Compare commits

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Author SHA1 Message Date
Adam Honse 003c3e0af1 Sanitize filenames from clients in NetworkServer 2026-07-31 19:01:25 -05:00
Adam Honse b5f46e3f1d OpenRGB version 0.9 2023-07-09 22:51:47 -05:00
Adam Honse 16efabcce6 Disable non-English/non-QWERTY layouts 2023-07-10 01:01:16 +00:00
Adam Honse fbeb2c1c45 Use LED ID and version string to determine if mode 14 is supported 2023-07-10 01:00:02 +00:00
Chris M 0295b9041f Updated GaiZongGai keyboard metadata
* Includes changes from `https://gitlab.com/OpenRGBDevelopers/OpenRGB-
Wiki/-/merge_requests/11/diffs`
2023-07-10 08:23:05 +10:00
Cooper Hall 9a04b66bec fixed warning in RGBController_ZotacV2GPU.cpp 2023-07-09 21:38:39 +00:00
Chris M 37295adf6e Updated Gigabyte SuperIO metadata
* Includes changes from https://gitlab.com/OpenRGBDevelopers/OpenRGB-
Wiki/-/merge_requests/14/diffs
2023-07-09 21:30:42 +00:00
Dmitry K 0c16108c89 Fixed a typo in translation (HUE Bridge) 2023-07-09 20:57:58 +00:00
Adam Honse 29b0816c9c Disable libusb wrapped HID devices on non-glibc Linux as it segfaults on musl at the moment (tested on postmarketOS) 2023-07-09 13:06:39 -05:00
TheRogueZeta f679081a2c Enable all modes for Polychrome v1 2023-07-09 17:25:02 +00:00
TheRogueZeta ad2dcdb585 Commit to enable mode 14 on some ENE DRAM firmware 2023-07-09 01:36:50 -07:00
Adam Honse 35aa66455c Only show one warning at a time on powerup 2023-07-09 00:58:05 -05:00
Adam Honse ff3dbdac4c Put ENE save to device behind a setting 2023-07-09 04:20:07 +00:00
Chris 0497941209 Adjusted code to remove warnings in libcmmk 2023-07-08 21:07:02 -05:00
Adam Honse cacfffd101 Fix metadata for Cryorig and NZXT Hue 1 controllers 2023-07-08 18:01:43 -05:00
Chris bc91bd2838 Corrected language label in Croatian translation 2023-07-08 17:47:53 +10:00
Adam Honse d6e5645bb9 Cleanup qt folder 2023-07-07 02:03:33 -05:00
Cooper Hall 1cfd60261e Fixed all the warnings I could 2023-07-06 23:39:19 +00:00
gogogogi 75fd43c131 Add Croatian translation 2023-07-06 21:28:41 +00:00
morg 3256bc3296 Replace all png icons with a custom font 2023-07-06 17:05:38 +00:00
Adam Honse b8f4b081a4 Fix more warnings 2023-07-05 23:27:32 -05:00
Adam Honse 25d7ea3e6a Fix warnings in OpenRGBHardwareIDsDialog.cpp 2023-07-05 23:08:58 -05:00
Dmitry K 817327586d Removed acpiwmi, updated TUF controller to be self-contained 2023-07-05 23:34:25 +00:00
k1-801 a7885bac57 Moved Asus TUF Linux controller to it's Windows counterpart 2023-07-05 21:21:13 +04:00
k1-801 2ffef5facf Updated the Device IDs dialog to use a tree 2023-07-04 22:37:20 +04:00
k1-801 50629dc4f9 Russian translation updated 2023-07-04 17:26:04 +00:00
