Compare commits

...
Author SHA1 Message Date
Adam Honse b86be6b75d Use RGBControllerInterface for plugin API 2026-05-23 15:17:05 -05:00
Adam Honse c11090a4cf Add another thread in NetworkClient for handling ProfileManager requests outside of the main listener thread, to avoid deadlocking the waiting receivers 2026-05-20 08:13:17 -05:00
Adam Honse a69390e5a8 Update translation files and fix some translation related issues 2026-05-14 23:21:10 -05:00
Adam Honse a900d5c402 NetworkClient cleanup and internal API standardization 2026-05-14 17:26:12 -05:00
Adam Honse f870dcdc3a NetworkServer cleanup and internal API standardization 2026-05-14 17:26:12 -05:00
Adam Honse 9a105ccdaf Add indication of standalone or local client mode to about page 2026-05-14 17:26:12 -05:00
Adam Honse 1faa2b1d31 Implement network request to get list of I2C buses so that the Get Hardware IDs dialog works in local client mode 2026-05-14 17:26:12 -05:00
Adam Honse 91923f3a82 Add option to force compact tabs and option to move tabs from left to top 2026-05-14 17:26:12 -05:00
Adam Honse fcb594cb0e More LogManager cleanup, default to a log file count of 10, fix bug in log rotation 2026-05-14 17:26:12 -05:00
Adam Honse 32f0f1a9a2 Log manager SDK protocol 2026-05-14 17:26:12 -05:00
Adam Honse 4d379b97c6 Log Console Updates 2026-05-14 17:26:12 -05:00
Adam Honse a3e5296bf2 LogManager cleanup 2026-05-14 17:26:12 -05:00
Adam Honse 072d27d9dd Settings Rework
* Add JSON string configuration field to RGBController to store device-specific configurations
    * This JSON string holds both configuration and schema
    * Add settings schema tracking to SettingsManager
    * Implement dynamic settings widget that generates a settings UI based on a JSON schema
    * Implement SettingsManager callback for notifying of settings changes and settings schema updates
    * Always enable Entire Device zone option and use it to enable Edit Device
    * Rename SaveSizes to SaveConfiguration in ProfileManager and Sizes.json to Configuration.json
    * Add zone flag for indicating that a zone's geometry may change, informing profile manager to ignore this check
    * Remove Theme setting and Theme Manager, as this didn't work on most setups anyways and Qt6 has proper Windows dark theming
2026-05-14 17:25:35 -05:00
Dmitry Kychanov 201f2d7aba Fix losing software info upon changing language [next] 2026-05-07 17:24:47 -05:00
Dmitry Kychanov 28cd45b8c0 Fix device tabs not applying compact mode when hotplugging 2026-05-07 17:24:46 -05:00
Adam Honse 7a9aab5a37 Close SDK connection if magic value is not correctly received 2026-05-07 17:24:46 -05:00
Adam Honse 24ea50df71 Implement size verification on RGBController set description functions 2026-05-07 17:24:46 -05:00
Adam Honse 75df39252b Clean up zone initialization dialog 2026-05-07 17:24:46 -05:00
Adam Honse 385f123816 Require local client permission for DeleteProfile, SaveProfile, UploadProfile, SetSettings, and SaveSettings operations, some general cleanup 2026-05-07 17:24:46 -05:00
Adam Honse e1fc54de85 Sanitize profile filenames 2026-05-07 17:24:46 -05:00
Adam Honse e22e88d97d Add RescanDevices to plugin API 2026-05-07 17:24:46 -05:00
Adam Honse 0ba254e38f Implement segment groups in zone editor 2026-05-07 17:24:46 -05:00
Adam Honse 9d35d28a6a Rework server initialization
* Only create server instance if server is actually needed
    * Pass initial server host and port through ResourceManager
    * Allow setting default server host and port in Server settings
2026-05-07 17:24:46 -05:00
stephen iacovelli b4b4f3b891 Sort profiles list alphabetically 2026-05-07 17:24:46 -05:00
Adam Honse e1086712ad Organize OpenRGBSettingsPage with Group Boxes 2026-05-07 17:24:46 -05:00
Kasslim fd7ccad1e6 Correct spelling Busses -> Buses
Commits merged by Adam Honse <[email protected]>
2026-05-07 17:24:46 -05:00
诺诺 8bc1a0cb8f Add Nollie controller OS2.1 2026-05-07 17:24:46 -05:00
Adam Honse 5112224240 Initial implementation of OpenRGB SDK protocol Wireshark dissector 2026-05-07 17:24:46 -05:00
Adam Honse 5e2cc42290 Add ACK to network packets processed by NetworkServer 2026-05-07 17:24:46 -05:00
Adam Honse b1436a8435 Only update device view when RGBController::UpdateLEDs signal is sent to OpenRGBDevicePage, fix device view not refreshing if multiple LEDs are selected 2026-05-07 17:24:46 -05:00
Adam Honse a8d4e25642 Don't emit selection update on mouse click event to avoid sending unnecessary events, also only send one type of event per mouse release event. Fix LED box not being updated 2026-05-07 17:24:46 -05:00
Adam Honse 2b3638ba57 Have dummy controller shut down its background thread immediately during constructor to save resources 2026-05-07 17:24:46 -05:00
Adam Honse 78369c2a92 DeviceView code cleanup, formatting, commenting 2026-05-07 17:24:46 -05:00
Adam Honse 03ce513254 Fix selecting LEDs in device view 2026-05-07 17:24:46 -05:00
Adam Honse 18503cccc6 TabLabel sets its own tooltip so all tabs have a tooltip rather than just devices 2026-05-07 17:24:46 -05:00
Adam Honse e1d46d3bb3 Resize tabs when width is small 2026-05-07 17:24:46 -05:00
Adam Honse 0466996970 Rework adding segments with ConfigureZone 2026-05-07 17:24:46 -05:00
Adam Honse 56bd7580ba Zone and Segment type updates
* Add zone flags to indicate if fields are manually configurable and if they have been manually configured
  * Add flags field to segment type
  * Add segment flags for group start and group member
  * Add color mode support flags to zone (RGB, RBG, GRB, GBR, BRG, BGR)
  * Add color mode enum to zone
  * Update zone and segment description functions to support new fields
  * Rename the effects-only configurable size flag
  * Remove zone type and matrix map configuration from E1.31 manual configuration, use zone editor instead
  * Rework DeviceResizeZone to DeviceConfigureZone
  * Rework most ARGB controllers to allow zone customizations
  * Rework DRGBController to define devices in DRGBDevices list (similar to RazerDevices)
  * Rework NollieController to define devices in NollieDevices list (similar to RazerDevices)
2026-05-07 17:24:46 -05:00
Adam Honse ca47047bf8 Add matrix map automatic generation to matrix map editor 2026-05-07 17:24:46 -05:00
Adam Honse cc00690dd4 RGBController API changes and segment configuration updates
* Make the Get/Set RGBControler descriptor functions static
  * Add functions for getting the matrix_map_type for zone and segment matrix maps
  * Rename zone resize dialog to zone editor dialog
  * Add additional segment types
  * Add option to import segments configuration from JSON file in zone editor dialog
  * Update device view to be able to display matrix segment types
  * Add matrix map editor dialog for creating/editing segment matrix maps
  * Add option to export segments configuration to JSON file in zone editor dialog
2026-05-07 17:24:46 -05:00
Adam Honse 973311aa48 When updating existing profile without profile editor dialog, keep saved states for unavailable controllers, base color, and only update plugins already part of the existing profile 2026-05-07 17:24:46 -05:00
Adam Honse 747afdf553 When saving sizes/manual configuration, keep any existing controllers that are not currently available 2026-05-07 17:24:46 -05:00
Adam Honse 8f11f8fd97 Rework how manual configuration (previously sizes) are loaded to newly detected controllers, load active profile to newly detected controllers 2026-05-07 17:24:45 -05:00
Adam Honse 2b11f6fe07 Profile editor dialog 2026-05-07 17:24:45 -05:00
Adam Honse 94981f107b Rework API interface passed into plugins from ResourceManagerInterface to OpenRGBPluginAPIInterface 2026-05-07 17:24:45 -05:00
Adam Honse 0144a6a150 [next] Active profile tracking 2026-05-07 17:24:45 -05:00
Adam Honse 6ec8b80e65 Apply profiles server-side rather than client-side, signal active profile update, forward loaded profile to local client for plugins 2026-05-07 17:24:45 -05:00
Adam Honse ddae1ed20a Split HID and wrapped HID detector lists into specific detectors (with exact VID/PID matching) and generic detectors (with only IPU matching) and prioritize specific detectors when detecting HID devices 2026-05-07 17:24:45 -05:00
Adam Honse 70f79e97b4 Move RGBController base destructor functionality into RGBController::Shutdown() so that update thread can be stopped before deleting the controller. Shutdown() must be called in every RGBController implementation before deleting the controller. Also some fixes to the NetworkServer to avoid deadlocking and disconnect issues 2026-05-07 17:24:45 -05:00
Adam Honse d05fe1bdf1 Add detectors for filtering on IPU only (no VID/PID) 2026-05-07 17:24:45 -05:00
Adam Honse e9e99a029d Drop support for old hidapi versions that don't support usage information 2026-05-07 17:24:45 -05:00
Adam Honse 98dd494f75 Add some validity checks to mode setters and getters in RGBController 2026-05-07 17:24:45 -05:00
Adam Honse 7b7f0aa0fe [next] SDK v6: Implement client and server flags to indicate capabilities and... 2026-05-07 17:24:45 -05:00
Adam Honse 70876193cf SDK documentation updates 2026-05-07 17:24:45 -05:00
Adam Honse f47a22fb2f Expose LogManager in ResourceManager so that plugins can use it 2026-05-07 17:24:45 -05:00
Adam Honse f24b56b64f Update NetworkClient to use log manager and use common name constant in server logs 2026-05-07 17:24:45 -05:00
Adam Honse 4e70949aec Use std::string.assign when setting strings in the SDK protocol and description handlers so that string size limit is enforced, then strip out null terminators 2026-05-07 17:24:45 -05:00
Adam Honse 5133887632 Add optional HID device hotplug support (requires https://gitlab.com/OpenRGBDevelopers/hidapi-hotplug) 2026-05-07 17:24:45 -05:00
Adam Honse 45950047cb SDK v6: Use unique IDs for identifying RGBControllers in SDK protocol 2026-05-07 17:24:45 -05:00
Adam Honse a56a08411f Rework list handling in ResourceManager by having NetworkClient own its own list rather than sharing ResourceManager's list 2026-05-07 17:24:45 -05:00
Adam Honse 52f0049025 Move HID detector calls to RunHIDDetector/RunHIDWrappedDetector functions and return controller list from detector functions 2026-05-07 17:24:45 -05:00
Adam Honse f6f317d487 Detection progress SDK integration, NetworkClient callback rework 2026-05-07 17:24:45 -05:00
Adam Honse ad364871c6 Split out detection system from ResourceManager into DetectionManager
* Split detection system out into its own class, DetectionManager
    * Clean up ResourceManger's many callbacks into just two, one for detection and one general purpose
2026-05-07 17:24:45 -05:00
Adam Honse 58582202cf SDK Version 6 Updates
* SDK Protocol
    * Server sends its name to client
    * ProfileManager
      * Rename existing profile commands
      * Add Upload Profile, Download Profile, and Get Active Profile commands
    * SettingsManager
      * Add Get, Set, and Save Settings commands
    * Add zone::active_mode, zone::mode fields for zone-specific modes
    * Add NET_PACKET_ID_RGBCONTROLLER_UPDATEZONEMODE packet for updating zone modes
    * Add segment::matrix_map to segment packet
    * Add NET_PACKET_ID_RGBCONTROLLER_SIGNALUPDATE packet for passing SignalUpdate signal from server to clients
  * NetworkServer
    * Formatting cleanup
    * Use per-controller threads for handling NetworkServer controller-specific packets to avoid delays from controller mutexes
  * NetworkClient
    * Formatting cleanup
  * RGBController
    * Clean up and modularize descriptor functions
2026-05-07 17:24:44 -05:00
Adam Honse 57cde755c1 Rework Profiles to use JSON format
* Update OpenRGB Plugin Interface to include functions for loading/saving profile JSON data into OpenRGB profiles
    * Update ProfileManager to handle auto-load profiles (Exit, Open, Resume, Suspend) and move their settings to ProfileManager section
    * Update ProfileManager to store profiles in "profiles" folder in .json format
    * Update ProfileManager to store size profile in sizes.json
    * Update ProfileManager to perform device UpdateMode/UpdateColors when loading profile
    * Code cleanup of ProfileManager and profile-related code
2026-05-07 17:24:44 -05:00
Adam Honse b0c7dba441 RGBController API Overhaul
* Reorganize and clean up RGBController API functions
    * Add functions to get protected RGBController member values
    * Make NetworkClient, ProfileManager, and ResourceManager friend classes so they can access protected members
    * Protected previously-public RGBController members
        * Information strings (name, vendor, description, version, serial location)
        * Device type
        * Active mode
        * Flags
        * LEDs vector
        * LED alternate names vector
        * Modes vector
        * Colors vector
        * Zones vector
    * Add CONTROLLER_FLAG_HIDDEN to allow plugins to hide controllers from control GUI
    * Add update reason codes to RGBController update callback and signal updates on more RGBController events
    * Add loop zone types and segmented zone type
    * Add matrix map field to segments
    * Rework matrix_map_type from using pointers to vector to prevent memory leaks
    * Rework KeyboardLayoutManager to return new matrix_map_type
    * Add access mutex to RGBController API
    * Add per-zone modes ot RGBController API
    * Add JSON description functions to RGBController API
2026-05-07 17:24:44 -05:00
Adam Honse d763f7ecc7 Move plugin SDK integration from callback into plugin API and PluginManager 2026-05-07 17:24:44 -05:00
Adam Honse 4ec4df8741 Update Plugin API to 5 and SDK Protocol to 6 2026-05-07 17:24:44 -05:00
Adam Honse 5d055d30a3 Update default builds to Qt6
* Update Debian packages to use Qt6
  * Update Fedora packages to use Qt6
  * Update default AppImage builds to use Qt6
  * Update default Windows builds to use Qt6
  * Update default MacOS builds to use Qt6
2026-05-07 17:24:44 -05:00
Adam Honse fc73fe0b4c Revert "Nollie 2.1 firmware for Master"
This reverts commit 07e7feca56.
