSB::RGBController_PolychromeUSB(PolychromeUSBController* controller_ptr)
RGBController_PolychromeUSB::RGBController_PolychromeUSB(PolychromeUSBController* polychrome_ptr)
{
controller = controller_ptr;
polychrome = polychrome_ptr;
name = controller->GetDeviceName();
name = polychrome->GetDeviceName();
description = "ASRock Polychrome USB Device";
vendor = "ASRock";
type = DEVICE_TYPE_MOTHERBOARD;
location = controller->GetDeviceLocation();
location = polychrome->GetDeviceLocation();
mode Off;
Off.name = "Off";
@@ -187,27 +176,27 @@ void RGBController_PolychromeUSB::SetupZones()
\*-------------------------------------------------*/
leds.clear();
colors.clear();
zones.resize(controller->GetChannelCount());
zones.resize(polychrome->GetChannelCount());
/*-------------------------------------------------*\
| Set zones and leds |
\*-------------------------------------------------*/
for(unsigned int channel_idx = 0; channel_idx < zones.size(); channel_idx++)
{
PolychromeDeviceInfo device_info = controller->GetPolychromeDevices()[channel_idx];
PolychromeDeviceInfo device_info = polychrome->GetPolychromeDevices()[channel_idx];
zones[channel_idx].type = ZONE_TYPE_LINEAR;
if(device_info.device_type== PolychromeDeviceType::ADDRESSABLE)
{
zones[channel_idx].name = polychrome_USB_zone_names[device_info.zone_type];
zones[channel_idx].name = polychrome_USB_zone_names[channel_idx];
zones[channel_idx].leds_min = 0;
zones[channel_idx].leds_max = ASROCK_ADDRESSABLE_MAX_LEDS;
zones[channel_idx].leds_count = device_info.num_leds;
}
else if(device_info.device_type==PolychromeDeviceType::FIXED)
{
zones[channel_idx].name = polychrome_USB_zone_names[device_info.zone_type];
zones[channel_idx].name = polychrome_USB_zone_names[channel_idx];
zones[channel_idx].leds_min = device_info.num_leds;
zones[channel_idx].leds_max = device_info.num_leds;
zones[channel_idx].leds_count = device_info.num_leds;
@@ -237,7 +226,7 @@ void RGBController_PolychromeUSB::SetupZones()
{
unsigned char led = (unsigned char)leds[led_idx].value;
colors[led_idx] = controller->GetZoneConfig(led).color; // TODO Get addressable instead of zone idx
colors[led_idx] = polychrome->GetZoneConfig(led).color; // TODO Get addressable instead of zone idx
}
/*---------------------------------------------------------*\
@@ -247,7 +236,7 @@ void RGBController_PolychromeUSB::SetupZones()
for (unsigned int channel_idx = 0; channel_idx < zones.size(); channel_idx++)
{
PolychromeZoneInfo zoneinfo;
zoneinfo = controller->GetZoneConfig(channel_idx);
zoneinfo = polychrome->GetZoneConfig(channel_idx);
zones_info.push_back(zoneinfo);
}
@@ -284,7 +273,7 @@ void RGBController_PolychromeUSB::DeviceUpdateLEDs()
set_mode = active_mode;
}
controller->WriteZone(zone_idx, set_mode, zones_info[zone_idx].speed, zones[zone_idx].colors[0], false);
polychrome->WriteZone(zone_idx, set_mode, zones_info[zone_idx].speed, zones[zone_idx].colors[0], false);
}
}
@@ -297,7 +286,7 @@ void RGBController_PolychromeUSB::UpdateZoneLEDs(int zone)
set_mode = active_mode;
}
controller->WriteZone(zone, set_mode, zones_info[zone].speed, zones[zone].colors[0], false);
polychrome->WriteZone(zone, set_mode, zones_info[zone].speed, zones[zone].colors[0], false);
}
void RGBController_PolychromeUSB::UpdateSingleLED(int led)
@@ -310,14 +299,14 @@ void RGBController_PolychromeUSB::UpdateSingleLED(int led)
set_mode = active_mode;
}
controller->WriteZone(channel, set_mode, zones_info[channel].speed, zones[channel].colors[0], false);
polychrome->WriteZone(channel, set_mode, zones_info[channel].speed, zones[channel].colors[0], false);
}
unsigned char RGBController_PolychromeUSB::GetDeviceMode(unsigned char zone)
{
int dev_mode;
dev_mode = controller->GetZoneConfig(zone).mode;
dev_mode = polychrome->GetZoneConfig(zone).mode;
active_mode = dev_mode;
return(active_mode);
@@ -343,7 +332,7 @@ void RGBController_PolychromeUSB::DeviceUpdateMode()
set_mode = active_mode;
}
controller->WriteZone(zone_idx, set_mode, zones_info[zone_idx].speed, zones[zone_idx].colors[0], false);
polychrome->WriteZone(zone_idx, set_mode, zones_info[zone_idx].speed, zones[zone_idx].colors[0], false);
}
}
}
@@ -15,7 +15,7 @@
class RGBController_PolychromeUSB : public RGBController
{
public:
RGBController_PolychromeUSB(PolychromeUSBController* controller_ptr);
RGBController_PolychromeUSB(PolychromeUSBController* polychrome_ptr);
void SetupZones();
@@ -30,7 +30,7 @@ public:
private:
bool initializedMode;
PolychromeUSBController* controller;
PolychromeUSBController* polychrome;
std::vector<PolychromeZoneInfo> zones_info;
unsigned char GetDeviceMode(unsigned char zone);
@@ -1,826 +0,0 @@
/*-----------------------------------------*\
| AlienwareController.cpp |
| |
| Driver for Alienware lighting controller |
| |
| Gabriel Marcano (gemarcano) 4/21/2021 |
\*-----------------------------------------*/
#include "RGBController.h"
#include "AlienwareController.h"
#include <cstring>
#include <cstdint>
#include <map>
#include <thread>
#include <chrono>
#include <algorithm>
#include <sstream>
typedef uint32_t alienware_platform_id;
/*---------------------------------------------------------*\
| Some devices appear to report the wrong number of zones. |
| Record that here. |
\*---------------------------------------------------------*/
static const std::map<alienware_platform_id, uint8_t> zone_quirks_table =
{
{ 0x0C01, 4 }, // Dell G5 SE 5505
{ 0x0A01, 16 } // Dell G7 15 7500
};
/*---------------------------------------------------------*\
| Add zones for devices here, mapping the platform ID to |
| the zone names |
\*---------------------------------------------------------*/
static const std::map<alienware_platform_id, std::vector<const char*>> zone_names_table =
{
{ 0x0C01, { "Left", "Middle", "Right", "Numpad" } },
{ 0x0A01, { "Left", "Center Left", "Center Right", "Right",
"Light Bar 1", "Light Bar 2", "Light Bar 3",
"Light Bar 4", "Light Bar 5", "Light Bar 6",
"Light Bar 7", "Light Bar 8", "Light Bar 9",
"Light Bar 10", "Light Bar 11", "Light Bar 12" } }
};
static void SendHIDReport(hid_device *dev, const unsigned char* usb_buf, size_t usb_buf_size)
{
using namespace std::chrono_literals;
hid_send_feature_report(dev, usb_buf, usb_buf_size);
/*-----------------------------------------------------*\
| The controller really doesn't like really spammed by |
| too many commands at once... the delay may be command |
| dependent also. Delay for longer if the command is |
| changing animation state |
\*-----------------------------------------------------*/
unsigned char command = usb_buf[2];
unsigned char subcommand = usb_buf[3];
if( ( command == ALIENWARE_COMMAND_USER_ANIM )
&& ( ( subcommand == ALIENWARE_COMMAND_USER_ANIM_FINISH_PLAY )
|| ( subcommand == ALIENWARE_COMMAND_USER_ANIM_FINISH_SAVE ) ) )
{
std::this_thread::sleep_for(1s);
}
else
{
std::this_thread::sleep_for(60ms);
}
}
AlienwareController::AlienwareController(hid_device* dev_handle, const hid_device_info& info, std::string name)
{
HidapiAlienwareReport report;
dev = dev_handle;
device_name = name;
location = info.path;
/*-----------------------------------------------------*\
| Get serial number |
\*-----------------------------------------------------*/
std::wstring tmp_serial_number;
tmp_serial_number = info.serial_number;
serial_number = std::string(tmp_serial_number.begin(), tmp_serial_number.end());
/*-----------------------------------------------------*\
| Get zone information by checking firmware |
| configuration |
\*-----------------------------------------------------*/
report = Report(ALIENWARE_COMMAND_REPORT_CONFIG);
alienware_platform_id platform_id = report.data[4] << 8 | report.data[5];
/*-----------------------------------------------------*\
| Get firmware version |
\*-----------------------------------------------------*/
report = Report(ALIENWARE_COMMAND_REPORT_FIRMWARE);
std::stringstream fw_string;
fw_string << static_cast<unsigned>(report.data[4]) << '.' << static_cast<unsigned>(report.data[5]) << '.' << static_cast<unsigned>(report.data[6]);
version = fw_string.str();
/*-----------------------------------------------------*\
| Check if the device reports the wrong number of zones |
\*-----------------------------------------------------*/
unsigned number_of_zones = zone_quirks_table.count(platform_id) ? zone_quirks_table.at(platform_id) : report.data[6];
/*-----------------------------------------------------*\
| Initialize Alienware zones |
\*-----------------------------------------------------*/
zones.resize(number_of_zones);
if(zone_names_table.count(platform_id))
{
zone_names = zone_names_table.at(platform_id);
}
else
{
/*-------------------------------------------------*\
| If this is an unknown controller, set the name of |
| all regions to "Unknown" |
\*-------------------------------------------------*/
for(size_t i = 0; i < number_of_zones; i++)
{
zone_names.emplace_back("Unknown");
}
}
/*-----------------------------------------------------*\
| Set defaults for all zones |
| It doesn't seem possible to read the controller's |
| current state, hence the default value being set here.|
\*-----------------------------------------------------*/
for(unsigned int zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
zones[zone_idx].color[0] = 0x000000;
zones[zone_idx].color[1] = 0x000000;
zones[zone_idx].mode = ALIENWARE_MODE_COLOR;
/*-------------------------------------------------*\
| Default period value from ACC |
\*-------------------------------------------------*/
zones[zone_idx].period = 2000;
zones[zone_idx].tempo = ALIENWARE_TEMPO_MAX;
zones[zone_idx].dim = 0;
}
/*-----------------------------------------------------*\
| Initialize dirty flags |
\*-----------------------------------------------------*/
dirty = true;
dirty_dim = true;
}
AlienwareController::~AlienwareController()
{
}
unsigned int AlienwareController::GetZoneCount()
{
return(zones.size());
}
std::vector<const char*> AlienwareController::GetZoneNames()
{
return(zone_names);
}
std::string AlienwareController::GetDeviceLocation()
{
return("HID: " + location);
}
std::string AlienwareController::GetDeviceName()
{
return(device_name);
}
std::string AlienwareController::GetSerialString()
{
return(serial_number);
}
std::string AlienwareController::GetFirmwareVersion()
{
return(version);
}
AlienwareController::HidapiAlienwareReport AlienwareController::GetResponse()
{
/*-----------------------------------------------------*\
| Zero init. This is not updated if there's a problem. |
\*-----------------------------------------------------*/
HidapiAlienwareReport result;
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(result.data, 0x00, sizeof(result.data));
hid_get_feature_report(dev, result.data, HIDAPI_ALIENWARE_REPORT_SIZE);
return(result);
}
AlienwareController::HidapiAlienwareReport AlienwareController::Report(uint8_t subcommand)
{
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_REPORT;
usb_buf[0x03] = subcommand;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
return(GetResponse());
}
AlienwareReport AlienwareController::GetStatus(uint8_t subcommand)
{
HidapiAlienwareReport data = Report(subcommand);
AlienwareReport result = AlienwareReport{};
/*-----------------------------------------------------*\
| Skip first byte, as that's the report number, which |
| should be 0 |
\*-----------------------------------------------------*/
memcpy(result.data, &data.data[1], sizeof(result.data));
return(result);
}
bool AlienwareController::Dim(std::vector<uint8_t> zones, double percent)
{
/*-----------------------------------------------------*\
| Bail out if there are no zones to update |
\*-----------------------------------------------------*/
if(!zones.size())
{
return(true);
}
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-----------------------------------------------------*/
uint16_t num_zones = zones.size();
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_DIM;
usb_buf[0x03] = static_cast<uint8_t>(percent);
usb_buf[0x04] = num_zones >> 8;
usb_buf[0x05] = num_zones & 0xFF;
for(size_t i = 0; i < num_zones; i++)
{
usb_buf[0x06+i] = zones[i];
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
HidapiAlienwareReport response = GetResponse();
/*-----------------------------------------------------*\
| For this command, error is if the output equals the |
| input |
\*-----------------------------------------------------*/
return((response.data[1] == 0x03) && memcmp(usb_buf, response.data, HIDAPI_ALIENWARE_REPORT_SIZE));
}
bool AlienwareController::UserAnimation(uint16_t subcommand, uint16_t animation, uint16_t duration)
{
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00 per hidapi |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_USER_ANIM;
usb_buf[0x03] = subcommand >> 8;
usb_buf[0x04] = subcommand & 0xFF;
usb_buf[0x05] = animation >> 8;
usb_buf[0x06] = animation & 0xFF;
usb_buf[0x07] = duration >> 8;
usb_buf[0x08] = duration & 0xFF;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Every subcommand appears to report its result on a |
| different byte |
\*-----------------------------------------------------*/
HidapiAlienwareReport response = GetResponse();
/*-----------------------------------------------------*\
| The only time the 0x03 byte is zero is if the |
| controller has crashed |
\*-----------------------------------------------------*/
if(response.data[1] == 0)
{
return(false);
}
switch(subcommand)
{
case ALIENWARE_COMMAND_USER_ANIM_FINISH_SAVE:
return(!response.data[7]);
case ALIENWARE_COMMAND_USER_ANIM_FINISH_PLAY:
return(!response.data[5]);
case ALIENWARE_COMMAND_USER_ANIM_PLAY:
return(!response.data[7]);
default:
return(true);
}
}
bool AlienwareController::SelectZones(const std::vector<uint8_t>& zones)
{
/*-----------------------------------------------------*\
| Bail if zones is empty, and return false to indicate |
| nothing has changed |
\*-----------------------------------------------------*/
if(!zones.size())
{
return(false);
}
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-----------------------------------------------------*/
uint16_t num_zones = zones.size();
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_SELECT_ZONES;
usb_buf[0x03] = 1; // loop?
usb_buf[0x04] = num_zones >> 8;
usb_buf[0x05] = num_zones & 0xFF;
for(size_t i = 0; i < num_zones; i++)
{
usb_buf[0x06+i] = zones[i];
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
HidapiAlienwareReport response = GetResponse();
/*-----------------------------------------------------*\
| For this command, error is if the output equals the |
| input |
\*-----------------------------------------------------*/
return((response.data[1] == 0x03) && memcmp(usb_buf, response.data, HIDAPI_ALIENWARE_REPORT_SIZE));
}
bool AlienwareController::ModeAction(uint8_t mode, uint16_t duration, uint16_t tempo, RGBColor color)
{
return(ModeAction(&mode, &duration, &tempo, &color, 1));
}
bool AlienwareController::ModeAction
(
const uint8_t* mode,
const uint16_t* duration,
const uint16_t* tempo,
const RGBColor* color,
unsigned amount
)
{
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Amount must be 3 or less, as that's how many |
| subcommands can fit into one report |
\*-----------------------------------------------------*/
if(amount > 3)
{
return(false);
}
/*-----------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_ADD_ACTION;
for(unsigned int i = 0; i < amount; i++)
{
usb_buf[0x03 + (8 * i)] = mode[i];
usb_buf[0x04 + (8 * i)] = duration[i] >> 8;
usb_buf[0x05 + (8 * i)] = duration[i] & 0xFF;
usb_buf[0x06 + (8 * i)] = tempo[i] >> 8;
usb_buf[0x07 + (8 * i)] = tempo[i] & 0xFF;
usb_buf[0x08 + (8 * i)] = RGBGetRValue(color[i]);
usb_buf[0x09 + (8 * i)] = RGBGetGValue(color[i]);
usb_buf[0x0A + (8 * i)] = RGBGetBValue(color[i]);
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
HidapiAlienwareReport response = GetResponse();
/*-----------------------------------------------------*\
| For this command, error is if the output equals the |
| input |
\*-----------------------------------------------------*/
return((response.data[1] == 0x03) && memcmp(usb_buf, response.data, HIDAPI_ALIENWARE_REPORT_SIZE));
}
bool AlienwareController::MultiModeAction
(
const uint8_t* mode,
const uint16_t* duration,
const uint16_t* tempo,
const RGBColor* color,
unsigned amount
)
{
bool result = true;
unsigned int left = amount;
while(left && result)
{
unsigned int tmp_amount;
tmp_amount = std::min(left, 3u);
result &= ModeAction(mode, duration, tempo, color, tmp_amount);
mode += tmp_amount;
duration += tmp_amount;
tempo += tmp_amount;
color += tmp_amount;
left -= tmp_amount;
}
return(result);
}
bool AlienwareController::SetColorDirect(RGBColor color, std::vector<uint8_t> zones)
{
/*-----------------------------------------------------*\
| Bail if zones is empty |
\*-----------------------------------------------------*/
if(zones.empty())
{
return(true);
}
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-----------------------------------------------------*/
uint16_t num_zones = zones.size();
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_SET_COLOR;
usb_buf[0x03] = RGBGetRValue(color);
usb_buf[0x04] = RGBGetGValue(color);
usb_buf[0x05] = RGBGetBValue(color);
usb_buf[0x06] = num_zones >> 8;
usb_buf[0x07] = num_zones & 0xFF;
for(size_t i = 0; i < num_zones; i++)
{
usb_buf[0x08 + i] = zones[i];
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
HidapiAlienwareReport response = GetResponse();
/*-----------------------------------------------------*\
| For this command, error is if the output equals the |
| input |
\*-----------------------------------------------------*/
return((response.data[1] == 0x03) && memcmp(usb_buf, response.data, HIDAPI_ALIENWARE_REPORT_SIZE));
}
bool AlienwareController::Reset()
{
/*-----------------------------------------------------*\
| Bail if zones is empty |
\*-----------------------------------------------------*/
if(zones.empty())
{
return(true);
}
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_RESET;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
HidapiAlienwareReport response = GetResponse();
/*-----------------------------------------------------*\
| For this command, error is if the output equals the |
| input |
\*-----------------------------------------------------*/
return(response.data[1] == 0x03);
}
void AlienwareController::SetMode(uint8_t zone, uint8_t mode)
{
if(mode != zones[zone].mode)
{
zones[zone].mode = mode;
dirty = true;
}
}
void AlienwareController::SetColor(uint8_t zone, RGBColor color)
{
SetColor(zone, color, zones[zone].color[1]);
}
void AlienwareController::SetColor(uint8_t zone, RGBColor color1, RGBColor color2)
{
dirty = ((color1 != zones[zone].color[0]) || (color2 != zones[zone].color[1]));
if(dirty)
{
zones[zone].color[0] = color1;
zones[zone].color[1] = color2;
}
}
void AlienwareController::SetPeriod(uint8_t zone, uint16_t period)
{
if(period != zones[zone].period)
{
zones[zone].period = period;
dirty = true;
}
}
void AlienwareController::SetTempo(uint8_t zone, uint16_t tempo)
{
if(tempo != zones[zone].tempo)
{
zones[zone].tempo = tempo;
dirty = true;
}
}
void AlienwareController::SetDim(uint8_t zone, uint8_t dim)
{
if(dim != zones[zone].dim)
{
zones[zone].dim = dim;
dirty_dim = true;
}
}
void AlienwareController::UpdateDim()
{
if(!dirty_dim)
{
return;
}
/*-----------------------------------------------------*\
| Collect all zones that share dim settings, and update |
| them together |
\*-----------------------------------------------------*/
std::map<uint8_t, std::vector<uint8_t>> dim_zone_map;
for(size_t i = 0; i < zones.size(); i++)
{
dim_zone_map[zones[i].dim].emplace_back(i);
}
for(std::pair<const uint8_t, std::vector<uint8_t>> &pair : dim_zone_map)
{
/*-------------------------------------------------*\
| Bail on an error... |
\*-------------------------------------------------*/
if(!Dim(pair.second, pair.first))
{
return;
}
}
dirty_dim = false;
}
bool AlienwareController::UpdateDirect()
{
/*-----------------------------------------------------*\
| Collect all zones that share dim settings, and update |
| them together |
\*-----------------------------------------------------*/
std::map<RGBColor, std::vector<uint8_t>> color_zone_map;
for(size_t i = 0; i < zones.size(); i++)
{
color_zone_map[zones[i].color[0]].emplace_back(i);
}
for(std::pair<const RGBColor, std::vector<uint8_t>> &pair : color_zone_map)
{
/*-------------------------------------------------*\
| Bail on an error... |
\*-------------------------------------------------*/
if(!SetColorDirect(pair.first, pair.second))
{
return false;
}
}
return true;
}
static const RGBColor rainbow_colors[4][7] =
{
{ 0xFF0000, 0xFFA500, 0xFFFF00, 0x008000, 0x00BFFF, 0x0000FF, 0x800080 },
{ 0x800080, 0xFF0000, 0xFFA500, 0xFFFF00, 0x008000, 0x00BFFF, 0x0000FF },
{ 0x0000FF, 0x800080, 0xFF0000, 0xFFA500, 0xFFFF00, 0x008000, 0x00BFFF },
{ 0x00BFFF, 0x0000FF, 0x800080, 0xFF0000, 0xFFA500, 0xFFFF00, 0x008000 }
};
void AlienwareController::UpdateMode()
{
/*-----------------------------------------------------*\
| If there are no updates, don't bother running this |
\*-----------------------------------------------------*/
if(!dirty)
{
return;
}
bool result = UserAnimation(ALIENWARE_COMMAND_USER_ANIM_NEW, ALIENWARE_COMMAND_USER_ANIM_KEYBOARD, 0);
if(!result)
{
return;
}
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
alienware_zone zone = zones[zone_idx];
result = SelectZones({static_cast<uint8_t>(zone_idx)});
if(!result)
{
return;
}
/*-------------------------------------------------*\
| Some modes use 0x07D0 for their duration as sent |
| by AWCC traces, maybe 2000ms? |
\*-------------------------------------------------*/
switch (zone.mode)
{
case ALIENWARE_MODE_COLOR:
result = ModeAction(zone.mode, 2000, ALIENWARE_TEMPO_MAX, zone.color[0]);
break;
case ALIENWARE_MODE_PULSE:
result = ModeAction(zone.mode, zone.period, zone.tempo, zone.color[0]);
break;
case ALIENWARE_MODE_MORPH:
{
uint8_t zones[2] = { zone.mode, zone.mode };
uint16_t periods[2] = { zone.period, zone.period };
uint16_t tempos[2] = { zone.tempo, zone.tempo };
RGBColor colors[2] = { zone.color[0], zone.color[1] };
result = MultiModeAction(zones, periods, tempos, colors, 2);
}
break;
case ALIENWARE_MODE_SPECTRUM:
{
uint8_t zones[7] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH };
uint16_t periods[7] = { zone.period, zone.period,
zone.period, zone.period,
zone.period, zone.period,
zone.period };
uint16_t tempos[7] = { zone.tempo, zone.tempo,
zone.tempo, zone.tempo,
zone.tempo, zone.tempo,
zone.tempo };
result = MultiModeAction(zones, periods, tempos, rainbow_colors[0], 7);
}
break;
case ALIENWARE_MODE_RAINBOW:
{
uint8_t zones[7] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH };
uint16_t periods[7] = { zone.period, zone.period,
zone.period, zone.period,
zone.period, zone.period,
zone.period };
uint16_t tempos[7] = { zone.tempo, zone.tempo,
zone.tempo, zone.tempo,
zone.tempo, zone.tempo,
zone.tempo };
result = MultiModeAction(zones, periods, tempos, rainbow_colors[zone_idx], 7);
}
break;
case ALIENWARE_MODE_BREATHING:
{
uint8_t zones[2] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH };
uint16_t periods[2] = { zone.period, zone.period };
uint16_t tempos[2] = { zone.tempo, zone.tempo };
RGBColor colors[2] = { zone.color[0], 0x0 };
result = MultiModeAction(zones, periods, tempos, colors, 2);
}
break;
default:
result = false;
}
if(!result)
{
return;
}
}
result = UserAnimation(ALIENWARE_COMMAND_USER_ANIM_FINISH_PLAY, ALIENWARE_COMMAND_USER_ANIM_KEYBOARD, 0);
/*-------------------------------------------------*\
| Don't update dirty flag if there's an error |
\*-------------------------------------------------*/
if(!result)
{
return;
}
dirty = false;
}
void AlienwareController::UpdateController()
{
UpdateMode();
UpdateDim();
}
@@ -1,161 +0,0 @@
/*-----------------------------------------*\
| AlienwareController.h |
| |
| Driver for Dell Alienware RGB USB |
| controller |
| |
| Gabriel Marcano (gemarcano) 4/19/2021 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <hidapi/hidapi.h>
#include <string>
#pragma once
/*----------------------------------------------------------------------------------------------*\
| Definitions for Alienware Controller |
\*----------------------------------------------------------------------------------------------*/
#define ALIENWARE_REPORT_SIZE 33
#define HIDAPI_ALIENWARE_REPORT_SIZE (ALIENWARE_REPORT_SIZE + 1)
enum
{
ALIENWARE_COMMAND_REPORT = 0x20, /* Set report type to get */
ALIENWARE_COMMAND_USER_ANIM = 0x21, /* Set user animation settings */
ALIENWARE_COMMAND_POWER_ANIM = 0x22, /* Set power animation settings */
ALIENWARE_COMMAND_SELECT_ZONES = 0x23, /* Select zones to apply actions to */
ALIENWARE_COMMAND_ADD_ACTION = 0x24, /* Set actions to apply */
ALIENWARE_COMMAND_UNKNOWN1 = 0x25, /* Supposedly set event? */
ALIENWARE_COMMAND_DIM = 0x26, /* Set dim percentage */
ALIENWARE_COMMAND_SET_COLOR = 0x27, /* Unclear (causes color flash) */
ALIENWARE_COMMAND_RESET = 0x28, /* Reset */
ALIENWARE_COMMAND_ERASE_FLASH = 0xFF, /* Erases flash memory on controller */
};
enum
{
ALIENWARE_COMMAND_REPORT_FIRMWARE = 0x00, /* Get firmware verion */
ALIENWARE_COMMAND_REPORT_STATUS = 0x01, /* Get status */
ALIENWARE_COMMAND_REPORT_CONFIG = 0x02, /* Get firmware config */
ALIENWARE_COMMAND_REPORT_ANIMATION = 0x03, /* Get animation count and last id */
ALIENWARE_COMMAND_REPORT_UNKNOWN1 = 0x04, /* Get ELC animation by ID */
ALIENWARE_COMMAND_REPORT_UNKNOWN2 = 0x05, /* Read series??? */
ALIENWARE_COMMAND_REPORT_UNKNOWN3 = 0x06, /* Get action??? */
ALIENWARE_COMMAND_REPORT_UNKNOWN4 = 0x07, /* Get Caldera status??? */
};
enum
{
ALIENWARE_COMMAND_USER_ANIM_NEW = 0x0001, /* Start new animation */
ALIENWARE_COMMAND_USER_ANIM_FINISH_SAVE = 0x0002, /* Finish and save animation */
ALIENWARE_COMMAND_USER_ANIM_FINISH_PLAY = 0x0003, /* Finish and play animation */
ALIENWARE_COMMAND_USER_ANIM_REMOVE = 0x0004, /* Remove/erase animation */
ALIENWARE_COMMAND_USER_ANIM_PLAY = 0x0005, /* Play animation */
ALIENWARE_COMMAND_USER_ANIM_DEFAULT = 0x0006, /* Set default animation */
ALIENWARE_COMMAND_USER_ANIM_STARTUP = 0x0007, /* Set startup animation */
};
enum
{
ALIENWARE_ANIM_DEFAULT_STARTUP = 0x0008, /* Default slot for startup */
ALIENWARE_ANIM_DEFAULT = 0x0061, /* Default slot */
ALIENWARE_COMMAND_USER_ANIM_KEYBOARD = 0xFFFF, /* Non-saved animation slot */
};
enum
{
ALIENWARE_MODE_COLOR = 0x00, /* Action to set color mode */
ALIENWARE_MODE_PULSE = 0x01, /* Action to set pulse mode */
ALIENWARE_MODE_MORPH = 0x02, /* Action to set morph mode */
ALIENWARE_MODE_SPECTRUM, /* Abitrary code for spectrum mode */
ALIENWARE_MODE_RAINBOW, /* Arbitrary code for rainbow wave mode */
ALIENWARE_MODE_BREATHING, /* Arbitrary code for rainbow wave mode */
};
enum
{
ALIENWARE_TEMPO_MIN = 0x0064, /* Min tempo (as used by AWCC) */
ALIENWARE_TEMPO_MAX = 0x00FA, /* Max tempo (as used by AWCC) */
ALIENWARE_TEMPO_SPECTRUM = 0x000F, /* Used by Spectrum mode */
};
enum
{
ALIENWARE_DURATION_LONG = 0x09C4, /* Min tempo (as used by AWCC) */
ALIENWARE_DURATION_MED = 0x05DC, /* Max tempo (as used by AWCC) */
ALIENWARE_DURATION_SHORT = 0x01F3, /* Max tempo (as used by AWCC) */
ALIENWARE_DURATION_SPECTRUM = 0x01AC, /* Used by Spectrum mode */
};
typedef struct
{
unsigned char data[ALIENWARE_REPORT_SIZE];
} AlienwareReport;
class AlienwareController
{
public:
AlienwareController(hid_device* dev_handle, const hid_device_info& info, std::string name);
~AlienwareController();
std::string GetSerialString();
std::string GetDeviceLocation();
std::string GetDeviceName();
std::string GetFirmwareVersion();
unsigned GetZoneCount();
std::vector<const char*> GetZoneNames();
void SetColor(uint8_t zone, RGBColor color);
void SetColor(uint8_t zone, RGBColor color1, RGBColor color2);
void SetMode(uint8_t zone, uint8_t mode);
void SetPeriod(uint8_t zone, uint16_t period);
void SetTempo(uint8_t zone, uint16_t tempo);
void SetDim(uint8_t zone, uint8_t dim);
AlienwareReport GetStatus(uint8_t subcommand);
void UpdateDim();
void UpdateMode();
void UpdateController();
protected:
hid_device* dev;
private:
typedef struct
{
RGBColor color[2];
uint8_t mode;
uint16_t period;
uint16_t tempo;
uint8_t dim;
} alienware_zone;
typedef struct
{
unsigned char data[HIDAPI_ALIENWARE_REPORT_SIZE];
} HidapiAlienwareReport;
std::string device_name;
std::string location;
std::vector<alienware_zone> zones;
std::string serial_number;
std::string version;
std::vector<const char*> zone_names;
bool dirty;
bool dirty_dim;
HidapiAlienwareReport GetResponse();
HidapiAlienwareReport Report(uint8_t subcommand);
bool Dim(std::vector<uint8_t> zones, double percent);
bool UserAnimation(uint16_t subcommand, uint16_t animation, uint16_t duration);
bool SelectZones(const std::vector<uint8_t>& zones);
bool ModeAction(uint8_t mode, uint16_t duration, uint16_t tempo, RGBColor color);
bool ModeAction(const uint8_t *mode, const uint16_t *duration, const uint16_t *tempo, const RGBColor *color, unsigned amount);
bool MultiModeAction(const uint8_t *mode, const uint16_t *duration, const uint16_t *tempo, const RGBColor *color, unsigned amount);
bool SetColorDirect(RGBColor color, std::vector<uint8_t> zones);
bool UpdateDirect();
bool Reset();
};
@@ -1,29 +0,0 @@
#include "Detector.h"
#include "AlienwareController.h"
#include "RGBController.h"
#include "RGBController_Alienware.h"
/*---------------------------------------------------------*\
| Alienware vendor ID |
\*---------------------------------------------------------*/
#define ALIENWARE_VID 0x187C
/*---------------------------------------------------------*\
| Alienware product ID |
\*---------------------------------------------------------*/
#define ALIENWARE_G_SERIES_PID 0x0550
void DetectAlienwareControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
AlienwareController* controller = new AlienwareController(dev, *info, name);
RGBController_Alienware* rgb_controller = new RGBController_Alienware(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
REGISTER_HID_DETECTOR("Dell G Series LED Controller", DetectAlienwareControllers, ALIENWARE_VID, ALIENWARE_G_SERIES_PID);
@@ -1,288 +0,0 @@
/*-----------------------------------------*\
| RGBController_Alienware.cpp |
| |
| Generic RGB Interface for OpenRGB |
| Alienware USB Driver |
| |
| Gabriel Marcano (gemarcano) 4/19/2021 |
\*-----------------------------------------*/
#include "RGBController_Alienware.h"
#include <thread>
#include <chrono>
/**------------------------------------------------------------------*\
@name Alienware
@type USB
@save :x:
@direct :x:
@effects :white_check_mark:
@detectors DetectAlienwareControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_Alienware::RGBController_Alienware(AlienwareController* controller_ptr)
{
controller = controller_ptr;
name = controller->GetDeviceName();
vendor = "Alienware";
type = DEVICE_TYPE_KEYBOARD;
description = "Alienware USB Device";
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
version = controller->GetFirmwareVersion();
mode Color;
Color.name = "Static";
Color.value = ALIENWARE_MODE_COLOR;
Color.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Color.color_mode = MODE_COLORS_PER_LED;
Color.colors_min = 1;
Color.colors_max = 1;
Color.brightness_min = 100;
Color.brightness_max = 0;
Color.brightness = 0;
modes.push_back(Color);
mode Pulse;
Pulse.name = "Flashing";
Pulse.value = ALIENWARE_MODE_PULSE;
Pulse.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Pulse.color_mode = MODE_COLORS_PER_LED;
Pulse.colors_min = 1;
Pulse.colors_max = 1;
Pulse.speed_min = ALIENWARE_TEMPO_MIN;
Pulse.speed_max = ALIENWARE_TEMPO_MAX;
Pulse.speed = ALIENWARE_TEMPO_MIN;
Pulse.brightness_min = 100;
Pulse.brightness_max = 0;
Pulse.brightness = 0;
modes.push_back(Pulse);
mode Morph;
Morph.name = "Morph";
Morph.value = ALIENWARE_MODE_MORPH;
Morph.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Morph.color_mode = MODE_COLORS_MODE_SPECIFIC;
Morph.colors_min = 2 * controller->GetZoneCount();
Morph.colors_max = Morph.colors_min;
Morph.colors.resize(Morph.colors_max);
Morph.speed_min = ALIENWARE_TEMPO_MIN;
Morph.speed_max = ALIENWARE_TEMPO_MAX;
Morph.speed = ALIENWARE_TEMPO_MIN;
Morph.brightness_min = 100;
Morph.brightness_max = 0;
Morph.brightness = 0;
modes.push_back(Morph);
mode Spectrum;
Spectrum.name = "Spectrum Cycle";
Spectrum.value = ALIENWARE_MODE_SPECTRUM;
Spectrum.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Spectrum.color_mode = MODE_COLORS_NONE;
Spectrum.speed_min = ALIENWARE_TEMPO_SPECTRUM;
Spectrum.speed_max = ALIENWARE_TEMPO_MAX;
Spectrum.speed = ALIENWARE_TEMPO_SPECTRUM;
Spectrum.brightness_min = 100;
Spectrum.brightness_max = 0;
Spectrum.brightness = 0;
modes.push_back(Spectrum);
mode Rainbow;
Rainbow.name = "Rainbow Wave";
Rainbow.value = ALIENWARE_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Rainbow.color_mode = MODE_COLORS_NONE;
Rainbow.speed_min = ALIENWARE_TEMPO_SPECTRUM;
Rainbow.speed_max = ALIENWARE_TEMPO_MAX;
Rainbow.speed = ALIENWARE_TEMPO_SPECTRUM;
Rainbow.brightness_min = 100;
Rainbow.brightness_max = 0;
Rainbow.brightness = 0;
modes.push_back(Rainbow);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = ALIENWARE_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Breathing.color_mode = MODE_COLORS_PER_LED;
Breathing.colors_min = 1;
Breathing.colors_max = 1;
Breathing.speed_min = ALIENWARE_TEMPO_MIN;
Breathing.speed_max = ALIENWARE_TEMPO_MAX;
Breathing.speed = ALIENWARE_TEMPO_MIN;
Breathing.brightness_min = 100;
Breathing.brightness_max = 0;
Breathing.brightness = 0;
modes.push_back(Breathing);
SetupZones();
controller->UpdateDim();
}
void RGBController_Alienware::SetupZones()
{
/*-------------------------------------------------*\
| Set zones and leds |
\*-------------------------------------------------*/
std::vector<const char*> zone_names = controller->GetZoneNames();
for(unsigned int zone_idx = 0; zone_idx < controller->GetZoneCount(); zone_idx++)
{
zone new_zone;
new_zone.name = zone_names[zone_idx];
new_zone.type = ZONE_TYPE_SINGLE;
new_zone.leds_min = 1;
new_zone.leds_max = 1;
new_zone.leds_count = 1;
new_zone.matrix_map = nullptr;
zones.emplace_back(new_zone);
}
for(unsigned int led_idx = 0; led_idx < zones.size(); led_idx++)
{
led new_led;
new_led.name = zones[led_idx].name + std::string(" LED");
leds.emplace_back(new_led);
}
SetupColors();
}
void RGBController_Alienware::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_Alienware::DeviceUpdateLEDs()
{
DeviceUpdateMode();
}
void RGBController_Alienware::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_Alienware::UpdateSingleLED(int led)
{
UpdateZoneLEDs(led);
}
void RGBController_Alienware::SetCustomMode()
{
active_mode = 0;
}
static bool modes_eq(const mode& mode1, const mode& mode2)
{
return( ( mode1.name == mode2.name )
&& ( mode1.value == mode2.value )
&& ( mode1.flags == mode2.flags )
&& ( mode1.speed_min == mode2.speed_min )
&& ( mode1.speed_max == mode2.speed_max )
&& ( mode1.colors_min == mode2.colors_min )
&& ( mode1.colors_max == mode2.colors_max )
&& ( mode1.speed == mode2.speed )
&& ( mode1.direction == mode2.direction )
&& ( mode1.color_mode == mode2.color_mode )
&& ( mode1.colors == mode2.colors )
&& ( mode1.brightness == mode2.brightness )
&& ( mode1.brightness_min == mode2.brightness_min )
&& ( mode1.brightness_max == mode2.brightness_max ) );
}
void RGBController_Alienware::DeviceUpdateMode()
{
/*---------------------------------------------------------*\
| Copy mode to get the current state-- this is racy, as the |
| UI thread can be actively modifying this variable |
\*---------------------------------------------------------*/
int current_mode_idx = active_mode;
mode current_mode = modes[current_mode_idx];
bool done = false;
while(!done)
{
/*-----------------------------------------------------*\
| Setup state per zone |
\*-----------------------------------------------------*/
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
zone current_zone = zones[zone_idx];
/*-------------------------------------------------*\
| Some modes use 2000ms (0x07D0) for their duration,|
| per traces |
\*-------------------------------------------------*/
uint16_t period = 0x07d0;
controller->SetMode(zone_idx, current_mode.value);
switch(current_mode_idx)
{
case ALIENWARE_MODE_COLOR:
controller->SetPeriod(zone_idx, period);
controller->SetColor( zone_idx, colors[current_zone.start_idx]);
controller->SetTempo( zone_idx, ALIENWARE_TEMPO_MAX);
controller->SetDim( zone_idx, modes[current_mode_idx].brightness);
break;
case ALIENWARE_MODE_PULSE:
controller->SetPeriod(zone_idx, period);
controller->SetColor( zone_idx, colors[current_zone.start_idx]);
controller->SetTempo( zone_idx, current_mode.speed);
controller->SetDim( zone_idx, modes[current_mode_idx].brightness);
break;
case ALIENWARE_MODE_MORPH:
controller->SetPeriod(zone_idx, period);
controller->SetColor( zone_idx, current_mode.colors[zone_idx * 2], current_mode.colors[(zone_idx * 2) + 1]);
controller->SetTempo( zone_idx, current_mode.speed);
controller->SetDim( zone_idx, modes[current_mode_idx].brightness);
break;
case ALIENWARE_MODE_SPECTRUM:
case ALIENWARE_MODE_RAINBOW:
controller->SetPeriod(zone_idx, ALIENWARE_DURATION_SPECTRUM);
controller->SetTempo( zone_idx, current_mode.speed);
controller->SetDim( zone_idx, modes[current_mode_idx].brightness);
break;
case ALIENWARE_MODE_BREATHING:
controller->SetPeriod(zone_idx, period);
controller->SetColor( zone_idx, colors[current_zone.start_idx], 0x0);
controller->SetTempo( zone_idx, current_mode.speed);
controller->SetDim( zone_idx, modes[current_mode_idx].brightness);
break;
}
}
/*-----------------------------------------------------*\
| Due to rate-limiting, this can take more than one |
| second to execute |
\*-----------------------------------------------------*/
controller->UpdateController();
/*-----------------------------------------------------*\
| Re-run update if there's anything that's changed from |
| under us... |
\*-----------------------------------------------------*/
int new_current_mode_idx = active_mode;
mode new_current_mode = modes[current_mode_idx];
done = (current_mode_idx == new_current_mode_idx && modes_eq(new_current_mode, current_mode));
current_mode_idx = new_current_mode_idx;
current_mode = new_current_mode;
}
}
@@ -1,37 +0,0 @@
/*-----------------------------------------*\
| RGBController_Alienware.h |
| |
| Generic RGB Interface for OpenRGB |
| Alienware RGB USB Driver |
| |
| Gabriel Marcano (gemarcano) 4/19/2021 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AlienwareController.h"
#include <chrono>
class RGBController_Alienware : public RGBController
{
public:
RGBController_Alienware(AlienwareController* controller_ptr);
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode();