Luiz Carlos 9c52bf84e7 Add support to Gainward RTX 3080 Phoenix 2023-07-03 19:09:17 +00:00
Adam Honse d5b31ff681 Cleanup RazerController transaction ID by adding transaction ID to device table rather than using a switch statement 2023-07-03 02:09:34 -05:00
Adam Honse 6c7f0dfdb8 Cleanup RazerController matrix type by adding matrix type to device table... 2023-07-03 01:23:11 +00:00
Adam Honse 8578f4b72f Fix color zones in JSAUX dock direct mode 2023-07-01 23:33:21 -05:00
thombo 1127b0a844 Support for MSI boards 7C82 and 7E01 added, per-LED mode for 7C92 enabled 2023-07-02 02:07:31 +00:00
Adam Honse c8a31fc587 Add Blackwidow Chroma and Blackwidow Chroma TE to matrix type switch/case 2023-07-01 21:02:44 -05:00
flora a4eff9ad70 Fixed persistant blue color for crucial ram 2023-07-01 05:17:00 +00:00
Cooper Hall a60a273893 Add Zotac 30 40 series gpus 2023-07-01 05:09:02 +00:00
Adam Honse ddef980db4 Initial commit for SRGBmods LED Controller V1 2023-06-30 22:04:43 -05:00
Chris M 36e8ab4c05 Initial commit for Razer Leviathan V2 X
+ Adding PID for the Leviathan V2 X
+ Registered detectors
+ Added metadata to RazerDevices.cpp
+ Added capabilities to RazerController.cpp
+ Resolves #3450
2023-07-01 09:52:49 +10:00
Adam Honse 24ca6d25d5 Add default to KLM layout enum and reorder switch statement 2023-06-30 18:12:06 -05:00
Adam Honse f6940640c6 Add default KLM layout (ANSI+ISO QWERTY) 2023-06-30 12:01:30 -05:00
slichtzzz 1d45ca42ce Update Russian translation 2023-06-30 13:38:20 +00:00
merafour merafour df7b15a0e6 Adding OKS KeyBoard support 2023-06-30 13:23:40 +00:00
Adam Honse dbcb7a8dab Looks like JSAUX controller needs extra report ID only on Windows, breaks on Linux, so add conditional compilation hack 2023-06-29 23:40:36 -05:00
Adam Honse b8ad896ca8 Fix JSAUX dock packet on Windows 2023-06-28 23:05:31 -05:00
Gizeta 6b9446c323 Add support for iGame GeForce RTX 4070 Ti Advanced OC-V 2023-06-28 16:32:59 +00:00
Cooper Hall cd27f1cf4a fixed RBGController_GaiZhongGai.cpp 2023-06-28 16:32:05 +00:00
Adam Honse f302a19969 Add support for NZXT F120 RGB Duo fan (120mm) in Hue 2 controller 2023-06-28 13:19:09 +00:00
Yanzgz d8b2e884b8 Add new device by GaiZhongGai 2023-06-28 02:50:24 +00:00
Chris M ab394190c8 Initial commit for Razer Ornata V3 Rev2
+ Adding PID for the Ornata V3 Rev2
+ Registered detectors
+ Added metadata to RazerDevices.cpp
+ Added capabilities to RazerController.cpp
+ Resolves #3427
2023-06-28 07:05:16 +10:00
诺诺 e55b9a1897 Add Nollie32 Lamp strip controller 2023-06-27 16:19:42 +00:00
Jack Greiner 571aa6c7ce Fix missing REGISTER_HID_DETECTOR_PU entries for Wooting Two ARM boards 2023-06-27 00:34:57 +00:00
Jack Greiner 7ef9051093 Fix naming scheme of Wooting Two 60HE (ARM) and Wooting Two HE (ARM) 2023-06-26 19:59:29 +00:00