2026-05-07 17:24:44 -05:00
1078 changed files with 73016 additions and 34460 deletions
+69 -49
View File
@@ -100,19 +100,19 @@ before_script:
"Linux i386 AppImage":
variables:
TGT_ARCH: "i386"
TGT_QT: ""
TGT_QT: "qt6"
TGT_NAME: "${TGT_ARCH}"
TGT_PATH: "${TGT_ARCH}"
<<: *appimage_script_steps
#-----------------------------------------------------------#
# Linux (AppImage) Qt6 i386 Build Target #
# Linux (AppImage) Qt5 i386 Build Target #
#-----------------------------------------------------------#
"Linux i386 AppImage Qt6":
"Linux i386 AppImage Qt5":
variables:
TGT_ARCH: "i386"
TGT_QT: "qt6"
TGT_NAME: "${TGT_ARCH}_${TGT_QT^}"
TGT_QT: ""
TGT_NAME: "${TGT_ARCH}_qt5"
TGT_PATH: "${TGT_ARCH}"
<<: *appimage_script_steps
@@ -122,7 +122,7 @@ before_script:
"Linux amd64 AppImage":
variables:
TGT_ARCH: "amd64"
TGT_QT: ""
TGT_QT: "qt6"
TGT_NAME: "${TGT_ARCH}"
TGT_PATH: "x86_64"
<<: *appimage_script_steps
@@ -137,13 +137,13 @@ before_script:
- "saas-linux-small-amd64"
#-----------------------------------------------------------#
# Linux (AppImage) Qt6 amd64 Build Target #
# Linux (AppImage) Qt5 amd64 Build Target #
#-----------------------------------------------------------#
"Linux amd64 AppImage Qt6":
"Linux amd64 AppImage Qt5":
variables:
TGT_ARCH: "amd64"
TGT_QT: "qt6"
TGT_NAME: "${TGT_ARCH}_${TGT_QT^}"
TGT_QT: ""
TGT_NAME: "${TGT_ARCH}_qt5"
TGT_PATH: "x86_64"
<<: *appimage_script_steps
@@ -153,19 +153,19 @@ before_script:
"Linux armhf AppImage":
variables:
TGT_ARCH: "armhf"
TGT_QT: ""
TGT_QT: "qt6"
TGT_NAME: "${TGT_ARCH}"
TGT_PATH: "${TGT_ARCH}"
<<: *appimage_script_steps
#-----------------------------------------------------------#
# Linux (AppImage) Qt6 armhf Build Target #
# Linux (AppImage) Qt5 armhf Build Target #
#-----------------------------------------------------------#
"Linux armhf AppImage Qt6":
"Linux armhf AppImage Qt5":
variables:
TGT_ARCH: "armhf"
TGT_QT: "qt6"
TGT_NAME: "${TGT_ARCH}_${TGT_QT^}"
TGT_QT: ""
TGT_NAME: "${TGT_ARCH}_qt5"
TGT_PATH: "${TGT_ARCH}"
<<: *appimage_script_steps
@@ -175,19 +175,19 @@ before_script:
"Linux arm64 AppImage":
variables:
TGT_ARCH: "arm64"
TGT_QT: ""
TGT_QT: "qt6"
TGT_NAME: "${TGT_ARCH}"
TGT_PATH: "${TGT_ARCH}"
<<: *appimage_script_steps
#-----------------------------------------------------------#
# Linux (AppImage) Qt6 arm64 Build Target #
# Linux (AppImage) Qt5 arm64 Build Target #
#-----------------------------------------------------------#
"Linux arm64 AppImage Qt6":
"Linux arm64 AppImage Qt5":
variables:
TGT_ARCH: "arm64"
TGT_QT: "qt6"
TGT_NAME: "${TGT_ARCH}_${TGT_QT^}"
TGT_QT: ""
TGT_NAME: "${TGT_ARCH}_qt5"
TGT_PATH: "${TGT_ARCH}"
<<: *appimage_script_steps
@@ -296,7 +296,10 @@ before_script:
image: fedora:43
stage: build
script:
- dnf install rpmdevtools dnf-plugins-core libcurl-devel qt5-qtbase-devel git -y
- dnf install rpmdevtools dnf-plugins-core libcurl-devel qt5-qtbase-devel git wget -y
- 'wget -O hidapi-hotplug.zip https://gitlab.com/OpenRGBDevelopers/hidapi-hotplug/-/jobs/artifacts/master/download?job=Linux+64+F43+rpm'
- unzip hidapi-hotplug.zip
- dnf install ./*.rpm -y
- rpmdev-setuptree
- ./scripts/build-package-files.sh fedora/OpenRGB.spec
- cp fedora/OpenRGB.spec /root/rpmbuild/SPECS
@@ -324,10 +327,14 @@ before_script:
image: i386/debian:bookworm
stage: test
script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt update
- DEBIAN_FRONTEND=noninteractive apt install -y unzip curl
- 'curl -o hidapi-hotplug.zip -L https://gitlab.com/OpenRGBDevelopers/hidapi-hotplug/-/jobs/artifacts/master/download?job=Linux+i386+.deb+%28Debian+Bookworm%29'
- unzip hidapi-hotplug.zip
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./libhidapi-hotplug*.deb
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*i386.deb
- openrgb --version
- apt remove -y openrgb
- DEBIAN_FRONTEND=noninteractive apt remove -y openrgb
dependencies:
- "Linux i386 .deb (Debian Bookworm)"
needs:
@@ -342,10 +349,14 @@ before_script:
image: amd64/debian:bookworm
stage: test
script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt update
- DEBIAN_FRONTEND=noninteractive apt install -y unzip curl
- 'curl -o hidapi-hotplug.zip -L https://gitlab.com/OpenRGBDevelopers/hidapi-hotplug/-/jobs/artifacts/master/download?job=Linux+amd64+.deb+%28Debian+Bookworm%29'
- unzip hidapi-hotplug.zip
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./libhidapi-hotplug*.deb
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*amd64.deb
- openrgb --version
- apt remove -y openrgb
- DEBIAN_FRONTEND=noninteractive apt remove -y openrgb
dependencies:
- "Linux amd64 .deb (Debian Bookworm)"
needs:
@@ -360,10 +371,14 @@ before_script:
image: ubuntu:noble
stage: test
script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt update
- DEBIAN_FRONTEND=noninteractive apt install -y unzip curl
- 'curl -o hidapi-hotplug.zip -L https://gitlab.com/OpenRGBDevelopers/hidapi-hotplug/-/jobs/artifacts/master/download?job=Linux+amd64+.deb+%28Debian+Bookworm%29'
- unzip hidapi-hotplug.zip
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./libhidapi-hotplug*.deb
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*amd64.deb
- openrgb --version
- apt remove -y openrgb
- DEBIAN_FRONTEND=noninteractive apt remove -y openrgb
dependencies:
- "Linux amd64 .deb (Debian Bookworm)"
needs:
@@ -378,6 +393,10 @@ before_script:
image: fedora:43
stage: test
script:
- dnf install unzip wget -y
- 'wget -O hidapi-hotplug.zip https://gitlab.com/OpenRGBDevelopers/hidapi-hotplug/-/jobs/artifacts/master/download?job=Linux+64+F43+rpm'
- unzip hidapi-hotplug.zip
- dnf install ./*.rpm -y
- dnf5 -y install ./openrgb*64.rpm
- openrgb --version
- dnf5 -y remove openrgb
@@ -397,7 +416,7 @@ before_script:
stage: build
script:
- $ErrorActionPreference = "SilentlyContinue" ; Set-MpPreference -DisableRealtimeMonitoring $true ; $ErrorActionPreference = "Stop"
- scripts\build-windows.bat 5.15.0 2019 32
- scripts\build-windows.bat 6.8.3 2022 32
artifacts:
name: "${CI_PROJECT_NAME}_Windows_32_${CI_COMMIT_SHORT_SHA}"
paths:
@@ -410,17 +429,17 @@ before_script:
- !reference [.upstream_rules, rules]
#-----------------------------------------------------------#
# Windows (32-bit) Qt6 Build Target #
# Windows (32-bit) Qt5 Build Target #
#-----------------------------------------------------------#
"Windows 32 Qt6":
"Windows 32 Qt5":
extends:
- .shared_windows_runners
stage: build
script:
- $ErrorActionPreference = "SilentlyContinue" ; Set-MpPreference -DisableRealtimeMonitoring $true ; $ErrorActionPreference = "Stop"
- scripts\build-windows.bat 6.8.3 2022 32
- scripts\build-windows.bat 5.15.0 2019 32
artifacts:
name: "${CI_PROJECT_NAME}_Windows_32_Qt6_${CI_COMMIT_SHORT_SHA}"
name: "${CI_PROJECT_NAME}_Windows_32_Qt5_${CI_COMMIT_SHORT_SHA}"
paths:
- 'OpenRGB Windows 32-bit'
exclude:
@@ -439,7 +458,7 @@ before_script:
stage: build
script:
- $ErrorActionPreference = "SilentlyContinue" ; Set-MpPreference -DisableRealtimeMonitoring $true ; $ErrorActionPreference = "Stop"
- scripts\build-windows.bat 5.15.0 2019 64
- scripts\build-windows.bat 6.8.3 2022 64
artifacts:
name: "${CI_PROJECT_NAME}_Windows_64_${CI_COMMIT_SHORT_SHA}"
paths:
@@ -470,17 +489,17 @@ before_script:
- "saas-windows-medium-amd64"
#-----------------------------------------------------------#
# Windows (64-bit) Qt6 Build Target #
# Windows (64-bit) Qt5 Build Target #
#-----------------------------------------------------------#
"Windows 64 Qt6 Base":
"Windows 64 Qt5 Base":
extends:
- .shared_windows_runners
stage: build
script:
- $ErrorActionPreference = "SilentlyContinue" ; Set-MpPreference -DisableRealtimeMonitoring $true ; $ErrorActionPreference = "Stop"
- scripts\build-windows.bat 6.8.3 2022 64
- scripts\build-windows.bat 5.15.0 2019 64
artifacts:
name: "${CI_PROJECT_NAME}_Windows_64_Qt6_${CI_COMMIT_SHORT_SHA}"
name: "${CI_PROJECT_NAME}_Windows_64_Qt5_${CI_COMMIT_SHORT_SHA}"
paths:
- 'OpenRGB Windows 64-bit'
exclude:
@@ -491,13 +510,14 @@ before_script:
- if: $CI_PIPELINE_SOURCE == "merge_request_event" || $CI_PIPELINE_SOURCE == "push"
when: never
"Windows 64 Qt6":
extends: "Windows 64 Qt6 Base"
"Windows 64 Qt5":
extends: "Windows 64 Qt5 Base"
rules:
- !reference [.upstream_rules, rules]
"Windows 64 Qt6 (Downstream)":
extends: "Windows 64 Qt6 Base"
"Windows 64 Qt5 (Downstream)":
extends: "Windows 64 Qt5 Base"
before_script:
- git clone https://gitlab.com/OpenRGBDevelopers/OpenRGB-Qt-Packages
- cd OpenRGB-Qt-Packages
@@ -516,7 +536,7 @@ before_script:
- macos
stage: build
script:
- ./scripts/build-macos.sh qt5 arm
- ./scripts/build-macos.sh qt6 arm
artifacts:
name: "${CI_PROJECT_NAME}_MacOS_ARM64_${CI_COMMIT_SHORT_SHA}"
@@ -527,15 +547,15 @@ before_script:
rules:
- !reference [.upstream_rules, rules]
"MacOS ARM64 Qt6":
"MacOS ARM64 Qt5":
tags:
- macos
stage: build
script:
- ./scripts/build-macos.sh qt6 arm
- ./scripts/build-macos.sh qt5 arm
artifacts:
name: "${CI_PROJECT_NAME}_MacOS_ARM64_Qt6_${CI_COMMIT_SHORT_SHA}"
name: "${CI_PROJECT_NAME}_MacOS_Qt5_ARM64_${CI_COMMIT_SHORT_SHA}"
paths:
- OpenRGB.app
expire_in: 30 days
@@ -548,7 +568,7 @@ before_script:
- macos
stage: build
script:
- ./scripts/build-macos.sh qt5 intel
- ./scripts/build-macos.sh qt6 intel
artifacts:
name: "${CI_PROJECT_NAME}_MacOS_Intel_${CI_COMMIT_SHORT_SHA}"
@@ -559,15 +579,15 @@ before_script:
rules:
- !reference [.upstream_rules, rules]
"MacOS Intel Qt6":
"MacOS Intel Qt5":
tags:
- macos
stage: build
script:
- ./scripts/build-macos.sh qt6 intel
- ./scripts/build-macos.sh qt5 intel
artifacts:
name: "${CI_PROJECT_NAME}_MacOS_Intel_Qt6_${CI_COMMIT_SHORT_SHA}"
name: "${CI_PROJECT_NAME}_MacOS_Intel_Qt5_${CI_COMMIT_SHORT_SHA}"
paths:
- OpenRGB.app
expire_in: 30 days
@@ -10,47 +10,52 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
/*-----------------------------------------------------*\
| OpenRGB includes |
\*-----------------------------------------------------*/
#include <hidapi.h>
#include "Detector.h"
/*-----------------------------------------------------*\
| A4 Tech specific includes |
\*-----------------------------------------------------*/
#include "RGBController_BloodyMouse.h"
#include "BloodyB820RController.h"
#include "BloodyMouseController.h"
#include "DetectionManager.h"
#include "RGBController_BloodyB820R.h"
#include "RGBController_BloodyMouse.h"
/*-----------------------------------------------------*\
/*---------------------------------------------------------*\
| A4 Tech USB vendor ID |
\*-----------------------------------------------------*/
\*---------------------------------------------------------*/
#define A4_TECH_VID 0x09DA
void DetectA4TechMouseControllers(hid_device_info* info, const std::string& name)
DetectedControllers DetectA4TechMouseControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
BloodyMouseController* controller = new BloodyMouseController(dev, info->path, info->product_id, name);
RGBController_BloodyMouse* rgb_controller = new RGBController_BloodyMouse(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectBloodyB820R(hid_device_info* info, const std::string& name)
DetectedControllers DetectBloodyB820R(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
BloodyB820RController* controller = new BloodyB820RController(dev, info->path, name);
RGBController_BloodyB820R* rgb_controller = new RGBController_BloodyB820R(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR_IPU("Bloody W60 Pro", DetectA4TechMouseControllers, A4_TECH_VID, BLOODY_W60_PRO_PID, 2, 0xFF33, 0x0529);
@@ -173,6 +173,8 @@ RGBController_BloodyB820R::RGBController_BloodyB820R(BloodyB820RController *cont
RGBController_BloodyB820R::~RGBController_BloodyB820R()
{
Shutdown();
delete controller;
}
@@ -187,11 +189,7 @@ void RGBController_BloodyB820R::SetupZones()
KB_zone.leds_min = BLOODY_B820R_KEYCOUNT;
KB_zone.leds_max = BLOODY_B820R_KEYCOUNT;
KB_zone.leds_count = BLOODY_B820R_KEYCOUNT;
KB_zone.matrix_map = new matrix_map_type;
KB_zone.matrix_map->height = 6;
KB_zone.matrix_map->width = 21;
KB_zone.matrix_map->map = (unsigned int *)&matrix_map;
KB_zone.matrix_map.Set(6, 21, (unsigned int *)&matrix_map);
zones.push_back(KB_zone);
/*-------------------------------------------------*\
@@ -214,20 +212,12 @@ void RGBController_BloodyB820R::SetupZones()
SetupColors();
}
void RGBController_BloodyB820R::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_BloodyB820R::DeviceUpdateLEDs()
{
controller->SetLEDDirect(colors);
}
void RGBController_BloodyB820R::UpdateZoneLEDs(int zone)
void RGBController_BloodyB820R::DeviceUpdateZoneLEDs(int zone)
{
std::vector<RGBColor> colour;
@@ -239,7 +229,7 @@ void RGBController_BloodyB820R::UpdateZoneLEDs(int zone)
controller->SetLEDDirect(colour);
}
void RGBController_BloodyB820R::UpdateSingleLED(int led)
void RGBController_BloodyB820R::DeviceUpdateSingleLED(int led)
{
std::vector<RGBColor> colour;
colour.push_back(colors[led]);
@@ -22,11 +22,10 @@ public:
~RGBController_BloodyB820R();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -89,6 +89,8 @@ RGBController_BloodyMouse::RGBController_BloodyMouse(BloodyMouseController *cont
RGBController_BloodyMouse::~RGBController_BloodyMouse()
{
Shutdown();
delete controller;
}
@@ -134,7 +136,6 @@ void RGBController_BloodyMouse::SetupZones()
new_zone.leds_max = new_zone.leds_min;
new_zone.leds_count = new_zone.leds_min;
new_zone.type = bool_single ? ZONE_TYPE_SINGLE : ZONE_TYPE_LINEAR;
new_zone.matrix_map = NULL;
zones.push_back(new_zone);
for(unsigned int lp_idx = 0; lp_idx < zones[zone_idx].leds_count; lp_idx++)
@@ -160,13 +161,6 @@ void RGBController_BloodyMouse::SetupZones()
SetupColors();
}
void RGBController_BloodyMouse::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_BloodyMouse::DeviceUpdateLEDs()
{
std::vector<RGBColor> colour;
@@ -179,12 +173,12 @@ void RGBController_BloodyMouse::DeviceUpdateLEDs()
controller->SetLedsDirect(colour);
}
void RGBController_BloodyMouse::UpdateZoneLEDs(int /*zone*/)
void RGBController_BloodyMouse::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_BloodyMouse::UpdateSingleLED(int /*led*/)
void RGBController_BloodyMouse::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
@@ -30,11 +30,10 @@ public:
~RGBController_BloodyMouse();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -7,8 +7,8 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "Detector.h"
#include "AMBXController.h"
#include "DetectionManager.h"
#include "RGBController.h"
#include "RGBController_AMBX.h"
@@ -18,32 +18,18 @@