void SetCustomMode();
private:
AlienwareController* controller;
std::chrono::steady_clock::time_point last_packet_ts;
};
@@ -1,442 +0,0 @@
/*-----------------------------------------*\
| AlienwareAW510KController.cpp |
| |
| Driver for Alienware AW510K |
| keyboard light controller |
| |
| Mohamad Sallal - msallal 05/22/2021 |
\*-----------------------------------------*/
#include "AlienwareAW510KController.h"
#include <cstring>
AlienwareAW510KController::AlienwareAW510KController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
SendCommit();
}
AlienwareAW510KController::~AlienwareAW510KController()
{
hid_close(dev);
}
std::string AlienwareAW510KController::GetDeviceLocation()
{
return("HID: " + location);
}
std::string AlienwareAW510KController::GetSerialString()
{
wchar_t serial_string[128];
hid_get_serial_number_string(dev, serial_string, 128);
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
void AlienwareAW510KController::SendCommit()
{
char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Commit packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x05;
usb_buf[0x02] = 0x01;
usb_buf[0x0A] = 0x10;
usb_buf[0x0B] = 0x0A;
usb_buf[0x0C] = 0x01;
usb_buf[0x0D] = 0x02;
usb_buf[0x0E] = 0x01;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, (unsigned char *)usb_buf, 65);
/*-----------------------------------------------------*\
| Delay 20 milliseconds |
\*-----------------------------------------------------*/
std::this_thread::sleep_for(std::chrono::milliseconds(20));
}
void AlienwareAW510KController::SendfeatureReport
(
unsigned char first_byte,
unsigned char second_byte,
unsigned char third_byte,
unsigned char forth_byte
)
{
char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Feature report packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = first_byte;
usb_buf[0x02] = second_byte;
usb_buf[0x03] = third_byte;
usb_buf[0x04] = forth_byte;
/*-----------------------------------------------------*\
| Send Feature report packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, (unsigned char *)usb_buf, 65);
/*-----------------------------------------------------*\
| Delay 10 milliseconds |
\*-----------------------------------------------------*/
std::this_thread::sleep_for(std::chrono::milliseconds(10));
}
void AlienwareAW510KController::SendEdit()
{
char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Edit packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x01;
usb_buf[0x02] = 0x00;
usb_buf[0x03] = 0x01;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, (unsigned char *)usb_buf, 65);
/*-----------------------------------------------------*\
| Delay 2 milliseconds |
\*-----------------------------------------------------*/
std::this_thread::sleep_for(std::chrono::milliseconds(2));
}
void AlienwareAW510KController::SendInitialize()
{
char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Commit packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x0E;
usb_buf[0x02] = 0x01;
usb_buf[0x03] = 0x00;
usb_buf[0x04] = 0x01;
usb_buf[0x05] = 0xAD;
usb_buf[0x06] = 0x80;
usb_buf[0x07] = 0x10;
usb_buf[0x08] = 0xA5;
usb_buf[0x0A] = 0x0A;
usb_buf[0x12] = 0x01;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, (unsigned char *)usb_buf, 65);
/*-----------------------------------------------------*\
| Delay 2 milliseconds |
\*-----------------------------------------------------*/
std::this_thread::sleep_for(std::chrono::milliseconds(2));
}
void AlienwareAW510KController::SetDirect
(
unsigned char zone,
unsigned char r,
unsigned char g,
unsigned char b
)
{
unsigned char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Lighting Control packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x05;
usb_buf[0x02] = 0x01;
usb_buf[0x03] = 0x01;
usb_buf[0x04] = r;
usb_buf[0x05] = g;
usb_buf[0x06] = b;
usb_buf[0x0B] = 0x0A;
usb_buf[0x0D] = 0x01;
usb_buf[0x0E] = 0x01;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, (unsigned char *)usb_buf, 65);
/*-----------------------------------------------------*\
| Delay 2 milliseconds |
\*-----------------------------------------------------*/
std::this_thread::sleep_for(std::chrono::milliseconds(2));
}
void AlienwareAW510KController::SendDirectOn
(
std::vector<SelectedKeys> &frame_data
)
{
SendfeatureReport(0x0E, frame_data.size(), 0x00, 0x01);
/*-----------------------------------------------*\
| To Guarantee the data are always %4 =0 append |
| zeros at end of last packet |
\*-----------------------------------------------*/
for(int i = 0; i < (frame_data.size() % 4); i++)
{
SelectedKeys key;
key.idx = 0x00;
key.red = 0x00;
key.green = 0x00;
key.blue = 0x00;
frame_data.push_back(key);
}
unsigned char usb_buf[65];
unsigned int frame_idx = 0;
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, 65);
for(unsigned int packet_idx = 0; packet_idx < frame_data.size(); packet_idx++)
{
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x0E;
usb_buf[0x02] = 0x01;
usb_buf[0x03] = 0x00;
usb_buf[0x04] = ++frame_idx;
usb_buf[0x05] = frame_data[packet_idx].idx;
usb_buf[0x06] = 0x81;
usb_buf[0x07] = 0x00;
usb_buf[0x08] = 0xA5;
usb_buf[0x0A] = 0x0A;
usb_buf[0x0B] = frame_data[packet_idx].red;
usb_buf[0x0C] = frame_data[packet_idx].green;
usb_buf[0x0D] = frame_data[packet_idx].blue;
usb_buf[0x12] = 0x01;
usb_buf[0x14] = frame_data[++packet_idx].idx;
usb_buf[0x15] = 0x81;
usb_buf[0x16] = 0x00;
usb_buf[0x17] = 0xA5;
usb_buf[0x19] = 0x0A;
usb_buf[0x1A] = frame_data[packet_idx].red;
usb_buf[0x1B] = frame_data[packet_idx].green;
usb_buf[0x1C] = frame_data[packet_idx].blue;
usb_buf[0x21] = 0x01;
usb_buf[0x23] = frame_data[++packet_idx].idx;
usb_buf[0x24] = 0x81;
usb_buf[0x25] = 0x00;
usb_buf[0x26] = 0xA5;
usb_buf[0x28] = 0x0A;
usb_buf[0x29] = frame_data[packet_idx].red;
usb_buf[0x2A] = frame_data[packet_idx].green;
usb_buf[0x2B] = frame_data[packet_idx].blue;
usb_buf[0x30] = 0x01;
usb_buf[0x32] = frame_data[++packet_idx].idx;
usb_buf[0x33] = 0x81;
usb_buf[0x34] = 0x00;
usb_buf[0x35] = 0xA5;
usb_buf[0x37] = 0x0A;
usb_buf[0x38] = frame_data[packet_idx].red;
usb_buf[0x39] = frame_data[packet_idx].green;
usb_buf[0x3A] = frame_data[packet_idx].blue;
usb_buf[0x3F] = 0x01;
hid_write(dev, (unsigned char *)usb_buf, 65);
}
}
void AlienwareAW510KController::SetMode
(
unsigned char mode,
unsigned short speed,
unsigned char direction,
unsigned char colorMode,
unsigned char red,
unsigned char green,
unsigned char blue
)
{
SendMode(ALIENWARE_AW510K_ZONE_MODE_KEYBOARD, mode, speed, direction, colorMode, red, green, blue);
SendCommit();
}
void AlienwareAW510KController::UpdateSingleLED
(
unsigned char led,
unsigned char red,
unsigned char green,
unsigned char blue
)
{
SendfeatureReport(0x0E, 0x01, 0x00, 0x01);
char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Single LED packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x0E;
usb_buf[0x02] = 0x01;
usb_buf[0x03] = 0x00;
usb_buf[0x04] = 0x01;
usb_buf[0x05] = led;
usb_buf[0x06] = 0x81;
usb_buf[0x07] = 0x00;
usb_buf[0x08] = 0xA5;
usb_buf[0x09] = 0x00;
usb_buf[0x0A] = 0x0A;
usb_buf[0x0B] = red;
usb_buf[0x0C] = green;
usb_buf[0x0D] = blue;
usb_buf[0x12] = 0x01;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, (unsigned char *)usb_buf, 65);
/*-----------------------------------------------------*\
| Delay 20 milliseconds |
\*-----------------------------------------------------*/
std::this_thread::sleep_for(std::chrono::milliseconds(20));
}
void AlienwareAW510KController::SendMode
(
unsigned char zone,
unsigned char mode,
unsigned short speed,
unsigned char direction,
unsigned char colorMode,
unsigned char red,
unsigned char green,
unsigned char blue
)
{
char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Mode Control packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x05;
usb_buf[0x02] = 0x01;
usb_buf[0x03] = mode;
usb_buf[0x04] = red;
usb_buf[0x05] = green;
usb_buf[0x06] = blue;
usb_buf[0x0A] = speed;
usb_buf[0x0B] = 0x0A;
usb_buf[0x0D] = 0x01;
usb_buf[0x0E] = colorMode;
usb_buf[0x0F] = direction;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, (unsigned char *)usb_buf, 65);
}
void AlienwareAW510KController::SetMorphMode
(
unsigned char mode,
unsigned short speed,
unsigned char red1,
unsigned char green1,
unsigned char blue1,
unsigned char red2,
unsigned char green2,
unsigned char blue2
)
{
char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Morph Mode packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x05;
usb_buf[0x02] = 0x01;
usb_buf[0x03] = mode;
usb_buf[0x04] = red1;
usb_buf[0x05] = green1;
usb_buf[0x06] = blue1;
usb_buf[0x07] = red2;
usb_buf[0x08] = green2;
usb_buf[0x09] = blue2;
usb_buf[0x0E] = 0x02;
usb_buf[0x0A] = speed;
usb_buf[0x0B] = 0x0A;
usb_buf[0x0D] = 0x01;
usb_buf[0x0E] = ALIENWARE_AW510K_TWO_USER_DEFINED_COLOR_MODE;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, (unsigned char *)usb_buf, 65);
}
@@ -1,156 +0,0 @@
/*-----------------------------------------*\
| AlienwareAW510KController.h |
| |
| Definitions and types for alienware |
| AW510K Keyboard |
| |
| Mohamad Sallal - msallal 05/22/2021 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <string>
#include <hidapi/hidapi.h>
#pragma once
enum
{
ALIENWARE_AW510K_ZONE_MODE_KEYBOARD = 0x01,
ALIENWARE_AW510K_ZONE_MODE_LOGO = 0x07, /* logo is only need key value, which equal 07 */
};
enum
{
ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD = 0x01,
ALIENWARE_AW510K_ZONE_DIRECT_MEDIA = 0x02,
ALIENWARE_AW510K_ZONE_DIRECT_LOGO = 0x07,
ALIENWARE_AW510K_ZONE_DIRECT_INDICATORS = 0x40,
};
enum
{
ALIENWARE_AW510K_MODE_OFF = 0x00,
ALIENWARE_AW510K_MODE_DIRECT_PER_LED = 0x01,
ALIENWARE_AW510K_MODE_DIRECT = 0x01,
ALIENWARE_AW510K_MODE_PULSE = 0x02,
ALIENWARE_AW510K_MODE_MORPH = 0x03,
ALIENWARE_AW510K_MODE_BREATHING = 0x07,
ALIENWARE_AW510K_MODE_SPECTRUM = 0x08,
ALIENWARE_AW510K_MODE_SINGLE_WAVE = 0x0F,
ALIENWARE_AW510K_MODE_RAINBOW_WAVE = 0x10,
ALIENWARE_AW510K_MODE_SCANNER = 0x11,
ALIENWARE_AW510K_MODE_STATIC = 0x13,
};
enum
{
ALIENWARE_AW510K_SPEED_SLOWEST = 0x2D, /* Slowest speed */
ALIENWARE_AW510K_SPEED_NORMAL = 0x19, /* Normal speed */
ALIENWARE_AW510K_SPEED_FASTEST = 0x0A, /* Fastest speed */
};
enum
{
ALIENWARE_AW510K_DIRECTION_LEFT_TO_RIGHT = 0x01,
ALIENWARE_AW510K_DIRECTION_RIGHT_TO_LEFT = 0x02,
ALIENWARE_AW510K_DIRECTION_TOP_TO_BOTTOM = 0x03,
ALIENWARE_AW510K_DIRECTION_BOTTOM_TO_TOP = 0x04,
};
enum
{
ALIENWARE_AW510K_SINGLE_COLOR_MODE = 0x01,
ALIENWARE_AW510K_TWO_USER_DEFINED_COLOR_MODE= 0x02,
ALIENWARE_AW510K_RANBOW_COLOR_MODE = 0x03,
};
struct SelectedKeys
{
unsigned char idx;
unsigned char red;
unsigned char green;
unsigned char blue;
};
class AlienwareAW510KController
{
public:
AlienwareAW510KController(hid_device* dev_handle, const char* path);
~AlienwareAW510KController();
std::string GetDeviceLocation();
std::string GetSerialString();
void SendInitialize();
void SendCommit();
void SendfeatureReport
(
unsigned char first_byte,
unsigned char second_byte,
unsigned char third_byte,
unsigned char forth_byte
);
void SendEdit();
void SetDirect
(
unsigned char zone,
unsigned char r,
unsigned char g,
unsigned char b
);
void SendDirectOn
(
std::vector<SelectedKeys> &frame_data
);
void SetMode
(
unsigned char mode,
unsigned short speed,
unsigned char direction,
unsigned char colorMode,
unsigned char red,
unsigned char green,
unsigned char blue
);
void SetMorphMode
(
unsigned char mode,
unsigned short speed,
unsigned char red1,
unsigned char green1,
unsigned char blue1,
unsigned char red2,
unsigned char green2,
unsigned char blue2
);
void UpdateSingleLED
(
unsigned char led,
unsigned char red,
unsigned char green,
unsigned char blue
);
private:
hid_device* dev;
std::string location;
void SendMode
(
unsigned char zone,
unsigned char mode,
unsigned short speed,
unsigned char direction,
unsigned char colorMode,
unsigned char red,
unsigned char green,
unsigned char blue
);
};
@@ -1,38 +0,0 @@
#include "Detector.h"
#include "AlienwareAW510KController.h"
#include "RGBController.h"
#include "RGBController_AlienwareAW510K.h"
#include <hidapi/hidapi.h>
/*-----------------------------------------------------*\
| Alienware vendor ID |
\*-----------------------------------------------------*/
#define ALIENWARE_VID 0x04F2
/*-----------------------------------------------------*\
| Keyboard product IDs |
\*-----------------------------------------------------*/
#define ALIENWARE_AW510K_PID 0x1830
/******************************************************************************************\
* *
* DetectAlienwareKeyboardControllers *
* *
* Tests the USB address to see if a Alienware RGB Keyboard controller exists there. *
* *
\******************************************************************************************/
void DetectAlienwareAW510KControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if( dev )
{
AlienwareAW510KController* controller = new AlienwareAW510KController(dev, info->path);
RGBController_AlienwareAW510K* rgb_controller = new RGBController_AlienwareAW510K(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
} /* DetectAlienwareKeyboardControllers() */
REGISTER_HID_DETECTOR_IPU("Alienware AW510K", DetectAlienwareAW510KControllers, ALIENWARE_VID, ALIENWARE_AW510K_PID, 0x02, 0xFF00, 0x01);
@@ -1,499 +0,0 @@
/*-----------------------------------------*\
| RGBController_AlienwareAW510K.cpp |
| |
| Generic RGB Interface for alienware |
| AW510K Keyboard |
| |
| Mohamad Sallal - msallal 05/22/2021 |
\*-----------------------------------------*/
#include "RGBControllerKeyNames.h"
#include "RGBController_AlienwareAW510K.h"
#include <iterator>
//0xFFFFFFFF indicates an unused entry in matrix
#define NA 0xFFFFFFFF
int GetAW520K_WaveDirection(int input);
static unsigned int matrix_map[7][24] =
{ { 0, NA, 1, 2, 3, 4, NA, 5, 6, 7, 8, 9, 10, 11, 12, NA, 13, 14, 15, NA, 16, NA, NA, NA },
{ 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, NA, NA, 31, 32, 33, NA, 34, 35, 36, 37 },
{ 38, NA, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, NA, 52, 53, 54, NA, 55, 56, 57, 74 },
{ 58, NA, 59, 60, 61, 62, 63, 64, 65, 66, 67, 68, 69, NA, 70, NA, NA, NA, NA, NA, 71, 72, 73, NA },
{ 75, NA, NA, 76, 77, 78, 79, 80, 81, 82, 83, 84, 85, 86, NA, NA, NA, 87, NA, NA, 88, 89, 90, 104 },
{ 91, NA, 92, 93, NA, 94, NA, NA, NA, NA, NA, 95, 96, 97, 98, NA, 99, 100, 101, NA, 102, NA, 103, NA },
{ NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, 105, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA }};
static const char* zone_names[] =
{
"AW510K",
};
static zone_type zone_types[] =
{
ZONE_TYPE_MATRIX,
};
static const unsigned int zone_sizes[] =
{
106,
};
typedef struct
{
const char * name;
const unsigned char zone;
const unsigned char idx;
} led_type;
static const led_type led_names[] =
{
/* Key Label Zone, Index */
{ KEY_EN_ESCAPE, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xB0 },
{ KEY_EN_F1, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x98 },
{ KEY_EN_F2, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x90 },
{ KEY_EN_F3, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x88 },
{ KEY_EN_F4, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x80 },
{ KEY_EN_F5, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x70 },
{ KEY_EN_F6, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x68 },
{ KEY_EN_F7, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x60 },
{ KEY_EN_F8, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x58 },
{ KEY_EN_F9, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x50 },
{ KEY_EN_F10, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x48 },
{ KEY_EN_F11, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x40 },
{ KEY_EN_F12, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x38 },
{ KEY_EN_PRINT_SCREEN, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x30 },
{ KEY_EN_SCROLL_LOCK, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x28 },
{ KEY_EN_PAUSE_BREAK, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x20 },
{ KEY_EN_MEDIA_MUTE, ALIENWARE_AW510K_ZONE_DIRECT_MEDIA, 0x18 },
{ KEY_EN_BACK_TICK, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xB1 },
{ KEY_EN_1, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xA1 },
{ KEY_EN_2, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x99 },
{ KEY_EN_3, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x91 },
{ KEY_EN_4, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x89 },
{ KEY_EN_5, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x81 },
{ KEY_EN_6, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x79 },
{ KEY_EN_7, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x71 },
{ KEY_EN_8, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x69 },
{ KEY_EN_9, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x61 },
{ KEY_EN_0, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x59 },
{ KEY_EN_MINUS, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x51 },
{ KEY_EN_EQUALS, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x49 },
{ KEY_EN_BACKSPACE, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x39 },
{ KEY_EN_INSERT, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x31 },
{ KEY_EN_HOME, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x29 },
{ KEY_EN_PAGE_UP, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x21 },
{ KEY_EN_NUMPAD_LOCK, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x19 },
{ KEY_EN_NUMPAD_DIVIDE, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x11 },
{ KEY_EN_NUMPAD_TIMES, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x09 },
{ KEY_EN_NUMPAD_MINUS, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x01 },
{ KEY_EN_TAB, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xB2 },
{ KEY_EN_Q, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xA2 },
{ KEY_EN_W, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x9A },
{ KEY_EN_E, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x92 },
{ KEY_EN_R, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x8A },
{ KEY_EN_T, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x82 },
{ KEY_EN_Y, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x7A },
{ KEY_EN_U, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x72 },
{ KEY_EN_I, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x6A },
{ KEY_EN_O, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x62 },
{ KEY_EN_P, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x5A },
{ KEY_EN_LEFT_BRACKET, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x52 },
{ KEY_EN_RIGHT_BRACKET, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x4A },
{ KEY_EN_ANSI_BACK_SLASH, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x42 },//ANSI only
{ KEY_EN_DELETE, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x32 },
{ KEY_EN_END, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x2A },
{ KEY_EN_PAGE_DOWN, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x22 },
{ KEY_EN_NUMPAD_7, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x1A },
{ KEY_EN_NUMPAD_8, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x12 },
{ KEY_EN_NUMPAD_9, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x0A },
{ KEY_EN_CAPS_LOCK, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xB3 },
{ KEY_EN_A, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xA3 },
{ KEY_EN_S, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x9B },
{ KEY_EN_D, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x93 },
{ KEY_EN_F, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x8B },
{ KEY_EN_G, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x83 },
{ KEY_EN_H, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x7B },
{ KEY_EN_J, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x73 },
{ KEY_EN_K, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x6B },
{ KEY_EN_L, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x63 },
{ KEY_EN_SEMICOLON, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x5B },
{ KEY_EN_QUOTE, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x53 },
{ KEY_EN_ANSI_ENTER, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x43 },
{ KEY_EN_NUMPAD_4, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x1B },
{ KEY_EN_NUMPAD_5, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x13 },
{ KEY_EN_NUMPAD_6, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x0B },
{ KEY_EN_NUMPAD_PLUS, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x03 },
{ KEY_EN_LEFT_SHIFT, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xB4 },
{ KEY_EN_Z, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xA4 },
{ KEY_EN_X, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x9C },
{ KEY_EN_C, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x94 },
{ KEY_EN_V, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x8C },
{ KEY_EN_B, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x84 },
{ KEY_EN_N, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x7C },
{ KEY_EN_M, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x74 },
{ KEY_EN_COMMA, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x6C },
{ KEY_EN_PERIOD, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x64 },
{ KEY_EN_FORWARD_SLASH, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x5C },
{ KEY_EN_RIGHT_SHIFT, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x4C },
{ KEY_EN_UP_ARROW, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x2C },
{ KEY_EN_NUMPAD_1, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x1C },
{ KEY_EN_NUMPAD_2, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x14 },
{ KEY_EN_NUMPAD_3, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x0C },
{ KEY_EN_LEFT_CONTROL, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xB5 },
{ KEY_EN_LEFT_WINDOWS, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xAD },
{ KEY_EN_LEFT_ALT, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0xA5 },
{ KEY_EN_SPACE, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x85 },
{ KEY_EN_RIGHT_ALT, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x65 },
{ KEY_EN_RIGHT_FUNCTION, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x5D },
{ KEY_EN_MENU, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x55 },
{ KEY_EN_RIGHT_CONTROL, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x4D },
{ KEY_EN_LEFT_ARROW, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x35 },
{ KEY_EN_DOWN_ARROW, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x2D },
{ KEY_EN_RIGHT_ARROW, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x25 },
{ KEY_EN_NUMPAD_0, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x1D },
{ KEY_EN_NUMPAD_PERIOD, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x0D },
{ KEY_EN_NUMPAD_ENTER, ALIENWARE_AW510K_ZONE_DIRECT_KEYBOARD, 0x05 },
{ "Logo", ALIENWARE_AW510K_ZONE_DIRECT_LOGO, 0x07 }
};
/**------------------------------------------------------------------*\
@name Alienware AW510 Keyboard
@type USB
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAlienwareAW510KControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_AlienwareAW510K::RGBController_AlienwareAW510K(AlienwareAW510KController* controller_ptr)
{
controller = controller_ptr;
name = "Alienware AW510K Keyboard Device";
vendor = "Alienware";
type = DEVICE_TYPE_KEYBOARD;
description = "Alienware AW510K Keyboard Device";
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct_Per_LED;
Direct_Per_LED.name = "Direct";
Direct_Per_LED.value = ALIENWARE_AW510K_MODE_DIRECT_PER_LED;
Direct_Per_LED.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct_Per_LED.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct_Per_LED);
mode Static;
Static.name = "Static";
Static.value = ALIENWARE_AW510K_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
mode Pulse;
Pulse.name = "Pulse";
Pulse.value = ALIENWARE_AW510K_MODE_PULSE;
Pulse.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Pulse.color_mode = MODE_COLORS_MODE_SPECIFIC;
Pulse.speed_min = ALIENWARE_AW510K_SPEED_SLOWEST;
Pulse.speed_max = ALIENWARE_AW510K_SPEED_NORMAL;
Pulse.speed = ALIENWARE_AW510K_SPEED_NORMAL;
Pulse.colors_min = 1;
Pulse.colors_max = 1;
Pulse.colors.resize(1);
modes.push_back(Pulse);
mode Morph;
Morph.name = "Morph";
Morph.value = ALIENWARE_AW510K_MODE_MORPH;
Morph.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Morph.color_mode = MODE_COLORS_MODE_SPECIFIC;
Morph.speed_min = ALIENWARE_AW510K_SPEED_SLOWEST;
Morph.speed_max = ALIENWARE_AW510K_SPEED_NORMAL;
Morph.speed = ALIENWARE_AW510K_SPEED_NORMAL;
Morph.colors_min = 2;
Morph.colors_max = 2;
Morph.colors.resize(2);
modes.push_back(Morph);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = ALIENWARE_AW510K_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_SPEED;
Breathing.colors_min = 1;
Breathing.colors_max = 1;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(1);
Breathing.speed_min = ALIENWARE_AW510K_SPEED_SLOWEST;
Breathing.speed_max = ALIENWARE_AW510K_SPEED_FASTEST;
Breathing.speed = ALIENWARE_AW510K_SPEED_NORMAL;
modes.push_back(Breathing);
mode SingleWave;
SingleWave.name = "Single Wave";
SingleWave.value = ALIENWARE_AW510K_MODE_SINGLE_WAVE;
SingleWave.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_DIRECTION_UD;
SingleWave.speed_min = ALIENWARE_AW510K_SPEED_SLOWEST;
SingleWave.speed_max = ALIENWARE_AW510K_SPEED_FASTEST;
SingleWave.speed = ALIENWARE_AW510K_SPEED_NORMAL;
SingleWave.color_mode = MODE_COLORS_MODE_SPECIFIC;
SingleWave.colors_min = 1;
SingleWave.colors_max = 1;
SingleWave.colors.resize(1);
modes.push_back(SingleWave);
mode RainbowWave;
RainbowWave.name = "Rainbow Wave";
RainbowWave.value = ALIENWARE_AW510K_MODE_RAINBOW_WAVE;
RainbowWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_DIRECTION_UD;
RainbowWave.speed_min = ALIENWARE_AW510K_SPEED_SLOWEST;
RainbowWave.speed_max = ALIENWARE_AW510K_SPEED_FASTEST;
RainbowWave.speed = ALIENWARE_AW510K_SPEED_NORMAL;
RainbowWave.colors_min = 1;
RainbowWave.colors_max = 1;
RainbowWave.color_mode = MODE_COLORS_MODE_SPECIFIC;
RainbowWave.colors.resize(1);
modes.push_back(RainbowWave);
mode Off;
Off.name = "Off";
Off.value = ALIENWARE_AW510K_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
SetupZones();
std::copy(colors.begin(), colors.end(),std::back_inserter(current_colors));
}
RGBController_AlienwareAW510K::~RGBController_AlienwareAW510K()
{
/*---------------------------------------------------------*\
| Delete the matrix map |
\*---------------------------------------------------------*/
for(unsigned int zone_index = 0; zone_index < zones.size(); zone_index++)
{
if(zones[zone_index].matrix_map != NULL)
{
delete zones[zone_index].matrix_map;
}
}
delete controller;
}
void RGBController_AlienwareAW510K::SetupZones()
{
/*---------------------------------------------------------*\
| Set up zones |
\*---------------------------------------------------------*/
unsigned int total_led_count = 0;
for(unsigned int zone_idx = 0; zone_idx < 1; zone_idx++)
{
zone new_zone;
new_zone.name = zone_names[zone_idx];
new_zone.type = zone_types[zone_idx];
new_zone.leds_min = zone_sizes[zone_idx];
new_zone.leds_max = zone_sizes[zone_idx];
new_zone.leds_count = zone_sizes[zone_idx];
if(zone_types[zone_idx] == ZONE_TYPE_MATRIX)
{
new_zone.matrix_map = new matrix_map_type;
new_zone.matrix_map->height = 7;
new_zone.matrix_map->width = 24;
new_zone.matrix_map->map = (unsigned int *)&matrix_map;
}
else
{
new_zone.matrix_map = NULL;
}
zones.push_back(new_zone);
total_led_count += zone_sizes[zone_idx];
}
for(unsigned int led_idx = 0; led_idx < total_led_count; led_idx++)
{
led new_led;
new_led.name = led_names[led_idx].name;
new_led.value = led_names[led_idx].idx;
leds.push_back(new_led);
}
SetupColors();
}
void RGBController_AlienwareAW510K::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AlienwareAW510K::DeviceUpdateLEDs()
{
std::vector<SelectedKeys> frame_buf_keys;
std::vector<RGBColor> new_colors;
std::copy(colors.begin(), colors.end(),std::back_inserter(new_colors));
for(std::size_t led_idx = 0; led_idx < leds.size(); led_idx++)
{
if (current_colors[led_idx]==new_colors[led_idx])
{
/*-------------------------------------------------*\
| Don't send if key color is not changed |
\*-------------------------------------------------*/
continue;
}
if(RGBGetRValue(colors[led_idx]) != 0x00 || RGBGetBValue(colors[led_idx]) != 0x00 || RGBGetBValue(colors[led_idx]) != 0x00)
{
SelectedKeys key;
key.idx = (unsigned char)leds[led_idx].value;
key.red = RGBGetRValue(colors[led_idx]);
key.green = RGBGetGValue(colors[led_idx]);
key.blue = RGBGetBValue(colors[led_idx]);
frame_buf_keys.push_back(key);
}
else
{
SelectedKeys key;
key.idx = (unsigned char)leds[led_idx].value;
key.red = RGBGetRValue(colors[led_idx]);
key.green = RGBGetGValue(colors[led_idx]);
key.blue = RGBGetBValue(colors[led_idx]);
frame_buf_keys.push_back(key);
}
}
controller->SendInitialize();
controller->SendfeatureReport(0x05, 0x01, 0x51, 0x00);
controller->SendCommit();
if(frame_buf_keys.size() > 0)
{
controller->SendDirectOn(frame_buf_keys);
}
std::copy(new_colors.begin(), new_colors.end(),current_colors.begin());
}
void RGBController_AlienwareAW510K::UpdateZoneLEDs(int zone)
{
controller->SetDirect((unsigned char) zone, RGBGetRValue(zones[zone].colors[0]), RGBGetGValue(zones[zone].colors[0]), RGBGetBValue(zones[zone].colors[0]));
}
void RGBController_AlienwareAW510K::UpdateSingleLED(int led)
{
controller->UpdateSingleLED(leds[led].value, RGBGetRValue(colors[led]), RGBGetGValue(colors[led]), RGBGetBValue(colors[led]));
}
void RGBController_AlienwareAW510K::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AlienwareAW510K::DeviceUpdateMode()
{
if(active_mode == 0xFFFF)
{
UpdateLEDs();
return;
}
controller->SendfeatureReport(0x05, 0x01, 0x51, 0x00);
unsigned char red = 0;
unsigned char grn = 0;
unsigned char blu = 0;
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
red = RGBGetRValue(modes[active_mode].colors[0]);
grn = RGBGetGValue(modes[active_mode].colors[0]);
blu = RGBGetBValue(modes[active_mode].colors[0]);
}
switch(modes[active_mode].value)
{
case ALIENWARE_AW510K_MODE_MORPH:
/*-------------------------------------------------------------*\
| In case of morph it requires two colors (color1 and color2) |
\*-------------------------------------------------------------*/
{
unsigned char red2 = RGBGetRValue(modes[active_mode].colors[1]);
unsigned char grn2 = RGBGetGValue(modes[active_mode].colors[1]);
unsigned char blu2 = RGBGetBValue(modes[active_mode].colors[1]);
controller->SetMorphMode(modes[active_mode].value, modes[active_mode].speed, red, grn, blu, red2, grn2, blu2);
}
break;
case ALIENWARE_AW510K_MODE_SPECTRUM:
/*-------------------------------------------------------------*\
| Spectrum only set mode, speed and colorMode |
\*-------------------------------------------------------------*/
controller->SetMode(modes[active_mode].value, modes[active_mode].speed, 0x00, ALIENWARE_AW510K_RANBOW_COLOR_MODE, 0x00, 0x00, 0x00);
break;
case ALIENWARE_AW510K_MODE_SINGLE_WAVE:
/*-------------------------------------------------------------*\
| Wave only set mode, speed, direction and colorMode |
\*-------------------------------------------------------------*/
{
int waveDirection = GetAW520K_WaveDirection(modes[active_mode].direction);
controller->SetMode(modes[active_mode].value, modes[active_mode].speed, waveDirection, ALIENWARE_AW510K_SINGLE_COLOR_MODE, red, grn, blu);
}
break;
case ALIENWARE_AW510K_MODE_RAINBOW_WAVE:
/*-------------------------------------------------------------*\
| Wave only set mode, speed, direction and colorMode |
\*-------------------------------------------------------------*/
{
int waveDirection = GetAW520K_WaveDirection(modes[active_mode].direction);
controller->SetMode(modes[active_mode].value, modes[active_mode].speed, waveDirection, ALIENWARE_AW510K_RANBOW_COLOR_MODE, 0x00, 0x00, 0x00);
}
break;
default:
controller->SetMode(modes[active_mode].value, modes[active_mode].speed, 0x00, ALIENWARE_AW510K_SINGLE_COLOR_MODE, red, grn, blu);
break;
}
}
int GetAW520K_WaveDirection(int input)
{
switch(input)
{
case MODE_DIRECTION_LEFT:
return(ALIENWARE_AW510K_DIRECTION_RIGHT_TO_LEFT);
case MODE_DIRECTION_RIGHT:
return(ALIENWARE_AW510K_DIRECTION_LEFT_TO_RIGHT);
case MODE_DIRECTION_UP:
return(ALIENWARE_AW510K_DIRECTION_BOTTOM_TO_TOP);
case MODE_DIRECTION_DOWN:
return(ALIENWARE_AW510K_DIRECTION_TOP_TO_BOTTOM);
default:
return(ALIENWARE_AW510K_DIRECTION_RIGHT_TO_LEFT);
}
}
@@ -1,35 +0,0 @@
/*-----------------------------------------*\
| RGBController_AlienwareAW510K.h |
| |
| Generic RGB Interface for Alienware |
| AW510K keyboard |
| |
| Mohamad Sallal - msallal 05/22/2021 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AlienwareAW510KController.h"
class RGBController_AlienwareAW510K : public RGBController
{
public:
RGBController_AlienwareAW510K(AlienwareAW510KController* controller_ptr);
~RGBController_AlienwareAW510K();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
AlienwareAW510KController* controller;
std::vector<RGBColor> current_colors;
};
@@ -1,122 +0,0 @@
/*-----------------------------------------*\
| AnnePro2Controller.cpp |
| |
| Driver for Obins Lab AnnePro2 keyboard |
| |
| Sergey Gavrilov (DrZlo13) 06/06/2021 |
\*-----------------------------------------*/
#include "AnnePro2Controller.h"
using namespace std::chrono_literals;
AnnePro2Controller::AnnePro2Controller(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
}
AnnePro2Controller::~AnnePro2Controller()
{
hid_close(dev);
}
std::string AnnePro2Controller::GetDeviceLocation()
{
return("HID: " + location);
}
std::string AnnePro2Controller::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
void AnnePro2Controller::SendDirect(unsigned char frame_count, unsigned char * frame_data)
{
/*-------------------------------------------------------------*\
| Reverse engineered by https://github.com/manualmanul/Annemone |
\*-------------------------------------------------------------*/
const unsigned char hid_cmd_service_data_length = 4;
const unsigned char hid_cmd_service_data[hid_cmd_service_data_length] = {0, 123, 16, 65};
const unsigned char hid_cmd_static_message_length = 3;
const unsigned char hid_cmd_static_message[hid_cmd_static_message_length] = {0, 0, 125};
const unsigned char hid_cmd_command_info_length = 3;
const unsigned char hid_cmd_command_info[hid_cmd_command_info_length] = {32, 3, 255};
const unsigned char real_command_info_length = hid_cmd_command_info_length + 1;
const unsigned char max_hid_length = 64;
const unsigned char max_command_length = max_hid_length - hid_cmd_service_data_length - 2 - hid_cmd_static_message_length;
const unsigned char max_message_length = max_command_length - real_command_info_length;
const unsigned char messages_to_send_amount = frame_count / max_message_length + 1;
const unsigned char val_1 = frame_count % max_message_length;
const unsigned char val_2 = (0 == val_1) ? max_message_length : val_1;
unsigned char hid_command[max_hid_length];
unsigned char led_data = 0;
for(unsigned char p = 0; p < messages_to_send_amount; p++)
{
const unsigned char e = (messages_to_send_amount << 4) + p;
const unsigned char a = ((messages_to_send_amount - 1) == p) ? val_2 + real_command_info_length : max_message_length + real_command_info_length;
/*---------------------------------------------------------*\
| Service data |
\*---------------------------------------------------------*/
hid_command[0] = hid_cmd_service_data[0];
hid_command[1] = hid_cmd_service_data[1];
hid_command[2] = hid_cmd_service_data[2];
hid_command[3] = hid_cmd_service_data[3];
hid_command[4] = e;
hid_command[5] = a;
/*---------------------------------------------------------*\
| Static message |
\*---------------------------------------------------------*/
hid_command[6] = hid_cmd_static_message[0];
hid_command[7] = hid_cmd_static_message[1];
hid_command[8] = hid_cmd_static_message[2];
/*---------------------------------------------------------*\
| Command info |
\*---------------------------------------------------------*/
hid_command[9] = hid_cmd_command_info[0];
hid_command[10] = hid_cmd_command_info[1];
hid_command[11] = hid_cmd_command_info[2];
hid_command[12] = 2;
/*---------------------------------------------------------*\
| LED data |
\*---------------------------------------------------------*/
for(uint8_t i = 0; i < max_message_length; i++)
{
hid_command[13 + i] = frame_data[led_data];
led_data++;
}
hid_write(dev, hid_command, max_hid_length);
/*---------------------------------------------------------*\
| Needed due to Anne Pro 2 ignoring commands when they're |
| sent faster than 50ms apart from each other. |
\*---------------------------------------------------------*/
std::this_thread::sleep_for(50ms);
}
}
@@ -1,36 +0,0 @@
/*-----------------------------------------*\
| AnnePro2Controller.h |
| |
| Driver for Obins Lab AnnePro2 keyboard |
| |
| Sergey Gavrilov (DrZlo13) 06/06/2021 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include <string>
#include <vector>
#include <hidapi/hidapi.h>
#pragma once
class AnnePro2Controller
{
public:
AnnePro2Controller(hid_device* dev_handle, const char* path);
~AnnePro2Controller();
std::string GetDeviceLocation();
std::string GetSerialString();
void SendDirect
(
unsigned char frame_count,
unsigned char * frame_data
);
private:
hid_device* dev;
std::string location;
};
@@ -1,36 +0,0 @@
#include "Detector.h"
#include "AnnePro2Controller.h"
#include "RGBController.h"
#include "RGBController_AnnePro2.h"
#include <hidapi/hidapi.h>
#define ANNE_PRO_2_VID 0x04D9
#define ANNE_PRO_2_PID_1 0x8008
#define ANNE_PRO_2_PID_2 0x8009
#define ANNE_PRO_2_PID_3 0xA292
#define ANNE_PRO_2_PID_4 0xA293
/******************************************************************************************\
* *
* DetectAnnePro2Controllers *
* *
* Tests the USB address to see if an Obins Lab AnnePro2 keyboard exists there. *
* *
\******************************************************************************************/
void DetectAnnePro2Controllers(hid_device_info* info, const std::string&)
{
hid_device* dev = hid_open_path(info->path);
if( dev )
{
AnnePro2Controller* controller = new AnnePro2Controller(dev, info->path);
RGBController_AnnePro2* rgb_controller = new RGBController_AnnePro2(controller);
// Constructor sets the name
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
REGISTER_HID_DETECTOR_I("Anne Pro 2", DetectAnnePro2Controllers, ANNE_PRO_2_VID, ANNE_PRO_2_PID_1, 1);
REGISTER_HID_DETECTOR_I("Anne Pro 2", DetectAnnePro2Controllers, ANNE_PRO_2_VID, ANNE_PRO_2_PID_2, 1);
REGISTER_HID_DETECTOR_I("Anne Pro 2", DetectAnnePro2Controllers, ANNE_PRO_2_VID, ANNE_PRO_2_PID_3, 1);
REGISTER_HID_DETECTOR_I("Anne Pro 2", DetectAnnePro2Controllers, ANNE_PRO_2_VID, ANNE_PRO_2_PID_4, 1);
@@ -1,246 +0,0 @@
/*-----------------------------------------*\
| RGBController_AnnePro2.cpp |
| |
| Generic RGB Interface for Obins Lab |