Jack Greiner 20351158f3 Add support for Wooting Two HE (ARM) 2023-06-26 13:55:23 +00:00
Adam Honse 67dedaa2be Implement effect modes and clean up code 2023-06-26 04:16:29 +00:00
Adam Honse cc407379fc Initial support for ASUS ROG Ally 2023-06-26 04:16:29 +00:00
Shane Fagan 4f30868a3b Fixes Pulsefire Haste not being detected on Linux 2023-06-22 00:20:11 +00:00
TheRogueZeta 255d64d3d1 Initial commit for ASUS ROG STRIX RTX 3080 O12G EVA EDITION device ID 2023-06-21 17:14:43 +00:00
otoyori 4dcf2fe09f Update file HyperXMicrophoneControllerDetect.cpp 2023-06-21 13:07:30 +00:00
Chris M afb5885fd9 Corrected label for Asus Tuf 3060Ti 2023-06-21 00:34:43 +00:00
Chris M ca46e3a22f Fixed broken link to Resize.html help on website 2023-06-21 07:32:32 +10:00
Mola19 843f167b5f support for Asus TUF Gaming K5 2023-06-20 01:40:50 +02:00
Göktuğ Korkmaz 4cfa43d919 Initial commit for LianLi-UNI FAN-SL V2-v0.5 2023-06-19 16:40:17 +00:00
Ben Miller 1e47a1e51a Add support for ASUS TUF 4070 TI OC by adding AUMA0-E6K5-1107 ENE Version and fixes #3161 2023-06-18 05:27:55 +00:00
Adam Honse 4c805e719d Replace Reddit link with Lemmy link 2023-06-16 11:35:50 -05:00
TheRogueZeta ab8021d8f3 Initial commit for MSI RX6800 Gaming Z Trio v1 Device ID 2023-06-15 01:54:46 +00:00
TheRogueZeta dbda02f497 Initial commit for Gigabyte RTX 4080 16GB AERO OC Device ID 2023-06-14 13:57:00 -07:00
TheRogueZeta bd1bf0e3a9 Initial commit for NVIDIA RTX 2080 Super FE device ID 2023-06-13 15:29:11 -07:00
Adam Honse 0bf87bea38 Clean up RGBController mode handling 2023-06-11 00:35:06 -05:00
Perroboc d431f884c4 Added Controller for Epomaker TH80 Pro keyboard 2023-06-11 00:38:33 +00:00
Adam Honse c6a527b505 Rework packet sending to get it working in Linux 2023-06-10 23:43:55 +00:00
Adam Honse 67bc2053d0 Cleanup 2023-06-10 23:43:55 +00:00
Adam Honse f730f7eaae Attempt using HID detector without usage/usage page 2023-06-10 23:43:55 +00:00
Adam Honse 64c2243391 Use wrapped HID detector for Wushi (JSAUX) controller 2023-06-10 23:43:55 +00:00
Adam Honse 0cef992ae6 Code cleanup and add files to OpenRGB.pro 2023-06-10 23:43:55 +00:00
Adam Honse ccb85b981d Initial commit from JSAUX GitHub PR 2023-06-10 23:43:55 +00:00
Chris M 0c502332cb Added Metadata to Cherry Keyboard controller
* Fixes missing UDEV rules
* Removed redundant dummy UDEV declarations
2023-06-09 18:01:57 +10:00
Tm T 780b0365fb Add ROG STRIX RX570 8G 2023-06-09 04:05:02 +00:00
Flora Aubry 1c4c4bd010 Added more informations about i2c 2023-06-08 23:02:45 +00:00
Chris M 3d0582d7be Added Remove Row Opcode to the KLM
* Removed blank row from Sixty percent (Mini) keyboards
* Resolves #3404
2023-06-09 05:37:20 +10:00
morg 70ba6a2133 Add support for Wooting Two 60HE (ARM) 2023-06-05 18:19:05 +00:00