#include <libusb.h>
#endif
/******************************************************************************************\
* *
* DetectAMBXControllers *
* *
* Detect Philips amBX Gaming devices *
* *
\******************************************************************************************/
void DetectAMBXControllers()
DetectedControllers DetectAMBXControllers()
{
DetectedControllers detected_controllers;
libusb_context* ctx = NULL;
if(libusb_init(&ctx) < 0)
if(libusb_init(&ctx) >= 0)
{
return;
}
libusb_device** devs;
ssize_t num_devs = libusb_get_device_list(ctx, &devs);
if(num_devs <= 0)
if(num_devs > 0)
{
libusb_exit(ctx);
return;
}
for(ssize_t i = 0; i < num_devs; i++)
{
libusb_device* dev = devs[i];
@@ -67,7 +53,7 @@ void DetectAMBXControllers()
if(controller->IsInitialized())
{
RGBController_AMBX* rgb_controller = new RGBController_AMBX(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
else
{
@@ -78,6 +64,14 @@ void DetectAMBXControllers()
libusb_free_device_list(devs, 1);
libusb_exit(ctx);
}
else
{
libusb_exit(ctx);
}
}
return(detected_controllers);
}
REGISTER_DETECTOR("Philips amBX", DetectAMBXControllers);
@@ -44,6 +44,8 @@ RGBController_AMBX::RGBController_AMBX(AMBXController* controller_ptr)
RGBController_AMBX::~RGBController_AMBX()
{
Shutdown();
delete controller;
}
@@ -56,7 +58,6 @@ void RGBController_AMBX::SetupZones()
side_lights_zone.leds_min = 2;
side_lights_zone.leds_max = 2;
side_lights_zone.leds_count = 2;
side_lights_zone.matrix_map = NULL;
zones.push_back(side_lights_zone);
zone wallwasher_zone;
@@ -65,7 +66,6 @@ void RGBController_AMBX::SetupZones()
wallwasher_zone.leds_min = 3;
wallwasher_zone.leds_max = 3;
wallwasher_zone.leds_count = 3;
wallwasher_zone.matrix_map = NULL;
zones.push_back(wallwasher_zone);
// Set up LEDs
@@ -97,11 +97,6 @@ void RGBController_AMBX::SetupZones()
SetupColors();
}
void RGBController_AMBX::ResizeZone(int /*zone*/, int /*new_size*/)
{
// This device does not support resizing zones
}
void RGBController_AMBX::DeviceUpdateLEDs()
{
if(!controller->IsInitialized())
@@ -121,7 +116,7 @@ void RGBController_AMBX::DeviceUpdateLEDs()
controller->SetLEDColors(led_values, led_colors, static_cast<unsigned int>(leds.size()));
}
void RGBController_AMBX::UpdateZoneLEDs(int zone)
void RGBController_AMBX::DeviceUpdateZoneLEDs(int zone)
{
if(!controller->IsInitialized())
{
@@ -156,7 +151,7 @@ void RGBController_AMBX::UpdateZoneLEDs(int zone)
controller->SetLEDColors(led_values, led_colors, zone_size);
}
void RGBController_AMBX::UpdateSingleLED(int led)
void RGBController_AMBX::DeviceUpdateSingleLED(int led)
{
if(!controller->IsInitialized())
{
@@ -19,11 +19,10 @@ public:
~RGBController_AMBX();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -10,8 +10,8 @@
\*---------------------------------------------------------*/
#include <hidapi.h>
#include "Detector.h"
#include "AMDWraithPrismController.h"
#include "DetectionManager.h"
#include "RGBController_AMDWraithPrism.h"
/*---------------------------------------------------------*\
@@ -24,25 +24,22 @@
\*---------------------------------------------------------*/
#define AMD_WRAITH_PRISM_PID 0x0051
/******************************************************************************************\
* *
* DetectAMDWraithPrismControllers *
* *
* Tests the USB address to see if an AMD Wraith Prism controller exists there. *
* *
\******************************************************************************************/
void DetectAMDWraithPrismControllers(hid_device_info* info, const std::string&)
DetectedControllers DetectAMDWraithPrismControllers(hid_device_info* info, const std::string&)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AMDWraithPrismController* controller = new AMDWraithPrismController(dev, info->path);
RGBController_AMDWraithPrism* rgb_controller = new RGBController_AMDWraithPrism(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR_IP("AMD Wraith Prism", DetectAMDWraithPrismControllers, AMD_WRAITH_PRISM_VID, AMD_WRAITH_PRISM_PID, 1, 0xFF00);
@@ -132,6 +132,8 @@ RGBController_AMDWraithPrism::RGBController_AMDWraithPrism(AMDWraithPrismControl
RGBController_AMDWraithPrism::~RGBController_AMDWraithPrism()
{
Shutdown();
delete controller;
}
@@ -154,7 +156,6 @@ void RGBController_AMDWraithPrism::SetupZones()
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);
zone fan_zone;
@@ -163,7 +164,6 @@ void RGBController_AMDWraithPrism::SetupZones()
fan_zone.leds_min = 1;
fan_zone.leds_max = 1;
fan_zone.leds_count = 1;
fan_zone.matrix_map = NULL;
zones.push_back(fan_zone);
zone ring_zone;
@@ -172,7 +172,6 @@ void RGBController_AMDWraithPrism::SetupZones()
ring_zone.leds_min = 15;
ring_zone.leds_max = 15;
ring_zone.leds_count = 15;
ring_zone.matrix_map = NULL;
zones.push_back(ring_zone);
/*-----------------------------------------------------*\
@@ -205,13 +204,6 @@ void RGBController_AMDWraithPrism::SetupZones()
SetupColors();
}
void RGBController_AMDWraithPrism::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*-----------------------------------------------------*\
| This device does not support resizing zones |
\*-----------------------------------------------------*/
}
void RGBController_AMDWraithPrism::DeviceUpdateLEDs()
{
if(modes[active_mode].color_mode == MODE_COLORS_PER_LED)
@@ -271,12 +263,12 @@ void RGBController_AMDWraithPrism::DeviceUpdateLEDs()
}
}
void RGBController_AMDWraithPrism::UpdateZoneLEDs(int /*zone*/)
void RGBController_AMDWraithPrism::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AMDWraithPrism::UpdateSingleLED(int /*led*/)
void RGBController_AMDWraithPrism::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
@@ -22,11 +22,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -31,7 +31,7 @@ AOCKeyboardController::~AOCKeyboardController()
std::string AOCKeyboardController::GetDeviceLocation()
{
return("HID " + location);
return("HID: " + location);
}
std::string AOCKeyboardController::GetDeviceName()
@@ -9,36 +9,33 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "Detector.h"
#include "DetectionManager.h"
#include "AOCKeyboardController.h"
#include "RGBController_AOCKeyboard.h"
/*-----------------------------------------------------*\
/*---------------------------------------------------------*\
| AOC Keyboard IDs |
\*-----------------------------------------------------*/
\*---------------------------------------------------------*/
#define AOC_VID 0x3938
#define AOC_GK500_PID 0x1178
#define AOC_GK500_PID_2 0x1229
/******************************************************************************************\
* *
* DetectAOCKeyboardControllers *
* *
* Tests the USB address to see if an AOC Keyboard controller exists there. *
* *
\******************************************************************************************/
void DetectAOCKeyboardControllers(hid_device_info* info, const std::string& name)
DetectedControllers DetectAOCKeyboardControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AOCKeyboardController* controller = new AOCKeyboardController(dev, info->path, name);
RGBController_AOCKeyboard* rgb_controller = new RGBController_AOCKeyboard(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR_PU("AOC GK500", DetectAOCKeyboardControllers, AOC_VID, AOC_GK500_PID, 0xFF19, 0xFF19);
@@ -257,35 +257,25 @@ RGBController_AOCKeyboard::RGBController_AOCKeyboard(AOCKeyboardController* cont
RGBController_AOCKeyboard::~RGBController_AOCKeyboard()
{
Shutdown();
delete controller;
}
void RGBController_AOCKeyboard::SetupZones()
{
KeyboardLayoutManager new_kb(KEYBOARD_LAYOUT_ANSI_QWERTY, KEYBOARD_SIZE_FULL, aoc_keyboard_offset_values);
/*---------------------------------------------------------*\
| Create the keyboard zone usiung Keyboard Layout Manager |
\*---------------------------------------------------------*/
zone new_zone;
new_zone.name = ZONE_EN_KEYBOARD;
new_zone.type = ZONE_TYPE_MATRIX;
KeyboardLayoutManager new_kb(KEYBOARD_LAYOUT_ANSI_QWERTY, KEYBOARD_SIZE_FULL, aoc_keyboard_offset_values);
matrix_map_type * new_map = new matrix_map_type;
new_zone.matrix_map = new_map;
new_zone.matrix_map->height = new_kb.GetRowCount();
new_zone.matrix_map->width = new_kb.GetColumnCount();
new_zone.matrix_map->map = new unsigned int[new_map->height * new_map->width];
new_zone.leds_count = new_kb.GetKeyCount();
new_zone.leds_min = new_zone.leds_count;
new_zone.leds_max = new_zone.leds_count;
/*---------------------------------------------------------*\
| Matrix map still uses declared zone rows and columns |
| as the packet structure depends on the matrix map |
\*---------------------------------------------------------*/
new_kb.GetKeyMap(new_map->map, KEYBOARD_MAP_FILL_TYPE_COUNT, new_map->height, new_map->width);
new_zone.matrix_map = new_kb.GetKeyMap(KEYBOARD_MAP_FILL_TYPE_COUNT);
/*---------------------------------------------------------*\
| Create LEDs for the Matrix zone |
@@ -305,13 +295,6 @@ void RGBController_AOCKeyboard::SetupZones()
SetupColors();
}
void RGBController_AOCKeyboard::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AOCKeyboard::DeviceUpdateLEDs()
{
if(modes[active_mode].value == AOC_KEYBOARD_MODE_CUSTOM)
@@ -331,12 +314,12 @@ void RGBController_AOCKeyboard::DeviceUpdateLEDs()
}
}
void RGBController_AOCKeyboard::UpdateZoneLEDs(int /*zone*/)
void RGBController_AOCKeyboard::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AOCKeyboard::UpdateSingleLED(int /*led*/)
void RGBController_AOCKeyboard::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
@@ -22,11 +22,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -27,7 +27,7 @@ AOCMouseController::~AOCMouseController()
std::string AOCMouseController::GetDeviceLocation()
{
return("HID " + location);
return("HID: " + location);
}
std::string AOCMouseController::GetDeviceName()
@@ -9,35 +9,32 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "Detector.h"
#include "DetectionManager.h"
#include "AOCMouseController.h"
#include "RGBController_AOCMouse.h"
/*-----------------------------------------------------*\
/*---------------------------------------------------------*\
| AOC Mouse IDs |
\*-----------------------------------------------------*/
\*---------------------------------------------------------*/
#define AOC_VID 0x3938
#define AOC_GM500_PID 0x1179
/******************************************************************************************\
* *
* DetectAOCMouseControllers *
* *
* Tests the USB address to see if an AOC Mouse controller exists there. *
* *
\******************************************************************************************/
void DetectAOCMouseControllers(hid_device_info* info, const std::string& name)
DetectedControllers DetectAOCMouseControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AOCMouseController* controller = new AOCMouseController(dev, info->path, name);
RGBController_AOCMouse* rgb_controller = new RGBController_AOCMouse(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR_IPU("AOC GM500", DetectAOCMouseControllers, AOC_VID, AOC_GM500_PID, 1, 0xFF19, 0xFF19);
@@ -123,6 +123,8 @@ RGBController_AOCMouse::RGBController_AOCMouse(AOCMouseController* controller_pt
RGBController_AOCMouse::~RGBController_AOCMouse()
{
Shutdown();
delete controller;
}
@@ -134,7 +136,6 @@ void RGBController_AOCMouse::SetupZones()
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;
@@ -147,7 +148,6 @@ void RGBController_AOCMouse::SetupZones()
scroll_wheel_zone.leds_min = 1;
scroll_wheel_zone.leds_max = 1;
scroll_wheel_zone.leds_count = 1;
scroll_wheel_zone.matrix_map = NULL;
zones.push_back(scroll_wheel_zone);
led scroll_wheel_led;
@@ -157,24 +157,17 @@ void RGBController_AOCMouse::SetupZones()
SetupColors();
}
void RGBController_AOCMouse::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AOCMouse::DeviceUpdateLEDs()
{
DeviceUpdateMode();
}
void RGBController_AOCMouse::UpdateZoneLEDs(int /*zone*/)
void RGBController_AOCMouse::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AOCMouse::UpdateSingleLED(int /*led*/)
void RGBController_AOCMouse::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
@@ -22,11 +22,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -27,7 +27,7 @@ AOCMousematController::~AOCMousematController()
std::string AOCMousematController::GetDeviceLocation()
{
return("HID " + location);
return("HID: " + location);
}
std::string AOCMousematController::GetDeviceName()
@@ -9,35 +9,32 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "Detector.h"
#include "DetectionManager.h"
#include "AOCMousematController.h"
#include "RGBController_AOCMousemat.h"
/*-----------------------------------------------------*\
/*---------------------------------------------------------*\
| AOC Mousemat IDs |
\*-----------------------------------------------------*/
\*---------------------------------------------------------*/
#define AOC_VID 0x3938
#define AOC_AMM700_PID 0x1162
/******************************************************************************************\
* *
* DetectAOCMousematControllers *
* *
* Tests the USB address to see if an AOC Mousemat controller exists there. *
* *
\******************************************************************************************/
void DetectAOCMousematControllers(hid_device_info* info, const std::string& name)
DetectedControllers DetectAOCMousematControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AOCMousematController* controller = new AOCMousematController(dev, info->path, name);
RGBController_AOCMousemat* rgb_controller = new RGBController_AOCMousemat(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR_IPU("AOC AGON AMM700", DetectAOCMousematControllers, AOC_VID, AOC_AMM700_PID, 1, 0xFF19, 0xFF19);
@@ -113,6 +113,8 @@ RGBController_AOCMousemat::RGBController_AOCMousemat(AOCMousematController* cont
RGBController_AOCMousemat::~RGBController_AOCMousemat()
{
Shutdown();
delete controller;
}
@@ -124,7 +126,6 @@ void RGBController_AOCMousemat::SetupZones()
mousemat_zone.leds_min = 1;
mousemat_zone.leds_max = 1;
mousemat_zone.leds_count = 1;
mousemat_zone.matrix_map = NULL;
zones.push_back(mousemat_zone);
led mousemat_led;
@@ -134,24 +135,17 @@ void RGBController_AOCMousemat::SetupZones()
SetupColors();
}
void RGBController_AOCMousemat::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AOCMousemat::DeviceUpdateLEDs()
{
DeviceUpdateMode();
}
void RGBController_AOCMousemat::UpdateZoneLEDs(int /*zone*/)