| AnnePro2 keyboard |
| |
| Sergey Gavrilov (DrZlo13) 06/06/2021 |
\*-----------------------------------------*/
#include "RGBControllerKeyNames.h"
#include "RGBController_AnnePro2.h"
#define NA 0xFFFFFFFF
#define LED_REAL_COUNT (5*14)
#define LED_COUNT (LED_REAL_COUNT - 9)
static unsigned int matrix_map[5][14] =
{ { 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13 },
{ 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27 },
{ 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, NA },
{ 41, NA, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, NA },
{ 53, NA, 54, 55, NA, NA, 56, NA, NA, 57, 58, 59, 60, NA } };
static const char* zone_names[] =
{
"Keyboard",
};
static zone_type zone_types[] =
{
ZONE_TYPE_MATRIX
};
static const unsigned int zone_sizes[] =
{
LED_COUNT,
};
typedef struct
{
const char * name;
const unsigned char idx;
} led_type;
static const led_type led_names[] =
{
/* Key Label Index */
{ KEY_EN_ESCAPE, 0 },
{ KEY_EN_1, 1 },
{ KEY_EN_2, 2 },
{ KEY_EN_3, 3 },
{ KEY_EN_4, 4 },
{ KEY_EN_5, 5 },
{ KEY_EN_6, 6 },
{ KEY_EN_7, 7 },
{ KEY_EN_8, 8 },
{ KEY_EN_9, 9 },
{ KEY_EN_0, 10 },
{ KEY_EN_MINUS, 11 },
{ KEY_EN_EQUALS, 12 },
{ KEY_EN_BACKSPACE, 13 },
{ KEY_EN_TAB, 14 },
{ KEY_EN_Q, 15 },
{ KEY_EN_W, 16 },
{ KEY_EN_E, 17 },
{ KEY_EN_R, 18 },
{ KEY_EN_T, 19 },
{ KEY_EN_Y, 20 },
{ KEY_EN_U, 21 },
{ KEY_EN_I, 22 },
{ KEY_EN_O, 23 },
{ KEY_EN_P, 24 },
{ KEY_EN_LEFT_BRACKET, 25 },
{ KEY_EN_RIGHT_BRACKET, 26 },
{ KEY_EN_ANSI_BACK_SLASH, 27 },
{ KEY_EN_CAPS_LOCK, 28 },
{ KEY_EN_A, 29 },
{ KEY_EN_S, 30 },
{ KEY_EN_D, 31 },
{ KEY_EN_F, 32 },
{ KEY_EN_G, 33 },
{ KEY_EN_H, 34 },
{ KEY_EN_J, 35 },
{ KEY_EN_K, 36 },
{ KEY_EN_L, 37 },
{ KEY_EN_SEMICOLON, 38 },
{ KEY_EN_QUOTE, 39 },
{ KEY_EN_ANSI_ENTER, 40 },
{ KEY_EN_LEFT_SHIFT, 41 },
{ KEY_EN_Z, 42 },
{ KEY_EN_X, 43 },
{ KEY_EN_C, 44 },
{ KEY_EN_V, 45 },
{ KEY_EN_B, 46 },
{ KEY_EN_N, 47 },
{ KEY_EN_M, 48 },
{ KEY_EN_COMMA, 49 },
{ KEY_EN_PERIOD, 50 },
{ KEY_EN_FORWARD_SLASH, 51 },
{ KEY_EN_RIGHT_SHIFT, 52 },
{ KEY_EN_LEFT_CONTROL, 53 },
{ KEY_EN_LEFT_WINDOWS, 54 },
{ KEY_EN_LEFT_ALT, 55 },
{ KEY_EN_SPACE, 56 },
{ KEY_EN_RIGHT_ALT, 57 },
{ KEY_EN_RIGHT_FUNCTION, 58 },
{ KEY_EN_MENU, 59 },
{ KEY_EN_RIGHT_CONTROL, 60 },
};
/**------------------------------------------------------------------*\
@name Anne Pro 2
@type USB
@save :x:
@direct :white_check_mark:
@effects :x:
@detectors DetectAnnePro2Controllers
@comment
\*-------------------------------------------------------------------*/
RGBController_AnnePro2::RGBController_AnnePro2(AnnePro2Controller* controller_ptr)
{
controller = controller_ptr;
name = "Anne Pro 2";
vendor = "Obinslab";
type = DEVICE_TYPE_KEYBOARD;
description = "Obinslab Anne Pro 2 Device";
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = 0;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
SetupZones();
}
RGBController_AnnePro2::~RGBController_AnnePro2()
{
delete controller;
}
void RGBController_AnnePro2::SetupZones()
{
/*---------------------------------------------------------*\
| Set up zones |
\*---------------------------------------------------------*/
unsigned int total_led_count = 0;
for(unsigned int zone_idx = 0; zone_idx < 1; zone_idx++)
{
zone new_zone;
new_zone.name = zone_names[zone_idx];
new_zone.type = zone_types[zone_idx];
new_zone.leds_min = zone_sizes[zone_idx];
new_zone.leds_max = zone_sizes[zone_idx];
new_zone.leds_count = zone_sizes[zone_idx];
if(zone_types[zone_idx] == ZONE_TYPE_MATRIX)
{
new_zone.matrix_map = new matrix_map_type;
new_zone.matrix_map->height = 5;
new_zone.matrix_map->width = 14;
new_zone.matrix_map->map = (unsigned int *)&matrix_map;
}
else
{
new_zone.matrix_map = NULL;
}
zones.push_back(new_zone);
total_led_count += zone_sizes[zone_idx];
}
for(unsigned int led_idx = 0; led_idx < total_led_count; led_idx++)
{
led new_led;
new_led.name = led_names[led_idx].name;
new_led.value = led_names[led_idx].idx;
leds.push_back(new_led);
}
SetupColors();
}
void RGBController_AnnePro2::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AnnePro2::DeviceUpdateLEDs()
{
const unsigned char frame_buf_length = LED_REAL_COUNT * 3;
unsigned char frame_buf[frame_buf_length];
/*---------------------------------------------------------*\
| TODO: Send packets with multiple LED frames |
\*---------------------------------------------------------*/
std::size_t led_real_idx = 0;
for(std::size_t led_idx = 0; led_idx < leds.size(); led_idx++)
{
frame_buf[(led_real_idx * 3) + 0] = RGBGetRValue(colors[led_idx]);
frame_buf[(led_real_idx * 3) + 1] = RGBGetGValue(colors[led_idx]);
frame_buf[(led_real_idx * 3) + 2] = RGBGetBValue(colors[led_idx]);
if(led_idx == 40 || led_idx == 41 || led_idx == 52 || led_idx == 53 || led_idx == 60)
{
led_real_idx++;
}
else if(led_idx == 55 || led_idx == 56)
{
led_real_idx++;
led_real_idx++;
}
led_real_idx++;
}
controller->SendDirect(frame_buf_length, frame_buf);
}
void RGBController_AnnePro2::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AnnePro2::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_AnnePro2::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AnnePro2::DeviceUpdateMode()
{
}
@@ -1,32 +0,0 @@
/*-----------------------------------------*\
| RGBController_AnnePro2.h |
| |
| Generic RGB Interface for Obins Lab |
| AnnePro2 keyboard |
| |
| Sergey Gavrilov (DrZlo13) 06/06/2021 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AnnePro2Controller.h"
class RGBController_AnnePro2 : public RGBController
{
public:
RGBController_AnnePro2(AnnePro2Controller* controller_ptr);
~RGBController_AnnePro2();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
AnnePro2Controller* controller;
};
@@ -1,38 +1,34 @@
#include "Detector.h"
#include "AsusAuraCoreController.h"
#include "RGBController.h"
#include "RGBController_AsusAuraCore.h"
#include <hidapi/hidapi.h>
#define AURA_CORE_VID 0x0B05
/******************************************************************************************\
* *
* DetectAuraCoreControllers *
* *
* Tests the USB address to see if an Asus ROG Aura Core controller exists there *
* *
\******************************************************************************************/
void DetectAsusAuraCoreControllers(hid_device_info* info, const std::string&)
{
hid_device* dev = hid_open_path(info->path);
if( dev )
{
AuraCoreController* controller = new AuraCoreController(dev, info->path);
RGBController_AuraCore* rgb_controller = new RGBController_AuraCore(controller);
// Constructor sets the name
if(rgb_controller->type != DEVICE_TYPE_UNKNOWN)
{
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
else
{
delete rgb_controller;
}
}
}
REGISTER_HID_DETECTOR("ASUS Aura Core", DetectAsusAuraCoreControllers, AURA_CORE_VID, 0x1854);
REGISTER_HID_DETECTOR("ASUS Aura Core", DetectAsusAuraCoreControllers, AURA_CORE_VID, 0x1866);
REGISTER_HID_DETECTOR("ASUS Aura Core", DetectAsusAuraCoreControllers, AURA_CORE_VID, 0x1869);
#include "Detector.h"
#include "AsusAuraCoreController.h"
#include "RGBController.h"
#include "RGBController_AsusAuraCore.h"
#include <hidapi/hidapi.h>
#define AURA_CORE_VID 0x0B05
/******************************************************************************************\
* *
* DetectAuraCoreControllers *
* *
* Tests the USB address to see if an Asus ROG Aura Core controller exists there *
* *
\******************************************************************************************/
void DetectAsusAuraCoreControllers(hid_device_info* info, const std::string&)
{
hid_device* dev = hid_open_path(info->path);
if( dev )
{
AuraCoreController* controller = new AuraCoreController(dev, info->path);
RGBController_AuraCore* rgb_controller = new RGBController_AuraCore(controller);
// Constructor sets the name
if(rgb_controller->type != DEVICE_TYPE_UNKNOWN)
{
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
}
REGISTER_HID_DETECTOR("ASUS Aura Core", DetectAsusAuraCoreControllers, AURA_CORE_VID, 0x1854);
REGISTER_HID_DETECTOR("ASUS Aura Core", DetectAsusAuraCoreControllers, AURA_CORE_VID, 0x1866);
REGISTER_HID_DETECTOR("ASUS Aura Core", DetectAsusAuraCoreControllers, AURA_CORE_VID, 0x1869);
@@ -1,329 +1,319 @@
/*-----------------------------------------*\
| RGBController_AsusAuraCore.cpp |
| |
| Generic RGB Interface for ROG Aura Core |
| |
| Adam Honse (CalcProgrammer1) 4/17/2020 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraCore.h"
/**------------------------------------------------------------------*\
@name Asus AURA Core
@type USB
@save :x:
@direct :warning:
@effects :white_check_mark:
@detectors DetectAsusAuraCoreControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_AuraCore::RGBController_AuraCore(AuraCoreController* controller_ptr)
{
controller = controller_ptr;
name = "ASUS Aura Core Device";
vendor = "ASUS";
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
description = "ASUS Aura Core Device";
type = DEVICE_TYPE_UNKNOWN;
if(controller->aura_device.aura_type == AURA_CORE_DEVICE_KEYBOARD)
{
SetupKeyboard();
}
else if(controller->aura_device.aura_type == AURA_CORE_DEVICE_GA15DH)
{
SetupGA15DH();
}
SetupZones();
}
void RGBController_AuraCore::SetupKeyboard()
{
name = "ASUS Aura Keyboard";
vendor = "ASUS";
type = DEVICE_TYPE_KEYBOARD;
description = "ASUS Aura Core Device";
mode Static;
Static.name = "Static";
Static.value = AURA_CORE_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_CORE_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode ColorCycle;
ColorCycle.name = "Color Cycle";
ColorCycle.value = AURA_CORE_MODE_SPECTRUM_CYCLE;
ColorCycle.flags = 0;
ColorCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(ColorCycle);
}
void RGBController_AuraCore::SetupGA15DH()
{
name = "ASUS Aura GA15DH";
vendor = "ASUS";
type = DEVICE_TYPE_LEDSTRIP;
description = "ASUS Aura Core Device";
mode Static;
Static.name = "Static";
Static.value = AURA_CORE_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_CORE_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_SPEED;
Breathing.speed_min = AURA_CORE_SPEED_SLOW;
Breathing.speed_max = AURA_CORE_SPEED_FAST;
Breathing.speed = AURA_CORE_SPEED_NORMAL;
Breathing.colors_min = 1;
Breathing.colors_max = 2;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(2);
modes.push_back(Breathing);
mode ColorCycle;
ColorCycle.name = "Color Cycle";
ColorCycle.value = AURA_CORE_MODE_SPECTRUM_CYCLE;
ColorCycle.flags = MODE_FLAG_HAS_SPEED;
ColorCycle.speed_min = AURA_CORE_SPEED_SLOW;
ColorCycle.speed_max = AURA_CORE_SPEED_FAST;
ColorCycle.speed = AURA_CORE_SPEED_NORMAL;
ColorCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(ColorCycle);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = AURA_CORE_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
Rainbow.speed_min = AURA_CORE_SPEED_SLOW;
Rainbow.speed_max = AURA_CORE_SPEED_FAST;
Rainbow.speed = AURA_CORE_SPEED_NORMAL;
Rainbow.direction = MODE_DIRECTION_RIGHT;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
mode Strobe;
Strobe.name = "Strobe";
Strobe.value = AURA_CORE_MODE_STROBE;
Strobe.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Strobe.colors_min = 1;
Strobe.colors_max = 1;
Strobe.color_mode = MODE_COLORS_MODE_SPECIFIC;
Strobe.colors.resize(1);
modes.push_back(Strobe);
mode Comet;
Comet.name = "Comet";
Comet.value = AURA_CORE_MODE_COMET;
Comet.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Comet.colors_min = 1;
Comet.colors_max = 1;
Comet.color_mode = MODE_COLORS_MODE_SPECIFIC;
Comet.colors.resize(1);
modes.push_back(Comet);
mode Flash;
Flash.name = "Flash & Dash";
Flash.value = AURA_CORE_MODE_FLASHNDASH;
Flash.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Flash.colors_min = 1;
Flash.colors_max = 1;
Flash.color_mode = MODE_COLORS_MODE_SPECIFIC;
Flash.colors.resize(1);
modes.push_back(Flash);
mode Irradiation;
Irradiation.name = "Irradiation";
Irradiation.value = AURA_CORE_MODE_IRRADIATION;
Irradiation.flags = 0;
Irradiation.color_mode = MODE_COLORS_NONE;
modes.push_back(Irradiation);
mode Direct;
Static.name = "Direct";
Static.value = AURA_CORE_MODE_DIRECT;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
}
RGBController_AuraCore::~RGBController_AuraCore()
{
delete controller;
}
void RGBController_AuraCore::SetupZones()
{
zone auraZone;
if(controller->aura_device.aura_type == AURA_CORE_DEVICE_KEYBOARD)
{
auraZone.name = "Keyboard";
auraZone.type = ZONE_TYPE_SINGLE;
auraZone.leds_min = 4;
auraZone.leds_max = 4;
auraZone.leds_count = 4;
auraZone.matrix_map = NULL;
}
else if(controller->aura_device.aura_type == AURA_CORE_DEVICE_GA15DH)
{
auraZone.name = "GA15DH";
auraZone.type = ZONE_TYPE_LINEAR;
auraZone.leds_min = 20;
auraZone.leds_max = 20;
auraZone.leds_count = 20;
auraZone.matrix_map = NULL;
}
else
{
auraZone.leds_count = 0;
}
zones.push_back(auraZone);
for(unsigned int led_idx = 0; led_idx < auraZone.leds_count; led_idx++)
{
led KeyLED;
KeyLED.name = auraZone.name + " ";
KeyLED.name.append(std::to_string(led_idx + 1));
leds.push_back(KeyLED);
}
SetupColors();
}
void RGBController_AuraCore::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AuraCore::DeviceUpdateLEDs()
{
UpdateZoneLEDs(0);
}
void RGBController_AuraCore::UpdateZoneLEDs(int /*zone*/)
{
if(modes[active_mode].value == AURA_CORE_MODE_DIRECT)
{
std::vector<AuraColor> aura_colors;
std::vector<RGBColor>& color_set = colors;
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
color_set = modes[active_mode].colors;
}
for(unsigned int led_idx = 0; led_idx < leds.size(); led_idx++)
{
AuraColor new_color;
new_color.red = RGBGetRValue(color_set[led_idx]);
new_color.green = RGBGetGValue(color_set[led_idx]);
new_color.blue = RGBGetBValue(color_set[led_idx]);
aura_colors.push_back(new_color);
}
controller->UpdateDirect(aura_colors);
}
else if(modes[active_mode].color_mode == MODE_COLORS_PER_LED)
{
for(unsigned int led_idx = 0; led_idx < leds.size(); led_idx++)
{
UpdateSingleLED(led_idx);
}
}
else
{
UpdateSingleLED(0);
}
}
void RGBController_AuraCore::UpdateSingleLED(int led)
{
unsigned char speed = 0xFF;
unsigned char red = 0;
unsigned char green = 0;
unsigned char blue = 0;
unsigned char dir = 0;
mode& curr_mode = modes[active_mode];
if(curr_mode.color_mode == MODE_COLORS_PER_LED)
{
red = RGBGetRValue(colors[led]);
green = RGBGetGValue(colors[led]);
blue = RGBGetBValue(colors[led]);
}
else if(curr_mode.color_mode == MODE_COLORS_MODE_SPECIFIC)
{
red = RGBGetRValue(curr_mode.colors[led]);
green = RGBGetGValue(curr_mode.colors[led]);
blue = RGBGetBValue(curr_mode.colors[led]);
}
if(curr_mode.flags & MODE_FLAG_HAS_SPEED)
{
speed = curr_mode.speed;
}
if(curr_mode.flags & MODE_FLAG_HAS_DIRECTION_LR)
{
if(curr_mode.direction == MODE_DIRECTION_RIGHT)
{
dir = 1;
}
}
controller->SendUpdate
(
led,
curr_mode.value,
speed,
dir,
red,
green,
blue
);
controller->SendSet();
controller->SendApply();
}
void RGBController_AuraCore::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AuraCore::DeviceUpdateMode()
{
if(modes[active_mode].value == AURA_CORE_MODE_DIRECT)
{
controller->InitDirectMode();
}
else
{
DeviceUpdateLEDs();
}
}
/*-----------------------------------------*\
| RGBController_AsusAuraCore.cpp |
| |
| Generic RGB Interface for ROG Aura Core |
| |
| Adam Honse (CalcProgrammer1) 4/17/2020 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraCore.h"
RGBController_AuraCore::RGBController_AuraCore(AuraCoreController* aura_ptr)
{
aura = aura_ptr;
name = "ASUS Aura Core Device";
vendor = "ASUS";
location = aura->GetDeviceLocation();
serial = aura->GetSerialString();
description = "ASUS Aura Core Device";
type = DEVICE_TYPE_UNKNOWN;
if(aura->aura_device.aura_type == AURA_CORE_DEVICE_KEYBOARD)
{
SetupKeyboard();
}
else if(aura->aura_device.aura_type == AURA_CORE_DEVICE_GA15DH)
{
SetupGA15DH();
}
SetupZones();
}
void RGBController_AuraCore::SetupKeyboard()
{
name = "ASUS Aura Keyboard";
vendor = "ASUS";
type = DEVICE_TYPE_KEYBOARD;
description = "ASUS Aura Core Device";
mode Static;
Static.name = "Static";
Static.value = AURA_CORE_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_CORE_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode ColorCycle;
ColorCycle.name = "Color Cycle";
ColorCycle.value = AURA_CORE_MODE_SPECTRUM_CYCLE;
ColorCycle.flags = 0;
ColorCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(ColorCycle);
}
void RGBController_AuraCore::SetupGA15DH()
{
name = "ASUS Aura GA15DH";
vendor = "ASUS";
type = DEVICE_TYPE_LEDSTRIP;
description = "ASUS Aura Core Device";
mode Static;
Static.name = "Static";
Static.value = AURA_CORE_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_CORE_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_SPEED;
Breathing.speed_min = AURA_CORE_SPEED_SLOW;
Breathing.speed_max = AURA_CORE_SPEED_FAST;
Breathing.speed = AURA_CORE_SPEED_NORMAL;
Breathing.colors_min = 1;
Breathing.colors_max = 2;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(2);
modes.push_back(Breathing);
mode ColorCycle;
ColorCycle.name = "Color Cycle";
ColorCycle.value = AURA_CORE_MODE_SPECTRUM_CYCLE;
ColorCycle.flags = MODE_FLAG_HAS_SPEED;
ColorCycle.speed_min = AURA_CORE_SPEED_SLOW;
ColorCycle.speed_max = AURA_CORE_SPEED_FAST;
ColorCycle.speed = AURA_CORE_SPEED_NORMAL;
ColorCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(ColorCycle);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = AURA_CORE_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
Rainbow.speed_min = AURA_CORE_SPEED_SLOW;
Rainbow.speed_max = AURA_CORE_SPEED_FAST;
Rainbow.speed = AURA_CORE_SPEED_NORMAL;
Rainbow.direction = MODE_DIRECTION_RIGHT;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
mode Strobe;
Strobe.name = "Strobe";
Strobe.value = AURA_CORE_MODE_STROBE;
Strobe.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Strobe.colors_min = 1;
Strobe.colors_max = 1;
Strobe.color_mode = MODE_COLORS_MODE_SPECIFIC;
Strobe.colors.resize(1);
modes.push_back(Strobe);
mode Comet;
Comet.name = "Comet";
Comet.value = AURA_CORE_MODE_COMET;
Comet.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Comet.colors_min = 1;
Comet.colors_max = 1;
Comet.color_mode = MODE_COLORS_MODE_SPECIFIC;
Comet.colors.resize(1);
modes.push_back(Comet);
mode Flash;
Flash.name = "Flash & Dash";
Flash.value = AURA_CORE_MODE_FLASHNDASH;
Flash.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Flash.colors_min = 1;
Flash.colors_max = 1;
Flash.color_mode = MODE_COLORS_MODE_SPECIFIC;
Flash.colors.resize(1);
modes.push_back(Flash);
mode Irradiation;
Irradiation.name = "Irradiation";
Irradiation.value = AURA_CORE_MODE_IRRADIATION;
Irradiation.flags = 0;
Irradiation.color_mode = MODE_COLORS_NONE;
modes.push_back(Irradiation);
mode Direct;
Static.name = "Direct";
Static.value = AURA_CORE_MODE_DIRECT;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
}
RGBController_AuraCore::~RGBController_AuraCore()
{
delete aura;
}
void RGBController_AuraCore::SetupZones()
{
zone auraZone;
if(aura->aura_device.aura_type == AURA_CORE_DEVICE_KEYBOARD)
{
auraZone.name = "Keyboard";
auraZone.type = ZONE_TYPE_SINGLE;
auraZone.leds_min = 4;
auraZone.leds_max = 4;
auraZone.leds_count = 4;
auraZone.matrix_map = NULL;
}
else if(aura->aura_device.aura_type == AURA_CORE_DEVICE_GA15DH)
{
auraZone.name = "GA15DH";
auraZone.type = ZONE_TYPE_LINEAR;
auraZone.leds_min = 20;
auraZone.leds_max = 20;
auraZone.leds_count = 20;
auraZone.matrix_map = NULL;
}
else
{
auraZone.leds_count = 0;
}
zones.push_back(auraZone);
for(unsigned int led_idx = 0; led_idx < auraZone.leds_count; led_idx++)
{
led KeyLED;
KeyLED.name = auraZone.name + " ";
KeyLED.name.append(std::to_string(led_idx + 1));
leds.push_back(KeyLED);
}
SetupColors();
}
void RGBController_AuraCore::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AuraCore::DeviceUpdateLEDs()
{
UpdateZoneLEDs(0);
}
void RGBController_AuraCore::UpdateZoneLEDs(int /*zone*/)
{
if(modes[active_mode].value == AURA_CORE_MODE_DIRECT)
{
std::vector<AuraColor> aura_colors;
std::vector<RGBColor>& color_set = colors;
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
color_set = modes[active_mode].colors;
}
for(unsigned int led_idx = 0; led_idx < leds.size(); led_idx++)
{
AuraColor new_color;
new_color.red = RGBGetRValue(color_set[led_idx]);
new_color.green = RGBGetGValue(color_set[led_idx]);
new_color.blue = RGBGetBValue(color_set[led_idx]);
aura_colors.push_back(new_color);
}
aura->UpdateDirect(aura_colors);
}
else if(modes[active_mode].color_mode == MODE_COLORS_PER_LED)
{
for(unsigned int led_idx = 0; led_idx < leds.size(); led_idx++)
{
UpdateSingleLED(led_idx);
}
}
else
{
UpdateSingleLED(0);
}
}
void RGBController_AuraCore::UpdateSingleLED(int led)
{
unsigned char speed = 0xFF;
unsigned char red = 0;
unsigned char green = 0;
unsigned char blue = 0;
unsigned char dir = 0;
mode& curr_mode = modes[active_mode];
if(curr_mode.color_mode == MODE_COLORS_PER_LED)
{
red = RGBGetRValue(colors[led]);
green = RGBGetGValue(colors[led]);
blue = RGBGetBValue(colors[led]);
}
else if(curr_mode.color_mode == MODE_COLORS_MODE_SPECIFIC)
{
red = RGBGetRValue(curr_mode.colors[led]);
green = RGBGetGValue(curr_mode.colors[led]);
blue = RGBGetBValue(curr_mode.colors[led]);
}
if(curr_mode.flags & MODE_FLAG_HAS_SPEED)
{
speed = curr_mode.speed;
}
if(curr_mode.flags & MODE_FLAG_HAS_DIRECTION_LR)
{
if(curr_mode.direction == MODE_DIRECTION_RIGHT)
{
dir = 1;
}
}
aura->SendUpdate
(
led,
curr_mode.value,
speed,
dir,
red,
green,
blue
);
aura->SendSet();
aura->SendApply();
}
void RGBController_AuraCore::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AuraCore::DeviceUpdateMode()
{
if(modes[active_mode].value == AURA_CORE_MODE_DIRECT)
{
aura->InitDirectMode();
}
else
{
DeviceUpdateLEDs();
}
}
@@ -1,35 +1,35 @@
/*-----------------------------------------*\
| RGBController_AsusAuraCore.h |
| |
| Generic RGB Interface for ROG Aura Core |
| |
| Adam Honse (CalcProgrammer1) 4/17/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusAuraCoreController.h"
class RGBController_AuraCore : public RGBController
{
public:
RGBController_AuraCore(AuraCoreController* controller_ptr);
~RGBController_AuraCore();
void SetupKeyboard();
void SetupGA15DH();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
AuraCoreController* controller;
};
/*-----------------------------------------*\
| RGBController_AsusAuraCore.h |
| |
| Generic RGB Interface for ROG Aura Core |
| |
| Adam Honse (CalcProgrammer1) 4/17/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusAuraCoreController.h"
class RGBController_AuraCore : public RGBController
{
public:
RGBController_AuraCore(AuraCoreController* aura_ptr);
~RGBController_AuraCore();
void SetupKeyboard();
void SetupGA15DH();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
AuraCoreController* aura;
};
@@ -8,7 +8,6 @@
#include "Detector.h"
#include "AsusAuraGPUController.h"
#include "LogManager.h"
#include "RGBController.h"
#include "RGBController_AsusAuraGPU.h"
#include "i2c_smbus.h"
@@ -29,62 +28,29 @@ typedef struct
const char * name;
} gpu_pci_device;
#define ASUSGPU_CONTROLLER_NAME "ASUS Aura GPU"
#define GPU_NUM_DEVICES (sizeof(device_list) / sizeof(device_list[ 0 ]))
static const gpu_pci_device device_list[] =
{
{ NVIDIA_VEN, NVIDIA_GTX1050_DEV, ASUS_SUB_VEN, ASUS_GTX1050_STRIX_O2G_GAMING, 0x29, "ASUS ROG Strix GTX 1050 O2G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1050TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1050TI_O4G_GAMING, 0x29, "ASUS ROG Strix GTX 1050 TI O4G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1050TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1050TI_O4G_GAMING_2, 0x29, "ASUS ROG Strix GTX 1050 TI O4G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1060_DEV, ASUS_SUB_VEN, ASUS_GTX1060_STRIX_6G_GAMING, 0x29, "ASUS GTX 1060 Strix 6G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1060_DEV, ASUS_SUB_VEN, ASUS_GTX1060_STRIX, 0x29, "ASUS GTX 1060 Strix" },
{ NVIDIA_VEN, NVIDIA_GTX1070_DEV, ASUS_SUB_VEN, ASUS_GTX1070_STRIX_GAMING, 0x29, "ASUS GTX 1070 Strix Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1070_DEV, ASUS_SUB_VEN, ASUS_GTX1070_STRIX_OC, 0x29, "ASUS GTX 1070 Strix OC" },
{ NVIDIA_VEN, NVIDIA_GTX1070TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1070TI_8G_GAMING, 0x29, "ASUS ROG Strix GTX1070 Ti 8G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1070TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1070TI_A8G_GAMING, 0x29, "ASUS ROG Strix GTX1070 Ti A8G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1080_DEV, ASUS_SUB_VEN, ASUS_GTX1080_STRIX, 0x29, "ASUS GTX 1080 Strix OC" },
{ NVIDIA_VEN, NVIDIA_GTX1080_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1080_A8G_GAMING, 0x29, "ASUS ROG Strix GTX1080 A8G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1080_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1080_O8G_GAMING, 0x29, "ASUS ROG Strix GTX1080 O8G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1080TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1080TI_GAMING, 0x29, "ASUS ROG Strix GTX1080 Ti Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1080TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1080TI_11G_GAMING, 0x29, "ASUS ROG Strix GTX1080 Ti 11G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1080TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1080TI_O11G_GAMING, 0x29, "ASUS ROG Strix GTX1080 Ti O11G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1080TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1080TI_O11G_GAMING_A02, 0x29, "ASUS ROG Strix GTX1080 Ti O11G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1650S_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1650S_OC, 0x2A, "ASUS ROG Strix GTX 1650S OC 4G" },
{ NVIDIA_VEN, NVIDIA_GTX1660S_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1660S_O6G_GAMING, 0x2A, "ASUS ROG Strix GTX 1660S O6G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1660TI_DEV, ASUS_SUB_VEN, ASUS_ROG_GTX1660TI_OC, 0x2A, "ASUS ROG GTX 1660 Ti OC 6G" },
{ NVIDIA_VEN, NVIDIA_RTX2060_TU106_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2060_EVO_GAMING, 0x2A, "ASUS ROG STRIX RTX 2060 EVO Gaming 6G" },
{ NVIDIA_VEN, NVIDIA_RTX2060_TU106_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2060_O6G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2060 O6G Gaming 6G" },
{ NVIDIA_VEN, NVIDIA_RTX2060_TU104_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2060_O6G_EVO_GAMING, 0x2A, "ASUS ROG STRIX RTX 2060 O6G EVO Gaming" },
{ NVIDIA_VEN, NVIDIA_RTX2060S_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2060S_8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2060S 8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2060S_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2060S_A8G_EVO_GAMING, 0x2A, "ASUS ROG STRIX RTX 2060S A8G EVO Gaming 8G"},
{ NVIDIA_VEN, NVIDIA_RTX2060S_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2060S_O8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2060S O8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2060S_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2060S_A8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2060S A8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2070_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070_A8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2070 A8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2070_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070_O8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2070 O8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2070S_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070S_A8G_GAMING_86FF, 0x2A, "ASUS ROG STRIX RTX 2070S A8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2070S_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070S_A8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2070S A8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2070S_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070S_A8G_GAMING_8706, 0x2A, "ASUS ROG STRIX RTX 2070S A8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2070S_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070S_O8G_GAMING_8729, 0x2A, "ASUS ROG STRIX RTX 2070S O8G Gaming" },
{ NVIDIA_VEN, NVIDIA_RTX2070S_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070S_8G_GAMING_8707, 0x2A, "ASUS ROG STRIX RTX 2070S 8G Gaming" },
{ NVIDIA_VEN, NVIDIA_RTX2070S_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070S_O8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2070S O8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2080_A_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080_O8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2080 O8G Gaming" },
{ NVIDIA_VEN, NVIDIA_RTX2080S_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080S_A8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2080S A8G Gaming" },
{ NVIDIA_VEN, NVIDIA_RTX2080S_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080S_O8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2080S O8G Gaming" },
{ NVIDIA_VEN, NVIDIA_RTX2080S_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080S_O8G_WHITE, 0x2A, "ASUS ROG STRIX RTX 2080S O8G White" },
{ NVIDIA_VEN, NVIDIA_RTX2080TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080TI_11G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2080 Ti 11G Gaming" },
{ NVIDIA_VEN, NVIDIA_RTX2080TI_A_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080TI_O11G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2080 Ti O11G Gaming" },
{ NVIDIA_VEN, NVIDIA_RTX2080TI_A_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080TI_A11G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2080 Ti A11G Gaming" },
{ NVIDIA_VEN, NVIDIA_RTX3060TI_LHR_DEV, ASUS_SUB_VEN, ASUS_TUF_RTX_3060_TI_O8G_OC, 0x2A, "ASUS TUF RTX 3060 Ti 8G Gaming OC" },
{ AMD_GPU_VEN, AMD_VEGA10_DEV, ASUS_SUB_VEN, ASUS_AREZ_STRIX_VEGA56_08G_GAMING, 0x29, "ASUS AREZ Strix RX Vega 56 O8G" },
{ AMD_GPU_VEN, AMD_VEGA10_DEV, ASUS_SUB_VEN, ASUS_VEGA64_STRIX, 0x29, "ASUS Vega 64 Strix" },
{ AMD_GPU_VEN, AMD_NAVI10_DEV, ASUS_SUB_VEN, ASUS_RX5600XT_STRIX_O6G_GAMING, 0x2A, "ASUS RX 5600XT Strix O6G Gaming" },
{ AMD_GPU_VEN, AMD_NAVI10_DEV, ASUS_SUB_VEN, ASUS_RX5700XT_STRIX_GAMING_OC, 0x2A, "ASUS RX 5700XT Strix Gaming OC" },
{ AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX480_STRIX_GAMING_OC, 0x29, "ASUS ROG STRIX RX480 Gaming OC" },
{ AMD_GPU_VEN, AMD_POLARIS11, ASUS_SUB_VEN, ASUS_RX560_STRIX_4G_GAMING, 0x29, "ASUS ROG STRIX RX560 Gaming" },
{ AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX570_STRIX_O4G_GAMING_OC, 0x29, "ASUS RX 570 Strix O4G Gaming OC" },
{ AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX580_STRIX_GAMING_OC, 0x29, "ASUS RX 580 Strix Gaming OC" },
{ AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX580_STRIX_GAMING_TOP, 0x29, "ASUS RX 580 Strix Gaming TOP" },
{ NVIDIA_VEN, NVIDIA_GTX1060_DEV, ASUS_SUB_VEN, ASUS_GTX1060_STRIX, 0x29, "ASUS GTX 1060 Strix" },
{ NVIDIA_VEN, NVIDIA_GTX1070_DEV, ASUS_SUB_VEN, ASUS_GTX1070_STRIX_GAMING, 0x29, "ASUS GTX 1070 Strix Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1070_DEV, ASUS_SUB_VEN, ASUS_GTX1070_STRIX_OC, 0x29, "ASUS GTX 1070 Strix OC" },
{ NVIDIA_VEN, NVIDIA_GTX1080_DEV, ASUS_SUB_VEN, ASUS_GTX1080_STRIX, 0x29, "ASUS GTX 1080 Strix OC" },
{ NVIDIA_VEN, NVIDIA_GTX1080_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1080_A8G_GAMING, 0x29, "ASUS ROG Strix GTX1080 A8G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1080_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1080_O8G_GAMING, 0x29, "ASUS ROG Strix GTX1080 O8G Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1080TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1080TI_GAMING, 0x29, "ASUS ROG Strix GTX1080 Ti Gaming" },
{ NVIDIA_VEN, NVIDIA_GTX1660TI_DEV, ASUS_SUB_VEN, ASUS_ROG_GTX1660TI_OC, 0x2A, "ASUS ROG GTX 1660 Ti OC 6G" },
{ NVIDIA_VEN, NVIDIA_RTX2060_TU106_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2060_EVO_GAMING, 0x2A, "ASUS ROG STRIX RTX 2060 EVO Gaming 6G" },
{ NVIDIA_VEN, NVIDIA_RTX2060S_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2060S_A8G_EVO_GAMING, 0x2A, "ASUS ROG STRIX RTX 2060S A8G EVO Gaming 6G"},
{ NVIDIA_VEN, NVIDIA_RTX2070_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070_A8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2070 A8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2070_OC_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070_O8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2070 O8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2070S_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070S_A8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2070S A8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2070S_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2070S_O8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2070S O8G Gaming 8G" },
{ NVIDIA_VEN, NVIDIA_RTX2080_A_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080_O8G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2080 O8G Gaming" },
{ NVIDIA_VEN, NVIDIA_RTX2080TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080TI_O11G_GAMING, 0x2A, "ASUS ROG STRIX RTX 2080 Ti O11G Gaming" },
{ AMD_GPU_VEN, AMD_VEGA10_DEV, ASUS_SUB_VEN, ASUS_VEGA64_STRIX, 0x29, "ASUS Vega 64 Strix" },
{ AMD_GPU_VEN, AMD_NAVI10_DEV, ASUS_SUB_VEN, ASUS_RX5700XT_STRIX_GAMING_OC, 0x2A, "ASUS RX 5700XT Strix Gaming OC" },
{ AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX580_STRIX_GAMING_OC, 0x29, "ASUS RX 580 Strix Gaming OC" }
};
/******************************************************************************************\
@@ -102,8 +68,6 @@ bool TestForAsusAuraGPUController(i2c_smbus_interface* bus, unsigned char addres
unsigned char aura_gpu_magic_high = bus->i2c_smbus_read_byte_data(address, 0x20); // High Byte of magic (0x15)
unsigned char aura_gpu_magic_low = bus->i2c_smbus_read_byte_data(address, 0x21); // Low Byte of magic (0x89)
LOG_DEBUG("[%s] Test GPU expect: 0x1589 received: 0x%02X%02X", ASUSGPU_CONTROLLER_NAME, aura_gpu_magic_high, aura_gpu_magic_low);
if((aura_gpu_magic_high << 8) + aura_gpu_magic_low == AURA_GPU_MAGIC_VAL)
{
pass = true;
@@ -123,7 +87,10 @@ bool TestForAsusAuraGPUController(i2c_smbus_interface* bus, unsigned char addres
void DetectAsusAuraGPUControllers(std::vector<i2c_smbus_interface*> &busses)
{
for(unsigned int bus = 0; bus < busses.size(); bus++)
AuraGPUController* new_aura_gpu;
RGBController_AuraGPU* new_controller;
for (unsigned int bus = 0; bus < busses.size(); bus++)
{
for(unsigned int dev_idx = 0; dev_idx < GPU_NUM_DEVICES; dev_idx++)
{
@@ -132,18 +99,16 @@ void DetectAsusAuraGPUControllers(std::vector<i2c_smbus_interface*> &busses)
busses[bus]->pci_subsystem_vendor == device_list[dev_idx].pci_subsystem_vendor &&
busses[bus]->pci_subsystem_device == device_list[dev_idx].pci_subsystem_device)
{
LOG_DEBUG(GPU_DETECT_MESSAGE, ASUSGPU_CONTROLLER_NAME, bus, device_list[dev_idx].pci_device, device_list[dev_idx].pci_subsystem_device, device_list[dev_idx].name );
if(TestForAsusAuraGPUController(busses[bus], device_list[dev_idx].controller_address))
if (TestForAsusAuraGPUController(busses[bus], device_list[dev_idx].controller_address))
{
AuraGPUController* controller = new AuraGPUController(busses[bus], device_list[dev_idx].controller_address);
RGBController_AuraGPU* rgb_controller = new RGBController_AuraGPU(controller);
rgb_controller->name = device_list[dev_idx].name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
new_aura_gpu = new AuraGPUController(busses[bus], device_list[dev_idx].controller_address);
new_controller = new RGBController_AuraGPU(new_aura_gpu);
new_controller->name = device_list[dev_idx].name;
ResourceManager::get()->RegisterRGBController(new_controller);
}
}
}
}
} /* DetectAsusAuraGPUControllers() */
REGISTER_I2C_DETECTOR(ASUSGPU_CONTROLLER_NAME, DetectAsusAuraGPUControllers);
REGISTER_I2C_DETECTOR("ASUS Aura GPU", DetectAsusAuraGPUControllers);
@@ -1,211 +1,204 @@
/*-----------------------------------------*\
| RGBController_AsusAuraGPU.h |
| |
| Generic RGB Interface for Asus Aura GPU |
| |
| Jan Rettig (Klapstuhl) 14.02.2020 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraGPU.h"
int RGBController_AuraGPU::GetDeviceMode()
{
int dev_mode = controller->AuraGPURegisterRead(AURA_GPU_REG_MODE);
int color_mode = MODE_COLORS_PER_LED;
if(dev_mode == AURA_GPU_MODE_STATIC)
{
if (controller->direct)
{
dev_mode = AURA_GPU_MODE_DIRECT;
}
}
switch(dev_mode)
{
case AURA_GPU_MODE_OFF:
case AURA_GPU_MODE_SPECTRUM_CYCLE:
color_mode = MODE_COLORS_NONE;
break;
}
for(std::size_t mode = 0; mode < modes.size(); mode++)
{
if(modes[mode].value == dev_mode)
{
active_mode = mode;
modes[mode].color_mode = color_mode;
}
}
return(active_mode);
}
/**------------------------------------------------------------------*\
@name Asus Aura GPU
@type SMBus
@save :x:
@direct :white_check_mark:
@effects :white_check_mark::
@detectors DetectAsusAuraGPUControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_AuraGPU::RGBController_AuraGPU(AuraGPUController * controller_ptr)
{
controller = controller_ptr;
name = controller->GetDeviceName();
vendor = "ASUS";
type = DEVICE_TYPE_GPU;
description = "ASUS Aura GPU Device";
location = controller->GetDeviceLocation();
mode Direct;
Direct.name = "Direct";
Direct.value = AURA_GPU_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Off;
Off.name = "Off";
Off.value = AURA_GPU_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
mode Static;
Static.name = "Static";
Static.value = AURA_GPU_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_GPU_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = AURA_GPU_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Flashing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Flashing);
mode Spectrum_Cycle;
Spectrum_Cycle.name = "Spectrum Cycle";
Spectrum_Cycle.value = AURA_GPU_MODE_SPECTRUM_CYCLE;
Spectrum_Cycle.flags = 0;
Spectrum_Cycle.color_mode = MODE_COLORS_NONE;
modes.push_back(Spectrum_Cycle);
SetupZones();
active_mode = GetDeviceMode();
}
RGBController_AuraGPU::~RGBController_AuraGPU()
{
delete controller;
}
void RGBController_AuraGPU::SetupZones()
{
/*---------------------------------------------------------*\
| Set up zone |
\*---------------------------------------------------------*/
zone aura_gpu_zone;
aura_gpu_zone.name = "GPU";
aura_gpu_zone.type = ZONE_TYPE_SINGLE;
aura_gpu_zone.leds_min = 1;
aura_gpu_zone.leds_max = 1;
aura_gpu_zone.leds_count = 1;
aura_gpu_zone.matrix_map = NULL;
zones.push_back(aura_gpu_zone);
/*---------------------------------------------------------*\
| Set up LED |
\*---------------------------------------------------------*/
led aura_gpu_led;
aura_gpu_led.name = "GPU";
leds.push_back(aura_gpu_led);
SetupColors();
/*---------------------------------------------------------*\
| Initialize color |
\*---------------------------------------------------------*/
unsigned char red = controller->GetLEDRed();
unsigned char grn = controller->GetLEDGreen();