Geoffrey Mon 8d5d109eb8 LED view selection should have no effect if not in per-LED mode 2023-06-04 21:14:07 +00:00
Dan 4b7422e85c Fix newer PID of NZXT RGB & Fan Controller (200E) not being detected 2023-06-04 21:11:08 +00:00
Adam Honse 50f7fe4ca5 Detect if udev rules file is not present and present a warning dialog 2023-06-04 18:29:49 +00:00
rando onyx ccb8997764 Japanese lang file add 2023-06-04 16:50:40 +00:00
Adam Honse 5718de27c5 Add NZXT F140 Core RGB fan device type to Hue 2 controller 2023-06-03 21:48:52 -05:00
morg a7f3d536ab Add support for Lego Dimensions Toypad Base. Closes #3399 2023-06-03 19:08:18 +00:00
Lucas Mindêllo de Andrade ae11bb6a16 Support iGame GeForce RTX 3060 Advanced OC 12G L-V 2023-06-03 19:04:47 +00:00
Mola19 052c11e964 fix for Asus ROG Balteus mode saving 2023-06-03 04:10:33 +02:00
TheRogueZeta 57d50fcfae Initial commit for EVGA RTX 2070S XC Gaming device ID 2023-06-02 10:41:36 -07:00
Mola19 69db40e334 fix for Asus ROG Balteus version fetching 2023-06-02 17:55:02 +02:00
Lucas Mindêllo de Andrade 27eebd2829 Add support for iGame GeForce RTX 3080 Ti Advanced OC-V 2023-06-02 14:21:32 +00:00
Geoffrey Mon 7b286352da Read I2C bus location more reliably 2023-05-30 22:08:44 -05:00
vlack cf46be2b1e Add Palit 4070Ti GameRock 2023-05-29 23:45:00 +00:00
Chris M c40dff9ced Added missing layout to Razer Ornata V2
* Added KLM layout based on razer_huntsman_common_layout
* Added metadata for Ornata Chroma V2
2023-05-30 08:04:04 +10:00
thombo cd3385b9c6 MSI board 7D03 added, configuration of 7C37 adjusted 2023-05-29 19:45:55 +00:00
Lucas Mindêllo de Andrade 8202ef19e6 Colorful turing color modes support 2023-05-29 19:44:50 +00:00
umbreon222 90db870161 Fix IP overwritten with name for lifx & kasa settings pages 2023-05-29 11:28:17 -05:00
Andrey 8c6cba5117 AMD ADL Multiple bus support 2023-05-28 23:23:55 +00:00
Lucas Mindêllo de Andrade 10047188ad Add support for Colorful Turing RTX 2070 2023-05-28 22:26:50 +00:00
Chris M a67cf011d5 Added Dummy devices for Logitech receivers for UDEV script
* Added Dummy detector for Logitech Lightspeed receiver
* Added Dummy detector for Logitech Powerplay receiver
* Resolves #3375
2023-05-28 10:47:32 +10:00
TheRogueZeta 894b533cb7 Initial commit for NVIDIA RTX 2080 Founders GPU 2023-05-27 23:46:44 +00:00
TheRogueZeta cf415a1d17 Initial commit for EVGA RTX 3090 Ti FTW3 Black Gaming device ID 2023-05-27 22:27:14 +00:00
Jason Russo 7d37f58407 Add support for Capellix Elite Pump lighting control 2023-05-27 22:25:12 +00:00
Adam Honse eb08ceb1e7 Remove mbedtls/certs.h from EntertainmentMode.cpp to work around mbedtls removing that file in newer releases, which have made their way to Arch Linux.