void RGBController_AOCMousemat::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AOCMousemat::UpdateSingleLED(int /*led*/)
void RGBController_AOCMousemat::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
@@ -22,11 +22,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -11,12 +11,12 @@
\*---------------------------------------------------------*/
#include <cstring>
#include "RGBController.h"
#include "ResourceManager.h"
#include "SettingsManager.h"
#include "StringUtils.h"
#include "ASRockPolychromeUSBController.h"
#include "dmiinfo.h"
#include "ResourceManager.h"
#include "RGBController.h"
#include "SettingsManager.h"
#include "StringUtils.h"
#define POLYCHROME_USB_READ_ZONE_CONFIG 0x11
#define POLYCHROME_USB_READ_HEADER 0x14
@@ -191,7 +191,7 @@ void PolychromeUSBController::SetDeviceInfo()
WriteRGSwap(rgswap_final[0], rgswap_final[1], rgswap_final[2], rgswap_final[3], rgswap_final[4], rgswap_final[5], rgswap_final[6], rgswap_final[7]);
}
void PolychromeUSBController::ResizeZone(int zone, int new_size)
void PolychromeUSBController::SetZoneSize(int zone, int new_size)
{
unsigned char zonecfg[POLYCHROME_USB_ZONE_MAX_NUM];
@@ -135,7 +135,7 @@ public:
unsigned int configsize
);
void ResizeZone(int zone, int new_size);
void SetZoneSize(int zone, int new_size);
void SetRGSwap(bool reset);
protected:
@@ -11,8 +11,8 @@
\*---------------------------------------------------------*/
#include <hidapi.h>
#include "Detector.h"
#include "ASRockPolychromeUSBController.h"
#include "DetectionManager.h"
#include "RGBController_ASRockPolychromeUSB.h"
/*---------------------------------------------------------*\
@@ -26,16 +26,22 @@
#define ASROCK_MOTHERBOARD_1_PID 0x01A2
#define ASROCK_DESKMINI_ADDRESSABLE_LED_STRIP_PID 0x01A6
void DetectPolychromeUSBControllers(hid_device_info* info, const std::string& /*name*/)
DetectedControllers DetectPolychromeUSBControllers(hid_device_info* info, const std::string& /*name*/)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
PolychromeUSBController* controller = new PolychromeUSBController(dev, info->path);
RGBController_PolychromeUSB* rgb_controller = new RGBController_PolychromeUSB(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR("ASRock Polychrome USB", DetectPolychromeUSBControllers, ASROCK_VID, ASROCK_MOTHERBOARD_1_PID);
@@ -185,8 +185,25 @@ RGBController_PolychromeUSB::RGBController_PolychromeUSB(PolychromeUSBController
SetupZones();
}
RGBController_PolychromeUSB::~RGBController_PolychromeUSB()
{
Shutdown();
delete controller;
}
void RGBController_PolychromeUSB::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 |
\*-------------------------------------------------*/
@@ -197,28 +214,55 @@ void RGBController_PolychromeUSB::SetupZones()
/*-------------------------------------------------*\
| Set zones and leds |
\*-------------------------------------------------*/
for(unsigned int channel_idx = 0; channel_idx < zones.size(); channel_idx++)
for(std::size_t channel_idx = 0; channel_idx < zones.size(); channel_idx++)
{
PolychromeDeviceInfo device_info = controller->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].leds_min = 0;
zones[channel_idx].leds_max = ASROCK_ADDRESSABLE_MAX_LEDS;
if(first_run)
{
zones[channel_idx].flags = ZONE_FLAG_MANUALLY_CONFIGURABLE_SIZE
| ZONE_FLAG_MANUALLY_CONFIGURABLE_NAME
| ZONE_FLAG_MANUALLY_CONFIGURABLE_TYPE
| ZONE_FLAG_MANUALLY_CONFIGURABLE_MATRIX_MAP
| ZONE_FLAG_MANUALLY_CONFIGURABLE_SEGMENTS;
}
if(!(zones[channel_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_NAME))
{
zones[channel_idx].name = polychrome_USB_zone_names[device_info.zone_type];
}
if(!(zones[channel_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_SIZE))
{
zones[channel_idx].leds_count = device_info.num_leds;
}
if(!(zones[channel_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_TYPE))
{
zones[channel_idx].type = ZONE_TYPE_LINEAR;
}
if(!(zones[channel_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_MATRIX_MAP))
{
zones[channel_idx].matrix_map.width = 0;
zones[channel_idx].matrix_map.height = 0;
zones[channel_idx].matrix_map.map.resize(0);
}
}
else if(device_info.device_type==PolychromeDeviceType::FIXED)
{
zones[channel_idx].name = polychrome_USB_zone_names[device_info.zone_type];
zones[channel_idx].type = ZONE_TYPE_LINEAR;
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;
}
for(unsigned int led_ch_idx = 0; led_ch_idx < zones[channel_idx].leds_count; led_ch_idx++)
{
led new_led;
@@ -229,8 +273,6 @@ void RGBController_PolychromeUSB::SetupZones()
leds.push_back(new_led);
}
zones[channel_idx].matrix_map = NULL;
}
SetupColors();
@@ -273,10 +315,14 @@ void RGBController_PolychromeUSB::SetupZones()
}
}
void RGBController_PolychromeUSB::ResizeZone(int zone, int new_size)
void RGBController_PolychromeUSB::DeviceConfigureZone(int zone_idx)
{
zones[zone].leds_count = (unsigned char) new_size;
controller->ResizeZone(zones_info[zone].zone, new_size);
if((size_t)zone_idx < zones.size())
{
controller->SetZoneSize(zones_info[zone_idx].zone, zones[zone_idx].leds_count);
SetupZones();
}
}
void RGBController_PolychromeUSB::DeviceUpdateLEDs()
@@ -299,7 +345,7 @@ void RGBController_PolychromeUSB::DeviceUpdateLEDs()
}
}
void RGBController_PolychromeUSB::UpdateZoneLEDs(int zone)
void RGBController_PolychromeUSB::DeviceUpdateZoneLEDs(int zone)
{
unsigned char set_mode=zones_info[zone].mode;
@@ -311,7 +357,7 @@ void RGBController_PolychromeUSB::UpdateZoneLEDs(int zone)
controller->WriteZone(zone, set_mode, zones_info[zone].speed, zones[zone].colors[0], false);
}
void RGBController_PolychromeUSB::UpdateSingleLED(int led)
void RGBController_PolychromeUSB::DeviceUpdateSingleLED(int led)
{
unsigned int channel = leds[led].value;
unsigned char set_mode = zones_info[channel].mode;
@@ -19,14 +19,15 @@ class RGBController_PolychromeUSB : public RGBController
{
public:
RGBController_PolychromeUSB(PolychromeUSBController* controller_ptr);
~RGBController_PolychromeUSB();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceConfigureZone(int zone_idx);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -36,7 +36,7 @@ ASRockASRRGBSMBusController::~ASRockASRRGBSMBusController()
std::string ASRockASRRGBSMBusController::GetDeviceLocation()
{
std::string return_string(bus->device_name);
std::string return_string(bus->info.device_name);
char addr[5];
snprintf(addr, 5, "0x%02X", dev);
return_string.append(", address ");
@@ -113,6 +113,8 @@ RGBController_ASRockASRRGBSMBus::RGBController_ASRockASRRGBSMBus(ASRockASRRGBSMB
RGBController_ASRockASRRGBSMBus::~RGBController_ASRockASRRGBSMBus()
{
Shutdown();
delete controller;
}
@@ -135,7 +137,6 @@ void RGBController_ASRockASRRGBSMBus::SetupZones()
new_zone->leds_min = 1;
new_zone->leds_max = 1;
new_zone->leds_count = 1;
new_zone->matrix_map = NULL;
/*---------------------------------------------------------*\
| Push new zone to zones vector |
@@ -160,27 +161,20 @@ void RGBController_ASRockASRRGBSMBus::SetupZones()
SetupColors();
}
void RGBController_ASRockASRRGBSMBus::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_ASRockASRRGBSMBus::DeviceUpdateLEDs()
{
for(unsigned int led = 0; led < colors.size(); led++)
{
UpdateSingleLED(led);
DeviceUpdateSingleLED(led);
}
}
void RGBController_ASRockASRRGBSMBus::UpdateZoneLEDs(int /*zone*/)
void RGBController_ASRockASRRGBSMBus::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_ASRockASRRGBSMBus::UpdateSingleLED(int led)
void RGBController_ASRockASRRGBSMBus::DeviceUpdateSingleLED(int led)
{
unsigned char red = RGBGetRValue(colors[led]);
unsigned char grn = RGBGetGValue(colors[led]);
@@ -22,11 +22,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -36,7 +36,7 @@ ASRockPolychromeV1SMBusController::~ASRockPolychromeV1SMBusController()
std::string ASRockPolychromeV1SMBusController::GetDeviceLocation()
{
std::string return_string(bus->device_name);
std::string return_string(bus->info.device_name);
char addr[5];
snprintf(addr, 5, "0x%02X", dev);
return_string.append(", address ");
@@ -230,6 +230,8 @@ RGBController_ASRockPolychromeV1SMBus::RGBController_ASRockPolychromeV1SMBus(ASR
RGBController_ASRockPolychromeV1SMBus::~RGBController_ASRockPolychromeV1SMBus()
{
Shutdown();
delete controller;
}
@@ -267,7 +269,6 @@ void RGBController_ASRockPolychromeV1SMBus::SetupZones()
new_zone->leds_min = 1;
new_zone->leds_max = 1;
new_zone->leds_count = 1;
new_zone->matrix_map = NULL;
if(zone_idx == POLYCHROME_V1_ZONE_ADDRESSABLE)
{
@@ -297,10 +298,9 @@ void RGBController_ASRockPolychromeV1SMBus::SetupZones()
SetupColors();
}
void RGBController_ASRockPolychromeV1SMBus::ResizeZone(int zone, int new_size)
void RGBController_ASRockPolychromeV1SMBus::DeviceConfigureZone(int zone_idx)
{
LOG_TRACE("[%s] ResizeZone(%02X, %02X)", name.c_str(), zone, new_size);
controller-> SetARGBSize(new_size & 0xFF);
controller-> SetARGBSize(zones[zone_idx].leds_count & 0xFF);
zones[POLYCHROME_V1_ZONE_ADDRESSABLE].leds_count = 1;
}
@@ -309,19 +309,19 @@ void RGBController_ASRockPolychromeV1SMBus::DeviceUpdateLEDs()
LOG_TRACE("[%s] DeviceUpdateLEDs()", name.c_str());
for (uint8_t zone_idx = 0; zone_idx < zoneIndexMap.size(); zone_idx++)
{
UpdateSingleLED(zone_idx);
DeviceUpdateSingleLED(zone_idx);
}
}
void RGBController_ASRockPolychromeV1SMBus::UpdateZoneLEDs(int /*zone*/)
void RGBController_ASRockPolychromeV1SMBus::DeviceUpdateZoneLEDs(int /*zone*/)
{
LOG_TRACE("[%s] UpdateZoneLEDs()", name.c_str());
LOG_TRACE("[%s] DeviceUpdateZoneLEDs()", name.c_str());
DeviceUpdateLEDs();
}
void RGBController_ASRockPolychromeV1SMBus::UpdateSingleLED(int zone)
void RGBController_ASRockPolychromeV1SMBus::DeviceUpdateSingleLED(int zone)
{
LOG_TRACE("[%s] UpdateSingleLED(%02X)", name.c_str(), zone);
LOG_TRACE("[%s] DeviceUpdateSingleLED(%02X)", name.c_str(), zone);
uint8_t red = RGBGetRValue(colors[zone]);
uint8_t grn = RGBGetGValue(colors[zone]);
@@ -338,7 +338,7 @@ void RGBController_ASRockPolychromeV1SMBus::DeviceUpdateMode()
for(uint8_t zone_idx = 0; zone_idx < zoneIndexMap.size(); zone_idx++)
{
controller->SetMode(zoneIndexMap[zone_idx], modes[active_mode].value, modes[active_mode].speed);
UpdateSingleLED(zone_idx);
DeviceUpdateSingleLED(zone_idx);
}
}
else
@@ -23,11 +23,11 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceConfigureZone(int zone_idx);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -37,7 +37,7 @@ ASRockPolychromeV2SMBusController::~ASRockPolychromeV2SMBusController()
std::string ASRockPolychromeV2SMBusController::GetDeviceLocation()
{
std::string return_string(bus->device_name);
std::string return_string(bus->info.device_name);
char addr[5];
snprintf(addr, 5, "0x%02X", dev);
return_string.append(", address ");
@@ -185,6 +185,8 @@ RGBController_ASRockPolychromeV2SMBus::RGBController_ASRockPolychromeV2SMBus(ASR
RGBController_ASRockPolychromeV2SMBus::~RGBController_ASRockPolychromeV2SMBus()
{
Shutdown();
delete controller;
}
@@ -229,8 +231,6 @@ void RGBController_ASRockPolychromeV2SMBus::SetupZones()
new_zone->type = ZONE_TYPE_SINGLE;
}
new_zone->matrix_map = NULL;
/*---------------------------------------------------------*\
| Push new zone to zones vector |
\*---------------------------------------------------------*/
@@ -281,7 +281,7 @@ void RGBController_ASRockPolychromeV2SMBus::SetupZones()
SetupColors();
}
void RGBController_ASRockPolychromeV2SMBus::ResizeZone(int /*zone*/, int /*new_size*/)
void RGBController_ASRockPolychromeV2SMBus::DeviceConfigureZone(int /*zone_idx*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
@@ -292,16 +292,16 @@ void RGBController_ASRockPolychromeV2SMBus::DeviceUpdateLEDs()
{
for(unsigned int led = 0; led < colors.size(); led++)
{
UpdateSingleLED(led);
DeviceUpdateSingleLED(led);
}
}
void RGBController_ASRockPolychromeV2SMBus::UpdateZoneLEDs(int /*zone*/)
void RGBController_ASRockPolychromeV2SMBus::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_ASRockPolychromeV2SMBus::UpdateSingleLED(int led)
void RGBController_ASRockPolychromeV2SMBus::DeviceUpdateSingleLED(int led)
{
unsigned char red = RGBGetRValue(colors[led]);
unsigned char grn = RGBGetGValue(colors[led]);
@@ -23,11 +23,11 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceConfigureZone(int zone_idx);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -11,7 +11,7 @@
\*---------------------------------------------------------*/
#include <vector>
#include "Detector.h"
#include "DetectionManager.h"
#include "ASRockASRRGBSMBusController.h"
#include "ASRockPolychromeV1SMBusController.h"
#include "ASRockPolychromeV2SMBusController.h"
@@ -22,15 +22,6 @@
#include "i2c_smbus.h"
#include "pci_ids.h"
/*******************************************************************************************\
* *
* TestForPolychromeSMBusController *
* *
* Tests the given address to see if an ASRock RGB controller exists there. *
* First does a quick write to test for a response *
* *
\*******************************************************************************************/
#define ASROCK_DETECTOR_NAME "ASRock SMBus Detectector"
#define VENDOR_NAME "ASRock"
#define SMBUS_ADDRESS 0x6A
@@ -67,7 +58,7 @@ bool TestForPolychromeSMBusController(i2c_smbus_interface* bus, uint8_t address)
return(pass);
} /* TestForPolychromeController() */
}
uint16_t GetFirmwareVersion(i2c_smbus_interface* bus, uint8_t address)
{
@@ -94,64 +85,54 @@ uint16_t GetFirmwareVersion(i2c_smbus_interface* bus, uint8_t address)
}
}
/******************************************************************************************\
* *
* DetectPolychromeControllers *
* *
* Detect ASRock Polychrome RGB SMBus controllers on the enumerated I2C busses at *
* address 0x6A. *
* *
* bus - pointer to i2c_smbus_interface where Polychrome device is connected *
* dev - I2C address of Polychrome device *
* *
\******************************************************************************************/
void DetectASRockSMBusControllers(std::vector<i2c_smbus_interface*>& busses)
DetectedControllers DetectASRockSMBusControllers(std::vector<i2c_smbus_interface*>& buses)
{
for(unsigned int bus = 0; bus < busses.size(); bus++)
DetectedControllers detected_controllers;
for(unsigned int bus = 0; bus < buses.size(); bus++)
{
IF_MOBO_SMBUS(busses[bus]->pci_vendor, busses[bus]->pci_device)
IF_MOBO_SMBUS(buses[bus]->info.pci_vendor, buses[bus]->info.pci_device)
{
if(busses[bus]->pci_subsystem_vendor == ASROCK_SUB_VEN)
if(buses[bus]->info.pci_subsystem_vendor == ASROCK_SUB_VEN)
{
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))
if(TestForPolychromeSMBusController(buses[bus], SMBUS_ADDRESS))