unsigned char blu = controller->GetLEDBlue();
colors[0] = ToRGBColor(red, grn, blu);
}
void RGBController_AuraGPU::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AuraGPU::DeviceUpdateLEDs()
{
for(std::size_t led = 0; led < colors.size(); led++)
{
unsigned char red = RGBGetRValue(colors[led]);
unsigned char grn = RGBGetGValue(colors[led]);
unsigned char blu = RGBGetBValue(colors[led]);
if (GetMode() == 0)
{
controller->SetLEDColorsDirect(red, grn, blu);
}
else
{
controller->SetLEDColorsEffect(red, grn, blu);
}
}
}
void RGBController_AuraGPU::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraGPU::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraGPU::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AuraGPU::DeviceUpdateMode()
{
int new_mode = modes[active_mode].value;
controller->direct = false;
switch(new_mode)
{
// Set all LEDs to 0 and Mode to static as a workaround for the non existing Off Mode
case AURA_GPU_MODE_OFF:
controller->SetLEDColorsEffect(0, 0, 0);
new_mode = AURA_GPU_MODE_STATIC;
break;
// Direct mode is done by switching to Static and not applying color changes
case AURA_GPU_MODE_DIRECT:
controller->direct = true;
new_mode = AURA_GPU_MODE_STATIC;
break;
}
controller->SetMode(new_mode);
}
/*-----------------------------------------*\
| RGBController_AsusAuraGPU.h |
| |
| Generic RGB Interface for Asus Aura GPU |
| |
| Jan Rettig (Klapstuhl) 14.02.2020 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraGPU.h"
int RGBController_AuraGPU::GetDeviceMode()
{
int dev_mode = aura_gpu->AuraGPURegisterRead(AURA_GPU_REG_MODE);
int color_mode = MODE_COLORS_PER_LED;
if(dev_mode == AURA_GPU_MODE_STATIC)
{
if (aura_gpu->direct)
{
dev_mode = AURA_GPU_MODE_DIRECT;
}
}
switch(dev_mode)
{
case AURA_GPU_MODE_OFF:
case AURA_GPU_MODE_SPECTRUM_CYCLE:
color_mode = MODE_COLORS_NONE;
break;
}
for(std::size_t mode = 0; mode < modes.size(); mode++)
{
if(modes[mode].value == dev_mode)
{
active_mode = mode;
modes[mode].color_mode = color_mode;
}
}
return(active_mode);
}
RGBController_AuraGPU::RGBController_AuraGPU(AuraGPUController * aura_gpu_ptr)
{
aura_gpu = aura_gpu_ptr;
name = aura_gpu->GetDeviceName();
vendor = "ASUS";
type = DEVICE_TYPE_GPU;
description = "ASUS Aura GPU Device";
version = "0.00.1";
location = aura_gpu->GetDeviceLocation();
mode Direct;
Direct.name = "Direct";
Direct.value = AURA_GPU_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Off;
Off.name = "Off";
Off.value = AURA_GPU_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
mode Static;
Static.name = "Static";
Static.value = AURA_GPU_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_GPU_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = AURA_GPU_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Flashing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Flashing);
mode Spectrum_Cycle;
Spectrum_Cycle.name = "Spectrum Cycle";
Spectrum_Cycle.value = AURA_GPU_MODE_SPECTRUM_CYCLE;
Spectrum_Cycle.flags = 0;
Spectrum_Cycle.color_mode = MODE_COLORS_NONE;
modes.push_back(Spectrum_Cycle);
SetupZones();
active_mode = GetDeviceMode();
}
RGBController_AuraGPU::~RGBController_AuraGPU()
{
delete aura_gpu;
}
void RGBController_AuraGPU::SetupZones()
{
/*---------------------------------------------------------*\
| Set up zone |
\*---------------------------------------------------------*/
zone aura_gpu_zone;
aura_gpu_zone.name = "GPU";
aura_gpu_zone.type = ZONE_TYPE_SINGLE;
aura_gpu_zone.leds_min = 1;
aura_gpu_zone.leds_max = 1;
aura_gpu_zone.leds_count = 1;
aura_gpu_zone.matrix_map = NULL;
zones.push_back(aura_gpu_zone);
/*---------------------------------------------------------*\
| Set up LED |
\*---------------------------------------------------------*/
led aura_gpu_led;
aura_gpu_led.name = "GPU";
leds.push_back(aura_gpu_led);
SetupColors();
/*---------------------------------------------------------*\
| Initialize color |
\*---------------------------------------------------------*/
unsigned char red = aura_gpu->GetLEDRed();
unsigned char grn = aura_gpu->GetLEDGreen();
unsigned char blu = aura_gpu->GetLEDBlue();
colors[0] = ToRGBColor(red, grn, blu);
}
void RGBController_AuraGPU::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AuraGPU::DeviceUpdateLEDs()
{
for(std::size_t led = 0; led < colors.size(); led++)
{
unsigned char red = RGBGetRValue(colors[led]);
unsigned char grn = RGBGetGValue(colors[led]);
unsigned char blu = RGBGetBValue(colors[led]);
if (GetMode() == 0)
{
aura_gpu->SetLEDColorsDirect(red, grn, blu);
}
else
{
aura_gpu->SetLEDColorsEffect(red, grn, blu);
}
}
}
void RGBController_AuraGPU::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraGPU::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraGPU::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AuraGPU::DeviceUpdateMode()
{
int new_mode = modes[active_mode].value;
aura_gpu->direct = false;
switch(new_mode)
{
// Set all LEDs to 0 and Mode to static as a workaround for the non existing Off Mode
case AURA_GPU_MODE_OFF:
aura_gpu->SetLEDColorsEffect(0, 0, 0);
new_mode = AURA_GPU_MODE_STATIC;
break;
// Direct mode is done by switching to Static and not applying color changes
case AURA_GPU_MODE_DIRECT:
aura_gpu->direct = true;
new_mode = AURA_GPU_MODE_STATIC;
break;
}
aura_gpu->SetMode(new_mode);
}
@@ -1,35 +1,35 @@
/*-----------------------------------------*\
| RGBController_AsusAuraGPU.h |
| |
| Generic RGB Interface for Asus Aura GPU |
| |
| Jan Rettig (Klapstuhl) 14.02.2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusAuraGPUController.h"
class RGBController_AuraGPU : public RGBController
{
public:
RGBController_AuraGPU(AuraGPUController* controller_ptr);
~RGBController_AuraGPU();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
AuraGPUController* controller;
int GetDeviceMode();
};
/*-----------------------------------------*\
| RGBController_AsusAuraGPU.h |
| |
| Generic RGB Interface for Asus Aura GPU |
| |
| Jan Rettig (Klapstuhl) 14.02.2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusAuraGPUController.h"
class RGBController_AuraGPU : public RGBController
{
public:
RGBController_AuraGPU(AuraGPUController* aura_gpu_ptr);
~RGBController_AuraGPU();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
AuraGPUController* aura_gpu;
int GetDeviceMode();
};
@@ -0,0 +1,295 @@
/*-----------------------------------------*\
| AsusAuraSMBusController.cpp |
| |
| Driver for ASUS Aura RGB lighting |
| controller |
| |
| Adam Honse (CalcProgrammer1) 8/19/2018 |
\*-----------------------------------------*/
#include "AsusAuraSMBusController.h"
#include <cstring>
static const char* aura_channels[] = /* Aura channel strings */
{
"Audio",
"Backplate",
"Back I/O",
"Center",
"Center",
"DRAM",
"PCIe",
"RGB Header",
"RGB Header 2",
"RGB Header",
"Unknown",
};
AuraSMBusController::AuraSMBusController(i2c_smbus_interface* bus, aura_dev_id dev)
{
this->bus = bus;
this->dev = dev;
AuraUpdateDeviceName();
// Read the device configuration table
for (int i = 0; i < 64; i++)
{
config_table[i] = AuraRegisterRead(AURA_REG_CONFIG_TABLE + i);
}
// Read LED count from configuration table
led_count = config_table[AURA_CONFIG_LED_COUNT];
// LED-0116 - First generation motherboard controller
if (strcmp(device_name, "LED-0116") == 0)
{
direct_reg = AURA_REG_COLORS_DIRECT;
effect_reg = AURA_REG_COLORS_EFFECT;
channel_cfg = AURA_CONFIG_CHANNEL_V1;
}
// DIMM_LED-0102 - First generation DRAM controller (Trident Z RGB)
else if (strcmp(device_name, "DIMM_LED-0102") == 0)
{
direct_reg = AURA_REG_COLORS_DIRECT;
effect_reg = AURA_REG_COLORS_EFFECT;
channel_cfg = AURA_CONFIG_CHANNEL_V1;
}
// AUDA0-E6K5-0101 - Second generation DRAM controller (Geil Super Luce)
else if (strcmp(device_name, "AUDA0-E6K5-0101") == 0)
{
direct_reg = AURA_REG_COLORS_DIRECT_V2;
effect_reg = AURA_REG_COLORS_EFFECT_V2;
channel_cfg = AURA_CONFIG_CHANNEL_V1;
}
// AUMA0-E6K5-0106 - Second generation motherboard controller
else if (strcmp(device_name, "AUMA0-E6K5-0106") == 0)
{
direct_reg = AURA_REG_COLORS_DIRECT_V2;
effect_reg = AURA_REG_COLORS_EFFECT_V2;
channel_cfg = AURA_CONFIG_CHANNEL_V2;
}
// AUMA0-E6K5-0105 - Second generation motherboard controller
else if (strcmp(device_name, "AUMA0-E6K5-0105") == 0)
{
direct_reg = AURA_REG_COLORS_DIRECT_V2;
effect_reg = AURA_REG_COLORS_EFFECT_V2;
channel_cfg = AURA_CONFIG_CHANNEL_V2;
}
// AUMA0-E6K5-0104 - Second generation motherboard controller
else if (strcmp(device_name, "AUMA0-E6K5-0104") == 0)
{
direct_reg = AURA_REG_COLORS_DIRECT_V2;
effect_reg = AURA_REG_COLORS_EFFECT_V2;
channel_cfg = AURA_CONFIG_CHANNEL_V2;
}
// AUMA0-E8K4-0101 - Second generation motherboard controller
else if (strcmp(device_name, "AUMA0-E8K4-0101") == 0)
{
direct_reg = AURA_REG_COLORS_DIRECT_V2;
effect_reg = AURA_REG_COLORS_EFFECT_V2;
channel_cfg = AURA_CONFIG_CHANNEL_V2;
}
// Assume first generation controller if string does not match
else
{
direct_reg = AURA_REG_COLORS_DIRECT;
effect_reg = AURA_REG_COLORS_EFFECT;
channel_cfg = AURA_CONFIG_CHANNEL_V1;
}
}
AuraSMBusController::~AuraSMBusController()
{
}
std::string AuraSMBusController::GetDeviceName()
{
return(device_name);
}
std::string AuraSMBusController::GetDeviceLocation()
{
std::string return_string(bus->device_name);
char addr[5];
snprintf(addr, 5, "0x%02X", dev);
return_string.append(", address ");
return_string.append(addr);
return("I2C: " + return_string);
}
unsigned char AuraSMBusController::GetChannel(unsigned int led)
{
return(config_table[channel_cfg + led]);
}
const char * AuraSMBusController::GetChannelName(unsigned int led)
{
switch (config_table[channel_cfg + led])
{
case (unsigned char)AURA_LED_CHANNEL_AUDIO:
return(aura_channels[0]);
break;
case (unsigned char)AURA_LED_CHANNEL_BACKPLATE:
return(aura_channels[1]);
break;
case (unsigned char)AURA_LED_CHANNEL_BACK_IO:
return(aura_channels[2]);
break;
case (unsigned char)AURA_LED_CHANNEL_CENTER:
return(aura_channels[3]);
break;
case (unsigned char)AURA_LED_CHANNEL_CENTER_START:
return(aura_channels[4]);
break;
case (unsigned char)AURA_LED_CHANNEL_DRAM:
return(aura_channels[5]);
break;
case (unsigned char)AURA_LED_CHANNEL_PCIE:
return(aura_channels[6]);
break;
case (unsigned char)AURA_LED_CHANNEL_RGB_HEADER:
return(aura_channels[7]);
break;
case (unsigned char)AURA_LED_CHANNEL_RGB_HEADER_2:
return(aura_channels[8]);
break;
case (unsigned char)AURA_LED_CHANNEL_RGB_HEADER_3:
return(aura_channels[9]);
break;
default:
return(aura_channels[10]);
break;
}
}
unsigned int AuraSMBusController::GetLEDCount()
{
return(led_count);
}
unsigned char AuraSMBusController::GetLEDRed(unsigned int led)
{
return(AuraRegisterRead(direct_reg + ( 3 * led )));
}
unsigned char AuraSMBusController::GetLEDGreen(unsigned int led)
{
return(AuraRegisterRead(direct_reg + ( 3 * led ) + 2));
}
unsigned char AuraSMBusController::GetLEDBlue(unsigned int led)
{
return(AuraRegisterRead(direct_reg + ( 3 * led ) + 1));
}
void AuraSMBusController::SetAllColorsDirect(RGBColor* colors)
{
unsigned char* color_buf = new unsigned char[led_count * 3];
for (unsigned int i = 0; i < (led_count * 3); i += 3)
{
color_buf[i + 0] = RGBGetRValue(colors[i / 3]);
color_buf[i + 1] = RGBGetBValue(colors[i / 3]);
color_buf[i + 2] = RGBGetGValue(colors[i / 3]);
}
AuraRegisterWriteBlock(direct_reg, color_buf, led_count * 3);
delete color_buf;
}
void AuraSMBusController::SetAllColorsEffect(RGBColor* colors)
{
unsigned char* color_buf = new unsigned char[led_count * 3];
for (unsigned int i = 0; i < (led_count * 3); i += 3)
{
color_buf[i + 0] = RGBGetRValue(colors[i / 3]);
color_buf[i + 1] = RGBGetBValue(colors[i / 3]);
color_buf[i + 2] = RGBGetGValue(colors[i / 3]);
}
AuraRegisterWriteBlock(effect_reg, color_buf, led_count * 3);
AuraRegisterWrite(AURA_REG_APPLY, AURA_APPLY_VAL);
delete[] color_buf;
}
void AuraSMBusController::SetDirect(unsigned char direct)
{
AuraRegisterWrite(AURA_REG_DIRECT, direct);
AuraRegisterWrite(AURA_REG_APPLY, AURA_APPLY_VAL);
}
void AuraSMBusController::SetLEDColorDirect(unsigned int led, unsigned char red, unsigned char green, unsigned char blue)
{
unsigned char colors[3] = { red, blue, green };
AuraRegisterWriteBlock(direct_reg + ( 3 * led ), colors, 3);
}
void AuraSMBusController::SetLEDColorEffect(unsigned int led, unsigned char red, unsigned char green, unsigned char blue)
{
unsigned char colors[3] = { red, blue, green };
AuraRegisterWriteBlock(effect_reg + (3 * led), colors, 3);
AuraRegisterWrite(AURA_REG_APPLY, AURA_APPLY_VAL);
}
void AuraSMBusController::SetMode(unsigned char mode)
{
AuraRegisterWrite(AURA_REG_MODE, mode);
AuraRegisterWrite(AURA_REG_APPLY, AURA_APPLY_VAL);
}
void AuraSMBusController::AuraUpdateDeviceName()
{
for (int i = 0; i < 16; i++)
{
device_name[i] = AuraRegisterRead(AURA_REG_DEVICE_NAME + i);
}
}
unsigned char AuraSMBusController::AuraRegisterRead(aura_register reg)
{
//Write Aura register
bus->i2c_smbus_write_word_data(dev, 0x00, ((reg << 8) & 0xFF00) | ((reg >> 8) & 0x00FF));
//Read Aura value
return(bus->i2c_smbus_read_byte_data(dev, 0x81));
}
void AuraSMBusController::AuraRegisterWrite(aura_register reg, unsigned char val)
{
//Write Aura register
bus->i2c_smbus_write_word_data(dev, 0x00, ((reg << 8) & 0xFF00) | ((reg >> 8) & 0x00FF));
//Write Aura value
bus->i2c_smbus_write_byte_data(dev, 0x01, val);
}
void AuraSMBusController::AuraRegisterWriteBlock(aura_register reg, unsigned char * data, unsigned char sz)
{
//Write Aura register
bus->i2c_smbus_write_word_data(dev, 0x00, ((reg << 8) & 0xFF00) | ((reg >> 8) & 0x00FF));
//Write Aura block data
bus->i2c_smbus_write_block_data(dev, 0x03, sz, data);
}
@@ -0,0 +1,115 @@
/*-----------------------------------------*\
| AsusAuraSMBusController.h |
| |
| Definitions and types for ASUS Aura RGB |
| lighting controller |
| |
| Adam Honse (CalcProgrammer1) 8/19/2018 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <string>
#include "i2c_smbus.h"
#pragma once
typedef unsigned char aura_dev_id;
typedef unsigned short aura_register;
#define AURA_APPLY_VAL 0x01 /* Value for Apply Changes Register */
enum
{
AURA_REG_DEVICE_NAME = 0x1000, /* Device String 16 bytes */
AURA_REG_CONFIG_TABLE = 0x1C00, /* Start of LED configuration bytes */
AURA_REG_COLORS_DIRECT = 0x8000, /* Colors for Direct Mode 15 bytes */
AURA_REG_COLORS_EFFECT = 0x8010, /* Colors for Internal Effects 15 bytes */
AURA_REG_DIRECT = 0x8020, /* "Direct Access" Selection Register */
AURA_REG_MODE = 0x8021, /* AURA Mode Selection Register */
AURA_REG_APPLY = 0x80A0, /* AURA Apply Changes Register */
AURA_REG_SLOT_INDEX = 0x80F8, /* AURA Slot Index Register (RAM only) */
AURA_REG_I2C_ADDRESS = 0x80F9, /* AURA I2C Address Register (RAM only) */
AURA_REG_COLORS_DIRECT_V2 = 0x8100, /* Direct Colors (v2) 30 bytes */
AURA_REG_COLORS_EFFECT_V2 = 0x8160, /* Internal Colors (v2) 30 bytes */
};
enum
{
AURA_MODE_OFF = 0, /* OFF mode */
AURA_MODE_STATIC = 1, /* Static color mode */
AURA_MODE_BREATHING = 2, /* Breathing effect mode */
AURA_MODE_FLASHING = 3, /* Flashing effect mode */
AURA_MODE_SPECTRUM_CYCLE = 4, /* Spectrum Cycle mode */
AURA_MODE_RAINBOW = 5, /* Rainbow effect mode */
AURA_MODE_SPECTRUM_CYCLE_BREATHING = 6, /* Rainbow Breathing effect mode */
AURA_MODE_CHASE_FADE = 7, /* Chase with Fade effect mode */
AURA_MODE_SPECTRUM_CYCLE_CHASE_FADE = 8, /* Chase with Fade, Rainbow effect mode */
AURA_MODE_CHASE = 9, /* Chase effect mode */
AURA_MODE_SPECTRUM_CYCLE_CHASE = 10, /* Chase with Rainbow effect mode */
AURA_MODE_SPECTRUM_CYCLE_WAVE = 11, /* Wave effect mode */
AURA_MODE_CHASE_RAINBOW_PULSE = 12, /* Chase with Rainbow Pulse effect mode*/
AURA_MODE_RANDOM_FLICKER = 13, /* Random flicker effect mode */
AURA_NUMBER_MODES /* Number of Aura modes */
};
enum
{
AURA_LED_CHANNEL_DRAM_2 = 0x05, /* DRAM LED channel */
AURA_LED_CHANNEL_CENTER_START = 0x82, /* Center zone first LED channel */
AURA_LED_CHANNEL_CENTER = 0x83, /* Center zone LED channel */
AURA_LED_CHANNEL_AUDIO = 0x84, /* Audio zone LED channel */
AURA_LED_CHANNEL_BACK_IO = 0x85, /* Back I/O zone LED channel */
AURA_LED_CHANNEL_RGB_HEADER = 0x86, /* RGB Header LED channel */
AURA_LED_CHANNEL_RGB_HEADER_2 = 0x87, /* RGB Header 2 LED channel */
AURA_LED_CHANNEL_BACKPLATE = 0x88, /* Backplate zone LED channel */
AURA_LED_CHANNEL_DRAM = 0x8A, /* DRAM LED channel */
AURA_LED_CHANNEL_PCIE = 0x8B, /* PCIe zone LED channel */
AURA_LED_CHANNEL_RGB_HEADER_3 = 0x91, /* RGB Header 3 LED channel */
};
enum
{
AURA_CONFIG_LED_COUNT = 0x02, /* LED Count configuration offset */
AURA_CONFIG_CHANNEL_V1 = 0x13, /* LED Channel configuration offset */
AURA_CONFIG_CHANNEL_V2 = 0x1B, /* LED Channel V2 configuration offset */
};
class AuraSMBusController
{
public:
AuraSMBusController(i2c_smbus_interface* bus, aura_dev_id dev);
~AuraSMBusController();
std::string GetDeviceName();
std::string GetDeviceLocation();
unsigned char GetChannel(unsigned int led);
const char* GetChannelName(unsigned int led);
unsigned int GetLEDCount();
unsigned char GetLEDRed(unsigned int led);
unsigned char GetLEDGreen(unsigned int led);
unsigned char GetLEDBlue(unsigned int led);
void SetAllColorsDirect(RGBColor* colors);
void SetAllColorsEffect(RGBColor* colors);
void SetDirect(unsigned char direct);
void SetLEDColorDirect(unsigned int led, unsigned char red, unsigned char green, unsigned char blue);
void SetLEDColorEffect(unsigned int led, unsigned char red, unsigned char green, unsigned char blue);
void SetMode(unsigned char mode);
void AuraUpdateDeviceName();
unsigned char AuraRegisterRead(aura_register reg);
void AuraRegisterWrite(aura_register reg, unsigned char val);
void AuraRegisterWriteBlock(aura_register reg, unsigned char * data, unsigned char sz);
private:
char device_name[16];
unsigned char config_table[64];
unsigned int led_count;
aura_register direct_reg;
aura_register effect_reg;
unsigned char channel_cfg;
i2c_smbus_interface * bus;
aura_dev_id dev;
};
@@ -0,0 +1,231 @@
#include "Detector.h"
#include "AsusAuraSMBusController.h"
#include "LogManager.h"
#include "RGBController.h"
#include "RGBController_AsusAuraSMBus.h"
#include "i2c_smbus.h"
#include "pci_ids.h"
#include <vector>
#include <stdio.h>
#include <stdlib.h>
#include "dependencies/dmiinfo.h"
using namespace std::chrono_literals;
/*----------------------------------------------------------------------*\
| This list contains the available SMBus addresses for mapping Aura RAM |
\*----------------------------------------------------------------------*/
#define AURA_RAM_ADDRESS_COUNT 23
static const unsigned char aura_ram_addresses[] =
{
0x70,
0x71,
0x72,
0x73,
0x74,
0x75,
0x76,
0x78,
0x79,
0x7A,
0x7B,
0x7C,
0x7D,
0x7E,
0x7F,
0x4F,
0x66,
0x67,
0x39,
0x3A,
0x3B,
0x3C,
0x3D
};
/*---------------------------------------------------------------------------------*\
| This list contains the available SMBus addresses for mapping Aura motherboards |
\*---------------------------------------------------------------------------------*/
#define AURA_MOBO_ADDRESS_COUNT 3
static const unsigned char aura_mobo_addresses[] =
{
0x40,
0x4E,
0x4F
};
/******************************************************************************************\
* *
* AuraRegisterWrite *
* *
* A standalone version of the AuraSMBusController::AuraRegisterWrite function for *
* access to Aura devices without instancing the AuraSMBusController class or reading *
* the config table from the device. *
* *
\******************************************************************************************/
void AsusAuraRegisterWrite(i2c_smbus_interface* bus, aura_dev_id dev, aura_register reg, unsigned char val)
{
//Write Aura register
bus->i2c_smbus_write_word_data(dev, 0x00, ((reg << 8) & 0xFF00) | ((reg >> 8) & 0x00FF));
//Write Aura value
bus->i2c_smbus_write_byte_data(dev, 0x01, val);
}
/******************************************************************************************\
* *
* TestForAuraSMBusController *
* *
* Tests the given address to see if an Aura controller exists there. First does a *
* quick write to test for a response, and if so does a simple read at 0xA0 to test *
* for incrementing values 0...F which was observed at this location during data dump *
* *
\******************************************************************************************/
bool TestForAsusAuraSMBusController(i2c_smbus_interface* bus, unsigned char address)
{
bool pass = false;
LOG_DEBUG("Testing address %02X for Aura SMBus controller", address);
int res = bus->i2c_smbus_write_quick(address, I2C_SMBUS_WRITE);
if (res >= 0)
{
pass = true;
LOG_DEBUG("Detected an I2C device at address %02X, testing register range for Aura SMBus", address);
for (int i = 0xA0; i < 0xB0; i++)
{
res = bus->i2c_smbus_read_byte_data(address, i);
if (res != (i - 0xA0))
{
LOG_DEBUG("Detection failed testing register %02X. Expected %02X, got %02X.", i, (i - 0xA0), res);
pass = false;
}
}
if(pass)
{
LOG_DEBUG("Detection successful, address %02X appears to be an Aura SMBus controller", address);
}
}
return(pass);
} /* TestForAuraSMBusController() */
/******************************************************************************************\
* *
* DetectAuraSMBusControllers *
* *
* Detect Aura controllers on the enumerated I2C busses. Searches for Aura-enabled *
* RAM at 0x77 and tries to initialize their slot addresses, then searches for them *
* at their correct initialized addresses. Also looks for motherboard controller at *
* address 0x4E. *
* *
* bus - pointer to i2c_smbus_interface where Aura device is connected *
* dev - I2C address of Aura device *
* *
\******************************************************************************************/
void DetectAsusAuraSMBusDRAMControllers(std::vector<i2c_smbus_interface*> &busses)
{
for (unsigned int bus = 0; bus < busses.size(); bus++)
{
int address_list_idx = -1;
IF_DRAM_SMBUS(busses[bus]->pci_vendor, busses[bus]->pci_device)
{
LOG_DEBUG("Remapping Aura SMBus RAM modules on 0x77");
for (unsigned int slot = 0; slot < 8; slot++)
{
int res = busses[bus]->i2c_smbus_write_quick(0x77, I2C_SMBUS_WRITE);
if (res < 0)
{
LOG_DEBUG("No device detected at address 0x77, aborting remap");
break;
}
do
{
address_list_idx++;
if(address_list_idx < AURA_RAM_ADDRESS_COUNT)
{
LOG_DEBUG("Testing address %02X to see if there is a device there", aura_ram_addresses[address_list_idx]);
res = busses[bus]->i2c_smbus_write_quick(aura_ram_addresses[address_list_idx], I2C_SMBUS_WRITE);
}
else
{
break;
}
} while (res >= 0);
if(address_list_idx < AURA_RAM_ADDRESS_COUNT)
{
LOG_DEBUG("Remapping slot %d to address %02X", slot, aura_ram_addresses[address_list_idx]);
AsusAuraRegisterWrite(busses[bus], 0x77, AURA_REG_SLOT_INDEX, slot);
AsusAuraRegisterWrite(busses[bus], 0x77, AURA_REG_I2C_ADDRESS, (aura_ram_addresses[address_list_idx] << 1));
}
}
// Add Aura-enabled controllers at their remapped addresses
for (unsigned int address_list_idx = 0; address_list_idx < AURA_RAM_ADDRESS_COUNT; address_list_idx++)
{
if (TestForAsusAuraSMBusController(busses[bus], aura_ram_addresses[address_list_idx]))
{
AuraSMBusController* controller = new AuraSMBusController(busses[bus], aura_ram_addresses[address_list_idx]);
RGBController_AuraSMBus* rgb_controller = new RGBController_AuraSMBus(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
std::this_thread::sleep_for(1ms);
}
}
}
} /* DetectAuraSMBusDRAMControllers() */
void DetectAsusAuraSMBusMotherboardControllers(std::vector<i2c_smbus_interface*> &busses)
{
AuraSMBusController* new_aura;
RGBController_AuraSMBus* new_controller;
for (unsigned int bus = 0; bus < busses.size(); bus++)
{
int address_list_idx = -1;
// Add Aura-enabled motherboard controllers
IF_MOBO_SMBUS(busses[bus]->pci_vendor, busses[bus]->pci_device)
{
for (unsigned int address_list_idx = 0; address_list_idx < AURA_MOBO_ADDRESS_COUNT; address_list_idx++)
{
if (TestForAsusAuraSMBusController(busses[bus], aura_mobo_addresses[address_list_idx]))
{
DMIInfo dmi;
AuraSMBusController* controller = new AuraSMBusController(busses[bus], aura_mobo_addresses[address_list_idx]);
RGBController_AuraSMBus* rgb_controller = new RGBController_AuraSMBus(controller);
rgb_controller->name = "ASUS " + dmi.getMainboard();
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
std::this_thread::sleep_for(1ms);
}
}
}
} /* DetectAuraSMBusMotherboardControllers() */
REGISTER_I2C_DETECTOR("ASUS Aura SMBus DRAM", DetectAsusAuraSMBusDRAMControllers);
REGISTER_I2C_DETECTOR("ASUS Aura SMBus Motherboard", DetectAsusAuraSMBusMotherboardControllers);
@@ -0,0 +1,361 @@
/*-----------------------------------------*\
| RGBController_AsusAuraSMBus.cpp |
| |
| Generic RGB Interface for OpenAuraSDK |
| Asus Aura SMBus driver |
| |
| Adam Honse (CalcProgrammer1) 6/13/2019 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraSMBus.h"
int RGBController_AuraSMBus::GetDeviceMode()
{
int dev_mode = aura->AuraRegisterRead(AURA_REG_MODE);
int color_mode = MODE_COLORS_PER_LED;
if (aura->AuraRegisterRead(AURA_REG_DIRECT))
{
dev_mode = 0xFFFF;
}
switch(dev_mode)
{
case AURA_MODE_OFF:
case AURA_MODE_RAINBOW:
case AURA_MODE_SPECTRUM_CYCLE:
case AURA_MODE_RANDOM_FLICKER:
color_mode = MODE_COLORS_NONE;
break;
case AURA_MODE_SPECTRUM_CYCLE_CHASE:
dev_mode = AURA_MODE_CHASE;
color_mode = MODE_COLORS_RANDOM;
break;
case AURA_MODE_SPECTRUM_CYCLE_BREATHING:
dev_mode = AURA_MODE_BREATHING;
color_mode = MODE_COLORS_RANDOM;
break;
case AURA_MODE_SPECTRUM_CYCLE_CHASE_FADE:
dev_mode = AURA_MODE_CHASE_FADE;
color_mode = MODE_COLORS_RANDOM;
break;
}
for(std::size_t mode = 0; mode < modes.size(); mode++)
{
if(modes[mode].value == dev_mode)
{
active_mode = mode;
modes[mode].color_mode = color_mode;
}
}
return(active_mode);
}
void RGBController_AuraSMBus::DeviceUpdateLEDs()
{
if(GetMode() == 0)
{
aura->SetAllColorsDirect(&colors[0]);
}
else
{
aura->SetAllColorsEffect(&colors[0]);
}
}
void RGBController_AuraSMBus::UpdateZoneLEDs(int zone)
{
for (std::size_t led_idx = 0; led_idx < zones[zone].leds_count; led_idx++)
{
int led = zones[zone].leds[led_idx].value;
RGBColor color = colors[led];
unsigned char red = RGBGetRValue(color);
unsigned char grn = RGBGetGValue(color);
unsigned char blu = RGBGetBValue(color);
if (GetMode() == 0)
{
aura->SetLEDColorDirect(led, red, grn, blu);
}
else
{
aura->SetLEDColorEffect(led, red, grn, blu);
}
}
}
void RGBController_AuraSMBus::UpdateSingleLED(int led)
{
RGBColor color = colors[led];
unsigned char red = RGBGetRValue(color);
unsigned char grn = RGBGetGValue(color);
unsigned char blu = RGBGetBValue(color);
if (GetMode() == 0)
{
aura->SetLEDColorDirect(led, red, grn, blu);
}
else
{
aura->SetLEDColorEffect(led, red, grn, blu);
}
}
RGBController_AuraSMBus::RGBController_AuraSMBus(AuraSMBusController * aura_ptr)
{
aura = aura_ptr;
version = aura->GetDeviceName();
location = aura->GetDeviceLocation();
if((version.find("DIMM_LED") != std::string::npos) || (version.find("AUDA") != std::string::npos) )
{
type = DEVICE_TYPE_DRAM;
name = "ASUS Aura DRAM";
}
else
{
type = DEVICE_TYPE_MOTHERBOARD;
name = "ASUS Aura Motherboard";
}
vendor = "ASUS";
description = "ASUS Aura SMBus Device";
mode Direct;
Direct.name = "Direct";
Direct.value = 0xFFFF;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Off;
Off.name = "Off";
Off.value = AURA_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
mode Static;
Static.name = "Static";
Static.value = AURA_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = AURA_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Flashing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Flashing);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = AURA_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = 0;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = AURA_MODE_RAINBOW;
Rainbow.flags = 0;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
mode ChaseFade;
ChaseFade.name = "Chase Fade";
ChaseFade.value = AURA_MODE_CHASE_FADE;
ChaseFade.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_PER_LED_COLOR;
ChaseFade.color_mode = MODE_COLORS_PER_LED;
modes.push_back(ChaseFade);
mode Chase;
Chase.name = "Chase";
Chase.value = AURA_MODE_CHASE;
Chase.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_PER_LED_COLOR;
Chase.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Chase);
mode RandomFlicker;
RandomFlicker.name = "Random Flicker";
RandomFlicker.value = AURA_MODE_RANDOM_FLICKER;
RandomFlicker.flags = 0;
RandomFlicker.color_mode = MODE_COLORS_NONE;
modes.push_back(RandomFlicker);
SetupZones();
// Initialize active mode
active_mode = GetDeviceMode();
}
RGBController_AuraSMBus::~RGBController_AuraSMBus()
{
delete aura;
}
void RGBController_AuraSMBus::SetupZones()
{
std::vector<int> aura_led_map;
/*---------------------------------------------------------*\
| Search through all LEDs and create zones for each channel |
| type |
\*---------------------------------------------------------*/
for (std::size_t led_idx = 0; led_idx < aura->GetLEDCount(); led_idx++)
{
bool matched = false;
/*---------------------------------------------------------*\
| Search through existing zones to make sure we don't |
| create a duplicate zone |
\*---------------------------------------------------------*/
for (std::size_t existing_zone_idx = 0; existing_zone_idx < zones.size(); existing_zone_idx++)
{
if (aura->GetChannelName(led_idx) == zones[existing_zone_idx].name)
{
matched = true;
}
}
/*---------------------------------------------------------*\
| If zone does not already exist, create it |
\*---------------------------------------------------------*/
if (matched == false)
{
zone* new_zone = new zone();
/*---------------------------------------------------------*\
| Set zone name to channel name |
\*---------------------------------------------------------*/
new_zone->name = aura->GetChannelName(led_idx);
new_zone->leds_count = 0;
/*---------------------------------------------------------*\
| Find all LEDs with this channel type and add them to zone |
\*---------------------------------------------------------*/
for (std::size_t zone_led_idx = 0; zone_led_idx < aura->GetLEDCount(); zone_led_idx++)
{
if (aura->GetChannelName(zone_led_idx) == new_zone->name)
{
new_zone->leds_count++;
aura_led_map.push_back(zone_led_idx);
}
}
/*---------------------------------------------------------*\
| Aura zones have fixed size, so set min and max to count |
\*---------------------------------------------------------*/
new_zone->leds_min = new_zone->leds_count;
new_zone->leds_max = new_zone->leds_count;
/*---------------------------------------------------------*\
| If this zone has more than one LED, mark it as linear type|
\*---------------------------------------------------------*/
if(new_zone->leds_count > 1)
{
new_zone->type = ZONE_TYPE_LINEAR;
}
else
{
new_zone->type = ZONE_TYPE_SINGLE;
}
new_zone->matrix_map = NULL;
/*---------------------------------------------------------*\
| Push new zone to zones vector |
\*---------------------------------------------------------*/
zones.push_back(*new_zone);
}
}
/*---------------------------------------------------------*\
| Create LED entries for each zone |
\*---------------------------------------------------------*/
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
for(std::size_t led_idx = 0; led_idx < zones[zone_idx].leds_count; led_idx++)
{
led* new_led = new led();
new_led->name = zones[zone_idx].name + " LED ";
new_led->name.append(std::to_string(led_idx + 1));
new_led->value = aura_led_map[led_idx];
leds.push_back(*new_led);
}
}
SetupColors();
/*---------------------------------------------------------*\
| Initialize colors for each LED |
\*---------------------------------------------------------*/
for(std::size_t led_idx = 0; led_idx < leds.size(); led_idx++)
{
unsigned int led = leds[led_idx].value;
unsigned char red = aura->GetLEDRed(led);
unsigned char grn = aura->GetLEDGreen(led);
unsigned char blu = aura->GetLEDBlue(led);
colors[led_idx] = ToRGBColor(red, grn, blu);
}
}
void RGBController_AuraSMBus::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AuraSMBus::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AuraSMBus::DeviceUpdateMode()
{
if (modes[active_mode].value == 0xFFFF)
{
aura->SetDirect(true);
}
else
{
int new_mode = modes[active_mode].value;
if(modes[active_mode].color_mode == MODE_COLORS_RANDOM)
{
switch(new_mode)
{
case AURA_MODE_CHASE:
new_mode = AURA_MODE_SPECTRUM_CYCLE_CHASE;
break;
case AURA_MODE_BREATHING:
new_mode = AURA_MODE_SPECTRUM_CYCLE_BREATHING;
break;
case AURA_MODE_CHASE_FADE:
new_mode = AURA_MODE_SPECTRUM_CYCLE_CHASE_FADE;
break;
}
}
aura->SetMode(new_mode);
aura->SetDirect(false);
}
}
@@ -1,7 +1,8 @@
/*-----------------------------------------*\
| RGBController_ENESMBus.h |
| RGBController_AsusAuraSMBus.h |
| |
| Generic RGB Interface for ENE SMBus |
| Generic RGB Interface for OpenAuraSDK |
| Asus Aura SMBus driver |
| |
| Adam Honse (CalcProgrammer1) 6/13/2019 |
\*-----------------------------------------*/
@@ -9,13 +10,13 @@
#pragma once
#include "RGBController.h"
#include "ENESMBusController.h"
#include "AsusAuraSMBusController.h"
class RGBController_ENESMBus : public RGBController
class RGBController_AuraSMBus : public RGBController
{
public:
RGBController_ENESMBus(ENESMBusController* controller_ptr);
~RGBController_ENESMBus();
RGBController_AuraSMBus(AuraSMBusController* aura_ptr);
~RGBController_AuraSMBus();
void SetupZones();
@@ -27,10 +28,9 @@ public:
void SetCustomMode();
void DeviceUpdateMode();
void DeviceSaveMode();
private:
ENESMBusController* controller;
AuraSMBusController* aura;
int GetDeviceMode();
};
@@ -1,152 +0,0 @@
/*-----------------------------------------*\
| AsusAuraHeadsetStandController.cpp |
| |
| Driver for ASUS Aura RGB USB |
| lighting controller |
| |
| Mola19 06/04/2021 |
\*-----------------------------------------*/
#include "AsusAuraHeadsetStandController.h"
#include <cstring>
AuraHeadsetStandController::AuraHeadsetStandController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
}
AuraHeadsetStandController::~AuraHeadsetStandController()
{
hid_close(dev);
}
std::string AuraHeadsetStandController::GetDeviceLocation()
{
return("HID: " + location);
}
std::string AuraHeadsetStandController::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
std::string AuraHeadsetStandController::GetVersion()
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x12;
usb_buf[0x02] = 0x00;
hid_write(dev, usb_buf, 65);
unsigned char usb_buf_out[65];
hid_read(dev, usb_buf_out, 65);
char version[5];
snprintf(version, 5, "%04X", (usb_buf_out[6] << 8) | usb_buf_out[7]);
return std::string(version);
}
void AuraHeadsetStandController::UpdateLeds
(
std::vector<RGBColor> colors
)
{
unsigned char usb_buf_0[365];
memset(usb_buf_0, 0x00, sizeof(usb_buf_0));
usb_buf_0[0x00] = 0x00;
usb_buf_0[0x01] = 0xC0;
usb_buf_0[0x02] = 0x81;
usb_buf_0[0x03] = 0x00;
usb_buf_0[0x04] = 0x00;
for(unsigned int i = 0; i < 60; i += 4)
{
usb_buf_0[5 + i] = 0x00;
usb_buf_0[6 + i] = RGBGetRValue(colors[i / 4]);
usb_buf_0[7 + i] = RGBGetGValue(colors[i / 4]);
usb_buf_0[8 + i] = RGBGetBValue(colors[i / 4]);
}
hid_write(dev, usb_buf_0, 65);
unsigned char usb_buf_1[65];
memset(usb_buf_1, 0x00, sizeof(usb_buf_1));
usb_buf_1[0x00] = 0x00;
usb_buf_1[0x01] = 0xC0;
usb_buf_1[0x02] = 0x81;
usb_buf_1[0x03] = 0x01;
usb_buf_1[0x04] = 0x00;
for(unsigned int i = 0; i < 12; i += 4)
{
usb_buf_1[5 + i] = 0x00;
usb_buf_1[6 + i] = RGBGetRValue(colors[(i / 4) + 15]);
usb_buf_1[7 + i] = RGBGetGValue(colors[(i / 4) + 15]);
usb_buf_1[8 + i] = RGBGetBValue(colors[(i / 4) + 15]);
}
hid_write(dev, usb_buf_1, 65);
}
void AuraHeadsetStandController::UpdateDevice
(
unsigned char mode,
unsigned char red,
unsigned char grn,
unsigned char blu,
unsigned char speed,
unsigned char brightness
)
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x51;
usb_buf[0x02] = 0x28;
usb_buf[0x03] = 0x00;
usb_buf[0x04] = 0x00;
usb_buf[0x05] = mode;
usb_buf[0x06] = speed;
usb_buf[0x07] = brightness;
usb_buf[0x08] = 0x00;
usb_buf[0x09] = 0x00;
usb_buf[0x0a] = red;
usb_buf[0x0b] = grn;
usb_buf[0x0c] = blu;
hid_write(dev, usb_buf, 65);
}
void AuraHeadsetStandController::SaveMode()
{
unsigned char usb_save_buf[65];
memset(usb_save_buf, 0x00, sizeof(usb_save_buf));
usb_save_buf[0x00] = 0x00;
usb_save_buf[0x01] = 0x50;
usb_save_buf[0x02] = 0x55;
hid_write(dev, usb_save_buf, 65);
}
@@ -1,62 +0,0 @@
/*-----------------------------------------*\
| AsusAuraHeadsetStandController.h |
| |
| Definitions and types for ASUS Aura |
| USB RGB lighting controller |
| |
| Mola19 06/04/2021 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <hidapi/hidapi.h>
#pragma once
enum
{
AURA_HEADSET_STAND_ZONE_UNDERGLOW = 0,
AURA_HEADSET_STAND_ZONE_LOGO = 1
};
enum
{
AURA_HEADSET_STAND_MODE_DIRECT = 0,
AURA_HEADSET_STAND_MODE_STATIC = 1,
AURA_HEADSET_STAND_MODE_BREATHING = 2,
AURA_HEADSET_STAND_MODE_STROBING = 3,
AURA_HEADSET_STAND_MODE_COLOR_CYCLE = 4,
AURA_HEADSET_STAND_MODE_RAINBOW = 5
};
class AuraHeadsetStandController
{
public:
AuraHeadsetStandController(hid_device* dev_handle, const char* path);
virtual ~AuraHeadsetStandController();
std::string GetDeviceLocation();
std::string GetSerialString();
std::string GetVersion();
void UpdateLeds
(
std::vector<RGBColor> colors
);
void UpdateDevice
(
unsigned char mode,
unsigned char red,
unsigned char grn,
unsigned char blu,
unsigned char speed,
unsigned char brightness
);
void SaveMode();
private:
hid_device* dev;
std::string location;
};
@@ -1,94 +0,0 @@
/*-----------------------------------------*\
| AsusAuraMonitorController.cpp |
| |
| Driver for ASUS Aura RGB USB |
| lighting controller |
| |
| Mola19 08/03/2021 |
\*-----------------------------------------*/
#include "AsusAuraMonitorController.h"
#include <cstring>
#include "LogManager.h"
AuraMonitorController::AuraMonitorController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
}
AuraMonitorController::~AuraMonitorController()
{
hid_close(dev);
}
std::string AuraMonitorController::GetDeviceLocation()
{
return("HID: " + location);
}
std::string AuraMonitorController::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
void AuraMonitorController::UpdateLed
(
int led,
unsigned char red,
unsigned char green,
unsigned char blue
)
{
unsigned char usb_buf[8];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x03;
usb_buf[0x01] = 0x02;
usb_buf[0x02] = 0xa1;
usb_buf[0x03] = 0x80;
usb_buf[0x04] = 16 + led * 3;
usb_buf[0x05] = red;
hid_send_feature_report(dev, usb_buf, 8);
usb_buf[0x04] = 16 + led * 3 + 1;
usb_buf[0x05] = blue;
hid_send_feature_report(dev, usb_buf, 8);
usb_buf[0x04] = 16 + led * 3 + 2;
usb_buf[0x05] = green;
hid_send_feature_report(dev, usb_buf, 8);
}
void AuraMonitorController::ApplyChanges()
{
unsigned char usb_buf[8];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x03;
usb_buf[0x01] = 0x02;
usb_buf[0x02] = 0xa1;
usb_buf[0x03] = 0x80;
usb_buf[0x04] = 0xa0;
usb_buf[0x05] = 0x01;
hid_send_feature_report(dev, usb_buf, 8);