* It looks like upstream has made this change, but it has not made it into a release, so just doing this single patch for now
2023-05-25 22:02:36 -05:00
Justinas Stankevičius 4f945075e9 Add Palit RTX 4070 2023-05-25 19:25:17 +00:00
Andrey 70bd52bade Add support for ASUS ROG 6900xt LC TOP version 2023-05-25 13:55:18 +00:00
Andrey 009cd53038 Fix crash due to double ROGStrixLC closing 2023-05-25 12:54:51 +00:00
Adam Honse d0ccd9f746 Re-enable resizing of mode-specific colors 2023-05-24 22:41:20 -05:00
J Sek e2dbe292a1 Add support for ROG Strix Scope RX TKL Wireless Deluxe 2023-05-24 21:51:03 +00:00
k1-801 a94468971f Added PCI ID for Gigabyte RTX3060 TI OC 8GB 2023-05-24 21:48:31 +04:00
Adam Honse 4ec0795a50 Fix warnings in KeyboardLayoutManager.cpp 2023-05-24 11:40:37 -05:00
Adam Honse 577747e9fd Fix warnings in RGBController_PalitGPU.cpp 2023-05-24 11:34:39 -05:00
Adam Honse 77eb0fc005 Fix warnings in RGBContoller_NZXTHue1.cpp 2023-05-24 11:32:55 -05:00
Adam Honse 4cf28306e5 Fix warning in RGBController_DMX.cpp 2023-05-24 11:30:31 -05:00
Adam Honse 9d988444b1 Fix warning in OpenRGBDMXSettingsEntry.cpp 2023-05-24 11:28:35 -05:00
Adam Honse e2cbac0e83 Fix warnings in OpenRGBZoneResizeDialog.cpp 2023-05-24 11:26:41 -05:00
Takeshi Sone 41aa29ca01 Add ID of Palit 4090 GameRock 2023-05-23 12:51:27 +09:00
Adam Honse 4bc8b7139c Fix warning in OpenRGBHardwareIDsDialog.cpp 2023-05-19 00:51:30 -05:00
Kabir Kwatra 4da24e6209 Add PNY XLR8 3070 LHR 2023-05-17 22:46:16 +00:00
Chris M 1f00cae5a1 Moved Razer Tartarus V2 to KLM layout 2023-05-17 06:57:24 +10:00
Adam Honse c05114d031 Update wiki links in README to point to standalone wiki repo 2023-05-15 11:26:29 -05:00
Adam Honse 35aad36e1b Add Direct mode support for AOC GK500 keyboard 2023-05-14 14:33:33 -05:00
Chris M c23b98db8a Moved Razer Blackwidow V3 Pro to KLM layout 2023-05-14 07:29:15 +10:00
Adam Honse d1b4a97cb1 Initial commit for AOC GK500 keyboard 2023-05-13 18:45:07 +00:00
Frédéric Mercille 164f53dc91 Fix for Issue 3359 - Log which devices fail to load properly, but still update... 2023-05-13 16:09:39 +00:00
Chris M 4b8cf36494 Moved Razer Ornata Chroma to KLM layout 2023-05-14 01:22:39 +10:00
Chris M 5dbb5775a3 Moved Razer Blackwidow 2019 to KLM layout 2023-05-13 14:28:34 +10:00
Chris M c220dd04b9 Moved Razer Huntsman V2 TKL to KLM layout 2023-05-13 09:38:24 +10:00
Chris M 193bd90523 Moved Razer Huntsman V2 to KLM layout 2023-05-12 18:11:54 +10:00
Adam Honse 5ad75b5d95 Add effect modes to AOC Mouse controller 2023-05-11 23:31:26 -05:00
Adam Honse 2680a24bbd Implement AOC Mousemat effect modes 2023-05-11 20:35:31 -05:00
Chris M 5366238496 Moved Razer Huntsman Tournament Edition to KLM layout 2023-05-11 22:30:35 +00:00
Chris M d3b3663ef5 Fix type issue in Resize Dialog
* Converted Int to String when appending to name
2023-05-12 07:57:26 +10:00
Adam Honse 6c91ce6a1b Automatically name new segment and disallow empty name 2023-05-11 11:44:57 -05:00
morg 918e7ebfcb Add support for iGame GeForce RTX 3060 Ti Advanced OC-V 2023-05-11 10:09:24 +02:00