{
LOG_DEBUG("[%s] Detected a device at address 0x%02X, testing for a known controller", ASROCK_DETECTOR_NAME, SMBUS_ADDRESS);
u16_to_u8 version;
version.u16 = GetFirmwareVersion(busses[bus], SMBUS_ADDRESS);
version.u16 = GetFirmwareVersion(buses[bus], SMBUS_ADDRESS);
switch (version.msb)
switch(version.msb)
{
case ASROCK_TYPE_ASRLED:
{
LOG_DEBUG("[%s] Found a ASR RGB LED Controller", ASROCK_DETECTOR_NAME);
ASRockASRRGBSMBusController* controller = new ASRockASRRGBSMBusController(busses[bus], SMBUS_ADDRESS);
ASRockASRRGBSMBusController* controller = new ASRockASRRGBSMBusController(buses[bus], SMBUS_ADDRESS);
controller-> fw_version = version.u16;
RGBController_ASRockASRRGBSMBus* rgb_controller = new RGBController_ASRockASRRGBSMBus(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
break;
case ASROCK_TYPE_POLYCHROME_V1:
{
LOG_DEBUG("[%s] Found a Polychrome v1 Controller", ASROCK_DETECTOR_NAME);
ASRockPolychromeV1SMBusController* controller = new ASRockPolychromeV1SMBusController(busses[bus], SMBUS_ADDRESS);
ASRockPolychromeV1SMBusController* controller = new ASRockPolychromeV1SMBusController(buses[bus], SMBUS_ADDRESS);
controller-> fw_version = version.u16;
RGBController_ASRockPolychromeV1SMBus* rgb_controller = new RGBController_ASRockPolychromeV1SMBus(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
break;
case ASROCK_TYPE_POLYCHROME_V2:
{
LOG_DEBUG("[%s] Found a Polychrome v2 Controller", ASROCK_DETECTOR_NAME);
ASRockPolychromeV2SMBusController* controller = new ASRockPolychromeV2SMBusController(busses[bus], SMBUS_ADDRESS);
ASRockPolychromeV2SMBusController* controller = new ASRockPolychromeV2SMBusController(buses[bus], SMBUS_ADDRESS);
controller-> fw_version = version.u16;
RGBController_ASRockPolychromeV2SMBus* rgb_controller = new RGBController_ASRockPolychromeV2SMBus(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
break;
@@ -172,6 +153,7 @@ void DetectASRockSMBusControllers(std::vector<i2c_smbus_interface*>& busses)
}
}
} /* DetectSMBusPolychromeControllers() */
return(detected_controllers);
}
REGISTER_I2C_DETECTOR("ASRock Motherboard SMBus Controllers", DetectASRockSMBusControllers);
@@ -7,8 +7,8 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "Detector.h"
#include "AlienwareController.h"
#include "DetectionManager.h"
#include "RGBController_Alienware.h"
/*---------------------------------------------------------*\
@@ -22,17 +22,22 @@
#define ALIENWARE_G_SERIES_PID1 0x0550
#define ALIENWARE_G_SERIES_PID2 0x0551
void DetectAlienwareControllers(hid_device_info* info, const std::string& name)
DetectedControllers DetectAlienwareControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
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);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR("Dell G Series LED Controller", DetectAlienwareControllers, ALIENWARE_VID, ALIENWARE_G_SERIES_PID1);
@@ -125,6 +125,13 @@ RGBController_Alienware::RGBController_Alienware(AlienwareController* controller
controller->UpdateDim();
}
RGBController_Alienware::~RGBController_Alienware()
{
Shutdown();
delete controller;
}
void RGBController_Alienware::SetupZones()
{
/*-------------------------------------------------*\
@@ -141,7 +148,6 @@ void RGBController_Alienware::SetupZones()
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);
}
@@ -158,26 +164,19 @@ void RGBController_Alienware::SetupZones()
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*/)
void RGBController_Alienware::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_Alienware::UpdateSingleLED(int led)
void RGBController_Alienware::DeviceUpdateSingleLED(int led)
{
UpdateZoneLEDs(led);
DeviceUpdateZoneLEDs(led);
}
static bool modes_eq(const mode& mode1, const mode& mode2)
@@ -19,14 +19,13 @@ class RGBController_Alienware : public RGBController
{
public:
RGBController_Alienware(AlienwareController* controller_ptr);
~RGBController_Alienware();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -319,7 +319,7 @@ void AlienwareAW410KController::SetMode
SendCommit();
}
void AlienwareAW410KController::UpdateSingleLED
void AlienwareAW410KController::DeviceUpdateSingleLED
(
unsigned char led,
unsigned char red,
@@ -130,7 +130,7 @@ public:
unsigned char blue2
);
void UpdateSingleLED
void DeviceUpdateSingleLED
(
unsigned char led,
unsigned char red,
@@ -278,16 +278,7 @@ RGBController_AlienwareAW410K::RGBController_AlienwareAW410K(AlienwareAW410KCont
RGBController_AlienwareAW410K::~RGBController_AlienwareAW410K()
{
/*---------------------------------------------------------*\
| 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;
}
}
Shutdown();
delete controller;
}
@@ -310,14 +301,7 @@ void RGBController_AlienwareAW410K::SetupZones()
if(zone_types[zone_idx] == ZONE_TYPE_MATRIX)
{
new_zone.matrix_map = new matrix_map_type;
new_zone.matrix_map->height = 6;
new_zone.matrix_map->width = 24;
new_zone.matrix_map->map = (unsigned int *)&matrix_map;
}
else
{
new_zone.matrix_map = NULL;
new_zone.matrix_map.Set(6, 24, (unsigned int *)&matrix_map);
}
zones.push_back(new_zone);
@@ -336,13 +320,6 @@ void RGBController_AlienwareAW410K::SetupZones()
SetupColors();
}
void RGBController_AlienwareAW410K::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AlienwareAW410K::DeviceUpdateLEDs()
{
std::vector<SelectedButtons> frame_buf_keys;
@@ -374,21 +351,21 @@ void RGBController_AlienwareAW410K::DeviceUpdateLEDs()
std::copy(new_colors.begin(), new_colors.end(),current_colors.begin());
}
void RGBController_AlienwareAW410K::UpdateZoneLEDs(int zone)
void RGBController_AlienwareAW410K::DeviceUpdateZoneLEDs(int zone)
{
controller->SetDirect((unsigned char) zone, RGBGetRValue(zones[zone].colors[0]), RGBGetGValue(zones[zone].colors[0]), RGBGetBValue(zones[zone].colors[0]));
}
void RGBController_AlienwareAW410K::UpdateSingleLED(int led)
void RGBController_AlienwareAW410K::DeviceUpdateSingleLED(int led)
{
controller->UpdateSingleLED(leds[led].value, RGBGetRValue(colors[led]), RGBGetGValue(colors[led]), RGBGetBValue(colors[led]));
controller->DeviceUpdateSingleLED(leds[led].value, RGBGetRValue(colors[led]), RGBGetGValue(colors[led]), RGBGetBValue(colors[led]));
}
void RGBController_AlienwareAW410K::DeviceUpdateMode()
{
if(active_mode == 0xFFFF)
{
UpdateLEDs();
UpdateLEDsInternal();
return;
}
@@ -23,11 +23,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -318,7 +318,7 @@ void AlienwareAW510KController::SetMode
SendCommit();
}
void AlienwareAW510KController::UpdateSingleLED
void AlienwareAW510KController::DeviceUpdateSingleLED
(
unsigned char led,
unsigned char red,
@@ -132,7 +132,7 @@ public:
unsigned char blue2
);
void UpdateSingleLED
void DeviceUpdateSingleLED
(
unsigned char led,
unsigned char red,
@@ -277,16 +277,7 @@ RGBController_AlienwareAW510K::RGBController_AlienwareAW510K(AlienwareAW510KCont
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;
}
}
Shutdown();
delete controller;
}
@@ -309,14 +300,7 @@ void RGBController_AlienwareAW510K::SetupZones()
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;
new_zone.matrix_map.Set(7, 24, (unsigned int *)&matrix_map);
}
zones.push_back(new_zone);
@@ -335,13 +319,6 @@ void RGBController_AlienwareAW510K::SetupZones()
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;
@@ -395,21 +372,21 @@ void RGBController_AlienwareAW510K::DeviceUpdateLEDs()
std::copy(new_colors.begin(), new_colors.end(),current_colors.begin());
}
void RGBController_AlienwareAW510K::UpdateZoneLEDs(int zone)
void RGBController_AlienwareAW510K::DeviceUpdateZoneLEDs(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)
void RGBController_AlienwareAW510K::DeviceUpdateSingleLED(int led)
{
controller->UpdateSingleLED(leds[led].value, RGBGetRValue(colors[led]), RGBGetGValue(colors[led]), RGBGetBValue(colors[led]));
controller->DeviceUpdateSingleLED(leds[led].value, RGBGetRValue(colors[led]), RGBGetGValue(colors[led]), RGBGetBValue(colors[led]));
}
void RGBController_AlienwareAW510K::DeviceUpdateMode()
{
if(active_mode == 0xFFFF)
{
UpdateLEDs();
UpdateLEDsInternal();
return;
}
@@ -22,11 +22,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -8,55 +8,58 @@
\*---------------------------------------------------------*/
#include <hidapi.h>
#include "Detector.h"
#include "AlienwareAW510KController.h"
#include "DetectionManager.h"
#include "AlienwareAW410KController.h"
#include "RGBController_AlienwareAW510K.h"
#include "AlienwareAW510KController.h"
#include "RGBController_AlienwareAW410K.h"
#include "RGBController_AlienwareAW510K.h"
/*-----------------------------------------------------*\
/*---------------------------------------------------------*\
| Alienware vendor ID |
\*-----------------------------------------------------*/
\*---------------------------------------------------------*/
#define ALIENWARE_VID 0x04F2
/*-----------------------------------------------------*\
/*---------------------------------------------------------*\
| Keyboard product IDs |
\*-----------------------------------------------------*/
\*---------------------------------------------------------*/
#define ALIENWARE_AW510K_PID 0x1830
#define ALIENWARE_AW410K_PID 0x1968
/******************************************************************************************\
* *
* 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)
DetectedControllers DetectAlienwareAW510KControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if( dev )
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AlienwareAW510KController* controller = new AlienwareAW510KController(dev, info->path, name);
RGBController_AlienwareAW510K* rgb_controller = new RGBController_AlienwareAW510K(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAlienwareAW410KControllers(hid_device_info* info, const std::string& name)
DetectedControllers DetectAlienwareAW410KControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if( dev )
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AlienwareAW410KController* controller = new AlienwareAW410KController(dev, info->path, name);
RGBController_AlienwareAW410K* rgb_controller = new RGBController_AlienwareAW410K(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
}/* DetectAlienwareKeyboardControllers() */
return(detected_controllers);
}
REGISTER_HID_DETECTOR_IPU("Alienware AW510K", DetectAlienwareAW510KControllers, ALIENWARE_VID, ALIENWARE_AW510K_PID, 0x02, 0xFF00, 0x01);
REGISTER_HID_DETECTOR_IPU("Alienware AW410K", DetectAlienwareAW410KControllers, ALIENWARE_VID, ALIENWARE_AW410K_PID, 0x02, 0xFF00, 0x01);
@@ -9,12 +9,12 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "Detector.h"
#include <hidapi.h>
#include "AlienwareAW3423DWFController.h"
#include "AlienwareMonitorController.h"
#include "DetectionManager.h"
#include "RGBController_AlienwareAW3423DWF.h"
#include "RGBController_AlienwareMonitor.h"
#include <hidapi.h>
/*---------------------------------------------------------*\
| Alienware Vendor ID |
@@ -29,37 +29,40 @@
#define ALIENWARE_USAGE_PAGE 0xFFDA
#define ALIENWARE_USAGE 0x00DA
/******************************************************************************************\
* *
* AlienwareAW3423DWFControllerDetect *
* *
* Tests the USB address to see if an Alienware AW3423DWF exists there. *
* *
\******************************************************************************************/
void DetectAlienwareAW3423DWFControllers(hid_device_info* info, const std::string&)
DetectedControllers DetectAlienwareAW3423DWFControllers(hid_device_info* info, const std::string&)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AlienwareAW3423DWFController* controller = new AlienwareAW3423DWFController(dev, info->path);
RGBController_AlienwareAW3423DWF* rgb_controller = new RGBController_AlienwareAW3423DWF(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAlienwareMonitorControllers(hid_device_info* info, const std::string& name)
DetectedControllers DetectAlienwareMonitorControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AlienwareMonitorController* controller = new AlienwareMonitorController(dev, info->path, name);
RGBController_AlienwareMonitor* rgb_controller = new RGBController_AlienwareMonitor(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR("Alienware AW3423DWF", DetectAlienwareAW3423DWFControllers, ALIENWARE_VID, ALIENWARE_AW3423DWF_PID);
@@ -46,6 +46,8 @@ RGBController_AlienwareAW3423DWF::RGBController_AlienwareAW3423DWF(AlienwareAW34
RGBController_AlienwareAW3423DWF::~RGBController_AlienwareAW3423DWF()
{
Shutdown();
delete controller;
}
@@ -57,7 +59,6 @@ void RGBController_AlienwareAW3423DWF::SetupZones()
Logo.leds_min = 1;
Logo.leds_max = 1;
Logo.leds_count = 1;
Logo.matrix_map = NULL;
zones.push_back(Logo);
led Logo_LED;
@@ -71,7 +72,6 @@ void RGBController_AlienwareAW3423DWF::SetupZones()
Number.leds_min = 1;
Number.leds_max = 1;
Number.leds_count = 1;
Number.matrix_map = NULL;
zones.push_back(Number);
led Number_LED;
@@ -85,7 +85,6 @@ void RGBController_AlienwareAW3423DWF::SetupZones()
PowerButton.leds_min = 1;
PowerButton.leds_max = 1;
PowerButton.leds_count = 1;
PowerButton.matrix_map = NULL;
zones.push_back(PowerButton);
led PowerButton_LED;
@@ -96,10 +95,6 @@ void RGBController_AlienwareAW3423DWF::SetupZones()
SetupColors();
}
void RGBController_AlienwareAW3423DWF::ResizeZone(int /*zone*/, int /*new_size*/)
{
}
void RGBController_AlienwareAW3423DWF::DeviceUpdateLEDs()
{
/*-----------------------------------------------------*\
@@ -118,17 +113,17 @@ void RGBController_AlienwareAW3423DWF::DeviceUpdateLEDs()
{
for(unsigned int led_idx = 0; led_idx < leds.size(); led_idx++)
{
UpdateSingleLED(led_idx);
DeviceUpdateSingleLED(led_idx);
}
}
}
void RGBController_AlienwareAW3423DWF::UpdateZoneLEDs(int /*zone*/)
void RGBController_AlienwareAW3423DWF::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AlienwareAW3423DWF::UpdateSingleLED(int led)
void RGBController_AlienwareAW3423DWF::DeviceUpdateSingleLED(int led)
{
unsigned char red = RGBGetRValue(colors[led]);
unsigned char grn = RGBGetGValue(colors[led]);
@@ -21,11 +21,10 @@ public:
~RGBController_AlienwareAW3423DWF();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -46,6 +46,8 @@ RGBController_AlienwareMonitor::RGBController_AlienwareMonitor(AlienwareMonitorC
RGBController_AlienwareMonitor::~RGBController_AlienwareMonitor()
{
Shutdown();
delete controller;
}
@@ -57,7 +59,6 @@ void RGBController_AlienwareMonitor::SetupZones()
Logo.leds_min = 1;
Logo.leds_max = 1;