}
@@ -1,31 +0,0 @@
/*-----------------------------------------*\
| AsusAuraMonitorController.h |
| |
| Definitions and types for ASUS Aura |
| USB RGB lighting controller |
| |
| Mola19 08/03/2023 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <hidapi/hidapi.h>
#pragma once
class AuraMonitorController
{
public:
AuraMonitorController(hid_device* dev_handle, const char* path);
virtual ~AuraMonitorController();
std::string GetDeviceLocation();
std::string GetSerialString();
void UpdateLed(int led, unsigned char red, unsigned char green, unsigned char blue);
void ApplyChanges();
private:
hid_device* dev;
std::string location;
};
@@ -11,11 +11,10 @@
#include <cstring>
AuraMouseController::AuraMouseController(hid_device* dev_handle, const char* path, uint16_t pid)
AuraMouseController::AuraMouseController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
device_pid = pid;
}
AuraMouseController::~AuraMouseController()
@@ -30,8 +29,8 @@ std::string AuraMouseController::GetDeviceLocation()
std::string AuraMouseController::GetSerialString()
{
wchar_t serial_string[HID_MAX_STR];
int ret = hid_get_serial_number_string(dev, serial_string, HID_MAX_STR);
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
@@ -44,141 +43,38 @@ std::string AuraMouseController::GetSerialString()
return(return_string);
}
std::string AuraMouseController::GetVersion(bool wireless, int protocol)
{
unsigned char usb_buf[ASUS_AURA_MOUSE_PACKET_SIZE];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x12;
hid_write(dev, usb_buf, ASUS_AURA_MOUSE_PACKET_SIZE);
unsigned char usb_buf_out[ASUS_AURA_MOUSE_PACKET_SIZE];
hid_read(dev, usb_buf_out, ASUS_AURA_MOUSE_PACKET_SIZE);
std::string str;
switch(protocol)
{
case 0:
{
unsigned char* offset = usb_buf_out + (wireless ? 13 : 4);
str = std::string(offset, offset + 4);
}
break;
case 1:
{
char version[9];
int offset = (wireless ? 13 : 4);
snprintf(version, 9, "%2X.%02X.%02X", usb_buf_out[offset + 2], usb_buf_out[offset + 1], usb_buf_out[offset]);
str = std::string(version);
}
break;
case 2:
{
unsigned char* offset = usb_buf_out + (wireless ? 13 : 4);
str = std::string(offset, offset + 4);
str = "0." + str.substr(0, 2) + "." + str.substr(2, 2);
}
break;
case 3:
{
char version[9];
int offset = (wireless ? 13 : 4);
snprintf(version, 9, "%2d.%02d.%02d", usb_buf_out[offset + 1], usb_buf_out[offset + 2], usb_buf_out[offset + 3]);
str = std::string(version);
}
break;
}
return str;
}
void AuraMouseController::SaveMode()
{
unsigned char usb_save_buf[ASUS_AURA_MOUSE_PACKET_SIZE] = { 0x00, 0x50, 0x03 };
hid_write(dev, usb_save_buf, ASUS_AURA_MOUSE_PACKET_SIZE);
}
void AuraMouseController::SendUpdate
(
unsigned char zone,
unsigned char mode,
unsigned char red,
unsigned char grn,
unsigned char blu,
unsigned char dir,
bool random,
unsigned char speed,
unsigned char brightness
unsigned char blu
)
{
int bytes_read = 1;
unsigned char usb_buf_flush[ASUS_AURA_MOUSE_PACKET_SIZE];
while(bytes_read > 0)
{
bytes_read = hid_read_timeout(dev, usb_buf_flush, ASUS_AURA_MOUSE_PACKET_SIZE, 0);
}
unsigned char usb_buf[ASUS_AURA_MOUSE_PACKET_SIZE];
unsigned char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, ASUS_AURA_MOUSE_PACKET_SIZE);
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet |
\*-----------------------------------------------------*/
if (device_pid == AURA_ROG_GLADIUS_II_ORIGIN_PNK_LTD_PID)
{
// this device supports 2 color for breathing,
// but since this mode is per led and openrgb doesn't support 2 colors per led this feature is not implemented
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x51;
usb_buf[0x02] = 0x28;
usb_buf[0x03] = zone;
usb_buf[0x04] = 0x00;
usb_buf[0x05] = mode;
usb_buf[0x06] = brightness;
usb_buf[0x07] = 0x00; // boolean signaling if the 2nd set of colors is in use
usb_buf[0x08] = red;
usb_buf[0x09] = grn;
usb_buf[0x0A] = blu;
usb_buf[0x0B] = 0; // 2nd red
usb_buf[0x0C] = 0; // 2nd green
usb_buf[0x0D] = 0; // 2nd blue
usb_buf[0x0E] = dir;
usb_buf[0x0F] = random;
usb_buf[0x10] = speed;
}
else
{
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x51;
usb_buf[0x02] = 0x28;
usb_buf[0x03] = zone;
usb_buf[0x04] = 0x00;
usb_buf[0x05] = mode;
usb_buf[0x06] = brightness;
usb_buf[0x07] = red;
usb_buf[0x08] = grn;
usb_buf[0x09] = blu;
usb_buf[0x0A] = dir;
usb_buf[0x0B] = random;
usb_buf[0x0C] = speed;
}
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x51;
usb_buf[0x02] = 0x28;
usb_buf[0x03] = zone;
usb_buf[0x04] = 0x00;
usb_buf[0x05] = mode;
usb_buf[0x06] = 0x04;
usb_buf[0x07] = red;
usb_buf[0x08] = grn;
usb_buf[0x09] = blu;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, usb_buf, ASUS_AURA_MOUSE_PACKET_SIZE);
unsigned char usb_buf_out[ASUS_AURA_MOUSE_PACKET_SIZE];
hid_read_timeout(dev, usb_buf_out, ASUS_AURA_MOUSE_PACKET_SIZE, 10);
hid_write(dev, usb_buf, 65);
}
@@ -8,42 +8,47 @@
\*-----------------------------------------*/
#include "RGBController.h"
#include "AsusAuraMouseDevices.h"
#include <string>
#include <vector>
#include <hidapi/hidapi.h>
#pragma once
#define ASUS_AURA_MOUSE_PACKET_SIZE 65
#define HID_MAX_STR 255
enum
{
AURA_MOUSE_ZONE_LOGO = 0,
AURA_MOUSE_ZONE_SCROLL = 1,
AURA_MOUSE_ZONE_UNDERGLOW = 2,
AURA_MOUSE_ZONE_ALL = 3,
};
enum
{
AURA_MOUSE_MODE_STATIC = 0,
AURA_MOUSE_MODE_BREATHING = 1,
AURA_MOUSE_MODE_COLOR_CYCLE = 2,
AURA_MOUSE_MODE_REACTIVE = 3,
};
class AuraMouseController
{
public:
AuraMouseController(hid_device* dev_handle, const char* path, uint16_t pid);
AuraMouseController(hid_device* dev_handle, const char* path);
virtual ~AuraMouseController();
std::string GetDeviceLocation();
std::string GetSerialString();
std::string GetVersion(bool wireless, int protocol);
void SaveMode();
void SendUpdate
(
unsigned char zone,
unsigned char mode,
unsigned char red,
unsigned char grn,
unsigned char blu,
unsigned char dir,
bool random,
unsigned char speed,
unsigned char brightness
unsigned char blu
);
uint16_t device_pid;
private:
hid_device* dev;
std::string location;
@@ -1,307 +0,0 @@
/*-------------------------------------------------------------------*\
| AsusAuraMouseDevices.h |
| |
| Asus Aura Mouse definitions and mapping |
| |
| Chris M (Dr_No) 11th July 2021 |
\*-------------------------------------------------------------------*/
#include <vector>
#include <map>
#pragma once
#define AURA_ROG_GLADIUS_II_CORE_PID 0x18DD
#define AURA_ROG_GLADIUS_II_PID 0x1845
#define AURA_ROG_GLADIUS_II_ORIGIN_PID 0x1877
#define AURA_ROG_GLADIUS_II_ORIGIN_PNK_LTD_PID 0x18CD
#define AURA_ROG_GLADIUS_II_ORIGIN_COD_PID 0x18B1
#define AURA_ROG_GLADIUS_II_WIRELESS_1_PID 0x189E
#define AURA_ROG_GLADIUS_II_WIRELESS_2_PID 0x18A0
#define AURA_ROG_CHAKRAM_WIRELESS_PID 0x18E5
#define AURA_ROG_CHAKRAM_WIRED_1_PID 0x18E3
#define AURA_ROG_CHAKRAM_CORE_PID 0x1958
#define AURA_ROG_PUGIO_PID 0x1846
#define AURA_ROG_PUGIO_II_WIRED_PID 0x1906
#define AURA_ROG_PUGIO_II_WIRELESS_PID 0x1908
#define AURA_ROG_STRIX_IMPACT_PID 0x1847
#define AURA_ROG_STRIX_IMPACT_II_PID 0x18E1
#define AURA_ROG_KERIS 0x195C
#define AURA_ROG_KERIS_WIRELESS_USB_PID 0x195E
#define AURA_ROG_KERIS_WIRELESS_2_4_PID 0x1960
#define AURA_ROG_KERIS_WIRELESS_BT_PID 0x1962
#define AURA_TUF_M3_PID 0x1910
#define AURA_TUF_M5_PID 0x1898
enum
{
AURA_MOUSE_ZONE_LOGO = 0,
AURA_MOUSE_ZONE_SCROLL = 1,
AURA_MOUSE_ZONE_UNDERGLOW = 2,
AURA_MOUSE_ZONE_ALL = 3,
};
enum
{
AURA_MOUSE_MODE_STATIC = 0,
AURA_MOUSE_MODE_BREATHING = 1,
AURA_MOUSE_MODE_SPECTRUM = 2,
AURA_MOUSE_MODE_WAVE = 3,
AURA_MOUSE_MODE_REACTIVE = 4,
AURA_MOUSE_MODE_COMET = 5,
AURA_MOUSE_MODE_BATTERY = 6,
AURA_MOUSE_MODE_NONE = 255,
};
typedef struct
{
uint8_t speed_min;
uint8_t speed_max;
bool wireless;
int version_protocol;
std::vector<uint8_t> mouse_zones;
std::vector<uint8_t> mouse_modes;
} mouse_type;
/*-----------------------------------------------------------------*\
| DEVICE MAP |
| |
| This structure maps the OpenRGB modes to the mode values |
| sent to each mouse. As not all modes are present on each |
| mouse the "mode index" is different. Eg. "Reactive" is mode |
| 4 on the Gladius II and mode 3 on the Gladius II wireless |
\*-----------------------------------------------------------------*/
static std::map<int,mouse_type> aura_mouse_devices =
{
{
AURA_ROG_GLADIUS_II_CORE_PID, // ROG Gladius II Core
{
0, //Speed Min - The Asus Mouse protocol defines larger numbers as slow
0, //Speed Max
false,
1,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_REACTIVE }
}
},
{
AURA_ROG_GLADIUS_II_PID, // ROG Gladius II
{
255,
1,
false,
0,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET }
}
},
{
AURA_ROG_GLADIUS_II_ORIGIN_PID, // ROG Gladius II Origin
{
255,
1,
false,
0,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET }
}
},
{
AURA_ROG_GLADIUS_II_ORIGIN_COD_PID, // ROG Gladius II COD
{
255,
1,
false,
0,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET }
}
},
{
AURA_ROG_GLADIUS_II_ORIGIN_PNK_LTD_PID, // ROG Gladius II PNK LTD
{
255,
1,
false,
0,
{ AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET }
}
},
{
AURA_ROG_GLADIUS_II_WIRELESS_1_PID, // ROG Gladius II Wireless
{
0,
0,
true,
1,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_GLADIUS_II_WIRELESS_2_PID, // ROG Gladius II Wireless
{
0,
0,
true,
1,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_CHAKRAM_WIRELESS_PID, // ROG Chakram Wireless
{
15,
1,
true,
1,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_CHAKRAM_WIRED_1_PID, // ROG Chakram Wired 1
{
15,
1,
false,
1,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_CHAKRAM_CORE_PID, // ROG Chakram Core
{
0,
0,
false,
1,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_REACTIVE }
}
},
{
AURA_ROG_PUGIO_PID, // ROG Pugio
{
255,
1,
false,
0,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET }
}
},
{
AURA_ROG_PUGIO_II_WIRED_PID, // ROG Pugio II Wired
{
15,
1,
false,
1,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_PUGIO_II_WIRELESS_PID, // ROG Pugio II Wireless
{
15,
1,
true,
1,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_STRIX_IMPACT_PID, // ROG Strix Impact
{
0,
0,
false,
3,
{ AURA_MOUSE_ZONE_LOGO },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM }
}
},
{
AURA_ROG_STRIX_IMPACT_II_PID, // ROG Strix Impact II
{
0,
0,
false,
1,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_REACTIVE }
}
},
{
AURA_ROG_KERIS, // ROG Keris
{
0,
0,
false,
1, // might be the wrong protocol for version
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_REACTIVE }
}
},
{
AURA_ROG_KERIS_WIRELESS_USB_PID, // ROG Keris
{
0,
0,
true,
1, // might be the wrong protocol for version
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_KERIS_WIRELESS_2_4_PID, // ROG Keris
{
0,
0,
true,
1, // might be the wrong protocol for version
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_KERIS_WIRELESS_BT_PID, // ROG Keris
{
0,
0,
true,
1, // might be the wrong protocol for version
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_TUF_M3_PID, // TUF M3
{
0,
0,
false,
1,
{ AURA_MOUSE_ZONE_LOGO },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_REACTIVE }
}
},
{
AURA_TUF_M5_PID, // TUF M5
{
0,
0,
false,
2,
{ AURA_MOUSE_ZONE_LOGO },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_REACTIVE }
}
},
};
@@ -1,134 +0,0 @@
/*-----------------------------------------*\
| AsusAuraMousematController.cpp |
| |
| Driver for ASUS Aura RGB USB |
| lighting controller |
| |
| Adam Honse (CalcProgrammer1) 1/10/2022 |
\*-----------------------------------------*/
#include "AsusAuraMousematController.h"
#include <cstring>
AuraMousematController::AuraMousematController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
}
AuraMousematController::~AuraMousematController()
{
hid_close(dev);
}
std::string AuraMousematController::GetDeviceLocation()
{
return("HID: " + location);
}
std::string AuraMousematController::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
std::string AuraMousematController::GetVersion()
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0xEE;
usb_buf[0x01] = 0x12;
usb_buf[0x02] = 0x00;
hid_write(dev, usb_buf, 65);
unsigned char usb_buf_out[65];
hid_read(dev, usb_buf_out, 65);
char version[5];
snprintf(version, 5, "%04X", (usb_buf_out[6] << 8) | usb_buf_out[7]);
return std::string(version);
}
void AuraMousematController::UpdateLeds
(
std::vector<RGBColor> colors
)
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0xEE;
usb_buf[0x01] = 0xC0;
usb_buf[0x02] = 0x81;
usb_buf[0x03] = 0x00;
usb_buf[0x04] = 0x00;
for(unsigned int i = 0; i < 60; i += 4)
{
usb_buf[5 + i] = 0x00;
usb_buf[6 + i] = RGBGetRValue(colors[i / 4]);
usb_buf[7 + i] = RGBGetGValue(colors[i / 4]);
usb_buf[8 + i] = RGBGetBValue(colors[i / 4]);
}
hid_write(dev, usb_buf, 65);
}
void AuraMousematController::UpdateDevice
(
unsigned char mode,
std::vector<RGBColor> colors,
unsigned char speed,
unsigned char brightness,
unsigned char pattern
)
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0xEE;
usb_buf[0x01] = 0x51;
usb_buf[0x02] = 0x28;
usb_buf[0x03] = 0x00;
usb_buf[0x04] = 0x00;
usb_buf[0x05] = mode;
usb_buf[0x06] = speed;
usb_buf[0x07] = brightness;
usb_buf[0x08] = pattern;
usb_buf[0x09] = 0x00;
for(int i = 0; i < colors.size(); i++)
{
usb_buf[0x0a + i * 3] = RGBGetRValue(colors[i]);
usb_buf[0x0b + i * 3] = RGBGetGValue(colors[i]);
usb_buf[0x0c + i * 3] = RGBGetBValue(colors[i]);
}
hid_write(dev, usb_buf, 65);
}
void AuraMousematController::SaveMode()
{
unsigned char usb_save_buf[65];
memset(usb_save_buf, 0x00, sizeof(usb_save_buf));
usb_save_buf[0x00] = 0xEE;
usb_save_buf[0x01] = 0x50;
usb_save_buf[0x02] = 0x55;
hid_write(dev, usb_save_buf, 65);
}
@@ -1,59 +0,0 @@
/*-----------------------------------------*\
| AsusAuraMousematController.h |
| |
| Definitions and types for ASUS Aura |
| USB RGB lighting controller |
| |
| Adam Honse (CalcProgrammer1) 1/10/2022 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <hidapi/hidapi.h>
#pragma once
enum
{
AURA_MOUSEMAT_MODE_STATIC = 0,
AURA_MOUSEMAT_MODE_BREATHING = 1,
AURA_MOUSEMAT_MODE_COLOR_CYCLE = 2,
AURA_MOUSEMAT_MODE_WAVE = 3,
AURA_MOUSEMAT_MODE_WAVE_PLANE = 4,
AURA_MOUSEMAT_MODE_COMET = 5,
AURA_MOUSEMAT_MODE_GLOWING_YOYO = 6,
AURA_MOUSEMAT_MODE_CROSS = 7,
AURA_MOUSEMAT_MODE_STARRY_NIGHT = 8,
AURA_MOUSEMAT_MODE_DIRECT = 0xFF,
};
class AuraMousematController
{
public:
AuraMousematController(hid_device* dev_handle, const char* path);
virtual ~AuraMousematController();
std::string GetDeviceLocation();
std::string GetSerialString();
std::string GetVersion();
void UpdateLeds
(
std::vector<RGBColor> colors
);
void UpdateDevice
(
unsigned char mode,
std::vector<RGBColor> colors,
unsigned char speed,
unsigned char brightness,
unsigned char pattern
);
void SaveMode();
private:
hid_device* dev;
std::string location;
};
@@ -1,146 +0,0 @@
/*-----------------------------------------*\
| AsusAuraStrixEvolveController.cpp |
| |
| Driver for ASUS Aura RGB USB |
| lighting controller |
| |
| Mola19 11/30/2021 |
\*-----------------------------------------*/
#include "AsusAuraStrixEvolveController.h"
#include <cstring>
#include <chrono>
#include <thread>
AuraStrixEvolveController::AuraStrixEvolveController(hid_device* dev_handle, const char* path, uint16_t pid)
{
dev = dev_handle;
location = path;
device_pid = pid;
}
AuraStrixEvolveController::~AuraStrixEvolveController()
{
hid_close(dev);
}
std::string AuraStrixEvolveController::GetDeviceLocation()
{
return("HID: " + location);
}
std::string AuraStrixEvolveController::GetSerialString()
{
wchar_t serial_string[HID_MAX_STR];
int ret = hid_get_serial_number_string(dev, serial_string, HID_MAX_STR);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
std::string AuraStrixEvolveController::GetVersion()
{
unsigned char usb_buf[9] = { 0x0c, 0xc4, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
hid_send_feature_report(dev, usb_buf, 9);
unsigned char usb_buf_out[9] = { 0x0c };
hid_get_feature_report(dev, usb_buf_out, 9);
return std::string("1." + std::to_string(usb_buf_out[3]));
}
int AuraStrixEvolveController::GetActiveProfile()
{
int profile;
do
{
unsigned char usb_buf[9] = { 0x0c, 0xdf, 0x19, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
hid_send_feature_report(dev, usb_buf, 9);
unsigned char usb_buf_out[9] = { 0x0c };
hid_get_feature_report(dev, usb_buf_out, 9);
profile = usb_buf_out[4] % 16;
} while (profile > 2);
return profile + 1;
}
void AuraStrixEvolveController::SendUpdate
(
unsigned char key,
unsigned char value
)
{
unsigned char usb_buf[9];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, 9);
/*-----------------------------------------------------*\
| Set up message packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x0c;
usb_buf[0x01] = 0xc4;
usb_buf[0x02] = 0x0f;
usb_buf[0x03] = 0x00;
usb_buf[0x04] = key;
usb_buf[0x05] = value;
hid_send_feature_report(dev, usb_buf, 9);
}
void AuraStrixEvolveController::UpdateProfile
(
unsigned char key,
unsigned char profile,
unsigned char value
)
{
unsigned char usb_buf[9];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, 9);
/*-----------------------------------------------------*\
| Set up message packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x0c;
usb_buf[0x01] = 0xde;
usb_buf[0x02] = key;
usb_buf[0x03] = profile;
usb_buf[0x04] = value;
hid_send_feature_report(dev, usb_buf, 9);
std::this_thread::sleep_for(std::chrono::milliseconds(5));
}
void AuraStrixEvolveController::SendSavePacket()
{
unsigned char usb_buf[9];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, 9);
/*-----------------------------------------------------*\
| Set up message packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x0c;
usb_buf[0x01] = 0xc4;
hid_send_feature_report(dev, usb_buf, 9);
}
@@ -1,50 +0,0 @@
/*-----------------------------------------*\
| AsusAuraStrixEvolveController.h |
| |
| Definitions and types for ASUS Aura |
| USB RGB lighting controller |
| |
| Mola19 11/30/2021 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <string>
#include <hidapi/hidapi.h>
#pragma once
#define HID_MAX_STR 255
class AuraStrixEvolveController
{
public:
AuraStrixEvolveController(hid_device* dev_handle, const char* path, uint16_t pid);
virtual ~AuraStrixEvolveController();
std::string GetDeviceLocation();
std::string GetSerialString();
std::string GetVersion();
int GetActiveProfile();
void SendUpdate
(
unsigned char key,
unsigned char value
);
void UpdateProfile
(
unsigned char key,
unsigned char profile,
unsigned char value
);
void SendSavePacket();
uint16_t device_pid;
private:
hid_device* dev;
std::string location;
};
@@ -1,283 +0,0 @@
/*-----------------------------------------*\
| AsusAuraTUFKeyboardController.cpp |
| |
| Driver for ASUS Aura RGB USB |
| lighting controller |
| |
| Mola19 03/03/2021 |
\*-----------------------------------------*/
#include "AsusAuraTUFKeyboardController.h"
#include <cstring>
#include <string>
#include <vector>
#include <math.h>
#include <stdio.h>
#include <string.h>
#include <cmath>
AuraTUFKeyboardController::AuraTUFKeyboardController(hid_device* dev_handle, const char* path, uint16_t pid)
{
dev = dev_handle;
location = path;
device_pid = pid;
}
AuraTUFKeyboardController::~AuraTUFKeyboardController()
{
hid_close(dev);
}
std::string AuraTUFKeyboardController::GetDeviceLocation()
{
return("HID: " + location);
}
std::string AuraTUFKeyboardController::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
std::string AuraTUFKeyboardController::GetVersion()
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x12;
usb_buf[0x02] = 0x00;
hid_write(dev, usb_buf, 65);
unsigned char usb_buf_out[65];
hid_read(dev, usb_buf_out, 65);
char version[9];
if (device_pid == AURA_TUF_K3_GAMING_PID)
{
snprintf(version, 9, "%02X.%02X.%02X", usb_buf_out[6], usb_buf_out[5], usb_buf_out[4]);
}
else
{
snprintf(version, 9, "%02X.%02X.%02X", usb_buf_out[5], usb_buf_out[6], usb_buf_out[7]);
}
return std::string(version);
}
int AuraTUFKeyboardController::GetLayout()
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x12;
usb_buf[0x02] = 0x12;
hid_write(dev, usb_buf, 65);
unsigned char usb_buf_out[65];
hid_read(dev, usb_buf_out, 65);
return(usb_buf_out[4] * 100 + usb_buf_out[5]);
}
void AuraTUFKeyboardController::SaveMode()
{
unsigned char usb_save_buf[65];
memset(usb_save_buf, 0x00, sizeof(usb_save_buf));
usb_save_buf[0x00] = 0x00;
usb_save_buf[0x01] = 0x50;
usb_save_buf[0x02] = 0x55;
hid_write(dev, usb_save_buf, 65);
}
void AuraTUFKeyboardController::UpdateSingleLed
(
int led,
unsigned char red,
unsigned char green,
unsigned char blue
)
{
/*-----------------------------------------------------*\
| Set up message packet for single LED |
\*-----------------------------------------------------*/
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0] = 0x00;
usb_buf[1] = 0xc0;
usb_buf[2] = 0x81;
usb_buf[3] = 0x01;
usb_buf[4] = 0x00;
/*-----------------------------------------------------*\
| Convert LED index |
\*-----------------------------------------------------*/
usb_buf[5] = floor(led/6)*8 + led%6;
usb_buf[6] = red;
usb_buf[7] = green;
usb_buf[8] = blue;
hid_write(dev, usb_buf, 65);
}
void AuraTUFKeyboardController::UpdateLeds
(
std::vector<RGBColor> colors
)
{
/*-----------------------------------------------------*\
| Loop over every column (optimisation needed) |
\*-----------------------------------------------------*/
for(unsigned int i = 0; i < 192; i += 16)
{
unsigned char usb_buf[69];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0] = 0x00;
usb_buf[1] = 0xc0;
usb_buf[2] = 0x81;
usb_buf[3] = (138 - i / 16 * 12);
usb_buf[4] = 0x00;
for(unsigned int n = 0; n < 6; n++)
{
usb_buf[n * 4 + 5] = i + n;
usb_buf[n * 4 + 6] = RGBGetRValue(colors[i/16*12+n]);
usb_buf[n * 4 + 7] = RGBGetGValue(colors[i/16*12+n]);
usb_buf[n * 4 + 8] = RGBGetBValue(colors[i/16*12+n]);
}
for(unsigned int n = 6; n < 8; n++)
{
usb_buf[n * 4 + 5] = i + n;
usb_buf[n * 4 + 6] = 0;
usb_buf[n * 4 + 7] = 0;
usb_buf[n * 4 + 8] = 0;
}
if(i != 176)
{
for(unsigned int n = 8; n < 14; n++)
{
usb_buf[n * 4 + 5] = i + n;
usb_buf[n * 4 + 6] = RGBGetRValue(colors[i/16*12+n-2]);
usb_buf[n * 4 + 7] = RGBGetGValue(colors[i/16*12+n-2]);
usb_buf[n * 4 + 8] = RGBGetBValue(colors[i/16*12+n-2]);
}
for(unsigned int n = 14; n < 16; n++)
{
usb_buf[n * 4 + 5] = i + n;
usb_buf[n * 4 + 6] = 0;
usb_buf[n * 4 + 7] = 0;
usb_buf[n * 4 + 8] = 0;
}
}
hid_write(dev, usb_buf, 69);
}
}
void AuraTUFKeyboardController::UpdateDevice
(
unsigned char mode,
std::vector<RGBColor> colors,
unsigned char dir,
unsigned char color_mode,
unsigned char speed,
unsigned char brightness
)
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x51;
usb_buf[0x02] = 0x2C;
usb_buf[0x03] = mode;
usb_buf[0x04] = 0x00;
usb_buf[0x05] = speed;
usb_buf[0x06] = brightness;
usb_buf[0x07] = color_mode;
usb_buf[0x08] = dir;
usb_buf[0x09] = 0x02;
if(mode == 4 || mode == 5)
{
/*-----------------------------------------------------*\
| If mode is Rainbow or Ripple |
\*-----------------------------------------------------*/
usb_buf[0x0A] = colors.size();
/*-----------------------------------------------------*\
| Loop over every color given |
\*-----------------------------------------------------*/
for(unsigned int i = 0; i / 4 < colors.size(); i += 4)
{
if(colors[i / 4])
{
usb_buf[11 + i] = 100/(double)colors.size()*(i/4+1);
usb_buf[12 + i] = RGBGetRValue(colors[i/4]);
usb_buf[13 + i] = RGBGetGValue(colors[i/4]);
usb_buf[14 + i] = RGBGetBValue(colors[i/4]);
}
}
}
else
{
/*-----------------------------------------------------*\
| Loop over Color1, Color2 and Background if there |
\*-----------------------------------------------------*/
for(unsigned int i = 0; i / 3 != colors.size(); i += 3)
{
if(colors[i / 3])
{
usb_buf[10 + i] = RGBGetRValue(colors[i/3]);
usb_buf[11 + i] = RGBGetGValue(colors[i/3]);
usb_buf[12 + i] = RGBGetBValue(colors[i/3]);
}
}
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, usb_buf, 65);
}
void AuraTUFKeyboardController::AwaitResponse()
{
unsigned char usb_buf_out[65];
hid_read(dev, usb_buf_out, 65);
}
void AuraTUFKeyboardController::ClearResponses()
{
int result = 1;
unsigned char usb_buf_flush[65];
while(result > 0)
{
result = hid_read_timeout(dev, usb_buf_flush, 65, 0);
}
}
@@ -1,92 +0,0 @@
/*-----------------------------------------*\
| AsusAuraTUFKeyboardController.h |
| |
| Definitions and types for ASUS Aura |
| USB RGB lighting controller |
| |
| Mola19 03/03/2021 |
\*-----------------------------------------*/
#include "RGBController.h"
#include "AsusAuraTUFKeyboardLayouts.h"
#include <string>
#include <vector>
#include <hidapi/hidapi.h>
#pragma once
enum
{
AURA_KEYBOARD_ZONE_LOGO = 0,
AURA_KEYBOARD_ZONE_SCROLL = 1,
AURA_KEYBOARD_ZONE_UNDERGLOW = 2,
AURA_KEYBOARD_ZONE_ALL = 3,
};
enum
{
AURA_KEYBOARD_MODE_STATIC = 0,
AURA_KEYBOARD_MODE_BREATHING = 1,
AURA_KEYBOARD_MODE_COLOR_CYCLE = 2,
AURA_KEYBOARD_MODE_REACTIVE = 3,
AURA_KEYBOARD_MODE_WAVE = 4,
AURA_KEYBOARD_MODE_RIPPLE = 5,
AURA_KEYBOARD_MODE_STARRY_NIGHT = 6,
AURA_KEYBOARD_MODE_QUICKSAND = 7,
AURA_KEYBOARD_MODE_CURRENT = 8,
AURA_KEYBOARD_MODE_RAIN_DROP = 9,
AURA_KEYBOARD_MODE_DIRECT = 15,
};
enum
{
AURA_TUF_K7_GAMING_PID = 0x18AA,
AURA_TUF_K3_GAMING_PID = 0x194B,
};
class AuraTUFKeyboardController
{
public:
AuraTUFKeyboardController(hid_device* dev_handle, const char* path, uint16_t pid);
~AuraTUFKeyboardController();
std::string GetDeviceLocation();
std::string GetSerialString();
std::string GetVersion();
int GetLayout();
void SaveMode();
void UpdateSingleLed
(
int led,
unsigned char red,
unsigned char green,
unsigned char blue
);
void UpdateLeds
(
std::vector<RGBColor> colors
);
void UpdateDevice
(
unsigned char mode,
std::vector<RGBColor> colors,
unsigned char dir,
unsigned char color_mode,
unsigned char speed,
unsigned char brightness
);
void AwaitResponse();
void ClearResponses();
uint16_t device_pid;
private:
hid_device* dev;
std::string location;
};
@@ -1,412 +0,0 @@
/*-----------------------------------------*\
| AsusAuraTUFKeyboardController.h |
| |
| Definitions and types for ASUS Aura |
| USB RGB lighting controller |
| |
| Mola19 10/02/2021 |
\*-----------------------------------------*/
#include "RGBControllerKeyNames.h"
#include <vector>
#include <map>
#include "RGBController.h"
#pragma once
enum
{
ASUS_TUF_K7_LAYOUT_CA = 1,
ASUS_TUF_K7_LAYOUT_AR = 2,
ASUS_TUF_K7_LAYOUT_DE = 3,
ASUS_TUF_K7_LAYOUT_UK = 4,
ASUS_TUF_K7_LAYOUT_FR = 5,
ASUS_TUF_K7_LAYOUT_CN = 6,
ASUS_TUF_K7_LAYOUT_HU = 7,
ASUS_TUF_K7_LAYOUT_IT = 8,
ASUS_TUF_K7_LAYOUT_TH = 9,
ASUS_TUF_K7_LAYOUT_UA = 10,
ASUS_TUF_K7_LAYOUT_NO = 11,
ASUS_TUF_K7_LAYOUT_PT = 12,
ASUS_TUF_K7_LAYOUT_HE = 13,
ASUS_TUF_K7_LAYOUT_RU = 14,
ASUS_TUF_K7_LAYOUT_ES = 15,
ASUS_TUF_K7_LAYOUT_TW = 16,
ASUS_TUF_K7_LAYOUT_US = 17,
ASUS_TUF_K7_LAYOUT_TR = 18,
ASUS_TUF_K7_LAYOUT_CZ = 19,
ASUS_TUF_K7_LAYOUT_BE = 20,
ASUS_TUF_K7_LAYOUT_JP = 21,
ASUS_TUF_K7_LAYOUT_KR = 22,
ASUS_TUF_K7_LAYOUT_IS = 23,
ASUS_TUF_K7_LAYOUT_WB = 24,
ASUS_TUF_K7_LAYOUT_SW_CH = 25
};
#define NA 0xFFFFFFFF
typedef struct
{
unsigned int * matrix_map;
std::vector<std::string> led_names;
} layout_type;
static unsigned int ASUS_TUF_K7_LAYOUT_KEYS_104[6][23] = {
{ 0, NA, 18, 24, 30, 36, NA, 48, 54, 60, 66, 72, 78, 84, 90, NA, 96, 102, 108, NA, NA, NA, NA },
{ 1, 13, 19, 25, 31, 37, 43, 49, 55, 61, 67, 73, 79, 91, NA, NA, 97, 103, 109, 115, 121, 127, 133 },
{ 2, NA, 14, 20, 26, 32, 38, 44, 50, 56, 62, 68, 74, 80, 92, NA, 98, 104, 110, 116, 122, 128, 134 },
{ 3, NA, 15, 21, 27, 33, 39, 45, 51, 57, 63, 69, 75, NA, 93, NA, NA, NA, NA, 117, 123, 129, NA },
{ 4, NA, 16, 22, 28, 34, 40, 46, 52, 58, 64, 70, NA, 94, NA, NA, NA, 106, NA, 118, 124, 130, 136 },
{ 5, 11, 17, NA, NA, NA, 41, NA, NA, NA, 59, 71, 77, NA, 95, NA, 101, 107, 113, 119, NA, 131, NA }
};
static unsigned int ASUS_TUF_K7_LAYOUT_KEYS_105[6][23] = {
{ 0, NA, 18, 24, 30, 36, NA, 48, 54, 60, 66, 72, 78, 84, 90, NA, 96, 102, 108, NA, NA, NA, NA },
{ 1, 13, 19, 25, 31, 37, 43, 49, 55, 61, 67, 73, 79, 91, NA, NA, 97, 103, 109, 115, 121, 127, 133 },
{ 2, NA, 14, 20, 26, 32, 38, 44, 50, 56, 62, 68, 74, 80, NA, NA, 98, 104, 110, 116, 122, 128, 134 },
{ 3, NA, 15, 21, 27, 33, 39, 45, 51, 57, 63, 69, 75, 81, 93, NA, NA, NA, NA, 117, 123, 129, NA },
{ 4, 10, 16, 22, 28, 34, 40, 46, 52, 58, 64, 70, NA, 94, NA, NA, NA, 106, NA, 118, 124, 130, 136 },
{ 5, 11, 17, NA, NA, NA, 41, NA, NA, NA, 59, 71, 77, NA, 95, NA, 101, 107, 113, 119, NA, 131, NA }
};
static std::map<int,layout_type> AsusTUFK7Layouts =
{
{
ASUS_TUF_K7_LAYOUT_UK,
{
(unsigned int *) ASUS_TUF_K7_LAYOUT_KEYS_105,
{
KEY_EN_ESCAPE,
KEY_EN_BACK_TICK,
KEY_EN_TAB,
KEY_EN_CAPS_LOCK,
KEY_EN_LEFT_SHIFT,
KEY_EN_LEFT_CONTROL,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
"Key: \\",
KEY_EN_LEFT_WINDOWS,
KEY_EN_UNUSED,
KEY_EN_1,
KEY_EN_Q,
KEY_EN_A,
KEY_EN_Z,
KEY_EN_LEFT_ALT,
KEY_EN_F1,
KEY_EN_2,
KEY_EN_W,
KEY_EN_S,
KEY_EN_X,
KEY_EN_UNUSED,
KEY_EN_F2,
KEY_EN_3,
KEY_EN_E,
KEY_EN_D,
KEY_EN_C,
KEY_EN_UNUSED,
KEY_EN_F3,
KEY_EN_4,
KEY_EN_R,
KEY_EN_F,
KEY_EN_V,
KEY_EN_UNUSED,
KEY_EN_F4,
KEY_EN_5,
KEY_EN_T,
KEY_EN_G,
KEY_EN_B,
KEY_EN_SPACE,
KEY_EN_UNUSED,
KEY_EN_6,
KEY_EN_Y,
KEY_EN_H,
KEY_EN_N,
KEY_EN_UNUSED,
KEY_EN_F5,
KEY_EN_7,
KEY_EN_U,
KEY_EN_J,
KEY_EN_M,
KEY_EN_UNUSED,
KEY_EN_F6,
KEY_EN_8,
KEY_EN_I,
KEY_EN_K,
KEY_EN_COMMA,
KEY_EN_RIGHT_ALT,
KEY_EN_F7,
KEY_EN_9,
KEY_EN_O,
KEY_EN_L,
KEY_EN_PERIOD,
KEY_EN_UNUSED,
KEY_EN_F8,
KEY_EN_0,
KEY_EN_P,
KEY_EN_SEMICOLON,
KEY_EN_FORWARD_SLASH,
KEY_EN_RIGHT_FUNCTION,
KEY_EN_F9,
KEY_EN_MINUS,
KEY_EN_LEFT_BRACKET,
KEY_EN_QUOTE,
KEY_EN_UNUSED,
KEY_EN_MENU,
KEY_EN_F10,
KEY_EN_EQUALS,
KEY_EN_RIGHT_BRACKET,
KEY_EN_POUND,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_F11,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_F12,
KEY_EN_BACKSPACE,
KEY_EN_UNUSED,
KEY_EN_ANSI_ENTER,
KEY_EN_RIGHT_SHIFT,
KEY_EN_RIGHT_CONTROL,
KEY_EN_PRINT_SCREEN,
KEY_EN_INSERT,
KEY_EN_DELETE,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_LEFT_ARROW,
KEY_EN_SCROLL_LOCK,
KEY_EN_HOME,
KEY_EN_END,
KEY_EN_UNUSED,
KEY_EN_UP_ARROW,
KEY_EN_DOWN_ARROW,
KEY_EN_PAUSE_BREAK,
KEY_EN_PAGE_UP,
KEY_EN_PAGE_DOWN,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_RIGHT_ARROW,
KEY_EN_UNUSED,
KEY_EN_NUMPAD_LOCK,
KEY_EN_NUMPAD_7,
KEY_EN_NUMPAD_4,
KEY_EN_NUMPAD_1,
KEY_EN_NUMPAD_0,
KEY_EN_UNUSED,
KEY_EN_NUMPAD_DIVIDE,
KEY_EN_NUMPAD_8,
KEY_EN_NUMPAD_5,
KEY_EN_NUMPAD_2,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_NUMPAD_TIMES,
KEY_EN_NUMPAD_9,
KEY_EN_NUMPAD_6,
KEY_EN_NUMPAD_3,
"Key: Number Pad ,",
KEY_EN_UNUSED,
KEY_EN_NUMPAD_MINUS,
KEY_EN_NUMPAD_PLUS,
KEY_EN_UNUSED,
KEY_EN_NUMPAD_ENTER,
KEY_EN_UNUSED,
}
}
},
{
ASUS_TUF_K7_LAYOUT_US,
{
(unsigned int *) ASUS_TUF_K7_LAYOUT_KEYS_104,
{
KEY_EN_ESCAPE,
KEY_EN_BACK_TICK,
KEY_EN_TAB,
KEY_EN_CAPS_LOCK,
KEY_EN_LEFT_SHIFT,
KEY_EN_LEFT_CONTROL,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_LEFT_WINDOWS,
KEY_EN_UNUSED,
KEY_EN_1,
KEY_EN_Q,
KEY_EN_A,
KEY_EN_Z,
KEY_EN_LEFT_ALT,
KEY_EN_F1,
KEY_EN_2,
KEY_EN_W,
KEY_EN_S,
KEY_EN_X,
KEY_EN_UNUSED,
KEY_EN_F2,
KEY_EN_3,
KEY_EN_E,
KEY_EN_D,
KEY_EN_C,
KEY_EN_UNUSED,
KEY_EN_F3,
KEY_EN_4,
KEY_EN_R,
KEY_EN_F,
KEY_EN_V,
KEY_EN_UNUSED,
KEY_EN_F4,
KEY_EN_5,
KEY_EN_T,
KEY_EN_G,
KEY_EN_B,
KEY_EN_SPACE,
KEY_EN_UNUSED,
KEY_EN_6,
KEY_EN_Y,
KEY_EN_H,
KEY_EN_N,
KEY_EN_UNUSED,
KEY_EN_F5,
KEY_EN_7,
KEY_EN_U,
KEY_EN_J,
KEY_EN_M,
KEY_EN_UNUSED,
KEY_EN_F6,
KEY_EN_8,
KEY_EN_I,
KEY_EN_K,
KEY_EN_COMMA,
KEY_EN_RIGHT_ALT,
KEY_EN_F7,
KEY_EN_9,
KEY_EN_O,
KEY_EN_L,
KEY_EN_PERIOD,
KEY_EN_UNUSED,
KEY_EN_F8,
KEY_EN_0,
KEY_EN_P,
KEY_EN_SEMICOLON,
KEY_EN_FORWARD_SLASH,
KEY_EN_RIGHT_FUNCTION,
KEY_EN_F9,
KEY_EN_MINUS,
KEY_EN_LEFT_BRACKET,
KEY_EN_QUOTE,
KEY_EN_UNUSED,
KEY_EN_MENU,
KEY_EN_F10,
KEY_EN_EQUALS,
KEY_EN_RIGHT_BRACKET,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_F11,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_F12,
KEY_EN_BACKSPACE,
"Key: \\",
KEY_EN_ANSI_ENTER,
KEY_EN_RIGHT_SHIFT,
KEY_EN_RIGHT_CONTROL,
KEY_EN_PRINT_SCREEN,
KEY_EN_INSERT,
KEY_EN_DELETE,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_LEFT_ARROW,
KEY_EN_SCROLL_LOCK,
KEY_EN_HOME,
KEY_EN_END,
KEY_EN_UNUSED,
KEY_EN_UP_ARROW,
KEY_EN_DOWN_ARROW,
KEY_EN_PAUSE_BREAK,
KEY_EN_PAGE_UP,
KEY_EN_PAGE_DOWN,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_RIGHT_ARROW,
KEY_EN_UNUSED,
KEY_EN_NUMPAD_LOCK,
KEY_EN_NUMPAD_7,
KEY_EN_NUMPAD_4,
KEY_EN_NUMPAD_1,
KEY_EN_NUMPAD_0,
KEY_EN_UNUSED,
KEY_EN_NUMPAD_DIVIDE,
KEY_EN_NUMPAD_8,
KEY_EN_NUMPAD_5,
KEY_EN_NUMPAD_2,
KEY_EN_UNUSED,
KEY_EN_UNUSED,
KEY_EN_NUMPAD_TIMES,
KEY_EN_NUMPAD_9,
KEY_EN_NUMPAD_6,
KEY_EN_NUMPAD_3,
"Key: Number Pad ,",
KEY_EN_UNUSED,
KEY_EN_NUMPAD_MINUS,
KEY_EN_NUMPAD_PLUS,
KEY_EN_UNUSED,
KEY_EN_NUMPAD_ENTER,
KEY_EN_UNUSED,
}
}
},
};
@@ -8,8 +8,6 @@
\*-----------------------------------------*/
#include "AsusAuraUSBController.h"
#include "LogManager.h"
#include <cstring>
#include <stdexcept>
@@ -90,23 +88,21 @@ void AuraUSBController::GetConfigTable()
{
memcpy(config_table, &usb_buf[4], 60);
LOG_DEBUG("[%s] ASUS Aura USB config table:", device_name);
for(int i = 0; i < 60; i+=6)
{
LOG_DEBUG("[%s] %02X %02X %02X %02X %02X %02X", device_name,
config_table[i + 0],
config_table[i + 1],
config_table[i + 2],
config_table[i + 3],
config_table[i + 4],
config_table[i + 5]);
printf("%02X %02X %02X %02X %02X %02X\r\n", config_table[i + 0],
config_table[i + 1],
config_table[i + 2],
config_table[i + 3],
config_table[i + 4],
config_table[i + 5]);
}
}
else
{
LOG_INFO("[%s] Could not read config table, can not add device", device_name);
delete this;
hid_close(dev);
throw std::runtime_error("Could not read config table");
}
}
@@ -8,7 +8,6 @@
\*-----------------------------------------*/
#include "RGBController.h"
#include "LogManager.h"
#include <string>
#include <vector>
@@ -1,32 +1,18 @@
#include "Detector.h"
#include "AsusAuraAddressableController.h"
#include "AsusAuraHeadsetStandController.h"
#include "AsusAuraKeyboardController.h"
#include "AsusAuraTUFKeyboardController.h"
#include "AsusAuraMainboardController.h"
#include "AsusAuraMouseController.h"
#include "AsusAuraMousematController.h"
#include "AsusAuraStrixEvolveController.h"
#include "AsusAuraMonitorController.h"
#include "RGBController.h"
#include "RGBController_AsusAuraUSB.h"
#include "RGBController_AsusAuraHeadsetStand.h"
#include "RGBController_AsusAuraKeyboard.h"
#include "RGBController_AsusAuraTUFKeyboard.h"
#include "RGBController_AsusAuraMouse.h"
#include "RGBController_AsusAuraMousemat.h"
#include "RGBController_ROGStrixLC_Controller.h"
#include "RGBController_AsusAuraStrixEvolve.h"
#include "RGBController_AsusAuraMonitor.h"
#include <stdexcept>
#include <hidapi/hidapi.h>
#include "dependencies/dmiinfo.h"
#define AURA_USB_VID 0x0B05
/*-----------------------------------------------------------------*\
| MOTHERBOARDS |
\*-----------------------------------------------------------------*/
#define AURA_TERMINAL_PID 0x1889
#define AURA_ADDRESSABLE_1_PID 0x1867
#define AURA_ADDRESSABLE_2_PID 0x1872
#define AURA_ADDRESSABLE_3_PID 0x18A3
@@ -34,77 +20,16 @@
#define AURA_MOTHERBOARD_1_PID 0x18F3
#define AURA_MOTHERBOARD_2_PID 0x1939
#define AURA_MOTHERBOARD_3_PID 0x19AF
/*-----------------------------------------------------------------*\
| KEYBOARDS |
\*-----------------------------------------------------------------*/
#define AURA_ROG_FALCHION_WIRED_PID 0x193C
#define AURA_ROG_FALCHION_WIRELESS_PID 0x193E
#define AURA_ROG_GLADIUS_II_CORE_PID 0x18DD
#define AURA_ROG_GLADIUS_II_PID 0x1845
#define AURA_ROG_STRIX_FLARE_PID 0x1875
#define AURA_ROG_GLADIUS_II_ORIGIN_PID 0x1877
#define AURA_ROG_GLADIUS_II_ORIGIN_PNK_LTD_PID 0x18CD
#define AURA_ROG_STRIX_FLARE_PNK_LTD_PID 0x18CF
#define AURA_ROG_STRIX_SCOPE_PID 0x18F8
#define AURA_ROG_STRIX_SCOPE_RX_PID 0x1951
#define AURA_ROG_CHAKRAM_WIRELESS_PID 0x18E5
#define AURA_ROG_CHAKRAM_WIRED_1_PID 0x18E3
#define AURA_ROG_STRIX_SCOPE_TKL_PID 0x190C
#define AURA_TUF_K7_GAMING_PID 0x18AA
#define AURA_TUF_K3_GAMING_PID 0x194B
/*-----------------------------------------------------------------*\
| MICE - defined in AsusAuraMouseDevices.h |
\*-----------------------------------------------------------------*/
#define AURA_ROG_STRIX_EVOLVE_PID 0x185B
/*-----------------------------------------------------------------*\
| MOUSEMATS |
\*-----------------------------------------------------------------*/
#define AURA_ROG_BALTEUS_PID 0x1891
#define AURA_ROG_BALTEUS_QI_PID 0x1890
/*-----------------------------------------------------------------*\
| MONITORS |
\*-----------------------------------------------------------------*/
#define AURA_ROG_STRIX_XG27AQ_PID 0x198C
/*-----------------------------------------------------------------*\
| HEADSETSTANDS |
\*-----------------------------------------------------------------*/
#define AURA_ROG_THRONE_PID 0x18D9
#define AURA_ROG_THRONE_QI_PID 0x18C5
#define AURA_ROG_THRONE_QI_GUNDAM_PID 0x1994
/*-----------------------------------------------------------------*\
| OTHER |
\*-----------------------------------------------------------------*/
#define AURA_TERMINAL_PID 0x1889
#define ROG_STRIX_LC120_PID 0x879E
AuraKeyboardMappingLayoutType GetKeyboardMappingLayoutType(int pid)
{
switch(pid)
{
case AURA_ROG_STRIX_FLARE_PID:
case AURA_ROG_STRIX_FLARE_PNK_LTD_PID:
return FLARE_LAYOUT;
case AURA_ROG_STRIX_SCOPE_PID:
return SCOPE_LAYOUT;
case AURA_ROG_STRIX_SCOPE_RX_PID:
return SCOPE_RX_LAYOUT;
case AURA_ROG_STRIX_SCOPE_TKL_PID:
return SCOPE_TKL_LAYOUT;
case AURA_ROG_FALCHION_WIRED_PID:
case AURA_ROG_FALCHION_WIRELESS_PID:
return FALCHION_LAYOUT;
default:
return FLARE_LAYOUT;
}
}
#define AURA_ROG_CHAKRAM_WIRED_2_PID 0x1958
void DetectAsusAuraUSBTerminal(hid_device_info* info, const std::string& name)
{
@@ -112,45 +37,43 @@ void DetectAsusAuraUSBTerminal(hid_device_info* info, const std::string& name)
if(dev)
{
AuraAddressableController* controller = new AuraAddressableController(dev, info->path);
RGBController_AuraUSB* rgb_controller = new RGBController_AuraUSB(controller);
rgb_controller->name = name;
AuraAddressableController* controller = new AuraAddressableController(dev, info->path);
RGBController_AuraUSB* rgb_controller = new RGBController_AuraUSB(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
void DetectAsusAuraUSBAddressable(hid_device_info* info, const std::string& /*name*/)
void DetectAsusAuraUSBAddressable(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
DMIInfo dmi;
AuraAddressableController* controller = new AuraAddressableController(dev, info->path);
RGBController_AuraUSB* rgb_controller = new RGBController_AuraUSB(controller);
rgb_controller->name = "ASUS " + dmi.getMainboard() + " Addressable";
AuraAddressableController* controller = new AuraAddressableController(dev, info->path);
RGBController_AuraUSB* rgb_controller = new RGBController_AuraUSB(controller);
rgb_controller->name = "ASUS " + dmi.getMainboard() + " Addressable";
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
void DetectAsusAuraUSBMotherboards(hid_device_info* info, const std::string& /*name*/)