Adam Honse ce8c4c9b81 Add SendPacket function and mode enums to AOC Mousemat controller 2023-05-10 23:33:06 -05:00
Chris M b7575bfe0b Moved Razer Huntsman Mini to KLM layout 2023-05-11 12:50:25 +10:00
Chris M ec668c4af1 Moved Razer Huntsman to KLM layout 2023-05-11 11:26:16 +10:00
Chris M 6d2cea5bbb Moved Razer Huntsman V2 Analog to KLM layout 2023-05-11 08:38:48 +10:00
Chris M 9130849a9f Moved Razer Cynosa Chroma V2 to KLM layout 2023-05-10 18:36:08 +10:00
Adam Honse ced97855ca Initial commit for NZXT H5 Elite RGB Controller (3 RGB, 0 Fan) 2023-05-09 19:21:01 -05:00
Adam Honse 9866f61032 Segment size verification in Edit dialog
* Remove Start field and calculate it from previous segment sizes
  * Add segment size slider
  * Gray out OK when segment configuration is invalid
2023-05-09 23:58:55 +00:00
Chris M e07b044e40 Moved Razer Cynosa Chroma to KLM layout 2023-05-10 07:20:37 +10:00
Chris M e29e9d52dd Moved Razer Blackwidow Elite to KLM layout
* Resolves #3347
2023-05-09 15:35:27 +10:00
splintergu f0363cb817 Add MSI PRO H610M-G DDR4 (Mystic Light) 2023-05-08 13:23:19 -03:00
Adam Honse 87aadafa4d Add timeout to Philips Wiz packet receive so that it doesn't hang on rescan 2023-05-08 00:03:07 -05:00
Adam Honse 5a0d0d65aa Add use cool and warm white check boxes to Philips Wiz settings 2023-05-07 21:46:15 -05:00
Adam Honse 89f13d9ec9 Add options to use warm and cool white channels on Philips Wiz 2023-05-07 20:37:25 -05:00
MisterPDJ 2c7baaa1ef Add Scene modes to Phillips Wiz
Commit amended by Adam Honse <[email protected]> to merge with direct mode brightness control functionality.
2023-05-07 20:18:45 -05:00
Kevin Kuriakose 02b962b2b5 Add brightness control for Philips Wiz Lights 2023-05-07 23:23:56 +00:00
Codename-Antares 85f5cf7140 Fix Names
Renamed as PID were seen in the X63 RGB aswell and guess for the X73 RGB is the same too
2023-05-07 17:25:46 -05:00
Adam Honse 94ca670cbe Add a UI option to disable expanding keys in the device view 2023-05-06 22:51:47 -05:00
morg a9fca21544 Add settings to corsair dominator detection to control the RAM model 2023-05-07 00:22:06 +00:00
flora d286edc596 Support for TUF RTX 4080 2023-05-06 14:07:53 -05:00
Chris M f5241385e2 Correcting the Matrix Type for Razer Cynosa Lite
* Fixes #2196
2023-05-06 22:00:47 +10:00
Adam Honse 81aaf67ff0 Initial DMX (Enttec OpenDMX USB) support and serial_port improvements
* Support DMX RGB lights (PAR lights, spotlights, wash lights, etc)
  * Configurable R/G/B channel and Brightness/Master channel
  * Add configurable parameters to serial_port needed to configure a port for DMX
  * Add DMX tab to settings
2023-05-06 08:06:19 +00:00
vlack 8b4b2bacbc Initial support for RedSquare Keyrox TKL Classic keyboard 2023-05-06 07:55:25 +00:00
Adam Honse 01d5430781 Fix Razer Blade Stealth 2016 KLM layout 2023-05-05 23:49:46 -05:00
Chris M f1c5600a95 Moved Razer Blade Stealth 2016 to KLM layout 2023-05-06 10:56:14 +10:00
Chris M 0b16d28979 Moved Razer Blade 17 Pro 2021 to KLM layout 2023-05-06 10:20:48 +10:00