Logo.leds_count = 1;
Logo.matrix_map = NULL;
zones.push_back(Logo);
led Logo_LED;
@@ -71,7 +72,6 @@ void RGBController_AlienwareMonitor::SetupZones()
Number.leds_min = 1;
Number.leds_max = 1;
Number.leds_count = 1;
Number.matrix_map = NULL;
zones.push_back(Number);
led Number_LED;
@@ -85,7 +85,6 @@ void RGBController_AlienwareMonitor::SetupZones()
PowerButton.leds_min = 1;
PowerButton.leds_max = 1;
PowerButton.leds_count = 1;
PowerButton.matrix_map = NULL;
zones.push_back(PowerButton);
led PowerButton_LED;
@@ -96,11 +95,6 @@ void RGBController_AlienwareMonitor::SetupZones()
SetupColors();
}
void RGBController_AlienwareMonitor::ResizeZone(int /*zone*/, int /*new_size*/)
{
}
void RGBController_AlienwareMonitor::DeviceUpdateLEDs()
{
/*-----------------------------------------------------*\
@@ -119,17 +113,17 @@ void RGBController_AlienwareMonitor::DeviceUpdateLEDs()
{
for(unsigned int led_idx = 0; led_idx < leds.size(); led_idx++)
{
UpdateSingleLED(led_idx);
DeviceUpdateSingleLED(led_idx);
}
}
}
void RGBController_AlienwareMonitor::UpdateZoneLEDs(int /*zone*/)
void RGBController_AlienwareMonitor::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AlienwareMonitor::UpdateSingleLED(int led)
void RGBController_AlienwareMonitor::DeviceUpdateSingleLED(int led)
{
unsigned char red = RGBGetRValue(colors[led]);
unsigned char grn = RGBGetGValue(colors[led]);
@@ -21,11 +21,10 @@ RGBController_AlienwareMonitor(AlienwareMonitorController* controller_ptr);
~RGBController_AlienwareMonitor();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -9,10 +9,10 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "Detector.h"
#include "AnnePro2Controller.h"
#include "RGBController_AnnePro2.h"
#include <hidapi.h>
#include "AnnePro2Controller.h"
#include "DetectionManager.h"
#include "RGBController_AnnePro2.h"
/*---------------------------------------------------------*\
| Anne Pro 2 vendor IDs |
@@ -29,25 +29,22 @@
#define ANNE_PRO_2_PID_4 0xA293
#define ANNE_PRO_2_PID_5 0xA297
/******************************************************************************************\
* *
* DetectAnnePro2Controllers *
* *
* Tests the USB address to see if an Obins Lab AnnePro2 keyboard exists there. *
* *
\******************************************************************************************/
void DetectAnnePro2Controllers(hid_device_info* info, const std::string&)
DetectedControllers DetectAnnePro2Controllers(hid_device_info* info, const std::string&)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AnnePro2Controller* controller = new AnnePro2Controller(dev, info->path);
RGBController_AnnePro2* rgb_controller = new RGBController_AnnePro2(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR_I("Anne Pro 2", DetectAnnePro2Controllers, ANNE_PRO_2_VID_1, ANNE_PRO_2_PID_1, 1);
@@ -144,6 +144,8 @@ RGBController_AnnePro2::RGBController_AnnePro2(AnnePro2Controller* controller_pt
RGBController_AnnePro2::~RGBController_AnnePro2()
{
Shutdown();
delete controller;
}
@@ -164,14 +166,7 @@ void RGBController_AnnePro2::SetupZones()
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;
new_zone.matrix_map.Set(5, 14, (unsigned int *)&matrix_map);
}
zones.push_back(new_zone);
@@ -190,13 +185,6 @@ void RGBController_AnnePro2::SetupZones()
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;
@@ -228,12 +216,12 @@ void RGBController_AnnePro2::DeviceUpdateLEDs()
controller->SendDirect(frame_buf_length, frame_buf);
}
void RGBController_AnnePro2::UpdateZoneLEDs(int /*zone*/)
void RGBController_AnnePro2::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AnnePro2::UpdateSingleLED(int /*led*/)
void RGBController_AnnePro2::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
@@ -21,11 +21,10 @@ public:
~RGBController_AnnePro2();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -10,17 +10,20 @@
\*---------------------------------------------------------*/
#include <vector>
#include "Detector.h"
#include "ArcticController.h"
#include "RGBController_Arctic.h"
#include "DetectionManager.h"
#include "find_usb_serial_port.h"
#include "RGBController_Arctic.h"
#define CH341_VID 0x1A86
#define CH341_PID 0x7523
void DetectArcticControllers()
DetectedControllers DetectArcticControllers()
{
std::vector<std::string *> ports = find_usb_serial_port(CH341_VID, CH341_PID);
DetectedControllers detected_controllers;
std::vector<std::string *> ports;
ports = find_usb_serial_port(CH341_VID, CH341_PID);
for(unsigned int device = 0; device < ports.size(); device++)
{
@@ -29,7 +32,7 @@ void DetectArcticControllers()
if(controller->IsPresent())
{
RGBController_Arctic *rgb_controller = new RGBController_Arctic(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
else
{
@@ -38,6 +41,8 @@ void DetectArcticControllers()
delete ports[device];
}
return(detected_controllers);
}
REGISTER_DETECTOR("Arctic RGB controller", DetectArcticControllers);
@@ -55,6 +55,8 @@ RGBController_Arctic::RGBController_Arctic(ArcticController* controller_ptr)
RGBController_Arctic::~RGBController_Arctic()
{
Shutdown();
keepalive_thread_run = false;
keepalive_thread.join();
delete controller;
@@ -70,7 +72,6 @@ void RGBController_Arctic::SetupZones()
LedZone.leds_count = 1;
LedZone.leds_min = 1;
LedZone.leds_max = 1;
LedZone.matrix_map = nullptr;
led Led;
Led.name = LedZone.name + " LED";
@@ -83,13 +84,6 @@ void RGBController_Arctic::SetupZones()
SetupColors();
}
void RGBController_Arctic::ResizeZone(int /* zone */, int /* new_size */)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_Arctic::DeviceUpdateLEDs()
{
last_update_time = std::chrono::steady_clock::now();
@@ -97,12 +91,12 @@ void RGBController_Arctic::DeviceUpdateLEDs()
controller->SetChannels(colors);
}
void RGBController_Arctic::UpdateZoneLEDs(int /* zone */)
void RGBController_Arctic::DeviceUpdateZoneLEDs(int /* zone */)
{
DeviceUpdateLEDs();
}
void RGBController_Arctic::UpdateSingleLED(int /* led */)
void RGBController_Arctic::DeviceUpdateSingleLED(int /* led */)
{
DeviceUpdateLEDs();
}
@@ -123,7 +117,7 @@ void RGBController_Arctic::KeepaliveThreadFunction()
sleep_time = ARCTIC_KEEPALIVE_PERIOD - (std::chrono::steady_clock::now() - last_update_time);
if(sleep_time <= ARCTIC_SLEEP_THRESHOLD)
{
UpdateLEDs(); // Already protected thru a device update thread
UpdateLEDsInternal(); // Already protected thru a device update thread
std::this_thread::sleep_for(ARCTIC_KEEPALIVE_PERIOD);
}
else
@@ -25,11 +25,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -9,7 +9,7 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "Detector.h"
#include "DetectionManager.h"
#include "AresonController.h"
#include "RGBController_Areson.h"
@@ -28,17 +28,22 @@
#define REDRAGON_M914_PID 0xFA7B
#define REDRAGON_M914_WIRELESS_PID 0xFA7C
void DetectAresonControllers(hid_device_info* info, const std::string& name)
DetectedControllers DetectAresonControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AresonController* controller = new AresonController(dev, *info, name);
RGBController_Areson* rgb_controller = new RGBController_Areson(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR_IPU("ZET GAMING Edge Air Pro (Wireless)", DetectAresonControllers, ARESON_VID, ZET_GAMING_EDGE_AIR_PRO_WIRELESS_PID, 1, 0xFF02, 2);
@@ -125,6 +125,8 @@ RGBController_Areson::RGBController_Areson(AresonController* controller_ptr)
RGBController_Areson::~RGBController_Areson()
{
Shutdown();
delete controller;
}
@@ -137,7 +139,6 @@ void RGBController_Areson::SetupZones()
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);
@@ -150,24 +151,17 @@ void RGBController_Areson::SetupZones()
SetupColors();
}
void RGBController_Areson::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_Areson::DeviceUpdateLEDs()
{
DeviceUpdateMode();
}
void RGBController_Areson::UpdateZoneLEDs(int /*zone*/)
void RGBController_Areson::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateMode();
}
void RGBController_Areson::UpdateSingleLED(int /*led*/)
void RGBController_Areson::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateMode();
}
@@ -21,11 +21,10 @@ public:
~RGBController_Areson();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -45,6 +45,13 @@ RGBController_AuraCore::RGBController_AuraCore(AuraCoreController* controller_pt
SetupZones();
}
RGBController_AuraCore::~RGBController_AuraCore()
{
Shutdown();
delete controller;
}
void RGBController_AuraCore::SetupKeyboard()
{
name = "ASUS Aura Keyboard";
@@ -170,11 +177,6 @@ void RGBController_AuraCore::SetupGA15DH()
modes.push_back(Static);
}
RGBController_AuraCore::~RGBController_AuraCore()
{
delete controller;
}
void RGBController_AuraCore::SetupZones()
{
zone auraZone;
@@ -186,7 +188,6 @@ void RGBController_AuraCore::SetupZones()
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)
{
@@ -195,7 +196,6 @@ void RGBController_AuraCore::SetupZones()
auraZone.leds_min = 20;
auraZone.leds_max = 20;
auraZone.leds_count = 20;
auraZone.matrix_map = NULL;
}
else
{
@@ -215,19 +215,12 @@ void RGBController_AuraCore::SetupZones()
SetupColors();
}
void RGBController_AuraCore::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AuraCore::DeviceUpdateLEDs()
{
UpdateZoneLEDs(0);
DeviceUpdateZoneLEDs(0);
}
void RGBController_AuraCore::UpdateZoneLEDs(int /*zone*/)
void RGBController_AuraCore::DeviceUpdateZoneLEDs(int /*zone*/)
{
if(modes[active_mode].value == AURA_CORE_MODE_DIRECT)
{
@@ -256,16 +249,16 @@ void RGBController_AuraCore::UpdateZoneLEDs(int /*zone*/)
{
for(unsigned int led_idx = 0; led_idx < leds.size(); led_idx++)
{
UpdateSingleLED(led_idx);
DeviceUpdateSingleLED(led_idx);
}
}
else
{
UpdateSingleLED(0);
DeviceUpdateSingleLED(0);
}
}
void RGBController_AuraCore::UpdateSingleLED(int led)
void RGBController_AuraCore::DeviceUpdateSingleLED(int led)
{
unsigned char speed = 0xFF;
unsigned char red = 0;
@@ -24,11 +24,9 @@ public:
void SetupGA15DH();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -10,7 +10,7 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "Detector.h"
#include "DetectionManager.h"
#include "AsusAuraCoreController.h"
#include "RGBController.h"
#include "RGBController_AsusAuraCore.h"
@@ -19,45 +19,47 @@
#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& /*name*/)
DetectedControllers DetectAsusAuraCoreControllers(hid_device_info* info, const std::string& /*name*/)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AuraCoreController* controller = new AuraCoreController(dev, info->path);
RGBController_AuraCore* rgb_controller = new RGBController_AuraCore(controller);
if(rgb_controller->type != DEVICE_TYPE_UNKNOWN)
if(rgb_controller->GetDeviceType() != DEVICE_TYPE_UNKNOWN)
{
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
else
{
delete rgb_controller;
}
}
return(detected_controllers);
}
void DetectAsusAuraCoreLaptopControllers(hid_device_info* info, const std::string& /*name*/)
DetectedControllers DetectAsusAuraCoreLaptopControllers(hid_device_info* info, const std::string& /*name*/)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AsusAuraCoreLaptopController* controller = new AsusAuraCoreLaptopController(dev, info->path);
RGBController_AsusAuraCoreLaptop* rgb_controller = new RGBController_AsusAuraCoreLaptop(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
@@ -11,6 +11,7 @@
#include "AsusAuraCoreLaptopController.h"
#include "dmiinfo.h"
#include "ResourceManager.h"
#include "SettingsManager.h"
#include "StringUtils.h"
@@ -15,8 +15,8 @@
#include <vector>
#include <hidapi.h>
#include "LogManager.h"
#include "RGBController.h"
#include "ResourceManager.h"
#include "RGBController.h"
#include "RGBControllerKeyNames.h"
#include "AsusAuraCoreLaptopDevices.h"
@@ -263,11 +263,13 @@ RGBController_AsusAuraCoreLaptop::RGBController_AsusAuraCoreLaptop(AsusAuraCoreL
SetupZones();
SetMode(active_mode);
SetActiveMode(active_mode);
}
RGBController_AsusAuraCoreLaptop::~RGBController_AsusAuraCoreLaptop()
{
Shutdown();
delete controller;
}
@@ -339,18 +341,7 @@ void RGBController_AsusAuraCoreLaptop::SetupZones()
else
{
new_zone.type = ZONE_TYPE_MATRIX;
matrix_map_type * new_map = new matrix_map_type;
new_zone.matrix_map = new_map;
/*---------------------------------------------------------*\
| Trusting the layout handed to the KLM is correct use the |
| row & column counts to set the matrix height & width |
\*---------------------------------------------------------*/
new_map->height = new_kb.GetRowCount();
new_map->width = new_kb.GetColumnCount();
new_map->map = new unsigned int[new_map->height * new_map->width];
new_kb.GetKeyMap(new_map->map, KEYBOARD_MAP_FILL_TYPE_COUNT);
new_zone.matrix_map = new_kb.GetKeyMap(KEYBOARD_MAP_FILL_TYPE_COUNT);
}
/*---------------------------------------------------------*\
@@ -398,13 +389,6 @@ void RGBController_AsusAuraCoreLaptop::SetupZones()
}
}
void RGBController_AsusAuraCoreLaptop::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AsusAuraCoreLaptop::DeviceUpdateLEDs()
{
for(size_t i = 85; i < leds.size(); i++)
@@ -422,12 +406,12 @@ void RGBController_AsusAuraCoreLaptop::DeviceUpdateLEDs()
controller->SetLedsDirect(buffer_map);
}
void RGBController_AsusAuraCoreLaptop::UpdateZoneLEDs(int /*zone*/)
void RGBController_AsusAuraCoreLaptop::DeviceUpdateZoneLEDs(int /*zone*/)
{
controller->SetLedsDirect(buffer_map);
}
void RGBController_AsusAuraCoreLaptop::UpdateSingleLED(int /*led*/)
void RGBController_AsusAuraCoreLaptop::DeviceUpdateSingleLED(int /*led*/)
{
controller->SetLedsDirect(buffer_map);
}
@@ -23,11 +23,10 @@ public:
~RGBController_AsusAuraCoreLaptop();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -32,7 +32,7 @@ std::string AuraGPUController::GetDeviceName()
std::string AuraGPUController::GetDeviceLocation()
{
std::string return_string(bus->device_name);
std::string return_string(bus->info.device_name);
char addr[5];
snprintf(addr, 5, "0x%02X", dev);
return_string.append(", address ");
@@ -79,7 +79,7 @@ void AuraGPUController::AuraGPURegisterWrite(unsigned char reg, unsigned char va
bool AuraGPUController::SaveOnlyApplies()
{
switch (bus->pci_subsystem_device)
switch (bus->info.pci_subsystem_device)
{
case ASUS_VEGA64_STRIX:
return false;
@@ -9,7 +9,7 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "Detector.h"
#include "DetectionManager.h"
#include "AsusAuraGPUController.h"
#include "LogManager.h"
#include "RGBController_AsusAuraGPU.h"
@@ -19,17 +19,9 @@
#define ASUSGPU_CONTROLLER_NAME "ASUS Aura GPU"
/******************************************************************************************\