void DetectAsusAuraUSBMotherboards(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
try
{
DMIInfo dmi;
AuraMainboardController* controller = new AuraMainboardController(dev, info->path);
RGBController_AuraUSB* rgb_controller = new RGBController_AuraUSB(controller);
rgb_controller->name = "ASUS " + dmi.getMainboard();
AuraMainboardController* controller = new AuraMainboardController(dev, info->path);
RGBController_AuraUSB* rgb_controller = new RGBController_AuraUSB(controller);
rgb_controller->name = "ASUS " + dmi.getMainboard();
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
catch(const std::runtime_error& ex)
catch(std::runtime_error&)
{
// reading the config table failed
LOG_ERROR("[AsusAuraUSB] An error occured while reading the config table: %s", ex.what());
}
}
}
@@ -158,13 +81,11 @@ void DetectAsusAuraUSBMotherboards(hid_device_info* info, const std::string& /*n
void DetectAsusAuraUSBKeyboards(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
AuraKeyboardController* controller = new AuraKeyboardController(dev, info->path);
AuraKeyboardMappingLayoutType layout = GetKeyboardMappingLayoutType(info->product_id);
RGBController_AuraKeyboard* rgb_controller = new RGBController_AuraKeyboard(controller, layout);
rgb_controller->name = name;
AuraKeyboardController* controller = new AuraKeyboardController(dev, info->path);
RGBController_AuraKeyboard* rgb_controller = new RGBController_AuraKeyboard(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
@@ -172,97 +93,16 @@ void DetectAsusAuraUSBKeyboards(hid_device_info* info, const std::string& name)
void DetectAsusAuraUSBMice(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
AuraMouseController* controller = new AuraMouseController(dev, info->path, info->product_id);
RGBController_AuraMouse* rgb_controller = new RGBController_AuraMouse(controller);
rgb_controller->name = name;
AuraMouseController* controller = new AuraMouseController(dev, info->path);
RGBController_AuraMouse* rgb_controller = new RGBController_AuraMouse(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
void DetectAsusAuraUSBMousemats(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
AuraMousematController* controller = new AuraMousematController(dev, info->path);
RGBController_AuraMousemat* rgb_controller = new RGBController_AuraMousemat(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
void DetectAsusAuraUSBROGStrixLC(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
ROGStrixLC_Controller* controller = new ROGStrixLC_Controller(dev, info->path);
RGBController_ROGStrixLC_Controller* rgb_controller = new RGBController_ROGStrixLC_Controller(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
void DetectAsusAuraUSBStrixEvolve(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
AuraStrixEvolveController* controller = new AuraStrixEvolveController(dev, info->path, info->product_id);
RGBController_AuraStrixEvolve* rgb_controller = new RGBController_AuraStrixEvolve(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
void DetectAsusAuraUSBHeadsetStand(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
AuraHeadsetStandController* controller = new AuraHeadsetStandController(dev, info->path);
RGBController_AuraHeadsetStand* rgb_controller = new RGBController_AuraHeadsetStand(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
void DetectAsusAuraTUFUSBKeyboard(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
AuraTUFKeyboardController* controller = new AuraTUFKeyboardController(dev, info->path, info->product_id);
RGBController_AuraTUFKeyboard* rgb_controller = new RGBController_AuraTUFKeyboard(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
void DetectAsusAuraUSBMonitor(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
AuraMonitorController* controller = new AuraMonitorController(dev, info->path);
RGBController_AuraMonitor* rgb_controller = new RGBController_AuraMonitor(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
/*-----------------------------------------------------------------*\
| MOTHERBOARDS |
\*-----------------------------------------------------------------*/
REGISTER_HID_DETECTOR ("ASUS ROG AURA Terminal", DetectAsusAuraUSBTerminal, AURA_USB_VID, AURA_TERMINAL_PID);
REGISTER_HID_DETECTOR ("ASUS Aura Addressable", DetectAsusAuraUSBAddressable, AURA_USB_VID, AURA_ADDRESSABLE_1_PID);
REGISTER_HID_DETECTOR ("ASUS Aura Addressable", DetectAsusAuraUSBAddressable, AURA_USB_VID, AURA_ADDRESSABLE_2_PID);
REGISTER_HID_DETECTOR ("ASUS Aura Addressable", DetectAsusAuraUSBAddressable, AURA_USB_VID, AURA_ADDRESSABLE_3_PID);
@@ -270,63 +110,13 @@ REGISTER_HID_DETECTOR ("ASUS Aura Addressable", DetectAsusAuraUS
REGISTER_HID_DETECTOR ("ASUS Aura Motherboard", DetectAsusAuraUSBMotherboards, AURA_USB_VID, AURA_MOTHERBOARD_1_PID);
REGISTER_HID_DETECTOR ("ASUS Aura Motherboard", DetectAsusAuraUSBMotherboards, AURA_USB_VID, AURA_MOTHERBOARD_2_PID);
REGISTER_HID_DETECTOR ("ASUS Aura Motherboard", DetectAsusAuraUSBMotherboards, AURA_USB_VID, AURA_MOTHERBOARD_3_PID);
/*-----------------------------------------------------------------*\
| KEYBOARDS |
\*-----------------------------------------------------------------*/
REGISTER_HID_DETECTOR_IP("ASUS ROG Falchion (Wired)", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_FALCHION_WIRED_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Falchion (Wireless)", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_FALCHION_WIRELESS_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Flare", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_FLARE_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Flare PNK LTD", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_FLARE_PNK_LTD_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Scope", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_SCOPE_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Scope RX", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_SCOPE_RX_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Scope TKL", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_SCOPE_TKL_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS TUF Gaming K7", DetectAsusAuraTUFUSBKeyboard, AURA_USB_VID, AURA_TUF_K7_GAMING_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS TUF Gaming K3", DetectAsusAuraTUFUSBKeyboard, AURA_USB_VID, AURA_TUF_K3_GAMING_PID, 1, 0xFF00);
/*-----------------------------------------------------------------*\
| MICE |
\*-----------------------------------------------------------------*/
REGISTER_HID_DETECTOR_IP("ASUS ROG Gladius II Core", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_GLADIUS_II_CORE_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Gladius II", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_GLADIUS_II_PID, 2, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Gladius II Origin", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_GLADIUS_II_ORIGIN_PID, 2, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Gladius II Origin PNK LTD", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_GLADIUS_II_ORIGIN_PNK_LTD_PID, 2, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Gladius II Origin COD", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_GLADIUS_II_ORIGIN_COD_PID, 2, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Gladius II Wireless", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_GLADIUS_II_WIRELESS_1_PID, 1, 0xFF13);
REGISTER_HID_DETECTOR_IP("ASUS ROG Gladius II Wireless", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_GLADIUS_II_WIRELESS_2_PID, 2, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Chakram (Wireless)", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_CHAKRAM_WIRELESS_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("Asus ROG Chakram (Wired)", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_CHAKRAM_WIRED_1_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("Asus ROG Chakram Core", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_CHAKRAM_CORE_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Pugio", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_PUGIO_PID, 2, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Pugio II (Wired)", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_PUGIO_II_WIRED_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Pugio II (Wireless)", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_PUGIO_II_WIRELESS_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Impact", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_STRIX_IMPACT_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Impact II", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_STRIX_IMPACT_II_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Keris", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_KERIS, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Keris Wireless USB", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_KERIS_WIRELESS_USB_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Keris Wireless 2.4Ghz", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_KERIS_WIRELESS_2_4_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Keris Wireless Bluetooth", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_KERIS_WIRELESS_BT_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS TUF Gaming M3", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_TUF_M3_PID, 1, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS TUF Gaming M5", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_TUF_M5_PID, 2, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Evolve", DetectAsusAuraUSBStrixEvolve, AURA_USB_VID, AURA_ROG_STRIX_EVOLVE_PID, 1, 0x0008);
/*-----------------------------------------------------------------*\
| MOUSEMATS |
\*-----------------------------------------------------------------*/
REGISTER_HID_DETECTOR_PU("ASUS ROG Balteus", DetectAsusAuraUSBMousemats, AURA_USB_VID, AURA_ROG_BALTEUS_PID, 0xFF06, 1);
REGISTER_HID_DETECTOR_PU("ASUS ROG Balteus Qi", DetectAsusAuraUSBMousemats, AURA_USB_VID, AURA_ROG_BALTEUS_QI_PID, 0xFF06, 1);
/*-----------------------------------------------------------------*\
| MONITORS |
\*-----------------------------------------------------------------*/
REGISTER_HID_DETECTOR_PU("ASUS ROG Strix XG27AQ", DetectAsusAuraUSBMonitor, AURA_USB_VID, AURA_ROG_STRIX_XG27AQ_PID, 0xFFA0, 1);
/*-----------------------------------------------------------------*\
| OTHER |
\*-----------------------------------------------------------------*/
REGISTER_HID_DETECTOR ("ASUS ROG AURA Terminal", DetectAsusAuraUSBTerminal, AURA_USB_VID, AURA_TERMINAL_PID);
REGISTER_HID_DETECTOR_PU ("ASUS ROG Strix LC", DetectAsusAuraUSBROGStrixLC, AURA_USB_VID, ROG_STRIX_LC120_PID, 0x00FF, 1);
REGISTER_HID_DETECTOR_I ("ASUS ROG Throne", DetectAsusAuraUSBHeadsetStand, AURA_USB_VID, AURA_ROG_THRONE_PID, 0);
REGISTER_HID_DETECTOR_I ("ASUS ROG Throne QI", DetectAsusAuraUSBHeadsetStand, AURA_USB_VID, AURA_ROG_THRONE_QI_PID, 0);
REGISTER_HID_DETECTOR_I ("ASUS ROG Throne QI GUNDAM", DetectAsusAuraUSBHeadsetStand, AURA_USB_VID, AURA_ROG_THRONE_QI_GUNDAM_PID, 0);
REGISTER_HID_DETECTOR_IP("Asus ROG Chakram (Wired)", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_CHAKRAM_WIRED_2_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Flare", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_FLARE_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Flare PNK LTD", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_FLARE_PNK_LTD_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Scope TKL", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_SCOPE_TKL_PID, 1, 0xFF00);
@@ -1,214 +0,0 @@
/*-----------------------------------------*\
| RGBController_AsusAuraHeadsetStand.cpp |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Mola19 06/04/2021 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraHeadsetStand.h"
/**------------------------------------------------------------------*\
@name Asus Aura Headset Stand
@type USB
@save :white_check_mark:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAsusAuraUSBHeadsetStand
@comment
\*-------------------------------------------------------------------*/
RGBController_AuraHeadsetStand::RGBController_AuraHeadsetStand(AuraHeadsetStandController* controller_ptr)
{
controller = controller_ptr;
name = "ASUS Aura Headset Stand";
vendor = "ASUS";
type = DEVICE_TYPE_HEADSET_STAND;
description = "ASUS Aura Headset Stand Device";
version = controller->GetVersion();
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = AURA_HEADSET_STAND_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Static;
Static.name = "Static";
Static.value = AURA_HEADSET_STAND_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
Static.brightness_min = AURA_HEADSETSTAND_BRIGHTNESS_MIN;
Static.brightness_max = AURA_HEADSETSTAND_BRIGHTNESS_MAX;
Static.brightness = AURA_HEADSETSTAND_BRIGHTNESS_DEFAULT;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors_min = 1;
Static.colors_max = 1;
Static.colors.resize(1);
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_HEADSET_STAND_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.speed_min = AURA_HEADSETSTAND_SPEED_MIN;
Breathing.speed_max = AURA_HEADSETSTAND_SPEED_MAX;
Breathing.speed = AURA_HEADSETSTAND_SPEED_DEFAULT;
Breathing.brightness_min = AURA_HEADSETSTAND_BRIGHTNESS_MIN;
Breathing.brightness_max = AURA_HEADSETSTAND_BRIGHTNESS_MAX;
Breathing.brightness = AURA_HEADSETSTAND_BRIGHTNESS_DEFAULT;
Breathing.colors_min = 1;
Breathing.colors_max = 1;
Breathing.colors.resize(1);
modes.push_back(Breathing);
mode Strobing;
Strobing.name = "Flashing";
Strobing.value = AURA_HEADSET_STAND_MODE_STROBING;
Strobing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
Strobing.brightness_min = AURA_HEADSETSTAND_BRIGHTNESS_MIN;
Strobing.brightness_max = AURA_HEADSETSTAND_BRIGHTNESS_MAX;
Strobing.brightness = AURA_HEADSETSTAND_BRIGHTNESS_DEFAULT;
Strobing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Strobing.colors_min = 1;
Strobing.colors_max = 1;
Strobing.colors.resize(1);
modes.push_back(Strobing);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = AURA_HEADSET_STAND_MODE_COLOR_CYCLE;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
SpectrumCycle.speed_min = AURA_HEADSETSTAND_SPEED_MIN;
SpectrumCycle.speed_max = AURA_HEADSETSTAND_SPEED_MAX;
SpectrumCycle.speed = AURA_HEADSETSTAND_SPEED_DEFAULT;
SpectrumCycle.brightness_min = AURA_HEADSETSTAND_BRIGHTNESS_MIN;
SpectrumCycle.brightness_max = AURA_HEADSETSTAND_BRIGHTNESS_MAX;
SpectrumCycle.brightness = AURA_HEADSETSTAND_BRIGHTNESS_DEFAULT;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
mode Rainbow;
Rainbow.name = "Rainbow Wave";
Rainbow.value = AURA_HEADSET_STAND_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
Rainbow.speed_min = AURA_HEADSETSTAND_SPEED_MIN;
Rainbow.speed_max = AURA_HEADSETSTAND_SPEED_MAX;
Rainbow.speed = AURA_HEADSETSTAND_SPEED_DEFAULT;
Rainbow.brightness_min = AURA_HEADSETSTAND_BRIGHTNESS_MIN;
Rainbow.brightness_max = AURA_HEADSETSTAND_BRIGHTNESS_MAX;
Rainbow.brightness = AURA_HEADSETSTAND_BRIGHTNESS_DEFAULT;
modes.push_back(Rainbow);
SetupZones();
}
RGBController_AuraHeadsetStand::~RGBController_AuraHeadsetStand()
{
delete controller;
}
void RGBController_AuraHeadsetStand::SetupZones()
{
zone underglow_zone;
underglow_zone.name = "Underglow";
underglow_zone.type = ZONE_TYPE_LINEAR;
underglow_zone.leds_min = 17;
underglow_zone.leds_max = 17;
underglow_zone.leds_count = 17;
underglow_zone.matrix_map = NULL;
zones.push_back(underglow_zone);
for(unsigned int i = 0; i < 17; i++)
{
led underglow_led;
underglow_led.name = "Underglow LED " + std::to_string(i);
leds.push_back(underglow_led);
}
zone logo_zone;
logo_zone.name = "Logo";
logo_zone.type = ZONE_TYPE_SINGLE;
logo_zone.leds_min = 1;
logo_zone.leds_max = 1;
logo_zone.leds_count = 1;
logo_zone.matrix_map = NULL;
zones.push_back(logo_zone);
led logo_led;
logo_led.name = "Logo LED";
leds.push_back(logo_led);
SetupColors();
}
void RGBController_AuraHeadsetStand::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AuraHeadsetStand::DeviceUpdateLEDs()
{
controller->UpdateLeds(std::vector<RGBColor>(colors));
}
void RGBController_AuraHeadsetStand::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraHeadsetStand::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraHeadsetStand::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AuraHeadsetStand::DeviceUpdateMode()
{
unsigned char red = 0;
unsigned char grn = 0;
unsigned char blu = 0;
switch(modes[active_mode].value)
{
case 0:
controller->UpdateLeds(std::vector<RGBColor>(colors));
break;
case 1:
case 2:
case 3:
red = RGBGetRValue(modes[active_mode].colors[0]);
grn = RGBGetGValue(modes[active_mode].colors[0]);
blu = RGBGetBValue(modes[active_mode].colors[0]);
controller->UpdateDevice(modes[active_mode].value, red, grn, blu, modes[active_mode].speed, modes[active_mode].brightness);
break;
case 4:
case 5:
controller->UpdateDevice(modes[active_mode].value, red, grn, blu, modes[active_mode].speed, modes[active_mode].brightness);
break;
}
}
void RGBController_AuraHeadsetStand::DeviceSaveMode()
{
DeviceUpdateMode();
controller->SaveMode();
}
@@ -1,44 +0,0 @@
/*-----------------------------------------*\
| RGBController_AsusAuraHeadsetStand.h |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Mola19 06/04/2021 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusAuraHeadsetStandController.h"
enum
{
AURA_HEADSETSTAND_BRIGHTNESS_MIN = 0,
AURA_HEADSETSTAND_BRIGHTNESS_MAX = 4,
AURA_HEADSETSTAND_BRIGHTNESS_DEFAULT = 4,
AURA_HEADSETSTAND_SPEED_MIN = 0,
AURA_HEADSETSTAND_SPEED_MAX = 255,
AURA_HEADSETSTAND_SPEED_DEFAULT = 127,
};
class RGBController_AuraHeadsetStand : public RGBController
{
public:
RGBController_AuraHeadsetStand(AuraHeadsetStandController* controller_ptr);
~RGBController_AuraHeadsetStand();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
void DeviceSaveMode();
private:
AuraHeadsetStandController* controller;
};
@@ -7,363 +7,170 @@
| Adam Honse (CalcProgrammer1) 3/19/2020 |
\*-----------------------------------------*/
#include "RGBControllerKeyNames.h"
#include "RGBController_AsusAuraKeyboard.h"
//0xFFFFFFFF indicates an unused entry in matrix
#define NA 0xFFFFFFFF
static unsigned int flare_matrix_map[6][22] =
static unsigned int matrix_map[6][22] =
{ { 0, NA, 13, 18, 23, 28, 38, 43, 49, 54, 60, 65, 69, 70, NA, 76, 80, 85, NA, NA, NA, NA },
{ 1, 8, 14, 19, 24, 29, 34, 39, 44, 50, 55, 61, 66, 71, NA, 77, 81, 86, 89, 94, 98, 103 },
{ 2, NA, 9, 15, 20, 25, 30, 35, 40, 45, 51, 56, 62, 67, 72, 78, 82, 87, 90, 95, 99, 104 },
{ 3, NA, 10, 16, 21, 26, 31, 36, 41, 46, 52, 57, 63, 68, 73, NA, NA, NA, 91, 96, 100, NA },
{ 4, 6, 11, 17, 22, 27, 32, 37, 42, 47, 53, 58, 74, NA, NA, NA, 83, NA, 92, 97, 101, 105 },
{ 4, 6, 11, 17, 22, 27, 32, 37, 42, 47, 53, 58, NA, NA, 74, NA, 83, NA, 92, 97, 101, 105 },
{ 5, 7, 12, NA, NA, NA, NA, 33, NA, 48, NA, 59, 64, 75, NA, 79, 84, 88, 93, NA, 102, NA } };
static unsigned int scope_matrix_map[6][22] =
{ { 0, NA, 13, 18, 23, 28, 38, 43, 49, 54, 60, 65, 69, 70, NA, 76, 80, 85, NA, NA, NA, NA },
{ 1, 8, 14, 19, 24, 29, 34, 39, 44, 50, 55, 61, 66, 71, NA, 77, 81, 86, 89, 94, 98, 103 },
{ 2, NA, 9, 15, 20, 25, 30, 35, 40, 45, 51, 56, 62, 67, 72, 78, 82, 87, 90, 95, 99, 104 },
{ 3, NA, 10, 16, 21, 26, 31, 36, 41, 46, 52, 57, 63, 68, 73, NA, NA, NA, 91, 96, 100, NA },
{ 4, 6, 11, 17, 22, 27, 32, 37, 42, 47, 53, 58, 74, NA, NA, NA, 83, NA, 92, 97, 101, 105 },
{ 5, NA, 7, 12, NA, NA, NA, 33, NA, 48, NA, 59, 64, 75, NA, 79, 84, 88, 93, NA, 102, NA } };
static unsigned int scope_tkl_matrix_map[6][18] =
{ { 0, NA, 13, 18, 23, 28, 38, 43, 49, 54, 60, 65, 69, 70, NA, NA, NA, NA },
{ 1, 8, 14, 19, 24, 29, 34, 39, 44, 50, 55, 61, 66, 71, NA, 76, 79, 83 },
{ 2, NA, 9, 15, 20, 25, 30, 35, 40, 45, 51, 56, 62, 67, 72, 77, 80, 84 },
{ 3, NA, 10, 16, 21, 26, 31, 36, 41, 46, 52, 57, 63, 68, 73, NA, NA, NA },
{ 4, 6, 11, 17, 22, 27, 32, 37, 42, 47, 53, 58, 74, NA, NA, NA, 81, NA },
{ 5, NA, 7, 12, NA, NA, NA, 33, NA, 48, NA, 59, 64, 75, NA, 78, 82, 85 } };
static unsigned int falchion_matrix_map[5][16] =
{ { 0, 5, 9, 14, 18, 22, 26, 31, 35, 39, 44, 49, 54, 58, NA, 63 },
{ 1, NA, 6, 10, 15, 19, 23, 27, 32, 36, 40, 45, 50, 55, 59, 64 },
{ 2, NA, 7, 11, 16, 20, 24, 28, 33, 37, 41, 46, 51, 60, NA, 65 },
{ 3, NA, 12, 17, 21, 25, 29, 34, 38, 42, 47, 52, 56, NA, 61, 66 },
{ 4, 8, 13, NA, NA, NA, 30, NA, NA, NA, 43, 48, 53, 57, 62, 67 } };
static const std::vector<led_type> default_led_names =
static const char* zone_names[] =
{
/* Key Label Index */
{ KEY_EN_ESCAPE, 0x00 },
{ KEY_EN_BACK_TICK, 0x01 },
{ KEY_EN_TAB, 0x02 },
{ KEY_EN_CAPS_LOCK, 0x03 },
{ KEY_EN_LEFT_SHIFT, 0x04 },
{ KEY_EN_LEFT_CONTROL, 0x05 },
{ KEY_EN_ISO_BACK_SLASH, 0x0C },
{ KEY_EN_1, 0x11 },
{ KEY_EN_Q, 0x12 },
{ KEY_EN_A, 0x13 },
{ KEY_EN_Z, 0x14 },
{ KEY_EN_F1, 0x18 },
{ KEY_EN_2, 0x19 },
{ KEY_EN_W, 0x1A },
{ KEY_EN_S, 0x1B },
{ KEY_EN_X, 0x1C },
{ KEY_EN_F2, 0x20 },
{ KEY_EN_3, 0x21 },
{ KEY_EN_E, 0x22 },
{ KEY_EN_D, 0x23 },
{ KEY_EN_C, 0x24 },
{ KEY_EN_F3, 0x28 },
{ KEY_EN_4, 0x29 },
{ KEY_EN_R, 0x2A },
{ KEY_EN_F, 0x2B },
{ KEY_EN_V, 0x2C },
{ KEY_EN_F4, 0x30 },
{ KEY_EN_5, 0x31 },
{ KEY_EN_T, 0x32 },
{ KEY_EN_G, 0x33 },
{ KEY_EN_B, 0x34 },
{ KEY_EN_SPACE, 0x35 },
{ KEY_EN_6, 0x39 },
{ KEY_EN_Y, 0x3A },
{ KEY_EN_H, 0x3B },
{ KEY_EN_N, 0x3C },
{ KEY_EN_F5, 0x40 },
{ KEY_EN_7, 0x41 },
{ KEY_EN_U, 0x42 },
{ KEY_EN_J, 0x43 },
{ KEY_EN_M, 0x44 },
{ KEY_EN_F6, 0x48 },
{ KEY_EN_8, 0x49 },
{ KEY_EN_I, 0x4A },
{ KEY_EN_K, 0x4B },
{ KEY_EN_COMMA, 0x4C },
{ KEY_EN_RIGHT_ALT, 0x4D },
{ KEY_EN_F7, 0x50 },
{ KEY_EN_9, 0x51 },
{ KEY_EN_O, 0x52 },
{ KEY_EN_L, 0x53 },
{ KEY_EN_PERIOD, 0x54 },
{ KEY_EN_F8, 0x58 },
{ KEY_EN_0, 0x59 },
{ KEY_EN_P, 0x5A },
{ KEY_EN_SEMICOLON, 0x5B },
{ KEY_EN_FORWARD_SLASH, 0x5C },
{ KEY_EN_RIGHT_FUNCTION, 0x5D },
{ KEY_EN_F9, 0x60 },
{ KEY_EN_MINUS, 0x61 },
{ KEY_EN_LEFT_BRACKET, 0x62 },
{ KEY_EN_QUOTE, 0x63 },
{ KEY_EN_MENU, 0x65 },
{ KEY_EN_F10, 0x68 },
{ KEY_EN_EQUALS, 0x69 },
{ KEY_EN_RIGHT_BRACKET, 0x6A },
{ KEY_EN_POUND, 0x6B },
{ KEY_EN_F11, 0x70 },
{ KEY_EN_F12, 0x78 },
{ KEY_EN_BACKSPACE, 0x79 },
{ KEY_EN_ANSI_BACK_SLASH, 0x7A },
{ KEY_EN_ANSI_ENTER, 0x7B },
{ KEY_EN_RIGHT_SHIFT, 0x7C },
{ KEY_EN_RIGHT_CONTROL, 0x7D },
{ KEY_EN_PRINT_SCREEN, 0x80 },
{ KEY_EN_INSERT, 0x81 },
{ KEY_EN_DELETE, 0x82 },
{ KEY_EN_LEFT_ARROW, 0x85 },
{ KEY_EN_SCROLL_LOCK, 0x88 },
{ KEY_EN_HOME, 0x89 },
{ KEY_EN_END, 0x8A },
{ KEY_EN_UP_ARROW, 0x8C },
{ KEY_EN_DOWN_ARROW, 0x8D },
{ KEY_EN_PAUSE_BREAK, 0x90 },
{ KEY_EN_PAGE_UP, 0x91 },
{ KEY_EN_PAGE_DOWN, 0x92 },
{ KEY_EN_RIGHT_ARROW, 0x95 },
{ KEY_EN_NUMPAD_LOCK, 0x99 },
{ KEY_EN_NUMPAD_7, 0x9A },
{ KEY_EN_NUMPAD_4, 0x9B },
{ KEY_EN_NUMPAD_1, 0x9C },
{ KEY_EN_NUMPAD_0, 0x9D },
{ KEY_EN_NUMPAD_DIVIDE, 0xA1 },
{ KEY_EN_NUMPAD_8, 0xA2 },
{ KEY_EN_NUMPAD_5, 0xA3 },
{ KEY_EN_NUMPAD_2, 0xA4 },
{ KEY_EN_NUMPAD_TIMES, 0xA9 },
{ KEY_EN_NUMPAD_9, 0xAA },
{ KEY_EN_NUMPAD_6, 0xAB },
{ KEY_EN_NUMPAD_3, 0xAC },
{ KEY_EN_NUMPAD_PERIOD, 0xAD },
{ KEY_EN_NUMPAD_MINUS, 0xB1 },
{ KEY_EN_NUMPAD_PLUS, 0xB2 },
{ KEY_EN_NUMPAD_ENTER, 0xB4 },
"Keyboard",
"Logo",
"Underglow"
};
static const std::vector<led_type> default_tkl_led_names =
static zone_type zone_types[] =
{
/* Key Label Index */
{ KEY_EN_ESCAPE, 0x00 },
{ KEY_EN_BACK_TICK, 0x01 },
{ KEY_EN_TAB, 0x02 },
{ KEY_EN_CAPS_LOCK, 0x03 },
{ KEY_EN_LEFT_SHIFT, 0x04 },
{ KEY_EN_LEFT_CONTROL, 0x05 },
{ KEY_EN_ISO_BACK_SLASH, 0x0C },
{ KEY_EN_1, 0x11 },
{ KEY_EN_Q, 0x12 },
{ KEY_EN_A, 0x13 },
{ KEY_EN_Z, 0x14 },
{ KEY_EN_F1, 0x18 },
{ KEY_EN_2, 0x19 },
{ KEY_EN_W, 0x1A },
{ KEY_EN_S, 0x1B },
{ KEY_EN_X, 0x1C },
{ KEY_EN_F2, 0x20 },
{ KEY_EN_3, 0x21 },
{ KEY_EN_E, 0x22 },
{ KEY_EN_D, 0x23 },
{ KEY_EN_C, 0x24 },
{ KEY_EN_F3, 0x28 },
{ KEY_EN_4, 0x29 },
{ KEY_EN_R, 0x2A },
{ KEY_EN_F, 0x2B },
{ KEY_EN_V, 0x2C },
{ KEY_EN_F4, 0x30 },
{ KEY_EN_5, 0x31 },
{ KEY_EN_T, 0x32 },
{ KEY_EN_G, 0x33 },
{ KEY_EN_B, 0x34 },
{ KEY_EN_SPACE, 0x35 },
{ KEY_EN_6, 0x39 },
{ KEY_EN_Y, 0x3A },
{ KEY_EN_H, 0x3B },
{ KEY_EN_N, 0x3C },
{ KEY_EN_F5, 0x40 },
{ KEY_EN_7, 0x41 },
{ KEY_EN_U, 0x42 },
{ KEY_EN_J, 0x43 },
{ KEY_EN_M, 0x44 },
{ KEY_EN_F6, 0x48 },
{ KEY_EN_8, 0x49 },
{ KEY_EN_I, 0x4A },
{ KEY_EN_K, 0x4B },
{ KEY_EN_COMMA, 0x4C },
{ KEY_EN_RIGHT_ALT, 0x4D },
{ KEY_EN_F7, 0x50 },
{ KEY_EN_9, 0x51 },
{ KEY_EN_O, 0x52 },
{ KEY_EN_L, 0x53 },
{ KEY_EN_PERIOD, 0x54 },
{ KEY_EN_F8, 0x58 },
{ KEY_EN_0, 0x59 },
{ KEY_EN_P, 0x5A },
{ KEY_EN_SEMICOLON, 0x5B },
{ KEY_EN_FORWARD_SLASH, 0x5C },
{ KEY_EN_RIGHT_FUNCTION, 0x5D },
{ KEY_EN_F9, 0x60 },
{ KEY_EN_MINUS, 0x61 },
{ KEY_EN_LEFT_BRACKET, 0x62 },
{ KEY_EN_QUOTE, 0x63 },
{ KEY_EN_MENU, 0x65 },
{ KEY_EN_F10, 0x68 },
{ KEY_EN_EQUALS, 0x69 },
{ KEY_EN_RIGHT_BRACKET, 0x6A },
{ KEY_EN_POUND, 0x6B },
{ KEY_EN_F11, 0x70 },
{ KEY_EN_F12, 0x78 },
{ KEY_EN_BACKSPACE, 0x79 },
{ KEY_EN_ANSI_BACK_SLASH, 0x7A },
{ KEY_EN_ANSI_ENTER, 0x7B },
{ KEY_EN_RIGHT_SHIFT, 0x7C },
{ KEY_EN_RIGHT_CONTROL, 0x7D },
{ KEY_EN_INSERT, 0x81 },
{ KEY_EN_DELETE, 0x82 },
{ KEY_EN_LEFT_ARROW, 0x85 },
{ KEY_EN_HOME, 0x89 },
{ KEY_EN_END, 0x8A },
{ KEY_EN_UP_ARROW, 0x8C },
{ KEY_EN_DOWN_ARROW, 0x8D },
{ KEY_EN_PAGE_UP, 0x91 },
{ KEY_EN_PAGE_DOWN, 0x92 },
{ KEY_EN_RIGHT_ARROW, 0x95 },
{ "Logo 1", 0x80 },
{ "Logo 2", 0x90 },
{ "Underglow 1", 0x06 },
{ "Underglow 2", 0x0E },
{ "Underglow 3", 0x16 },
{ "Underglow 4", 0x1E },
{ "Underglow 5", 0x26 },
{ "Underglow 6", 0x2E },
{ "Underglow 7", 0x36 },
{ "Underglow 8", 0x3E },
{ "Underglow 9", 0x46 },
{ "Underglow 10", 0x4E },
{ "Underglow 11", 0x56 },
{ "Underglow 12", 0x5E },
{ "Underglow 13", 0x66 },
{ "Underglow 14", 0x6E },
{ "Underglow 15", 0x76 },
{ "Underglow 16", 0x7E },
{ "Underglow 17", 0x86 },
{ "Underglow 18", 0x8E },
{ "Underglow 19", 0x96 },
{ "Underglow 20", 0x9E },
{ "Underglow 21", 0xA6 },
{ "Underglow 22", 0xAE },
{ "Underglow 23", 0xB6 },
{ "Underglow 24", 0xBE },
{ "Underglow 25", 0xC6 },
{ "Underglow 26", 0xCE },
ZONE_TYPE_MATRIX,
ZONE_TYPE_SINGLE,
ZONE_TYPE_SINGLE
};
static const std::vector<led_type> default_65pct_led_names =
static const unsigned int zone_sizes[] =
{
/* Key Label Index */
{ KEY_EN_ESCAPE, 0x00 },
{ KEY_EN_TAB, 0x01 },
{ KEY_EN_CAPS_LOCK, 0x02 },
{ KEY_EN_LEFT_SHIFT, 0x03 },
{ KEY_EN_LEFT_CONTROL, 0x04 },
{ KEY_EN_1, 0x08 },
{ KEY_EN_Q, 0x09 },
{ KEY_EN_A, 0x0A },
{ KEY_EN_LEFT_WINDOWS, 0x0C },
{ KEY_EN_2, 0x10 },
{ KEY_EN_W, 0x11 },
{ KEY_EN_S, 0x12 },
{ KEY_EN_Z, 0x13 },
{ KEY_EN_LEFT_ALT, 0x14 },
{ KEY_EN_3, 0x18 },
{ KEY_EN_E, 0x19 },
{ KEY_EN_D, 0x1A },
{ KEY_EN_X, 0x1B },
{ KEY_EN_4, 0x20 },
{ KEY_EN_R, 0x21 },
{ KEY_EN_F, 0x22 },
{ KEY_EN_C, 0x23 },
{ KEY_EN_5, 0x28 },
{ KEY_EN_T, 0x29 },
{ KEY_EN_G, 0x2A },
{ KEY_EN_V, 0x2B },
{ KEY_EN_6, 0x30 },
{ KEY_EN_Y, 0x31 },
{ KEY_EN_H, 0x32 },
{ KEY_EN_B, 0x33 },
{ KEY_EN_SPACE, 0x34 },
{ KEY_EN_7, 0x38 },
{ KEY_EN_U, 0x39 },
{ KEY_EN_J, 0x3A },
{ KEY_EN_N, 0x3B },
{ KEY_EN_8, 0x40 },
{ KEY_EN_I, 0x41 },
{ KEY_EN_K, 0x42 },
{ KEY_EN_M, 0x43 },
{ KEY_EN_9, 0x48 },
{ KEY_EN_O, 0x49 },
{ KEY_EN_L, 0x4A },
{ KEY_EN_COMMA, 0x4B },
{ KEY_EN_RIGHT_ALT, 0x4C },
{ KEY_EN_0, 0x50 },
{ KEY_EN_P, 0x51 },
{ KEY_EN_SEMICOLON, 0x52 },
{ KEY_EN_PERIOD, 0x53 },
{ KEY_EN_RIGHT_FUNCTION, 0x54 },
{ KEY_EN_MINUS, 0x58 },
{ KEY_EN_LEFT_BRACKET, 0x59 },
{ KEY_EN_QUOTE, 0x5A },
{ KEY_EN_FORWARD_SLASH, 0x5B },
{ KEY_EN_RIGHT_CONTROL, 0x5C },
{ KEY_EN_EQUALS, 0x60 },
{ KEY_EN_RIGHT_BRACKET, 0x61 },
{ KEY_EN_RIGHT_SHIFT, 0x63 },
{ KEY_EN_LEFT_ARROW, 0x64 },
{ KEY_EN_BACKSPACE, 0x68 },
{ KEY_EN_ANSI_BACK_SLASH, 0x69 },
{ KEY_EN_ANSI_ENTER, 0x6A },
{ KEY_EN_UP_ARROW, 0x6B },
{ KEY_EN_DOWN_ARROW, 0x6C },
{ KEY_EN_INSERT, 0x70 },
{ KEY_EN_DELETE, 0x71 },
{ KEY_EN_PAGE_UP, 0x72 },
{ KEY_EN_PAGE_DOWN, 0x73 },
{ KEY_EN_RIGHT_ARROW, 0x74 },
106,
1,
2,
};
/**------------------------------------------------------------------*\
@name Asus Aura Keyboard
@type USB
@save :x:
@direct :white_check_mark:
@effects :x:
@detectors DetectAsusAuraUSBKeyboards
@comment
\*-------------------------------------------------------------------*/
RGBController_AuraKeyboard::RGBController_AuraKeyboard(AuraKeyboardController* controller_ptr, AuraKeyboardMappingLayoutType keyboard_layout)
typedef struct
{
controller = controller_ptr;
layout = keyboard_layout;
const char * name;
const unsigned char idx;
} led_type;
static const led_type led_names[] =
{
/* Key Label Index */
{ "Key: Escape", 0x00 },
{ "Key: `", 0x01 },
{ "Key: Tab", 0x02 },
{ "Key: Caps Lock", 0x03 },
{ "Key: Left Shift", 0x04 },
{ "Key: Left Control", 0x05 },
{ "Key: \\ (ISO)", 0x0C },
{ "Key: Left Windows", 0x0D },
{ "Key: 1", 0x11 },
{ "Key: Q", 0x12 },
{ "Key: A", 0x13 },
{ "Key: Z", 0x14 },
{ "Key: Left Alt", 0x15 },
{ "Key: F1", 0x18 },
{ "Key: 2", 0x19 },
{ "Key: W", 0x1A },
{ "Key: S", 0x1B },
{ "Key: X", 0x1C },
{ "Key: F2", 0x20 },
{ "Key: 3", 0x21 },
{ "Key: E", 0x22 },
{ "Key: D", 0x23 },
{ "Key: C", 0x24 },
{ "Key: F3", 0x28 },
{ "Key: 4", 0x29 },
{ "Key: R", 0x2A },
{ "Key: F", 0x2B },
{ "Key: V", 0x2C },
{ "Key: F4", 0x30 },
{ "Key: 5", 0x31 },
{ "Key: T", 0x32 },
{ "Key: G", 0x33 },
{ "Key: B", 0x34 },
{ "Key: Space", 0x35 },
{ "Key: 6", 0x39 },
{ "Key: Y", 0x3A },
{ "Key: H", 0x3B },
{ "Key: N", 0x3C },
{ "Key: F5", 0x40 },
{ "Key: 7", 0x41 },
{ "Key: U", 0x42 },
{ "Key: J", 0x43 },
{ "Key: M", 0x44 },
{ "Key: F6", 0x48 },
{ "Key: 8", 0x49 },
{ "Key: I", 0x4A },
{ "Key: K", 0x4B },
{ "Key: ,", 0x4C },
{ "Key: Right Alt", 0x4D },
{ "Key: F7", 0x50 },
{ "Key: 9", 0x51 },
{ "Key: O", 0x52 },
{ "Key: L", 0x53 },
{ "Key: .", 0x54 },
{ "Key: F8", 0x58 },
{ "Key: 0", 0x59 },
{ "Key: P", 0x5A },
{ "Key: ;", 0x5B },
{ "Key: /", 0x5C },
{ "Key: Right Fn", 0x5D },
{ "Key: F9", 0x60 },
{ "Key: -", 0x61 },
{ "Key: [", 0x62 },
{ "Key: '", 0x63 },
{ "Key: Menu", 0x65 },
{ "Key: F10", 0x68 },
{ "Key: =", 0x69 },
{ "Key: ]", 0x6A },
{ "Key: #", 0x6B },
{ "Key: F11", 0x70 },
{ "Key: F12", 0x78 },
{ "Key: Backspace", 0x79 },
{ "Key: \\ (ANSI)", 0x7A },
{ "Key: Enter", 0x7B },
{ "Key: Right Shift", 0x7C },
{ "Key: Right Control", 0x7D },
{ "Key: Print Screen", 0x80 },
{ "Key: Insert", 0x81 },
{ "Key: Delete", 0x82 },
{ "Key: Left Arrow", 0x85 },
{ "Key: Scroll Lock", 0x88 },
{ "Key: Home", 0x89 },
{ "Key: End", 0x8A },
{ "Key: Up Arrow", 0x8C },
{ "Key: Down Arrow", 0x8D },
{ "Key: Pause/Break", 0x90 },
{ "Key: Page Up", 0x91 },
{ "Key: Page Down", 0x92 },
{ "Key: Right Arrow", 0x95 },
{ "Key: Num Lock", 0x99 },
{ "Key: Number Pad 7", 0x9A },
{ "Key: Number Pad 4", 0x9B },
{ "Key: Number Pad 1", 0x9C },
{ "Key: Number Pad 0", 0x9D },
{ "Key: Number Pad /", 0xA1 },
{ "Key: Number Pad 8", 0xA2 },
{ "Key: Number Pad 5", 0xA3 },
{ "Key: Number Pad 2", 0xA4 },
{ "Key: Number Pad *", 0xA9 },
{ "Key: Number Pad 9", 0xAA },
{ "Key: Number Pad 6", 0xAB },
{ "Key: Number Pad 3", 0xAC },
{ "Key: Number Pad .", 0xAD },
{ "Key: Number Pad -", 0xB1 },
{ "Key: Number Pad +", 0xB2 },
{ "Key: Number Pad Enter", 0xB4 },
{ "Logo", 0xB8 },
{ "Left Underglow", 0xB9 },
{ "Right Underglow", 0xBA },
};
RGBController_AuraKeyboard::RGBController_AuraKeyboard(AuraKeyboardController* aura_ptr)
{
aura = aura_ptr;
name = "ASUS Aura Keyboard";
vendor = "ASUS";
type = DEVICE_TYPE_KEYBOARD;
description = "ASUS Aura Keyboard Device";
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
location = aura->GetDeviceLocation();
serial = aura->GetSerialString();
mode Direct;
Direct.name = "Direct";
@@ -377,15 +184,7 @@ RGBController_AuraKeyboard::RGBController_AuraKeyboard(AuraKeyboardController* c
RGBController_AuraKeyboard::~RGBController_AuraKeyboard()
{
for(unsigned int zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
if(zones[zone_idx].type == ZONE_TYPE_MATRIX)
{
delete zones[zone_idx].matrix_map;
}
}
delete controller;
delete aura;
}
void RGBController_AuraKeyboard::SetupZones()
@@ -393,76 +192,22 @@ void RGBController_AuraKeyboard::SetupZones()
/*---------------------------------------------------------*\
| Set up zones |
\*---------------------------------------------------------*/
std::vector<led_zone> led_zones;
std::vector<led_type> led_names;
switch(layout)
{
/*-----------------------------------------------------*\
| On the ROG Scope keyboards Ctrl key is double sized, |
| so there is a layout shift |
\*-----------------------------------------------------*/
case SCOPE_LAYOUT:
led_names = default_led_names;
led_zones.push_back({"Keyboard", ZONE_TYPE_MATRIX, 106, new matrix_map_type{6, 22, (unsigned int *)&scope_matrix_map}});
led_names.insert(led_names.begin() + 7, {KEY_EN_LEFT_WINDOWS, 0x15});
led_names.insert(led_names.begin() + 12, {KEY_EN_LEFT_ALT, 0x1D});
break;
case SCOPE_RX_LAYOUT:
led_names = default_led_names;
led_zones.push_back({"Keyboard", ZONE_TYPE_MATRIX, 106, new matrix_map_type{6, 22, (unsigned int *)&scope_matrix_map}});
led_zones.push_back({"Logo", ZONE_TYPE_SINGLE, 1});
led_names.insert(led_names.begin() + 7, {KEY_EN_LEFT_WINDOWS, 0x15});
led_names.insert(led_names.begin() + 12, {KEY_EN_LEFT_ALT, 0x1D});
led_names.push_back({ "Logo", 0xB0});
break;
case SCOPE_TKL_LAYOUT:
led_names = default_tkl_led_names;
led_zones.push_back({"Keyboard", ZONE_TYPE_MATRIX, 86, new matrix_map_type{6, 18, (unsigned int *)&scope_tkl_matrix_map}});
led_zones.push_back({"Logo", ZONE_TYPE_LINEAR, 2});
led_zones.push_back({"Underglow", ZONE_TYPE_LINEAR, 26});
led_names.insert(led_names.begin() + 7, {KEY_EN_LEFT_WINDOWS, 0x15});
led_names.insert(led_names.begin() + 12, {KEY_EN_LEFT_ALT, 0x1D});
break;
case FLARE_LAYOUT:
led_names = default_led_names;
led_zones.push_back({"Keyboard", ZONE_TYPE_MATRIX, 106, new matrix_map_type{6, 22, (unsigned int *)&flare_matrix_map}});
led_zones.push_back({"Logo", ZONE_TYPE_SINGLE, 1});
led_zones.push_back({"Underglow", ZONE_TYPE_SINGLE, 2});
led_names.insert(led_names.begin() + 7, {KEY_EN_LEFT_WINDOWS, 0x0D});
led_names.insert(led_names.begin() + 12, {KEY_EN_LEFT_ALT, 0x15});
led_names.push_back({ "Logo", 0xB8});
led_names.push_back({ "Left Underglow", 0xB9});
led_names.push_back({ "Right Underglow", 0xBA});
break;
case FALCHION_LAYOUT:
led_names = default_65pct_led_names;
led_zones.push_back({"Keyboard", ZONE_TYPE_MATRIX, 68, new matrix_map_type{5, 16, (unsigned int *)&falchion_matrix_map}});
break;
}
unsigned int total_led_count = 0;
for(unsigned int zone_idx = 0; zone_idx < led_zones.size(); zone_idx++)
for(unsigned int zone_idx = 0; zone_idx < 3; zone_idx++)
{
zone new_zone;
new_zone.name = led_zones[zone_idx].name;
new_zone.type = led_zones[zone_idx].type;
new_zone.leds_min = led_zones[zone_idx].size;
new_zone.leds_max = led_zones[zone_idx].size;
new_zone.leds_count = led_zones[zone_idx].size;
new_zone.name = zone_names[zone_idx];
new_zone.type = zone_types[zone_idx];
new_zone.leds_min = zone_sizes[zone_idx];
new_zone.leds_max = zone_sizes[zone_idx];
new_zone.leds_count = zone_sizes[zone_idx];
if(led_zones[zone_idx].type == ZONE_TYPE_MATRIX)
if(zone_types[zone_idx] == ZONE_TYPE_MATRIX)
{
new_zone.matrix_map = led_zones[zone_idx].matrix;
new_zone.matrix_map = new matrix_map_type;
new_zone.matrix_map->height = 6;
new_zone.matrix_map->width = 22;
new_zone.matrix_map->map = (unsigned int *)&matrix_map;
}
else
{
@@ -471,7 +216,7 @@ void RGBController_AuraKeyboard::SetupZones()
zones.push_back(new_zone);
total_led_count += led_zones[zone_idx].size;
total_led_count += zone_sizes[zone_idx];
}
for(unsigned int led_idx = 0; led_idx < total_led_count; led_idx++)
@@ -479,7 +224,6 @@ void RGBController_AuraKeyboard::SetupZones()
led new_led;
new_led.name = led_names[led_idx].name;
new_led.value = led_names[led_idx].idx;
leds.push_back(new_led);
}
@@ -495,25 +239,20 @@ void RGBController_AuraKeyboard::ResizeZone(int /*zone*/, int /*new_size*/)
void RGBController_AuraKeyboard::DeviceUpdateLEDs()
{
std::vector<unsigned char> frame_buf;
unsigned char frame_buf[109 * 4];
/*---------------------------------------------------------*\
| Resize the frame buffer, 4 bytes per LED |
\*---------------------------------------------------------*/
frame_buf.resize(leds.size() * 4);
/*---------------------------------------------------------*\
| TODO: Send packets with multiple LED frames |
\*---------------------------------------------------------*/
for(std::size_t led_idx = 0; led_idx < leds.size(); led_idx++)
{
frame_buf[(led_idx * 4) + 0] = leds[led_idx].value;
frame_buf[(led_idx * 4) + 1] = RGBGetRValue(colors[led_idx]);
frame_buf[(led_idx * 4) + 2] = RGBGetGValue(colors[led_idx]);
frame_buf[(led_idx * 4) + 3] = RGBGetBValue(colors[led_idx]);
}
/*---------------------------------------------------------*\
| TODO: Send packets with multiple LED frames |
\*---------------------------------------------------------*/
for(std::size_t led_idx = 0; led_idx < leds.size(); led_idx++)
{
frame_buf[(led_idx * 4) + 0] = leds[led_idx].value;
frame_buf[(led_idx * 4) + 1] = RGBGetRValue(colors[led_idx]);
frame_buf[(led_idx * 4) + 2] = RGBGetGValue(colors[led_idx]);
frame_buf[(led_idx * 4) + 3] = RGBGetBValue(colors[led_idx]);
}
controller->SendDirect(leds.size(), frame_buf.data());
aura->SendDirect(109, frame_buf);
}
void RGBController_AuraKeyboard::UpdateZoneLEDs(int /*zone*/)
@@ -11,33 +11,10 @@
#include "RGBController.h"
#include "AsusAuraKeyboardController.h"
enum AuraKeyboardMappingLayoutType
{
FLARE_LAYOUT,
SCOPE_LAYOUT,
SCOPE_RX_LAYOUT,
SCOPE_TKL_LAYOUT,
FALCHION_LAYOUT,
};
typedef struct
{
const char* name;
unsigned char idx;
} led_type;
typedef struct
{
const char* name;
const zone_type type;
const unsigned int size;
matrix_map_type* matrix;
} led_zone;
class RGBController_AuraKeyboard : public RGBController
{
public:
RGBController_AuraKeyboard(AuraKeyboardController* controller_ptr, AuraKeyboardMappingLayoutType keyboard_layout);
RGBController_AuraKeyboard(AuraKeyboardController* aura_ptr);
~RGBController_AuraKeyboard();
void SetupZones();
@@ -52,6 +29,5 @@ public:
void DeviceUpdateMode();
private:
AuraKeyboardController* controller;
AuraKeyboardMappingLayoutType layout;
AuraKeyboardController* aura;
};
@@ -1,128 +0,0 @@
/*-----------------------------------------*\
| RGBController_AsusAuraMonitor.cpp |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Mola19 08/03/2022 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraMonitor.h"
/**------------------------------------------------------------------*\
@name Asus Aura Monitor
@type USB
@save :x:
@direct :white_check_mark:
@effects :x:
@detectors DetectAsusAuraUSBMonitor
@comment
\*-------------------------------------------------------------------*/
RGBController_AuraMonitor::RGBController_AuraMonitor(AuraMonitorController* controller_ptr)
{
controller = controller_ptr;
name = "ASUS Aura Monitor";
vendor = "ASUS";
type = DEVICE_TYPE_LEDSTRIP;
description = "ASUS Aura Monitor Device";
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = 0;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
SetupZones();
}
RGBController_AuraMonitor::~RGBController_AuraMonitor()