* *
* TestForAuraGPUController *
* *
* Tests the given address to see if an Aura GPU controller exists there. *
* *
\******************************************************************************************/
bool TestForAsusAuraGPUController(i2c_smbus_interface* bus, unsigned char address)
{
if(bus->pci_vendor == AMD_GPU_VEN && !is_amd_gpu_i2c_bus(bus))
if(bus->info.pci_vendor == AMD_GPU_VEN && !is_amd_gpu_i2c_bus(bus))
{
return false;
}
@@ -48,31 +40,26 @@ bool TestForAsusAuraGPUController(i2c_smbus_interface* bus, unsigned char addres
return(pass);
} /* TestForAuraGPUController() */
}
/******************************************************************************************\
* *
* DetectAuraGPUControllers *
* *
* Detect Aura GPU controllers on the enumerated I2C busses. *
* *
\******************************************************************************************/
void DetectAsusAuraGPUControllers(i2c_smbus_interface* bus, uint8_t i2c_addr, const std::string& name)
DetectedControllers DetectAsusAuraGPUControllers(i2c_smbus_interface* bus, uint8_t i2c_addr, const std::string& name)
{
DetectedControllers detected_controllers;
if(TestForAsusAuraGPUController(bus, i2c_addr))
{
AuraGPUController* controller = new AuraGPUController(bus, i2c_addr, name);
RGBController_AuraGPU* rgb_controller = new RGBController_AuraGPU(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
} /* DetectAsusAuraGPUControllers() */
/*-----------------------------------------*\
return(detected_controllers);
}
/*---------------------------------------------------------*\
| Nvidia GPUs |
\*-----------------------------------------*/
\*---------------------------------------------------------*/
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX GeForce GTX 1050 Gaming OC", DetectAsusAuraGPUControllers, NVIDIA_VEN, NVIDIA_GTX1050_DEV, ASUS_SUB_VEN, ASUS_GTX1050_STRIX_O2G_GAMING, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX GeForce GTX 1050 Ti Gaming", DetectAsusAuraGPUControllers, NVIDIA_VEN, NVIDIA_GTX1050TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1050TI_4G_GAMING, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX GeForce GTX 1050 Ti Gaming OC", DetectAsusAuraGPUControllers, NVIDIA_VEN, NVIDIA_GTX1050TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1050TI_O4G_GAMING, 0x29);
@@ -131,10 +118,9 @@ REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX GeForce RTX 2080 Ti A11G Gaming",
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX GeForce RTX 2080 Ti Gaming OC", DetectAsusAuraGPUControllers, NVIDIA_VEN, NVIDIA_RTX2080TI_A_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080TI_O11G_GAMING, 0x2A);
REGISTER_I2C_PCI_DETECTOR("ASUS TUF GeForce RTX 3060 Ti Gaming OC", DetectAsusAuraGPUControllers, NVIDIA_VEN, NVIDIA_RTX3060TI_LHR_DEV, ASUS_SUB_VEN, ASUS_TUF_RTX_3060TI_O8G_OC, 0x2A);
/*-----------------------------------------*\
/*---------------------------------------------------------*\
| AMD GPUs |
\*-----------------------------------------*/
\*---------------------------------------------------------*/
REGISTER_I2C_PCI_DETECTOR("ASUS AREZ STRIX Radeon RX Vega 56 Gaming OC", DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_VEGA10_DEV, ASUS_SUB_VEN, ASUS_AREZ_STRIX_VEGA56_08G_GAMING, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX Radeon Vega 64", DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_VEGA10_DEV, ASUS_SUB_VEN, ASUS_VEGA64_STRIX, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX Radeon RX 470 Gaming OC", DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX470_STRIX_O4G_GAMING, 0x29);
@@ -124,6 +124,8 @@ RGBController_AuraGPU::RGBController_AuraGPU(AuraGPUController * controller_ptr)
RGBController_AuraGPU::~RGBController_AuraGPU()
{
Shutdown();
delete controller;
}
@@ -138,7 +140,6 @@ void RGBController_AuraGPU::SetupZones()
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);
/*---------------------------------------------------------*\
@@ -160,13 +161,6 @@ void RGBController_AuraGPU::SetupZones()
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++)
@@ -177,18 +171,18 @@ void RGBController_AuraGPU::DeviceUpdateLEDs()
controller->SetLEDColors(red, grn, blu);
}
if (controller->SaveOnlyApplies() && GetMode() != 0)
if (controller->SaveOnlyApplies() && GetActiveMode() != 0)
{
controller->Save();
}
}
void RGBController_AuraGPU::UpdateZoneLEDs(int /*zone*/)
void RGBController_AuraGPU::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraGPU::UpdateSingleLED(int /*led*/)
void RGBController_AuraGPU::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
@@ -22,11 +22,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
void DeviceSaveMode();
@@ -112,6 +112,8 @@ RGBController_AuraHeadsetStand::RGBController_AuraHeadsetStand(AuraHeadsetStandC
RGBController_AuraHeadsetStand::~RGBController_AuraHeadsetStand()
{
Shutdown();
delete controller;
}
@@ -124,7 +126,6 @@ void RGBController_AuraHeadsetStand::SetupZones()
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);
@@ -144,7 +145,6 @@ void RGBController_AuraHeadsetStand::SetupZones()
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);
@@ -157,24 +157,17 @@ void RGBController_AuraHeadsetStand::SetupZones()
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*/)
void RGBController_AuraHeadsetStand::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraHeadsetStand::UpdateSingleLED(int /*led*/)
void RGBController_AuraHeadsetStand::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
@@ -32,11 +32,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
void DeviceSaveMode();
@@ -380,13 +380,7 @@ 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;
}
}
Shutdown();
delete controller;
}
@@ -407,7 +401,7 @@ void RGBController_AuraKeyboard::SetupZones()
\*-----------------------------------------------------*/
case SCOPE_LAYOUT:
led_names = default_led_names;
led_zones.push_back({ZONE_EN_KEYBOARD, ZONE_TYPE_MATRIX, 106, new matrix_map_type{6, 22, (unsigned int *)&scope_matrix_map}});
led_zones.push_back({ZONE_EN_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});
@@ -415,7 +409,7 @@ void RGBController_AuraKeyboard::SetupZones()
case SCOPE_RX_LAYOUT:
led_names = default_led_names;
led_zones.push_back({ZONE_EN_KEYBOARD, ZONE_TYPE_MATRIX, 106, new matrix_map_type{6, 22, (unsigned int *)&scope_matrix_map}});
led_zones.push_back({ZONE_EN_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, NULL});
led_names.insert(led_names.begin() + 7, {KEY_EN_LEFT_WINDOWS, 0x15});
@@ -425,7 +419,7 @@ void RGBController_AuraKeyboard::SetupZones()
case SCOPE_TKL_LAYOUT:
led_names = default_tkl_led_names;
led_zones.push_back({ZONE_EN_KEYBOARD, ZONE_TYPE_MATRIX, 86, new matrix_map_type{6, 18, (unsigned int *)&scope_tkl_matrix_map}});
led_zones.push_back({ZONE_EN_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, NULL});
led_zones.push_back({"Underglow", ZONE_TYPE_LINEAR, 26, NULL});
@@ -435,7 +429,7 @@ void RGBController_AuraKeyboard::SetupZones()
case FLARE_LAYOUT:
led_names = default_led_names;
led_zones.push_back({ZONE_EN_KEYBOARD, ZONE_TYPE_MATRIX, 106, new matrix_map_type{6, 22, (unsigned int *)&flare_matrix_map}});
led_zones.push_back({ZONE_EN_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, NULL});
led_zones.push_back({"Underglow", ZONE_TYPE_SINGLE, 2, NULL});
@@ -449,7 +443,7 @@ void RGBController_AuraKeyboard::SetupZones()
case FALCHION_LAYOUT:
led_names = default_65pct_led_names;
led_zones.push_back({ZONE_EN_KEYBOARD, ZONE_TYPE_MATRIX, 68, new matrix_map_type{5, 16, (unsigned int *)&falchion_matrix_map}});
led_zones.push_back({ZONE_EN_KEYBOARD, ZONE_TYPE_MATRIX, 68, new matrix_map_type(5, 16, (unsigned int *)&falchion_matrix_map)});
break;
}
@@ -463,13 +457,9 @@ void RGBController_AuraKeyboard::SetupZones()
new_zone.leds_max = led_zones[zone_idx].size;
new_zone.leds_count = led_zones[zone_idx].size;
if(led_zones[zone_idx].type == ZONE_TYPE_MATRIX)
if(led_zones[zone_idx].type == ZONE_TYPE_MATRIX && led_zones[zone_idx].matrix != NULL)
{
new_zone.matrix_map = led_zones[zone_idx].matrix;
}
else
{
new_zone.matrix_map = NULL;
new_zone.matrix_map = *led_zones[zone_idx].matrix;
}
zones.push_back(new_zone);
@@ -489,13 +479,6 @@ void RGBController_AuraKeyboard::SetupZones()
SetupColors();
}
void RGBController_AuraKeyboard::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AuraKeyboard::DeviceUpdateLEDs()
{
std::vector<unsigned char> frame_buf;
@@ -519,12 +502,12 @@ void RGBController_AuraKeyboard::DeviceUpdateLEDs()
controller->SendDirect((unsigned char)leds.size(), frame_buf.data());
}
void RGBController_AuraKeyboard::UpdateZoneLEDs(int /*zone*/)
void RGBController_AuraKeyboard::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraKeyboard::UpdateSingleLED(int /*led*/)
void RGBController_AuraKeyboard::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
@@ -45,11 +45,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -45,6 +45,8 @@ RGBController_AuraMonitor::RGBController_AuraMonitor(AuraMonitorController* cont
RGBController_AuraMonitor::~RGBController_AuraMonitor()
{
Shutdown();
delete controller;
}
@@ -57,7 +59,6 @@ void RGBController_AuraMonitor::SetupZones()
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);
@@ -73,13 +74,6 @@ void RGBController_AuraMonitor::SetupZones()
SetupColors();
}
void RGBController_AuraMonitor::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AuraMonitor::DeviceUpdateLEDs()
{
controller->BeginUpdate();
@@ -96,12 +90,12 @@ void RGBController_AuraMonitor::DeviceUpdateLEDs()
controller->ApplyChanges();
}
void RGBController_AuraMonitor::UpdateZoneLEDs(int /*zone*/)
void RGBController_AuraMonitor::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraMonitor::UpdateSingleLED(int led)
void RGBController_AuraMonitor::DeviceUpdateSingleLED(int led)
{
controller->BeginUpdate();
@@ -22,11 +22,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
void DeviceSaveMode();
@@ -185,6 +185,8 @@ RGBController_AuraMouse::RGBController_AuraMouse(AuraMouseController* controller
RGBController_AuraMouse::~RGBController_AuraMouse()
{
Shutdown();
delete controller;
}
@@ -199,7 +201,6 @@ void RGBController_AuraMouse::SetupZones()
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);
@@ -214,11 +215,6 @@ void RGBController_AuraMouse::SetupZones()
SetupColors();
}
void RGBController_AuraMouse::ResizeZone(int /*zone*/, int /*new_size*/)
{
}
void RGBController_AuraMouse::DeviceUpdateLEDs()
{
if(modes[active_mode].value == AURA_MOUSE_MODE_DIRECT)
@@ -229,17 +225,17 @@ void RGBController_AuraMouse::DeviceUpdateLEDs()
{
for(unsigned int zone_index = 0; zone_index < zones.size(); zone_index++)
{
UpdateSingleLED(zone_index);
DeviceUpdateSingleLED(zone_index);
}
}
}
void RGBController_AuraMouse::UpdateZoneLEDs(int /*zone*/)
void RGBController_AuraMouse::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraMouse::UpdateSingleLED(int led)
void RGBController_AuraMouse::DeviceUpdateSingleLED(int led)
{
if(modes[active_mode].value == AURA_MOUSE_MODE_DIRECT)
{
@@ -22,11 +22,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
void DeviceSaveMode();
@@ -116,6 +116,8 @@ RGBController_AsusROGSpatha::RGBController_AsusROGSpatha(AsusAuraMouseGen1Contro
RGBController_AsusROGSpatha::~RGBController_AsusROGSpatha()
{
Shutdown();
delete controller;
}
@@ -133,7 +135,6 @@ void RGBController_AsusROGSpatha::SetupZones()
spatha_zone.leds_min = 1;
spatha_zone.leds_max = 1;
spatha_zone.leds_count = 1;
spatha_zone.matrix_map = NULL;
zones.push_back(spatha_zone);
@@ -148,11 +149,6 @@ void RGBController_AsusROGSpatha::SetupZones()
SetupColors();
}
void RGBController_AsusROGSpatha::ResizeZone(int /*zone*/, int /*new_size*/)
{
}
void RGBController_AsusROGSpatha::DeviceUpdateLEDs()
{
if(modes[active_mode].value == ASUS_ROG_SPATHA_MODE_DIRECT)
@@ -161,13 +157,13 @@ void RGBController_AsusROGSpatha::DeviceUpdateLEDs()
}
else
{
UpdateSingleLED(0);
UpdateSingleLED(1);
UpdateSingleLED(2);
DeviceUpdateSingleLED(0);
DeviceUpdateSingleLED(1);
DeviceUpdateSingleLED(2);
}
}
void RGBController_AsusROGSpatha::UpdateZoneLEDs(int zone)
void RGBController_AsusROGSpatha::DeviceUpdateZoneLEDs(int zone)
{
if(modes[active_mode].value == ASUS_ROG_SPATHA_MODE_DIRECT)
{
@@ -175,11 +171,11 @@ void RGBController_AsusROGSpatha::UpdateZoneLEDs(int zone)
}
else
{
UpdateSingleLED(zone);
DeviceUpdateSingleLED(zone);
}
}
void RGBController_AsusROGSpatha::UpdateSingleLED(int led)
void RGBController_AsusROGSpatha::DeviceUpdateSingleLED(int led)
{
if(modes[active_mode].value == ASUS_ROG_SPATHA_MODE_DIRECT)
{
@@ -40,11 +40,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
void DeviceSaveMode();
@@ -79,6 +79,8 @@ RGBController_AsusROGStrixEvolve::RGBController_AsusROGStrixEvolve(AsusAuraMouse
RGBController_AsusROGStrixEvolve::~RGBController_AsusROGStrixEvolve()
{
Shutdown();
delete controller;
}
@@ -91,7 +93,6 @@ void RGBController_AsusROGStrixEvolve::SetupZones()
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);
@@ -105,22 +106,17 @@ void RGBController_AsusROGStrixEvolve::SetupZones()
SetupColors();
}
void RGBController_AsusROGStrixEvolve::ResizeZone(int /*zone*/, int /*new_size*/)
{
}
void RGBController_AsusROGStrixEvolve::DeviceUpdateLEDs()
{
UpdateSingleLED(0);
DeviceUpdateSingleLED(0);
}
void RGBController_AsusROGStrixEvolve::UpdateZoneLEDs(int zone)
void RGBController_AsusROGStrixEvolve::DeviceUpdateZoneLEDs(int zone)
{
UpdateSingleLED(zone);
DeviceUpdateSingleLED(zone);
}
void RGBController_AsusROGStrixEvolve::UpdateSingleLED(int /*led*/)
void RGBController_AsusROGStrixEvolve::DeviceUpdateSingleLED(int /*led*/)
{
controller->SendUpdate(0x1C, RGBGetRValue(colors[0]));
controller->SendUpdate(0x1D, RGBGetGValue(colors[0]));
@@ -37,11 +37,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
void DeviceSaveMode();
@@ -182,6 +182,8 @@ RGBController_AuraMousemat::RGBController_AuraMousemat(AuraMousematController* c
RGBController_AuraMousemat::~RGBController_AuraMousemat()
{
Shutdown();
delete controller;
}
@@ -194,7 +196,6 @@ void RGBController_AuraMousemat::SetupZones()
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);
@@ -210,24 +211,17 @@ void RGBController_AuraMousemat::SetupZones()
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*/)
void RGBController_AuraMousemat::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraMousemat::UpdateSingleLED(int /*led*/)
void RGBController_AuraMousemat::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
@@ -40,11 +40,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
void DeviceSaveMode();
@@ -128,6 +128,8 @@ RGBController_AsusAuraRyuoAIO::RGBController_AsusAuraRyuoAIO(AsusAuraRyuoAIOCont
RGBController_AsusAuraRyuoAIO::~RGBController_AsusAuraRyuoAIO()
{
Shutdown();
delete controller;
}
@@ -171,29 +173,22 @@ void RGBController_AsusAuraRyuoAIO::SetupZones()
SetupColors();
}
void RGBController_AsusAuraRyuoAIO::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AsusAuraRyuoAIO::DeviceUpdateLEDs()
{
for(unsigned int zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
UpdateZoneLEDs(zone_idx);
DeviceUpdateZoneLEDs(zone_idx);
}
}
void RGBController_AsusAuraRyuoAIO::UpdateZoneLEDs(int zone)
void RGBController_AsusAuraRyuoAIO::DeviceUpdateZoneLEDs(int zone)
{
controller->SetLedsDirect(zones[zone].colors, zones[zone].leds_count);
}
void RGBController_AsusAuraRyuoAIO::UpdateSingleLED(int led)
void RGBController_AsusAuraRyuoAIO::DeviceUpdateSingleLED(int led)
{
UpdateZoneLEDs(GetLED_Zone(led));
DeviceUpdateZoneLEDs(GetLED_Zone(led));
}
void RGBController_AsusAuraRyuoAIO::DeviceUpdateMode()
@@ -24,11 +24,10 @@ public:
~RGBController_AsusAuraRyuoAIO();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -410,6 +410,8 @@ RGBController_AuraTUFKeyboard::RGBController_AuraTUFKeyboard(AuraTUFKeyboardCont
RGBController_AuraTUFKeyboard::~RGBController_AuraTUFKeyboard()
{
Shutdown();
delete controller;
}
@@ -511,10 +513,7 @@ void RGBController_AuraTUFKeyboard::SetupZones()
keyboard_zone.leds_min = keyboard[layout].size;
keyboard_zone.leds_max = keyboard[layout].size;
keyboard_zone.leds_count = keyboard[layout].size;
keyboard_zone.matrix_map = new matrix_map_type;
keyboard_zone.matrix_map->height = keyboard[layout].rows;
keyboard_zone.matrix_map->width = keyboard[layout].cols;
keyboard_zone.matrix_map->map = keyboard[layout].matrix_map;
keyboard_zone.matrix_map.Set(keyboard[layout].rows, keyboard[layout].cols, keyboard[layout].matrix_map);
zones.push_back(keyboard_zone);
for(int led_id = 0; led_id < keyboard[layout].size; led_id++)
@@ -533,11 +532,6 @@ void RGBController_AuraTUFKeyboard::SetupZones()
DeviceUpdateMode();
}
void RGBController_AuraTUFKeyboard::ResizeZone(int /*zone*/, int /*new_size*/)
{
}
void RGBController_AuraTUFKeyboard::DeviceUpdateLEDs()
{
std::vector<led_color> led_color_list = {};
@@ -550,12 +544,12 @@ void RGBController_AuraTUFKeyboard::DeviceUpdateLEDs()
controller->UpdateLeds(led_color_list);
}
void RGBController_AuraTUFKeyboard::UpdateZoneLEDs(int /*zone*/)
void RGBController_AuraTUFKeyboard::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AuraTUFKeyboard::UpdateSingleLED(int led)
void RGBController_AuraTUFKeyboard::DeviceUpdateSingleLED(int led)
{
if(!controller->is_per_led_keyboard)
{
@@ -43,11 +43,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
void DeviceSaveMode();
@@ -119,6 +119,8 @@ RGBController_AuraUSB::RGBController_AuraUSB(AuraUSBController* controller_ptr)
RGBController_AuraUSB::~RGBController_AuraUSB()
{
Shutdown();
delete controller;
}
@@ -145,41 +147,68 @@ void RGBController_AuraUSB::SetupZones()
| Set zones and leds |
\*-------------------------------------------------*/
int addressableCounter = 1;
for (unsigned int channel_idx = 0; channel_idx < zones.size(); channel_idx++)
for(std::size_t 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].type = ZONE_TYPE_LINEAR;
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].flags = ZONE_FLAG_MANUALLY_CONFIGURABLE_SIZE
| ZONE_FLAG_MANUALLY_CONFIGURABLE_NAME
| ZONE_FLAG_MANUALLY_CONFIGURABLE_TYPE
| ZONE_FLAG_MANUALLY_CONFIGURABLE_MATRIX_MAP
| ZONE_FLAG_MANUALLY_CONFIGURABLE_SEGMENTS;
}
if(!(zones[channel_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_NAME))
{
zones[channel_idx].name = "Addressable RGB Header ";
zones[channel_idx].name.append(std::to_string(addressableCounter));
}
if(!(zones[channel_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_SIZE))
{
zones[channel_idx].leds_count = 0;
}
if(!(zones[channel_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_TYPE))
{
zones[channel_idx].type = ZONE_TYPE_LINEAR;
}
if(!(zones[channel_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_MATRIX_MAP))
{
zones[channel_idx].matrix_map.width = 0;
zones[channel_idx].matrix_map.height = 0;
zones[channel_idx].matrix_map.map.resize(0);
}
addressableCounter++;
}
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++)
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 ");
@@ -189,30 +218,22 @@ void RGBController_AuraUSB::SetupZones()
{
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)
void RGBController_AuraUSB::DeviceConfigureZone(int zone_idx)
{
if((size_t) zone >= zones.size())
if((size_t)zone_idx < 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();
}
}
@@ -229,7 +250,7 @@ void RGBController_AuraUSB::DeviceUpdateLEDs()
}
}
void RGBController_AuraUSB::UpdateZoneLEDs(int zone)
void RGBController_AuraUSB::DeviceUpdateZoneLEDs(int zone)
{
if(!initializedMode)
{
@@ -239,7 +260,7 @@ void RGBController_AuraUSB::UpdateZoneLEDs(int zone)
controller->SetChannelLEDs(zone, zones[zone].colors, zones[zone].leds_count);
}
void RGBController_AuraUSB::UpdateSingleLED(int led)
void RGBController_AuraUSB::DeviceUpdateSingleLED(int led)
{
if(!initializedMode)
{
@@ -24,11 +24,11 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceConfigureZone(int zone_idx);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
@@ -9,7 +9,7 @@
#include <stdexcept>
#include <hidapi.h>
#include "Detector.h"
#include "DetectionManager.h"
#include "AsusAuraAddressableController.h"
#include "AsusAuraHeadsetStandController.h"
#include "AsusAuraKeyboardController.h"
@@ -144,22 +144,30 @@ AuraKeyboardMappingLayoutType GetKeyboardMappingLayoutType(int pid)
}
}
void DetectAsusAuraUSBTerminal(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusAuraUSBTerminal(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AuraAddressableController* controller = new AuraAddressableController(dev, info->path, name);
RGBController_AuraUSB* rgb_controller = new RGBController_AuraUSB(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusAuraUSBAddressable(hid_device_info* info, const std::string& /*name*/)
DetectedControllers DetectAsusAuraUSBAddressable(hid_device_info* info, const std::string& /*name*/)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
@@ -167,13 +175,18 @@ void DetectAsusAuraUSBAddressable(hid_device_info* info, const std::string& /*na
AuraAddressableController* controller = new AuraAddressableController(dev, info->path, "ASUS " + dmi.getMainboard() + " Addressable");
RGBController_AuraUSB* rgb_controller = new RGBController_AuraUSB(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusAuraUSBMotherboards(hid_device_info* info, const std::string& /*name*/)
DetectedControllers DetectAsusAuraUSBMotherboards(hid_device_info* info, const std::string& /*name*/)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
@@ -183,7 +196,7 @@ void DetectAsusAuraUSBMotherboards(hid_device_info* info, const std::string& /*n
AuraMainboardController* controller = new AuraMainboardController(dev, info->path, "ASUS " + dmi.getMainboard());
RGBController_AuraMainboard* rgb_controller = new RGBController_AuraMainboard(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
catch(const std::runtime_error& ex)
{
@@ -191,11 +204,16 @@ void DetectAsusAuraUSBMotherboards(hid_device_info* info, const std::string& /*n
LOG_ERROR("[AsusAuraUSB] An error occured while reading the config table: %s", ex.what());
}
}
return(detected_controllers);
}
void DetectAsusAuraUSBKeyboards(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusAuraUSBKeyboards(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
@@ -203,13 +221,18 @@ void DetectAsusAuraUSBKeyboards(hid_device_info* info, const std::string& name)
AuraKeyboardMappingLayoutType layout = GetKeyboardMappingLayoutType(info->product_id);
RGBController_AuraKeyboard* rgb_controller = new RGBController_AuraKeyboard(controller, layout);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusAuraUSBMice(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusAuraUSBMice(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
@@ -217,125 +240,172 @@ void DetectAsusAuraUSBMice(hid_device_info* info, const std::string& name)
AuraMouseController* controller = new AuraMouseController(dev, info->path, pid, name);
RGBController_AuraMouse* rgb_controller = new RGBController_AuraMouse(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusAuraUSBMousemats(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusAuraUSBMousemats(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AuraMousematController* controller = new AuraMousematController(dev, info->path, name);
RGBController_AuraMousemat* rgb_controller = new RGBController_AuraMousemat(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusAuraUSBROGStrixLC(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusAuraUSBROGStrixLC(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AsusROGStrixLCController* controller = new AsusROGStrixLCController(dev, info->path, name);
RGBController_AsusROGStrixLC* rgb_controller = new RGBController_AsusROGStrixLC(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusAuraUSBRyuoAIO(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusAuraUSBRyuoAIO(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AsusAuraRyuoAIOController* controller = new AsusAuraRyuoAIOController(dev, info->path, name);
RGBController_AsusAuraRyuoAIO* rgb_controller = new RGBController_AsusAuraRyuoAIO(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusAuraUSBStrixEvolve(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusAuraUSBStrixEvolve(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AsusAuraMouseGen1Controller* controller = new AsusAuraMouseGen1Controller(dev, info->path, info->product_id, name);
RGBController_AsusROGStrixEvolve* rgb_controller = new RGBController_AsusROGStrixEvolve(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusAuraUSBSpatha(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusAuraUSBSpatha(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AsusAuraMouseGen1Controller* controller = new AsusAuraMouseGen1Controller(dev, info->path, info->product_id, name);
RGBController_AsusROGSpatha* rgb_controller = new RGBController_AsusROGSpatha(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusAuraUSBHeadsetStand(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusAuraUSBHeadsetStand(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AuraHeadsetStandController* controller = new AuraHeadsetStandController(dev, info->path, name);
RGBController_AuraHeadsetStand* rgb_controller = new RGBController_AuraHeadsetStand(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusAuraTUFUSBKeyboard(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusAuraTUFUSBKeyboard(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AuraTUFKeyboardController* controller = new AuraTUFKeyboardController(dev, info->path, info->product_id, info->release_number, name);
RGBController_AuraTUFKeyboard* rgb_controller = new RGBController_AuraTUFKeyboard(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusAuraUSBMonitor(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusAuraUSBMonitor(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AuraMonitorController* controller = new AuraMonitorController(dev, info->path, info->product_id, name);
RGBController_AuraMonitor* rgb_controller = new RGBController_AuraMonitor(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
void DetectAsusROGAlly(hid_device_info* info, const std::string& name)
DetectedControllers DetectAsusROGAlly(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
ROGAllyController* controller = new ROGAllyController(dev, info->path, name);
RGBController_AsusROGAlly* rgb_controller = new RGBController_AsusROGAlly(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
/*-----------------------------------------------------------------*\
@@ -117,6 +117,8 @@ RGBController_AsusROGAlly::RGBController_AsusROGAlly(ROGAllyController* controll
RGBController_AsusROGAlly::~RGBController_AsusROGAlly()
{
Shutdown();
delete controller;
}
@@ -129,7 +131,6 @@ void RGBController_AsusROGAlly::SetupZones()
left_stick_zone.leds_min = 2;
left_stick_zone.leds_max = 2;
left_stick_zone.leds_count = 2;
left_stick_zone.matrix_map = NULL;
zones.push_back(left_stick_zone);
@@ -149,7 +150,6 @@ void RGBController_AsusROGAlly::SetupZones()
right_stick_zone.leds_min = 2;
right_stick_zone.leds_max = 2;
right_stick_zone.leds_count = 2;
right_stick_zone.matrix_map = NULL;
zones.push_back(right_stick_zone);
@@ -165,13 +165,6 @@ void RGBController_AsusROGAlly::SetupZones()
SetupColors();
}
void RGBController_AsusROGAlly::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AsusROGAlly::DeviceUpdateLEDs()
{
if(modes[active_mode].value == ROG_ALLY_MODE_DIRECT)
@@ -180,12 +173,12 @@ void RGBController_AsusROGAlly::DeviceUpdateLEDs()
}
}
void RGBController_AsusROGAlly::UpdateZoneLEDs(int /*zone*/)
void RGBController_AsusROGAlly::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AsusROGAlly::UpdateSingleLED(int /*led*/)
void RGBController_AsusROGAlly::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
@@ -22,11 +22,9 @@ public:
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
void DeviceSaveMode();
@@ -129,6 +129,8 @@ RGBController_AsusROGStrixLC::RGBController_AsusROGStrixLC(AsusROGStrixLCControl
RGBController_AsusROGStrixLC::~RGBController_AsusROGStrixLC()
{
Shutdown();
delete controller;
}
@@ -172,29 +174,22 @@ void RGBController_AsusROGStrixLC::SetupZones()
SetupColors();
}
void RGBController_AsusROGStrixLC::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AsusROGStrixLC::DeviceUpdateLEDs()
{
for(unsigned int zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
UpdateZoneLEDs(zone_idx);
DeviceUpdateZoneLEDs(zone_idx);
}
}
void RGBController_AsusROGStrixLC::UpdateZoneLEDs(int zone)
void RGBController_AsusROGStrixLC::DeviceUpdateZoneLEDs(int zone)
{
controller->SetLedsDirect( zones[zone].colors, zones[zone].leds_count );
}
void RGBController_AsusROGStrixLC::UpdateSingleLED(int led)
void RGBController_AsusROGStrixLC::DeviceUpdateSingleLED(int led)
{
UpdateZoneLEDs(GetLED_Zone(led));
DeviceUpdateZoneLEDs(GetLED_Zone(led));
}
void RGBController_AsusROGStrixLC::DeviceUpdateMode()

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