{
delete controller;
}
void RGBController_AuraMonitor::SetupZones()
{
zone underglow_zone;
underglow_zone.name = "Backlight";
underglow_zone.type = ZONE_TYPE_LINEAR;
underglow_zone.leds_min = 3;
underglow_zone.leds_max = 3;
underglow_zone.leds_count = 3;
underglow_zone.matrix_map = NULL;
zones.push_back(underglow_zone);
for(unsigned int i = 0; i < 3; i++)
{
led underglow_led;
underglow_led.name = "Backlight LED " + std::to_string(i + 1);
leds.push_back(underglow_led);
}
SetupColors();
}
void RGBController_AuraMonitor::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AuraMonitor::DeviceUpdateLEDs()
{
for (int i = 0; i < 3; i++)
{
unsigned char red = RGBGetRValue(colors[i]);
unsigned char green = RGBGetGValue(colors[i]);
unsigned char blue = RGBGetBValue(colors[i]);
controller->UpdateLed(i, red, green, blue);
}
controller->ApplyChanges();
}
void RGBController_AuraMonitor::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraMonitor::UpdateSingleLED(int led)
{
unsigned char red = RGBGetRValue(colors[led]);
unsigned char green = RGBGetGValue(colors[led]);
unsigned char blue = RGBGetBValue(colors[led]);
controller->UpdateLed(led, red, green, blue);
controller->ApplyChanges();
}
void RGBController_AuraMonitor::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AuraMonitor::DeviceUpdateMode()
{
/*---------------------------------------------------------*\
| This device does not support Mode changing |
\*---------------------------------------------------------*/
}
void RGBController_AuraMonitor::DeviceSaveMode()
{
/*---------------------------------------------------------*\
| This device does not support Mode saving |
\*---------------------------------------------------------*/
}
@@ -1,34 +0,0 @@
/*-----------------------------------------*\
| RGBController_AsusAuraMonitor.h |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Mola19 08/03/2022 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusAuraMonitorController.h"
class RGBController_AuraMonitor : public RGBController
{
public:
RGBController_AuraMonitor(AuraMonitorController* controller_ptr);
~RGBController_AuraMonitor();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
void DeviceSaveMode();
private:
AuraMonitorController* controller;
};
@@ -9,186 +9,105 @@
#include "RGBController_AsusAuraMouse.h"
static std::string aura_mouse_zone_names[3]
RGBController_AuraMouse::RGBController_AuraMouse(AuraMouseController* aura_ptr)
{
"Logo",
"Scroll Wheel",
"Underglow"
};
aura = aura_ptr;
/**------------------------------------------------------------------*\
@name Asus Aura Mouse
@type USB
@save :white_check_mark:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAsusAuraUSBMice
@comment
\*-------------------------------------------------------------------*/
name = "ASUS Aura Mouse";
vendor = "ASUS";
type = DEVICE_TYPE_MOUSE;
description = "ASUS Aura Mouse Device";
location = aura->GetDeviceLocation();
serial = aura->GetSerialString();
RGBController_AuraMouse::RGBController_AuraMouse(AuraMouseController* controller_ptr)
{
controller = controller_ptr;
mode Direct;
Direct.name = "Direct";
Direct.value = AURA_MOUSE_MODE_STATIC;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
uint16_t pid = controller->device_pid;
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_MOUSE_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
name = "ASUS Aura Mouse";
vendor = "ASUS";
type = DEVICE_TYPE_MOUSE;
description = "ASUS Aura Mouse Device";
version = controller->GetVersion(aura_mouse_devices[pid].wireless, aura_mouse_devices[pid].version_protocol);
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = AURA_MOUSE_MODE_COLOR_CYCLE;
SpectrumCycle.flags = 0;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
std::vector<uint8_t> mm = aura_mouse_devices[pid].mouse_modes;
int mode_value = 0;
for(std::vector<uint8_t>::iterator it = mm.begin(); it != mm.end(); it++)
{
switch(*it)
{
case AURA_MOUSE_MODE_STATIC:
{
mode Direct;
Direct.name = "Direct";
Direct.value = mode_value;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Direct.brightness_min = AURA_MOUSE_BRIGHTNESS_MIN;
Direct.brightness_max = AURA_MOUSE_BRIGHTNESS_MAX;
Direct.brightness = AURA_MOUSE_BRIGHTNESS_DEFAULT;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
}
break;
case AURA_MOUSE_MODE_BREATHING:
{
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = mode_value;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Breathing.brightness_min = AURA_MOUSE_BRIGHTNESS_MIN;
Breathing.brightness_max = AURA_MOUSE_BRIGHTNESS_MAX;
Breathing.brightness = AURA_MOUSE_BRIGHTNESS_DEFAULT;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
}
break;
case AURA_MOUSE_MODE_SPECTRUM:
{
mode ColorCycle;
ColorCycle.name = "Spectrum Cycle";
ColorCycle.value = mode_value;
ColorCycle.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE ;
ColorCycle.brightness_min = AURA_MOUSE_BRIGHTNESS_MIN;
ColorCycle.brightness_max = AURA_MOUSE_BRIGHTNESS_MAX;
ColorCycle.brightness = AURA_MOUSE_BRIGHTNESS_DEFAULT;
ColorCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(ColorCycle);
}
break;
case AURA_MOUSE_MODE_WAVE:
{
mode Wave;
Wave.name = "Rainbow Wave";
Wave.value = mode_value;
Wave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Wave.direction = 0;
Wave.speed_min = aura_mouse_devices[pid].speed_min;
Wave.speed_max = aura_mouse_devices[pid].speed_max;
Wave.speed = (aura_mouse_devices[pid].speed_min + aura_mouse_devices[pid].speed_max) / 2;
Wave.brightness_min = AURA_MOUSE_BRIGHTNESS_MIN;
Wave.brightness_max = AURA_MOUSE_BRIGHTNESS_MAX;
Wave.brightness = AURA_MOUSE_BRIGHTNESS_DEFAULT;
Wave.color_mode = MODE_COLORS_NONE;
modes.push_back(Wave);
}
break;
case AURA_MOUSE_MODE_REACTIVE:
{
mode Reactive;
Reactive.name = "Reactive";
Reactive.value = mode_value;
Reactive.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Reactive.brightness_min = AURA_MOUSE_BRIGHTNESS_MIN;
Reactive.brightness_max = AURA_MOUSE_BRIGHTNESS_MAX;
Reactive.brightness = AURA_MOUSE_BRIGHTNESS_DEFAULT;
Reactive.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Reactive);
}
break;
case AURA_MOUSE_MODE_COMET:
{
mode Comet;
Comet.name = "Comet";
Comet.value = mode_value;
Comet.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Comet.brightness_min = AURA_MOUSE_BRIGHTNESS_MIN;
Comet.brightness_max = AURA_MOUSE_BRIGHTNESS_MAX;
Comet.brightness = AURA_MOUSE_BRIGHTNESS_DEFAULT;
Comet.color_mode = MODE_COLORS_MODE_SPECIFIC;
Comet.direction = 0;
Comet.colors_min = 1;
Comet.colors_max = 1;
Comet.colors.resize(1);
modes.push_back(Comet);
}
break;
case AURA_MOUSE_MODE_BATTERY:
{
mode BatteryMode;
BatteryMode.name = "Battery";
BatteryMode.value = mode_value;
BatteryMode.flags = MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
BatteryMode.brightness_min = AURA_MOUSE_BRIGHTNESS_MIN;
BatteryMode.brightness_max = AURA_MOUSE_BRIGHTNESS_MAX;
BatteryMode.brightness = AURA_MOUSE_BRIGHTNESS_DEFAULT;
BatteryMode.color_mode = MODE_COLORS_NONE;
modes.push_back(BatteryMode);
}
break;
}
mode_value++;
}
mode Reactive;
Reactive.name = "Reactive";
Reactive.value = AURA_MOUSE_MODE_REACTIVE;
Reactive.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Reactive.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Reactive);
SetupZones();
}
RGBController_AuraMouse::~RGBController_AuraMouse()
{
delete controller;
delete aura;
}
void RGBController_AuraMouse::SetupZones()
{
uint16_t pid = controller->device_pid;
zone logo_zone;
for(std::vector<uint8_t>::iterator zone_it = aura_mouse_devices[pid].mouse_zones.begin(); zone_it != aura_mouse_devices[pid].mouse_zones.end(); zone_it++)
{
zone mouse_zone;
logo_zone.name = "Logo";
logo_zone.type = ZONE_TYPE_SINGLE;
logo_zone.leds_min = 1;
logo_zone.leds_max = 1;
logo_zone.leds_count = 1;
logo_zone.matrix_map = NULL;
mouse_zone.name = aura_mouse_zone_names[*zone_it];
mouse_zone.type = ZONE_TYPE_SINGLE;
mouse_zone.leds_min = 1;
mouse_zone.leds_max = 1;
mouse_zone.leds_count = 1;
mouse_zone.matrix_map = NULL;
zones.push_back(logo_zone);
zones.push_back(mouse_zone);
led logo_led;
led mouse_led;
logo_led.name = "Logo";
mouse_led.name = mouse_zone.name + " LED";
mouse_led.value = *zone_it;
leds.push_back(logo_led);
leds.push_back(mouse_led);
}
zone scroll_zone;
scroll_zone.name = "Scroll Wheel";
scroll_zone.type = ZONE_TYPE_SINGLE;
scroll_zone.leds_min = 1;
scroll_zone.leds_max = 1;
scroll_zone.leds_count = 1;
scroll_zone.matrix_map = NULL;
zones.push_back(scroll_zone);
led scroll_led;
scroll_led.name = "Scroll Wheel";
leds.push_back(scroll_led);
zone underglow_zone;
underglow_zone.name = "Underglow";
underglow_zone.type = ZONE_TYPE_SINGLE;
underglow_zone.leds_min = 1;
underglow_zone.leds_max = 1;
underglow_zone.leds_count = 1;
underglow_zone.matrix_map = NULL;
zones.push_back(underglow_zone);
led underglow_led;
underglow_led.name = "Underglow";
leds.push_back(underglow_led);
SetupColors();
}
@@ -200,10 +119,7 @@ void RGBController_AuraMouse::ResizeZone(int /*zone*/, int /*new_size*/)
void RGBController_AuraMouse::DeviceUpdateLEDs()
{
for(unsigned int zone_index = 0; zone_index < zones.size(); zone_index++)
{
UpdateSingleLED(zone_index);
}
DeviceUpdateMode();
}
void RGBController_AuraMouse::UpdateZoneLEDs(int zone)
@@ -213,11 +129,41 @@ void RGBController_AuraMouse::UpdateZoneLEDs(int zone)
void RGBController_AuraMouse::UpdateSingleLED(int led)
{
uint8_t red = RGBGetRValue(colors[led]);
uint8_t grn = RGBGetGValue(colors[led]);
uint8_t blu = RGBGetBValue(colors[led]);
unsigned char red = 0;
unsigned char grn = 0;
unsigned char blu = 0;
controller->SendUpdate(leds[led].value, modes[active_mode].value, red, grn, blu, 0, false, 0, modes[active_mode].brightness);
if(modes[active_mode].color_mode == MODE_COLORS_PER_LED)
{
if(led == 0)
{
red = RGBGetRValue(colors[led]);
grn = RGBGetGValue(colors[led]);
blu = RGBGetBValue(colors[led]);
aura->SendUpdate(AURA_MOUSE_ZONE_LOGO, modes[active_mode].value, red, grn, blu);
}
else if(led == 1)
{
red = RGBGetRValue(colors[led]);
grn = RGBGetGValue(colors[led]);
blu = RGBGetBValue(colors[led]);
aura->SendUpdate(AURA_MOUSE_ZONE_SCROLL, modes[active_mode].value, red, grn, blu);
}
else
{
red = RGBGetRValue(colors[led]);
grn = RGBGetGValue(colors[led]);
blu = RGBGetBValue(colors[led]);
aura->SendUpdate(AURA_MOUSE_ZONE_UNDERGLOW, modes[active_mode].value, red, grn, blu);
}
}
else
{
aura->SendUpdate(AURA_MOUSE_ZONE_ALL, modes[active_mode].value, red, grn, blu);
}
}
void RGBController_AuraMouse::SetCustomMode()
@@ -227,29 +173,32 @@ void RGBController_AuraMouse::SetCustomMode()
void RGBController_AuraMouse::DeviceUpdateMode()
{
unsigned char red = 0;
unsigned char grn = 0;
unsigned char blu = 0;
if(modes[active_mode].color_mode == MODE_COLORS_PER_LED)
{
DeviceUpdateLEDs();
red = RGBGetRValue(colors[0]);
grn = RGBGetGValue(colors[0]);
blu = RGBGetBValue(colors[0]);
aura->SendUpdate(AURA_MOUSE_ZONE_LOGO, modes[active_mode].value, red, grn, blu);
red = RGBGetRValue(colors[1]);
grn = RGBGetGValue(colors[1]);
blu = RGBGetBValue(colors[1]);
aura->SendUpdate(AURA_MOUSE_ZONE_SCROLL, modes[active_mode].value, red, grn, blu);
red = RGBGetRValue(colors[2]);
grn = RGBGetGValue(colors[2]);
blu = RGBGetBValue(colors[2]);
aura->SendUpdate(AURA_MOUSE_ZONE_UNDERGLOW, modes[active_mode].value, red, grn, blu);
}
else
{
unsigned char red = 0;
unsigned char grn = 0;
unsigned char blu = 0;
if (modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
red = RGBGetRValue(modes[active_mode].colors[0]);
grn = RGBGetGValue(modes[active_mode].colors[0]);
blu = RGBGetBValue(modes[active_mode].colors[0]);
}
controller->SendUpdate(AURA_MOUSE_ZONE_ALL, modes[active_mode].value, red, grn, blu, modes[active_mode].direction, modes[active_mode].color_mode == MODE_COLORS_RANDOM, modes[active_mode].speed, modes[active_mode].brightness);
aura->SendUpdate(AURA_MOUSE_ZONE_ALL, modes[active_mode].value, red, grn, blu);
}
}
void RGBController_AuraMouse::DeviceSaveMode()
{
DeviceUpdateMode();
controller->SaveMode();
}
@@ -11,16 +11,10 @@
#include "RGBController.h"
#include "AsusAuraMouseController.h"
enum {
AURA_MOUSE_BRIGHTNESS_MIN = 0,
AURA_MOUSE_BRIGHTNESS_MAX = 4,
AURA_MOUSE_BRIGHTNESS_DEFAULT = 4
};
class RGBController_AuraMouse : public RGBController
{
public:
RGBController_AuraMouse(AuraMouseController* controller_ptr);
RGBController_AuraMouse(AuraMouseController* aura_ptr);
~RGBController_AuraMouse();
void SetupZones();
@@ -33,8 +27,7 @@ public:
void SetCustomMode();
void DeviceUpdateMode();
void DeviceSaveMode();
private:
AuraMouseController* controller;
AuraMouseController* aura;
};
@@ -1,302 +0,0 @@
/*-----------------------------------------*\
| RGBController_AsusAuraMousemat.cpp |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Adam Honse (CalcProgrammer1) 1/10/2022 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraMousemat.h"
/**------------------------------------------------------------------*\
@name Asus Aura Mousemat
@type USB
@save :white_check_mark:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAsusAuraUSBMousemats
@comment
\*-------------------------------------------------------------------*/
RGBController_AuraMousemat::RGBController_AuraMousemat(AuraMousematController* controller_ptr)
{
controller = controller_ptr;
name = "ASUS Aura Mousemat";
vendor = "ASUS";
type = DEVICE_TYPE_MOUSEMAT;
description = "ASUS Aura Mousemat Device";
version = controller->GetVersion();
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = AURA_MOUSEMAT_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Static;
Static.name = "Static";
Static.value = AURA_MOUSEMAT_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.brightness_min = AURA_MOUSEMAT_BRIGHTNESS_MIN;
Static.brightness_max = AURA_MOUSEMAT_BRIGHTNESS_MAX;
Static.brightness = AURA_MOUSEMAT_BRIGHTNESS_DEFAULT;
Static.colors_min = 1;
Static.colors_max = 1;
Static.colors.resize(1);
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_MOUSEMAT_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC | MODE_COLORS_RANDOM;
Breathing.speed_min = AURA_MOUSEMAT_SPEED_MIN;
Breathing.speed_max = AURA_MOUSEMAT_SPEED_MAX;
Breathing.speed = AURA_MOUSEMAT_SPEED_DEFAULT_BREATHING;
Breathing.brightness_min = AURA_MOUSEMAT_BRIGHTNESS_MIN;
Breathing.brightness_max = AURA_MOUSEMAT_BRIGHTNESS_MAX;
Breathing.brightness = AURA_MOUSEMAT_BRIGHTNESS_DEFAULT;
Breathing.colors_min = 1;
Breathing.colors_max = 2;
Breathing.colors.resize(1);
modes.push_back(Breathing);
mode ColorCycle;
ColorCycle.name = "Color Cycle";
ColorCycle.value = AURA_MOUSEMAT_MODE_COLOR_CYCLE;
ColorCycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
ColorCycle.color_mode = MODE_COLORS_NONE;
ColorCycle.speed_min = AURA_MOUSEMAT_SPEED_MIN;
ColorCycle.speed_max = AURA_MOUSEMAT_SPEED_MAX;
ColorCycle.speed = AURA_MOUSEMAT_SPEED_DEFAULT_COLOR_CYCLE;
ColorCycle.brightness_min = AURA_MOUSEMAT_BRIGHTNESS_MIN;
ColorCycle.brightness_max = AURA_MOUSEMAT_BRIGHTNESS_MAX;
ColorCycle.brightness = AURA_MOUSEMAT_BRIGHTNESS_DEFAULT;
modes.push_back(ColorCycle);
mode Wave;
Wave.name = "Wave";
Wave.value = AURA_MOUSEMAT_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_MANUAL_SAVE;
Wave.color_mode = MODE_COLORS_MODE_SPECIFIC;
Wave.speed_min = AURA_MOUSEMAT_SPEED_MIN;
Wave.speed_max = AURA_MOUSEMAT_SPEED_MAX;
Wave.speed = AURA_MOUSEMAT_SPEED_DEFAULT_WAVE;
Wave.brightness_min = AURA_MOUSEMAT_BRIGHTNESS_MIN;
Wave.brightness_max = AURA_MOUSEMAT_BRIGHTNESS_MAX;
Wave.brightness = AURA_MOUSEMAT_BRIGHTNESS_DEFAULT;
Wave.direction = MODE_DIRECTION_LEFT;
Wave.colors_min = 7;
Wave.colors_max = 7;
Wave.colors.resize(7);
modes.push_back(Wave);
mode WavePlane;
WavePlane.name = "Wave Plane";
WavePlane.value = AURA_MOUSEMAT_MODE_WAVE_PLANE;
WavePlane.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_MANUAL_SAVE;
WavePlane.color_mode = MODE_COLORS_NONE;
WavePlane.speed_min = AURA_MOUSEMAT_SPEED_MIN;
WavePlane.speed_max = AURA_MOUSEMAT_SPEED_MAX;
WavePlane.speed = AURA_MOUSEMAT_SPEED_DEFAULT_WAVE_PLANE;
WavePlane.brightness_min = AURA_MOUSEMAT_BRIGHTNESS_MIN;
WavePlane.brightness_max = AURA_MOUSEMAT_BRIGHTNESS_MAX;
WavePlane.brightness = AURA_MOUSEMAT_BRIGHTNESS_DEFAULT;
WavePlane.direction = MODE_DIRECTION_LEFT;
modes.push_back(WavePlane);
mode Comet;
Comet.name = "Comet";
Comet.value = AURA_MOUSEMAT_MODE_COMET;
Comet.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_DIRECTION_HV | MODE_FLAG_MANUAL_SAVE;
Comet.color_mode = MODE_COLORS_MODE_SPECIFIC;
Comet.speed_min = AURA_MOUSEMAT_SPEED_MIN;
Comet.speed_max = AURA_MOUSEMAT_SPEED_MAX;
Comet.speed = AURA_MOUSEMAT_SPEED_DEFAULT_COMET;
Comet.brightness_min = AURA_MOUSEMAT_BRIGHTNESS_MIN;
Comet.brightness_max = AURA_MOUSEMAT_BRIGHTNESS_MAX;
Comet.brightness = AURA_MOUSEMAT_BRIGHTNESS_DEFAULT;
Comet.direction = MODE_DIRECTION_LEFT;
Comet.colors_min = 1;
Comet.colors_max = 1;
Comet.colors.resize(1);
modes.push_back(Comet);
mode GlowingYoyo;
GlowingYoyo.name = "Glowing Yoyo";
GlowingYoyo.value = AURA_MOUSEMAT_MODE_GLOWING_YOYO;
GlowingYoyo.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_MANUAL_SAVE;
GlowingYoyo.color_mode = MODE_COLORS_NONE;
GlowingYoyo.speed_min = AURA_MOUSEMAT_SPEED_MIN;
GlowingYoyo.speed_max = AURA_MOUSEMAT_SPEED_MAX;
GlowingYoyo.speed = AURA_MOUSEMAT_SPEED_DEFAULT_GLOWING_YOYO;
GlowingYoyo.brightness_min = AURA_MOUSEMAT_BRIGHTNESS_MIN;
GlowingYoyo.brightness_max = AURA_MOUSEMAT_BRIGHTNESS_MAX;
GlowingYoyo.brightness = AURA_MOUSEMAT_BRIGHTNESS_DEFAULT;
GlowingYoyo.direction = MODE_DIRECTION_LEFT;
modes.push_back(GlowingYoyo);
mode Cross;
Cross.name = "Cross";
Cross.value = AURA_MOUSEMAT_MODE_CROSS;
Cross.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
Cross.color_mode = MODE_COLORS_MODE_SPECIFIC;
Cross.speed_min = AURA_MOUSEMAT_SPEED_MIN;
Cross.speed_max = AURA_MOUSEMAT_SPEED_MAX;
Cross.speed = AURA_MOUSEMAT_SPEED_DEFAULT_CROSS;
Cross.brightness_min = AURA_MOUSEMAT_BRIGHTNESS_MIN;
Cross.brightness_max = AURA_MOUSEMAT_BRIGHTNESS_MAX;
Cross.brightness = AURA_MOUSEMAT_BRIGHTNESS_DEFAULT;
Cross.colors_min = 2;
Cross.colors_max = 2;
Cross.colors.resize(2);
modes.push_back(Cross);
mode StarryNight;
StarryNight.name = "Starry Night";
StarryNight.value = AURA_MOUSEMAT_MODE_STARRY_NIGHT;
StarryNight.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
StarryNight.color_mode = MODE_COLORS_MODE_SPECIFIC | MODE_COLORS_RANDOM;
StarryNight.speed_min = AURA_MOUSEMAT_SPEED_MIN;
StarryNight.speed_max = AURA_MOUSEMAT_SPEED_MAX;
StarryNight.speed = AURA_MOUSEMAT_SPEED_DEFAULT_STARRY_NIGHT;
StarryNight.brightness_min = AURA_MOUSEMAT_BRIGHTNESS_MIN;
StarryNight.brightness_max = AURA_MOUSEMAT_BRIGHTNESS_MAX;
StarryNight.brightness = AURA_MOUSEMAT_BRIGHTNESS_DEFAULT;
StarryNight.colors_min = 2;
StarryNight.colors_max = 2;
StarryNight.colors.resize(2);
modes.push_back(StarryNight);
SetupZones();
}
RGBController_AuraMousemat::~RGBController_AuraMousemat()
{
delete controller;
}
void RGBController_AuraMousemat::SetupZones()
{
zone mousemat_zone;
mousemat_zone.name = "Mousemat";
mousemat_zone.type = ZONE_TYPE_LINEAR;
mousemat_zone.leds_min = 15;
mousemat_zone.leds_max = 15;
mousemat_zone.leds_count = 15;
mousemat_zone.matrix_map = NULL;
zones.push_back(mousemat_zone);
for(unsigned int i = 0; i < 15; i++)
{
led mousemat_led;
mousemat_led.name = "Mousemat LED " + std::to_string(i);
leds.push_back(mousemat_led);
}
SetupColors();
}
void RGBController_AuraMousemat::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AuraMousemat::DeviceUpdateLEDs()
{
controller->UpdateLeds(std::vector<RGBColor>(colors));
}
void RGBController_AuraMousemat::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraMousemat::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraMousemat::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AuraMousemat::DeviceUpdateMode()
{
if(modes[active_mode].value == AURA_MOUSEMAT_MODE_DIRECT)
{
DeviceUpdateLEDs();
}
else
{
int pattern = 0;
switch(modes[active_mode].value)
{
case AURA_MOUSEMAT_MODE_BREATHING:
if(modes[active_mode].color_mode == MODE_COLORS_RANDOM)
{
pattern = 2;
}
else
{
pattern = modes[active_mode].colors.size() - 1;
}
break;
case AURA_MOUSEMAT_MODE_WAVE:
pattern = modes[active_mode].colors.size() * 16 + modes[active_mode].direction;
break;
case AURA_MOUSEMAT_MODE_WAVE_PLANE:
switch(modes[active_mode].direction)
{
case MODE_DIRECTION_LEFT:
pattern = 2;
break;
case MODE_DIRECTION_RIGHT:
pattern = 3;
break;
case MODE_DIRECTION_UP:
pattern = 0;
break;
case MODE_DIRECTION_DOWN:
pattern = 1;
break;
}
break;
case AURA_MOUSEMAT_MODE_COMET:
pattern = modes[active_mode].direction;
if(pattern == MODE_DIRECTION_HORIZONTAL || pattern == MODE_DIRECTION_VERTICAL) pattern = 2;
break;
case AURA_MOUSEMAT_MODE_GLOWING_YOYO:
pattern = modes[active_mode].direction;
break;
case AURA_MOUSEMAT_MODE_STARRY_NIGHT:
pattern = 16 + (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
break;
default:
pattern = 255;
break;
}
controller->UpdateDevice(modes[active_mode].value, std::vector<RGBColor>(modes[active_mode].colors), modes[active_mode].speed, modes[active_mode].brightness, pattern);
}
}
void RGBController_AuraMousemat::DeviceSaveMode()
{
DeviceUpdateMode();
controller->SaveMode();
}
@@ -1,52 +0,0 @@
/*-----------------------------------------*\
| RGBController_AsusAuraMousemat.h |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Mola19 06/04/2021 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusAuraMousematController.h"
enum
{
AURA_MOUSEMAT_BRIGHTNESS_MIN = 0,
AURA_MOUSEMAT_BRIGHTNESS_MAX = 4,
AURA_MOUSEMAT_BRIGHTNESS_DEFAULT = 4,
AURA_MOUSEMAT_SPEED_MIN = 127,
AURA_MOUSEMAT_SPEED_MAX = 0,
AURA_MOUSEMAT_SPEED_DEFAULT_STATIC = 0,
AURA_MOUSEMAT_SPEED_DEFAULT_BREATHING = 1,
AURA_MOUSEMAT_SPEED_DEFAULT_COLOR_CYCLE = 1,
AURA_MOUSEMAT_SPEED_DEFAULT_WAVE = 14,
AURA_MOUSEMAT_SPEED_DEFAULT_WAVE_PLANE = 2,
AURA_MOUSEMAT_SPEED_DEFAULT_COMET = 2,
AURA_MOUSEMAT_SPEED_DEFAULT_GLOWING_YOYO = 4,
AURA_MOUSEMAT_SPEED_DEFAULT_CROSS = 12,
AURA_MOUSEMAT_SPEED_DEFAULT_STARRY_NIGHT = 2,
};
class RGBController_AuraMousemat : public RGBController
{
public:
RGBController_AuraMousemat(AuraMousematController* controller_ptr);
~RGBController_AuraMousemat();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
void DeviceSaveMode();
private:
AuraMousematController* controller;
};
@@ -1,164 +0,0 @@
/*-----------------------------------------*\
| RGBController_AsusAuraStrixEvolve.cpp |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Mola19 11/30/2021 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraStrixEvolve.h"
/**------------------------------------------------------------------*\
@name Asus Aura Strix Evolve
@type USB
@save :white_check_mark:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAsusAuraUSBStrixEvolve
@comment
\*-------------------------------------------------------------------*/
RGBController_AuraStrixEvolve::RGBController_AuraStrixEvolve(AuraStrixEvolveController* controller_ptr)
{
controller = controller_ptr;
name = "ASUS ROG Strix Evolve";
vendor = "ASUS";
type = DEVICE_TYPE_MOUSE;
description = "ASUS Aura Mouse Device";
version = controller->GetVersion();
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = 1;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Direct.brightness_min = AURA_STRIX_EVOLVE_BRIGHTNESS_MIN;
Direct.brightness_max = AURA_STRIX_EVOLVE_BRIGHTNESS_MAX;
Direct.brightness = AURA_STRIX_EVOLVE_BRIGHTNESS_DEFAULT;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = 2;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Breathing.brightness_min = AURA_STRIX_EVOLVE_BRIGHTNESS_MIN;
Breathing.brightness_max = AURA_STRIX_EVOLVE_BRIGHTNESS_MAX;
Breathing.brightness = AURA_STRIX_EVOLVE_BRIGHTNESS_DEFAULT;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode ColorCycle;
ColorCycle.name = "Spectrum Cycle";
ColorCycle.value = 3;
ColorCycle.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
ColorCycle.brightness_min = AURA_STRIX_EVOLVE_BRIGHTNESS_MIN;
ColorCycle.brightness_max = AURA_STRIX_EVOLVE_BRIGHTNESS_MAX;
ColorCycle.brightness = AURA_STRIX_EVOLVE_BRIGHTNESS_DEFAULT;
ColorCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(ColorCycle);
mode Reactive;
Reactive.name = "Reactive";
Reactive.value = 4;
Reactive.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Reactive.brightness_min = AURA_STRIX_EVOLVE_BRIGHTNESS_MIN;
Reactive.brightness_max = AURA_STRIX_EVOLVE_BRIGHTNESS_MAX;
Reactive.brightness = AURA_STRIX_EVOLVE_BRIGHTNESS_DEFAULT;
Reactive.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Reactive);
SetupZones();
}
RGBController_AuraStrixEvolve::~RGBController_AuraStrixEvolve()
{
delete controller;
}
void RGBController_AuraStrixEvolve::SetupZones()
{
zone mouse_zone;
mouse_zone.name = "Underglow";
mouse_zone.type = ZONE_TYPE_SINGLE;
mouse_zone.leds_min = 1;
mouse_zone.leds_max = 1;
mouse_zone.leds_count = 1;
mouse_zone.matrix_map = NULL;
zones.push_back(mouse_zone);
led mouse_led;
mouse_led.name = "Underglow";
mouse_led.value = 1;
leds.push_back(mouse_led);
SetupColors();
}
void RGBController_AuraStrixEvolve::ResizeZone(int /*zone*/, int /*new_size*/)
{
}
void RGBController_AuraStrixEvolve::DeviceUpdateLEDs()
{
unsigned char red = RGBGetRValue(colors[0]);
unsigned char grn = RGBGetGValue(colors[0]);
unsigned char blu = RGBGetBValue(colors[0]);
controller->SendUpdate(0x1C, red);
controller->SendUpdate(0x1D, grn);
controller->SendUpdate(0x1E, blu);
}
void RGBController_AuraStrixEvolve::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraStrixEvolve::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraStrixEvolve::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AuraStrixEvolve::DeviceUpdateMode()
{
unsigned char red = RGBGetRValue(colors[0]);
unsigned char grn = RGBGetGValue(colors[0]);
unsigned char blu = RGBGetBValue(colors[0]);
controller->SendUpdate(0x19, modes[active_mode].value);
controller->SendUpdate(0x1A, modes[active_mode].brightness);
controller->SendUpdate(0x1C, red);
controller->SendUpdate(0x1D, grn);
controller->SendUpdate(0x1E, blu);
}
void RGBController_AuraStrixEvolve::DeviceSaveMode()
{
unsigned char red = RGBGetRValue(colors[0]);
unsigned char grn = RGBGetGValue(colors[0]);
unsigned char blu = RGBGetBValue(colors[0]);
unsigned int profile = controller->GetActiveProfile();
controller->UpdateProfile(0x19, profile, modes[active_mode].value);
controller->UpdateProfile(0x1A, profile, modes[active_mode].brightness);
controller->UpdateProfile(0x1C, profile, red);
controller->UpdateProfile(0x1D, profile, grn);
controller->UpdateProfile(0x1E, profile, blu);
controller->SendSavePacket();
}
@@ -1,41 +0,0 @@
/*-----------------------------------------*\
| RGBController_AsusAuraStrixEvolve.h |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Mola19 11/30/2021 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusAuraStrixEvolveController.h"
enum
{
AURA_STRIX_EVOLVE_BRIGHTNESS_MIN = 0,
AURA_STRIX_EVOLVE_BRIGHTNESS_MAX = 255,
AURA_STRIX_EVOLVE_BRIGHTNESS_DEFAULT = 255
};
class RGBController_AuraStrixEvolve : public RGBController
{
public:
RGBController_AuraStrixEvolve(AuraStrixEvolveController* controller_ptr);
~RGBController_AuraStrixEvolve();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
void DeviceSaveMode();
private:
AuraStrixEvolveController* controller;
};
@@ -1,343 +0,0 @@
/*-----------------------------------------*\
| RGBController_AsusAuraTUFKeyboard.cpp |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Mola19 03/03/2020 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraTUFKeyboard.h"
#include <vector>
#include <cmath>
/**------------------------------------------------------------------*\
@name Asus Aura TUF Keyboard
@type USB
@save :white_check_mark:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAsusAuraTUFUSBKeyboard
@comment
\*-------------------------------------------------------------------*/
RGBController_AuraTUFKeyboard::RGBController_AuraTUFKeyboard(AuraTUFKeyboardController* controller_ptr)
{
controller = controller_ptr;
name = "ASUS Aura Keyboard";
vendor = "ASUS";
type = DEVICE_TYPE_KEYBOARD;
description = "ASUS Aura Keyboard Device";
version = controller->GetVersion();
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = AURA_KEYBOARD_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Static;
Static.name = "Static";
Static.value = AURA_KEYBOARD_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Static.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Static.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Static.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors_min = 1;
Static.colors_max = 1;
Static.colors.resize(1);
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_KEYBOARD_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Breathing.speed_min = AURA_KEYBOARD_SPEED_MIN;
Breathing.speed_max = AURA_KEYBOARD_SPEED_MAX;
Breathing.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Breathing.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Breathing.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Breathing.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors_min = 1;
Breathing.colors_max = 2;
Breathing.colors.resize(1);
modes.push_back(Breathing);
mode Color_Cycle;
Color_Cycle.name = "Spectrum Cycle";
Color_Cycle.value = AURA_KEYBOARD_MODE_COLOR_CYCLE;
Color_Cycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Color_Cycle.speed_min = AURA_KEYBOARD_SPEED_MIN;
Color_Cycle.speed_max = AURA_KEYBOARD_SPEED_MAX;
Color_Cycle.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Color_Cycle.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Color_Cycle.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Color_Cycle.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Color_Cycle.color_mode = MODE_COLORS_NONE;
modes.push_back(Color_Cycle);
mode Wave;
Wave.name = "Rainbow Wave";
Wave.value = AURA_KEYBOARD_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_HAS_DIRECTION_HV | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Wave.speed_min = AURA_KEYBOARD_SPEED_MIN;
Wave.speed_max = AURA_KEYBOARD_SPEED_MAX;
Wave.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Wave.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Wave.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Wave.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Wave.direction = MODE_DIRECTION_LEFT;
Wave.color_mode = MODE_COLORS_MODE_SPECIFIC;
Wave.colors_min = 1;
Wave.colors_max = 7;
Wave.colors.resize(7);
modes.push_back(Wave);
mode Ripple;
Ripple.name = "Ripple";
Ripple.value = AURA_KEYBOARD_MODE_RIPPLE;
Ripple.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Ripple.speed_min = AURA_KEYBOARD_SPEED_MIN;
Ripple.speed_max = AURA_KEYBOARD_SPEED_MAX;
Ripple.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Ripple.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Ripple.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Ripple.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Ripple.color_mode = MODE_COLORS_MODE_SPECIFIC;
Ripple.colors_min = 1;
Ripple.colors_max = 8;
Ripple.colors.resize(7);
modes.push_back(Ripple);
mode Reactive;
Reactive.name = "Reactive";
Reactive.value = AURA_KEYBOARD_MODE_REACTIVE;
Reactive.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Reactive.speed_min = AURA_KEYBOARD_SPEED_MIN;
Reactive.speed_max = AURA_KEYBOARD_SPEED_MAX;
Reactive.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Reactive.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Reactive.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Reactive.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Reactive.color_mode = MODE_COLORS_MODE_SPECIFIC;
Reactive.colors_min = 1;
Reactive.colors_max = 2;
Reactive.colors.resize(1);
modes.push_back(Reactive);
mode Starry_Night;
Starry_Night.name = "Starry Night";
Starry_Night.value = AURA_KEYBOARD_MODE_STARRY_NIGHT;
Starry_Night.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Starry_Night.speed_min = AURA_KEYBOARD_SPEED_MIN;
Starry_Night.speed_max = AURA_KEYBOARD_SPEED_MAX;
Starry_Night.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Starry_Night.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Starry_Night.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Starry_Night.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Starry_Night.color_mode = MODE_COLORS_MODE_SPECIFIC;
Starry_Night.colors_min = 1;
Starry_Night.colors_max = 3;
Starry_Night.colors.resize(1);
modes.push_back(Starry_Night);
mode Quicksand;
Quicksand.name = "Quicksand";
Quicksand.value = AURA_KEYBOARD_MODE_QUICKSAND;
Quicksand.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Quicksand.direction = MODE_DIRECTION_DOWN;
Quicksand.speed_min = AURA_KEYBOARD_SPEED_MIN;
Quicksand.speed_max = AURA_KEYBOARD_SPEED_MAX;
Quicksand.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Quicksand.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Quicksand.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Quicksand.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Quicksand.color_mode = MODE_COLORS_MODE_SPECIFIC;
Quicksand.colors_min = 6;
Quicksand.colors_max = 6;
Quicksand.colors.resize(6);
modes.push_back(Quicksand);
mode Current;
Current.name = "Current";
Current.value = AURA_KEYBOARD_MODE_CURRENT;
Current.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Current.speed_min = AURA_KEYBOARD_SPEED_MIN;
Current.speed_max = AURA_KEYBOARD_SPEED_MAX;
Current.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Current.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Current.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Current.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Current.color_mode = MODE_COLORS_MODE_SPECIFIC;
Current.colors_min = 1;
Current.colors_max = 3;
Current.colors.resize(1);
modes.push_back(Current);
mode Rain_Drop;
Rain_Drop.name = "Rain Drop";
Rain_Drop.value = AURA_KEYBOARD_MODE_RAIN_DROP;
Rain_Drop.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Rain_Drop.speed_min = AURA_KEYBOARD_SPEED_MIN;
Rain_Drop.speed_max = AURA_KEYBOARD_SPEED_MAX;
Rain_Drop.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Rain_Drop.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Rain_Drop.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Rain_Drop.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Rain_Drop.color_mode = MODE_COLORS_MODE_SPECIFIC;
Rain_Drop.colors_min = 1;
Rain_Drop.colors_max = 3;
Rain_Drop.colors.resize(1);
modes.push_back(Rain_Drop);
SetupZones();
}
RGBController_AuraTUFKeyboard::~RGBController_AuraTUFKeyboard()
{
delete controller;
}
void RGBController_AuraTUFKeyboard::SetupZones()
{
int layout = controller->GetLayout();
if(AsusTUFK7Layouts.find(layout % 100) == AsusTUFK7Layouts.end())
{
layout = std::floor(layout/100) == 2 ? ASUS_TUF_K7_LAYOUT_UK : ASUS_TUF_K7_LAYOUT_US;
}
else
{
layout = layout % 100;
}
unsigned int total_led_count = 0;
int zone_size = 138;
zone keyboard;
keyboard.name = "Keyboard";
keyboard.type = ZONE_TYPE_MATRIX;
keyboard.leds_min = zone_size;
keyboard.leds_max = zone_size;
keyboard.leds_count = zone_size;
keyboard.matrix_map = new matrix_map_type;
keyboard.matrix_map->height = 6;
keyboard.matrix_map->width = 23;
keyboard.matrix_map->map = AsusTUFK7Layouts[layout].matrix_map;
zones.push_back(keyboard);
total_led_count += zone_size;
for(unsigned int led_idx = 0; led_idx < total_led_count; led_idx++)
{
led new_led;
new_led.name = AsusTUFK7Layouts[layout].led_names[led_idx];
leds.push_back(new_led);
}
SetupColors();
}
void RGBController_AuraTUFKeyboard::ResizeZone(int /*zone*/, int /*new_size*/)
{
}
void RGBController_AuraTUFKeyboard::DeviceUpdateLEDs()
{
DeviceUpdateMode();
}
void RGBController_AuraTUFKeyboard::UpdateZoneLEDs(int /*zone*/)
{
controller->UpdateLeds(colors);
}
void RGBController_AuraTUFKeyboard::UpdateSingleLED(int led)
{
unsigned char red = RGBGetRValue(colors[led]);
unsigned char green = RGBGetGValue(colors[led]);
unsigned char blue = RGBGetBValue(colors[led]);
controller->UpdateSingleLed(led, red, green, blue);
}
void RGBController_AuraTUFKeyboard::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AuraTUFKeyboard::DeviceUpdateMode()
{
unsigned char color_mode;
std::vector<RGBColor> mode_colors;
if(modes[active_mode].value == AURA_KEYBOARD_MODE_DIRECT)
{
controller->UpdateLeds(colors);
}
else
{
bool mode_with_double = (modes[active_mode].value == 1 || modes[active_mode].value == 3 || modes[active_mode].value == 6 || modes[active_mode].value == 8 || modes[active_mode].value == 9);
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC && mode_with_double && modes[active_mode].colors.size() > 1)
{
if(modes[active_mode].colors[1] == 000)
{
color_mode = 0;
}
else
{
color_mode = 16;
}
}
else
{
color_mode = modes[active_mode].color_mode == MODE_COLORS_RANDOM ? 1 : 0;
}
int direction = 0;
switch (modes[active_mode].direction)
{
case MODE_DIRECTION_LEFT:
direction = 0;
break;
case MODE_DIRECTION_RIGHT:
direction = 4;
break;
case MODE_DIRECTION_UP:
direction = 6;
break;
case MODE_DIRECTION_DOWN:
direction = 2;
break;
case MODE_DIRECTION_HORIZONTAL:
direction = 8;
break;
case MODE_DIRECTION_VERTICAL:
direction = 1;
break;
}
mode_colors = modes[active_mode].color_mode == MODE_COLORS_PER_LED ? std::vector<RGBColor>(colors) : std::vector<RGBColor>(modes[active_mode].colors);
controller->UpdateDevice(modes[active_mode].value, mode_colors, direction, color_mode, (15 - modes[active_mode].speed), modes[active_mode].brightness * 25);
}
}
void RGBController_AuraTUFKeyboard::DeviceSaveMode()
{
controller->ClearResponses();
DeviceUpdateMode();
controller->AwaitResponse();
controller->SaveMode();
}
@@ -1,44 +0,0 @@
/*-----------------------------------------*\
| RGBController_AsusAuraTUFKeyboard.h |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Mola19 03/03/2021 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusAuraTUFKeyboardController.h"
enum
{
AURA_KEYBOARD_SPEED_MIN = 0,
AURA_KEYBOARD_SPEED_MAX = 15,
AURA_KEYBOARD_SPEED_DEFAULT = 8,
AURA_KEYBOARD_BRIGHTNESS_MIN = 0,
AURA_KEYBOARD_BRIGHTNESS_MAX = 4,
AURA_KEYBOARD_BRIGHTNESS_DEFAULT = 4
};
class RGBController_AuraTUFKeyboard : public RGBController
{
public:
RGBController_AuraTUFKeyboard(AuraTUFKeyboardController* controller_ptr);
~RGBController_AuraTUFKeyboard();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
void DeviceSaveMode();
private:
AuraTUFKeyboardController* controller;
};
@@ -1,277 +1,264 @@
/*-----------------------------------------*\
| RGBController_AsusAuraUSB.cpp |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Adam Honse (CalcProgrammer1) 1/18/2020 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraUSB.h"
/**------------------------------------------------------------------*\
@name Asus Aura USB
@type USB
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAsusAuraUSBTerminal,DetectAsusAuraUSBAddressable,DetectAsusAuraUSBMotherboards
@comment The Asus AUra USB controller applies to most AMD and
Intel mainboards from the x470 and z390 chipsets onwards.
\*-------------------------------------------------------------------*/
RGBController_AuraUSB::RGBController_AuraUSB(AuraUSBController* controller_ptr) :
initializedMode(false)
{
controller = controller_ptr;
name = "ASUS Aura USB";
vendor = "ASUS";
version = controller->GetDeviceName();
type = DEVICE_TYPE_MOTHERBOARD;
description = "ASUS Aura USB Device";
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = AURA_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Off;
Off.name = "Off";
Off.value = AURA_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
mode Static;
Static.name = "Static";
Static.value = AURA_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Breathing.colors_min = 1;
Breathing.colors_max = 1;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(1);
modes.push_back(Breathing);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = AURA_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Flashing.colors_min = 1;
Flashing.colors_max = 1;
Flashing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Flashing.colors.resize(1);
modes.push_back(Flashing);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = AURA_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = 0;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = AURA_MODE_RAINBOW;
Rainbow.flags = 0;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
mode ChaseFade;
ChaseFade.name = "Chase Fade";
ChaseFade.value = AURA_MODE_CHASE_FADE;
ChaseFade.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
ChaseFade.colors_min = 1;
ChaseFade.colors_max = 1;
ChaseFade.color_mode = MODE_COLORS_MODE_SPECIFIC;
ChaseFade.colors.resize(1);
modes.push_back(ChaseFade);
mode Chase;
Chase.name = "Chase";
Chase.value = AURA_MODE_CHASE;
Chase.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Chase.colors_min = 1;
Chase.colors_max = 1;
Chase.color_mode = MODE_COLORS_MODE_SPECIFIC;
Chase.colors.resize(1);
modes.push_back(Chase);
SetupZones();
}
RGBController_AuraUSB::~RGBController_AuraUSB()
{
delete controller;
}
void RGBController_AuraUSB::SetupZones()
{
/*-------------------------------------------------*\
| Only set LED count on the first run |
\*-------------------------------------------------*/
bool first_run = false;
if(zones.size() == 0)
{
first_run = true;
}
/*-------------------------------------------------*\
| Clear any existing color/LED configuration |
\*-------------------------------------------------*/
leds.clear();
colors.clear();
zones.resize(controller->GetChannelCount());
/*-------------------------------------------------*\
| Set zones and leds |
\*-------------------------------------------------*/
int addressableCounter = 1;
for (unsigned int channel_idx = 0; channel_idx < zones.size(); channel_idx++)
{
AuraDeviceInfo device_info = controller->GetAuraDevices()[channel_idx];
zones[channel_idx].type = ZONE_TYPE_LINEAR;
if(device_info.device_type == AuraDeviceType::FIXED)
{
zones[channel_idx].name = "Aura Mainboard";
zones[channel_idx].leds_min = device_info.num_leds;
zones[channel_idx].leds_max = device_info.num_leds;
zones[channel_idx].leds_count = device_info.num_leds;
}
else
{
zones[channel_idx].name = "Aura Addressable ";
zones[channel_idx].name.append(std::to_string(addressableCounter));
zones[channel_idx].leds_min = 0;
zones[channel_idx].leds_max = AURA_ADDRESSABLE_MAX_LEDS;
addressableCounter++;
if(first_run)
{
zones[channel_idx].leds_count = 0;
}
}
unsigned int num_mainboard_leds = device_info.num_leds - device_info.num_headers;
for (unsigned int led_ch_idx = 0; led_ch_idx < zones[channel_idx].leds_count; led_ch_idx++)
{
unsigned led_idx = led_ch_idx + 1;
led new_led;
new_led.name = zones[channel_idx].name;
if(device_info.device_type == AuraDeviceType::FIXED && led_ch_idx >= num_mainboard_leds)
{
new_led.name.append(", RGB Header ");
led_idx -= num_mainboard_leds;
}
else
{
new_led.name.append(", LED ");
}
new_led.name.append(std::to_string(led_idx));
new_led.value = channel_idx;
leds.push_back(new_led);
}
zones[channel_idx].matrix_map = NULL;
}
SetupColors();
}
void RGBController_AuraUSB::ResizeZone(int zone, int new_size)
{
if((size_t) zone >= zones.size())
{
return;
}
if(((unsigned int)new_size >= zones[zone].leds_min) && ((unsigned int)new_size <= zones[zone].leds_max))
{
zones[zone].leds_count = new_size;
SetupZones();
}
}
void RGBController_AuraUSB::DeviceUpdateLEDs()
{
if(!initializedMode)
{
DeviceUpdateMode();
}
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
controller->SetChannelLEDs(zone_idx, zones[zone_idx].colors, zones[zone_idx].leds_count);
}
}
void RGBController_AuraUSB::UpdateZoneLEDs(int zone)
{
if(!initializedMode)
{
DeviceUpdateMode();
}
controller->SetChannelLEDs(zone, zones[zone].colors, zones[zone].leds_count);
}
void RGBController_AuraUSB::UpdateSingleLED(int led)
{
if(!initializedMode)
{
DeviceUpdateMode();
}
unsigned int channel = leds[led].value;
controller->SetChannelLEDs(channel, zones[channel].colors, zones[channel].leds_count);
}
void RGBController_AuraUSB::SetCustomMode()
{
}
void RGBController_AuraUSB::DeviceUpdateMode()
{
initializedMode = true;
unsigned char red = 0;
unsigned char grn = 0;
unsigned char blu = 0;
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
red = RGBGetRValue(modes[active_mode].colors[0]);
grn = RGBGetGValue(modes[active_mode].colors[0]);
blu = RGBGetBValue(modes[active_mode].colors[0]);
}
for(unsigned int zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
if(zones[zone_idx].leds_count > 0)
{
controller->SetMode(zone_idx, modes[active_mode].value, red, grn, blu);
}
}
}
/*-----------------------------------------*\
| RGBController_AsusAuraUSB.cpp |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Adam Honse (CalcProgrammer1) 1/18/2020 |
\*-----------------------------------------*/
#include "RGBController_AsusAuraUSB.h"
RGBController_AuraUSB::RGBController_AuraUSB(AuraUSBController* aura_ptr) :
initializedMode(false)
{
aura = aura_ptr;
name = "ASUS Aura USB";
vendor = "ASUS";
version = aura->GetDeviceName();
type = DEVICE_TYPE_MOTHERBOARD;
description = "ASUS Aura USB Device";
location = aura->GetDeviceLocation();
serial = aura->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = AURA_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Off;
Off.name = "Off";
Off.value = AURA_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
mode Static;
Static.name = "Static";
Static.value = AURA_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Breathing.colors_min = 1;
Breathing.colors_max = 1;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(1);
modes.push_back(Breathing);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = AURA_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Flashing.colors_min = 1;
Flashing.colors_max = 1;
Flashing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Flashing.colors.resize(1);
modes.push_back(Flashing);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = AURA_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = 0;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = AURA_MODE_RAINBOW;
Rainbow.flags = 0;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
mode ChaseFade;
ChaseFade.name = "Chase Fade";
ChaseFade.value = AURA_MODE_CHASE_FADE;
ChaseFade.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
ChaseFade.colors_min = 1;
ChaseFade.colors_max = 1;
ChaseFade.color_mode = MODE_COLORS_MODE_SPECIFIC;
ChaseFade.colors.resize(1);
modes.push_back(ChaseFade);
mode Chase;
Chase.name = "Chase";
Chase.value = AURA_MODE_CHASE;
Chase.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Chase.colors_min = 1;
Chase.colors_max = 1;
Chase.color_mode = MODE_COLORS_MODE_SPECIFIC;
Chase.colors.resize(1);
modes.push_back(Chase);
SetupZones();
}
RGBController_AuraUSB::~RGBController_AuraUSB()
{
delete aura;
}
void RGBController_AuraUSB::SetupZones()
{
/*-------------------------------------------------*\
| Only set LED count on the first run |
\*-------------------------------------------------*/
bool first_run = false;
if(zones.size() == 0)
{
first_run = true;
}
/*-------------------------------------------------*\
| Clear any existing color/LED configuration |
\*-------------------------------------------------*/
leds.clear();
colors.clear();
zones.resize(aura->GetChannelCount());
/*-------------------------------------------------*\
| Set zones and leds |
\*-------------------------------------------------*/
int addressableCounter = 1;
for (unsigned int channel_idx = 0; channel_idx < zones.size(); channel_idx++)
{
AuraDeviceInfo device_info = aura->GetAuraDevices()[channel_idx];
zones[channel_idx].type = ZONE_TYPE_LINEAR;
if(device_info.device_type == AuraDeviceType::FIXED)
{
zones[channel_idx].name = "Aura Mainboard";
zones[channel_idx].leds_min = device_info.num_leds;
zones[channel_idx].leds_max = device_info.num_leds;
zones[channel_idx].leds_count = device_info.num_leds;
}
else
{
zones[channel_idx].name = "Aura Addressable ";
zones[channel_idx].name.append(std::to_string(addressableCounter));
zones[channel_idx].leds_min = 0;
zones[channel_idx].leds_max = AURA_ADDRESSABLE_MAX_LEDS;
addressableCounter++;
if(first_run)
{
zones[channel_idx].leds_count = 0;
}
}
unsigned int num_mainboard_leds = device_info.num_leds - device_info.num_headers;
for (unsigned int led_ch_idx = 0; led_ch_idx < zones[channel_idx].leds_count; led_ch_idx++)
{
unsigned led_idx = led_ch_idx + 1;
led new_led;
new_led.name = zones[channel_idx].name;
if(device_info.device_type == AuraDeviceType::FIXED && led_ch_idx >= num_mainboard_leds)
{
new_led.name.append(", RGB Header ");
led_idx -= num_mainboard_leds;
}
else
{
new_led.name.append(", LED ");
}
new_led.name.append(std::to_string(led_idx));
new_led.value = channel_idx;
leds.push_back(new_led);
}
zones[channel_idx].matrix_map = NULL;
}
SetupColors();
}
void RGBController_AuraUSB::ResizeZone(int zone, int new_size)
{
if((size_t) zone >= zones.size())
{
return;
}
if(((unsigned int)new_size >= zones[zone].leds_min) && ((unsigned int)new_size <= zones[zone].leds_max))
{
zones[zone].leds_count = new_size;
SetupZones();
}
}
void RGBController_AuraUSB::DeviceUpdateLEDs()
{
if(!initializedMode)
{
DeviceUpdateMode();
}
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
aura->SetChannelLEDs(zone_idx, zones[zone_idx].colors, zones[zone_idx].leds_count);
}
}
void RGBController_AuraUSB::UpdateZoneLEDs(int zone)
{
if(!initializedMode)
{
DeviceUpdateMode();
}
aura->SetChannelLEDs(zone, zones[zone].colors, zones[zone].leds_count);
}
void RGBController_AuraUSB::UpdateSingleLED(int led)
{
if(!initializedMode)
{
DeviceUpdateMode();
}
unsigned int channel = leds[led].value;
aura->SetChannelLEDs(channel, zones[channel].colors, zones[channel].leds_count);
}
void RGBController_AuraUSB::SetCustomMode()
{
}
void RGBController_AuraUSB::DeviceUpdateMode()
{
initializedMode = true;
unsigned char red = 0;
unsigned char grn = 0;
unsigned char blu = 0;
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
red = RGBGetRValue(modes[active_mode].colors[0]);
grn = RGBGetGValue(modes[active_mode].colors[0]);
blu = RGBGetBValue(modes[active_mode].colors[0]);
}
for(unsigned int zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
if(zones[zone_idx].leds_count > 0)
{
aura->SetMode(zone_idx, modes[active_mode].value, red, grn, blu);
}
}
}
@@ -1,38 +1,38 @@
/*-----------------------------------------*\
| RGBController_AsusAuraUSB.h |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Adam Honse (CalcProgrammer1) 1/18/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusAuraUSBController.h"
#define AURA_ADDRESSABLE_MAX_LEDS 120
class RGBController_AuraUSB : public RGBController
{
public:
RGBController_AuraUSB(AuraUSBController* controller_ptr);
~RGBController_AuraUSB();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
AuraUSBController* controller;
std::vector<unsigned int> leds_channel;
std::vector<unsigned int> zones_channel;
bool initializedMode;
};
/*-----------------------------------------*\
| RGBController_AsusAuraUSB.h |
| |
| Generic RGB Interface for Asus Aura |
| USB controller driver |
| |
| Adam Honse (CalcProgrammer1) 1/18/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusAuraUSBController.h"
#define AURA_ADDRESSABLE_MAX_LEDS 120
class RGBController_AuraUSB : public RGBController
{
public:
RGBController_AuraUSB(AuraUSBController* aura_ptr);
~RGBController_AuraUSB();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
AuraUSBController* aura;
std::vector<unsigned int> leds_channel;
std::vector<unsigned int> zones_channel;
bool initializedMode;
};
@@ -1,231 +0,0 @@
/*-------------------------------------------------------------------*\
| RGBController_ROGStrixLC_Controller.cpp |
| |
| Driver for the ASUS Aura Liquid Cooler (LC) series |
| of lighting controllers |
| |
| Chris M (Dr_No) 17 Jan 2022 |
| |
\*-------------------------------------------------------------------*/
#include "RGBControllerKeyNames.h"
#include "RGBController_ROGStrixLC_Controller.h"
/**------------------------------------------------------------------*\
@name Asus ROG Strix Liquid Cooler
@type USB
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAsusAuraUSBROGStrixLC
@comment
\*-------------------------------------------------------------------*/
RGBController_ROGStrixLC_Controller::RGBController_ROGStrixLC_Controller(ROGStrixLC_Controller *controller_ptr)
{
controller = controller_ptr;
uint8_t speed = ROGSTRIXLC_CONTROLLER_SPEED_NORMAL;
name = "ROG Strix LC";
vendor = "ASUS";
type = DEVICE_TYPE_COOLER;
description = "ASUS Liquid Cooler including 120mm, 140mm, 240mm, 280mm and 360mm radiators.";
version = KEY_EN_UNUSED;
serial = KEY_EN_UNUSED;
location = controller->GetLocation();
mode Direct;
Direct.name = "Direct";
Direct.value = ROGSTRIXLC_CONTROLLER_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Static;
Static.name = "Static";
Static.value = ROGSTRIXLC_CONTROLLER_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.colors.resize(Static.colors_max);
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = ROGSTRIXLC_CONTROLLER_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Breathing.colors_min = 1;
Breathing.colors_max = 1;
Breathing.colors.resize(Breathing.colors_max);
Breathing.brightness_min = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MIN;
Breathing.brightness_max = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MAX;
Breathing.brightness = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MAX;
Breathing.speed_min = ROGSTRIXLC_CONTROLLER_SPEED_SLOWEST;
Breathing.speed_max = ROGSTRIXLC_CONTROLLER_SPEED_FASTEST;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.speed = speed;
modes.push_back(Breathing);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = ROGSTRIXLC_CONTROLLER_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Flashing.colors_min = 1;
Flashing.colors_max = 1;
Flashing.colors.resize(Flashing.colors_max);
Flashing.brightness_min = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MIN;
Flashing.brightness_max = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MAX;
Flashing.brightness = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MAX;
Flashing.speed_min = ROGSTRIXLC_CONTROLLER_SPEED_SLOWEST;
Flashing.speed_max = ROGSTRIXLC_CONTROLLER_SPEED_FASTEST;
Flashing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Flashing.speed = speed;
modes.push_back(Flashing);
mode Spectrum;
Spectrum.name = "Spectrum";
Spectrum.value = ROGSTRIXLC_CONTROLLER_MODE_SPECTRUM;
Spectrum.flags = MODE_FLAG_HAS_SPEED;
Spectrum.brightness_min = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MIN;
Spectrum.brightness_max = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MAX;
Spectrum.brightness = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MAX;
Spectrum.speed_min = ROGSTRIXLC_CONTROLLER_SPEED_SLOWEST;
Spectrum.speed_max = ROGSTRIXLC_CONTROLLER_SPEED_FASTEST;
Spectrum.color_mode = MODE_COLORS_NONE;
Spectrum.speed = speed;
modes.push_back(Spectrum);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = ROGSTRIXLC_CONTROLLER_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
Rainbow.brightness_min = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MIN;
Rainbow.brightness_max = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MAX;
Rainbow.brightness = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MAX;
Rainbow.speed_min = ROGSTRIXLC_CONTROLLER_SPEED_SLOWEST;
Rainbow.speed_max = ROGSTRIXLC_CONTROLLER_SPEED_FASTEST;
Rainbow.color_mode = MODE_COLORS_NONE;
Rainbow.speed = speed;
modes.push_back(Rainbow);
mode FlashAndDash;
FlashAndDash.name = "Flash and Dash";
FlashAndDash.value = ROGSTRIXLC_CONTROLLER_MODE_FLASHANDDASH;
FlashAndDash.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
FlashAndDash.brightness_min = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MIN;
FlashAndDash.brightness_max = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MAX;
FlashAndDash.brightness = ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MAX;
FlashAndDash.speed_min = ROGSTRIXLC_CONTROLLER_SPEED_SLOWEST;
FlashAndDash.speed_max = ROGSTRIXLC_CONTROLLER_SPEED_FASTEST;
FlashAndDash.color_mode = MODE_COLORS_NONE;
FlashAndDash.speed = speed;
modes.push_back(FlashAndDash);
SetupZones();
}
RGBController_ROGStrixLC_Controller::~RGBController_ROGStrixLC_Controller()
{
delete controller;
}
void RGBController_ROGStrixLC_Controller::SetupZones()
{
/*-------------------------------------------------*\
| Set up zones |
\*-------------------------------------------------*/
LOG_DEBUG("[%s] - Get channel count: %i", name.c_str(), controller->GetChannelCount());
zones.resize(controller->GetChannelCount());
LOG_DEBUG("[%s] - Creating Zones and LEDs", name.c_str());
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
AuraDeviceInfo device_info = controller->GetAuraDevices()[zone_idx];
LOG_INFO("[%s] %s Zone %i - Header Count %i LED Count %i FX %02X Direct %02X", name.c_str(),
((device_info.device_type == AuraDeviceType::FIXED) ? "Fixed" : "Addressable"),
zone_idx, device_info.num_headers, device_info.num_leds, device_info.effect_channel, device_info.direct_channel);
zones[zone_idx].name = name + " Zone ";
zones[zone_idx].name.append(std::to_string(zone_idx));
zones[zone_idx].type = ZONE_TYPE_LINEAR;
zones[zone_idx].leds_min = device_info.num_leds;
zones[zone_idx].leds_max = device_info.num_leds;
zones[zone_idx].leds_count = device_info.num_leds;
for(unsigned int lp_idx = 0; lp_idx < zones[zone_idx].leds_count; lp_idx++)
{
led new_led;
new_led.name = zones[zone_idx].name;
new_led.name.append(" LED " + std::to_string(lp_idx));
new_led.value = lp_idx;
leds.push_back(new_led);
}
}
LOG_DEBUG("[%s] - Device zones and LEDs set", name.c_str());
SetupColors();
}
void RGBController_ROGStrixLC_Controller::ResizeZone(int zone, int new_size)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_ROGStrixLC_Controller::DeviceUpdateLEDs()
{
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
UpdateZoneLEDs(zone_idx);
}
}
void RGBController_ROGStrixLC_Controller::UpdateZoneLEDs(int zone)
{
controller->SetLedsDirect( zones[zone].colors, zones[zone].leds_count );
}
void RGBController_ROGStrixLC_Controller::UpdateSingleLED(int led)
{
UpdateZoneLEDs(GetLED_Zone(led));
}
void RGBController_ROGStrixLC_Controller::SetCustomMode()
{
for(std::size_t mode_idx = 0; mode_idx < modes.size() ; mode_idx++)
{
if (modes[mode_idx].value == ROGSTRIXLC_CONTROLLER_MODE_DIRECT)
{
active_mode = mode_idx;
break;
}
}
}
void RGBController_ROGStrixLC_Controller::DeviceUpdateMode()
{
RGBColor colour = (modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC) ? modes[active_mode].colors[0] : 0;
controller->SetMode( modes[active_mode].value, modes[active_mode].speed, modes[active_mode].direction, colour );
}
int RGBController_ROGStrixLC_Controller::GetLED_Zone(int led_idx)
{
for(size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
int zone_start = zones[zone_idx].start_idx;
int zone_end = zone_start + zones[zone_idx].leds_count - 1;
if( zone_start <= led_idx && zone_end >= led_idx)
{
return(zone_idx);
}
}
return -1;
}
@@ -1,37 +0,0 @@
/*-------------------------------------------------------------------*\
| RGBController_ROGStrixLC_Controller.h |
| |
| Driver for the ASUS Aura Liquid Cooler (LC) series |
| of lighting controllers |
| |
| Chris M (Dr_No) 17 Jan 2022 |
| |
\*-------------------------------------------------------------------*/
#pragma once
#include "LogManager.h"
#include "RGBController.h"
#include "ROGStrixLC_Controller.h"
#include <vector>
class RGBController_ROGStrixLC_Controller : public RGBController
{
public:
RGBController_ROGStrixLC_Controller(ROGStrixLC_Controller* controller_ptr);
~RGBController_ROGStrixLC_Controller();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
int GetDeviceMode();
int GetLED_Zone(int led_idx);
ROGStrixLC_Controller* controller;
};
@@ -1,130 +0,0 @@
/*-------------------------------------------------------------------*\
| ROGStrixLC_Controller.cpp |
| |
| Driver for the ASUS Aura Liquid Cooler (LC) series |
| of lighting controllers |
| |
| Chris M (Dr_No) 17 Jan 2022 |
| |
\*-------------------------------------------------------------------*/
#include "ROGStrixLC_Controller.h"
ROGStrixLC_Controller::ROGStrixLC_Controller(hid_device* dev_handle, const char* path) : AuraUSBController(dev_handle, path)
{
const int szTemp = HID_MAX_STR;
wchar_t tmpName[szTemp];
/*-----------------------------------------------------*\
| Add addressable devices |
| Manually adding device info for now |
| TODO: Implement config table accurately |
| LC120 - 1F FF 05 05 04 00 00 00 |
\*-----------------------------------------------------*/
device_info.push_back({0x00, 0x00, 4, 0, AuraDeviceType::FIXED});
}
ROGStrixLC_Controller::~ROGStrixLC_Controller()
{
hid_close(dev);
}
std::string ROGStrixLC_Controller::GetLocation()
{
return("HID: " + location);
}
void ROGStrixLC_Controller::SetMode(unsigned char channel, unsigned char mode, unsigned char red, unsigned char grn, unsigned char blu)
{
/*---------------------------------------------------------*\
| This interface is not used in this controller however is |
| required by the abstract class |
\*---------------------------------------------------------*/
}
void ROGStrixLC_Controller::SetMode(unsigned char mode, unsigned char speed, unsigned char direction, RGBColor colour)
{
bool needs_update = !( (current_mode == mode) && (ToRGBColor(current_red, current_green, current_blue) == colour) && (current_speed == speed) && (current_direction == direction));
if (needs_update)
{
current_mode = mode;
current_speed = speed;
current_direction = direction;
current_red = RGBGetRValue(colour);
current_green = RGBGetGValue(colour);
current_blue = RGBGetBValue(colour);
SendUpdate();
}
}
void ROGStrixLC_Controller::SetChannelLEDs(unsigned char channel, RGBColor * colors, unsigned int num_colors)
{
/*---------------------------------------------------------*\
| This interface is not used in this controller however is |
| required by the abstract class |
\*---------------------------------------------------------*/
}
void ROGStrixLC_Controller::SetLedsDirect(RGBColor * led_colours, uint8_t led_count)
{
uint8_t buffer[write_packet_size] = { 0xEC, 0x40, 0x00, 0xFF, led_count };
/*---------------------------------------------------------*\
| Set the colour bytes in the packet |
\*---------------------------------------------------------*/
for(uint8_t index = 0; index < led_count; index++)
{
uint8_t offset = (index * 3) + ROGSTRIXLC_GREEN_BYTE;
buffer[offset + 0] = RGBGetRValue(led_colours[index]);
buffer[offset + 1] = RGBGetGValue(led_colours[index]);
buffer[offset + 2] = RGBGetBValue(led_colours[index]);
}
/*---------------------------------------------------------*\
| These 3 bytes might be timing bytes |
\*---------------------------------------------------------*/
uint8_t offset = led_count * 3 + ROGSTRIXLC_GREEN_BYTE;
buffer[offset + 0] = 0x77;
buffer[offset + 1] = 0x10;
buffer[offset + 2] = 0xF3;
hid_write(dev, buffer, write_packet_size);
}
void ROGStrixLC_Controller::GetStatus()
{
uint8_t buffer[write_packet_size] = { 0xEC, 0x01, 0x02 };
hid_write(dev, buffer, write_packet_size);
hid_read_timeout(dev, buffer, read_packet_size, ROGSTRIXLC_CONTROLLER_TIMEOUT);
current_red = buffer[ROGSTRIXLC_RED_BYTE - 1];
current_green = buffer[ROGSTRIXLC_GREEN_BYTE - 1];
current_blue = buffer[ROGSTRIXLC_BLUE_BYTE - 1];
}
void ROGStrixLC_Controller::SendUpdate()
{
uint8_t buffer[write_packet_size];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buffer, 0x00, write_packet_size);
buffer[ROGSTRIXLC_REPORTID_BYTE] = rogstrixlc_reportid;
buffer[ROGSTRIXLC_COMMAND_BYTE] = rogstrixlc_modefx;
buffer[ROGSTRIXLC_ZONE_BYTE] = 0;
buffer[ROGSTRIXLC_MODE_BYTE] = current_mode;
buffer[ROGSTRIXLC_RED_BYTE] = current_red;
buffer[ROGSTRIXLC_GREEN_BYTE] = current_green;
buffer[ROGSTRIXLC_BLUE_BYTE] = current_blue;
buffer[ROGSTRIXLC_DIRECTION_BYTE] = current_direction;
buffer[ROGSTRIXLC_SPEED_BYTE] = current_speed;
hid_write(dev, buffer, write_packet_size);
}
@@ -1,92 +0,0 @@
/*-------------------------------------------------------------------*\
| ROGStrixLC_Controller.h |
| |
| Driver for the ASUS Aura Liquid Cooler (LC) series |
| of lighting controllers |
| |
| Chris M (Dr_No) 17 Jan 2022 |
| |
\*-------------------------------------------------------------------*/
#include <string>
#include <hidapi/hidapi.h>
#include "RGBController.h"
#include "AsusAuraUSBController.h"
#pragma once
#define ROGSTRIXLC_CONTROLLER_TIMEOUT 250
#define HID_MAX_STR 255
#define ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MIN 0
#define ROGSTRIXLC_CONTROLLER_BRIGHTNESS_MAX 255
enum
{
ROGSTRIXLC_CONTROLLER_MODE_DIRECT = 0xFF, //Direct Led Control - Independently set LEDs in zone
ROGSTRIXLC_CONTROLLER_MODE_STATIC = 0x01, //Static Mode - Set entire zone to a single color.
ROGSTRIXLC_CONTROLLER_MODE_BREATHING = 0x02, //Breathing Mode - Fades between fully off and fully on.
ROGSTRIXLC_CONTROLLER_MODE_FLASHING = 0x03, //Flashing Mode - Abruptly changing between fully off and fully on.
ROGSTRIXLC_CONTROLLER_MODE_SPECTRUM = 0x04, //Spectrum Cycle Mode - Cycles through the color spectrum on all lights on the device
ROGSTRIXLC_CONTROLLER_MODE_RAINBOW = 0x05, //Rainbow Wave Mode - Cycle thru the color spectrum as a wave across all LEDs
ROGSTRIXLC_CONTROLLER_MODE_FLASHANDDASH = 0x0A, //Flash n Dash - Flash twice and then flash in direction
};
enum AsusAuraStrixLC_PacketMap
{
ROGSTRIXLC_REPORTID_BYTE = 0,
ROGSTRIXLC_COMMAND_BYTE = 1,
ROGSTRIXLC_ZONE_BYTE = 2,
ROGSTRIXLC_MODE_BYTE = 3,
ROGSTRIXLC_RED_BYTE = 4,
ROGSTRIXLC_GREEN_BYTE = 5,
ROGSTRIXLC_BLUE_BYTE = 6,
ROGSTRIXLC_DIRECTION_BYTE = 7,
ROGSTRIXLC_SPEED_BYTE = 8,
};
enum
{
ROGSTRIXLC_CONTROLLER_SPEED_SLOWEST = 0x04, // Slowest speed
ROGSTRIXLC_CONTROLLER_SPEED_SLOW = 0x03, // Slower speed
ROGSTRIXLC_CONTROLLER_SPEED_NORMAL = 0x02, // Normal speed
ROGSTRIXLC_CONTROLLER_SPEED_FAST = 0x01, // Fast speed
ROGSTRIXLC_CONTROLLER_SPEED_FASTEST = 0x00, // Fastest speed
};
class ROGStrixLC_Controller : public AuraUSBController
{
public:
ROGStrixLC_Controller(hid_device* dev_handle, const char* path);
~ROGStrixLC_Controller();
std::string GetLocation();
void SetChannelLEDs(unsigned char channel, RGBColor *colors, unsigned int num_colors);
void SetLedsDirect(RGBColor * led_colours, uint8_t led_count);
void SetMode(unsigned char channel, unsigned char mode, unsigned char red, unsigned char grn, unsigned char blu);
void SetMode(unsigned char mode, unsigned char speed, unsigned char direction, RGBColor colour);
private:
static const uint8_t read_packet_size = 64;
static const uint8_t write_packet_size = read_packet_size + 1;
static const uint8_t rogstrixlc_modefx = 0x3B;
static const uint8_t rogstrixlc_direct = 0x40;
static const uint8_t rogstrixlc_reportid = 0xEC;
std::string location;
uint8_t zone_index;
uint8_t current_mode;
uint8_t current_speed;
uint8_t current_red;
uint8_t current_green;
uint8_t current_blue;
uint8_t current_direction;
void GetStatus();
void SendUpdate();
void SendEffect(unsigned char channel, unsigned char mode, unsigned char red, unsigned char grn, unsigned char blu);
void SendDirectApply(unsigned char channel);
};
@@ -16,6 +16,7 @@ static void DetectAsusTUFLaptopWMIControllers(std::vector<RGBController*>&)
// For now, checking for "TUF Gaming" should suffice
Wmi wmi;
wmi.init();
std::vector<QueryObj> systemProduct;
if (wmi.query("SELECT * FROM Win32_ComputerSystemProduct", systemProduct))
@@ -10,16 +10,6 @@
using namespace std::chrono_literals;
/**------------------------------------------------------------------*\
@name Asus TUF Laptop
@type WMI
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAsusTUFLaptopWMIControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_AsusTUFLaptopWMI::RGBController_AsusTUFLaptopWMI()
{
name = "ASUS TUF Keyboard";
@@ -1,104 +0,0 @@
/*---------------------------------------------------------*\
| BlinkyTapeController.cpp |
| |
| BlinkyTape controller interface |
| |
| Matt Mets ([email protected]), 07/01/2021 |
\*---------------------------------------------------------*/
#include "BlinkyTapeController.h"
#include <algorithm>
#include <fstream>
#include <iostream>
#include <string>
#ifndef WIN32
#define LPSTR char *
#define strtok_s strtok_r
#endif
BlinkyTapeController::BlinkyTapeController()
{
}
BlinkyTapeController::~BlinkyTapeController()
{
if(serialport != nullptr)
{
serialport->serial_close();
delete serialport;
}
}
void BlinkyTapeController::Initialize(const std::string &portname)
{
port_name = portname;
serialport = new serial_port();
if(!serialport->serial_open(port_name.c_str(), 115200))
{
delete serialport;
serialport = nullptr;
}
}
std::string BlinkyTapeController::GetLocation()
{
if(serialport == nullptr)
{
return("");
}
return("COM: " + port_name);
}
char* BlinkyTapeController::GetLEDString()
{
return(led_string);
}
void BlinkyTapeController::SetLEDs(std::vector<RGBColor> colors)
{
if(serialport == nullptr)
{
return;
}
/*-------------------------------------------------------------*\
| BlinkyTape Protocol |
| |
| Packet size: Number of data bytes + 1 |
| |
| 0-n: Data Byte (0-254) |
| n+1: Packet End Byte (0xFF) |
\*-------------------------------------------------------------*/
const unsigned int payload_size = (colors.size() * 3);
const unsigned int packet_size = payload_size + 1;
std::vector<unsigned char> serial_buf(packet_size);
/*-------------------------------------------------------------*\
| Set up end byte |
\*-------------------------------------------------------------*/
serial_buf[packet_size - 1] = 0xFF;
/*-------------------------------------------------------------*\
| Copy in color data in RGB order |
\*-------------------------------------------------------------*/
for(unsigned int color_idx = 0; color_idx < colors.size(); color_idx++)
{
const unsigned int color_offset = color_idx * 3;
serial_buf[0x00 + color_offset] = std::min((unsigned int)254, RGBGetRValue(colors[color_idx]));
serial_buf[0x01 + color_offset] = std::min((unsigned int)254, RGBGetGValue(colors[color_idx]));
serial_buf[0x02 + color_offset] = std::min((unsigned int)254, RGBGetBValue(colors[color_idx]));
}
/*-------------------------------------------------------------*\
| Send the packet |
\*-------------------------------------------------------------*/
serialport->serial_write((char *)serial_buf.data(), packet_size);
}

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