morg ceb48e783e Adding EVGA Z20, uk layout 2023-05-05 23:40:32 +02:00
morg c0b069f330 Add support for ASUS TUF RTX 3070Ti O8G V2 GAMING alternate version 2023-05-05 07:04:31 +00:00
Adam Honse b136060587 Initial support for NZXT RGB & Fan Controller PID 0x2011 2023-05-03 22:51:26 +00:00
Cooper Hall 246aa6d1a5 added multiple legion 5 and legion 5 pro models 2023-05-03 13:17:00 +00:00
Chris M 62651d20a4 Removed deprecated Huntsman Elite Keymap 2023-05-03 07:02:28 +10:00
Adam Honse 0ce0dd91ec Clean up unused channel field in NZXTHue1Controller, as it only supports one channel 2023-05-01 20:22:19 -05:00
Adam Honse 9d97c8ca74 Fix signedness warning in KasaSmartController 2023-05-01 20:14:36 -05:00
Adam Honse 0fae77b898 Fix potentially used uninitialized warning in RGBController_HyperXAlloyOrigins60and65 2023-05-01 20:12:15 -05:00
Adam Honse 20f317e95d Fix unused variable warning in RGBController_HyperXAlloyOrigins60and65 2023-05-01 20:11:00 -05:00
Adam Honse 8308c21bef Fix snprintf size check warning in AsusCerberusKeyboardController 2023-05-01 20:09:13 -05:00
Adam Honse 834b0cc9c9 Clean up test code in AOCMouseController and fix unused variable warning 2023-05-01 20:06:35 -05:00
Adam Honse 1190c2875d Use snprintf instead of sprintf in OpenRGBHardwareIDsDialog, update buffer size to account for sprintf check warning 2023-05-01 20:05:20 -05:00
Adam Honse 0033845eae Fix warnings in OpenRGBDevicePage.cpp 2023-05-01 20:01:48 -05:00
Adam Honse 79e80021b1 Remove convertQPath functions as it's only used once, fixes a warning for the unused version 2023-05-01 19:59:12 -05:00
morg 86f048fc72 Add support for Gainward GeForce RTX3070 Ti Phoenix 2023-05-01 13:22:56 +02:00
Amit Blonder eafb70c880 Added support for MSI 4070 Gaming X - for #3315 2023-05-01 05:45:46 +00:00
Adam Honse 538acf1c26 Add trackpad LEDs to Razer Blade Pro 2017 KLM layout 2023-04-30 16:48:07 -05:00
morg 89ef2b1a8b Add HyperX Pulsfire Haste new variant 2023-04-30 18:20:24 +00:00
Chris 5abc13e7df Amending CLI code for "All Devices" to resolve #2918
* Adding `current_devices->size() == 0` check to Mode / Color / Brightness argument parsers to catch "All Devices" case from CLI
2023-04-30 18:15:37 +00:00
morg a0024b8f04 Make sure to correctly set random_colors (uninitialized bool) 2023-04-30 16:14:43 +00:00
skraus-dev 99a18d6e6f CherryKeyboardController: Add rest of known devices supported in Cherry Utility 2023-04-28 09:32:33 +02:00
Adam Honse 8d19e44d96 All Blade Pro 2017 keys working in KLM layout (no touchpad lights yet) 2023-04-27 23:57:59 -05:00
Chris M e22a870107 Moved Razer Blade Pro 2017 to KLM layout 2023-04-28 04:06:21 +00:00
Adam Honse 02d5c1c1fd Fix Razer Blade 14 2021 KLM layout 2023-04-27 19:12:29 -05:00
Chris M 83147ab9cc Adding Layout detection to CorsairPeripheralV2Controller
* Adding GetKeyboardLayout() to CorsairPeripheralV2Controller
* Adjusting GetAddress() to return unsigned integers
* Swapping CorsairPeripheralV2Devices to generate dynamic keyboard
layouts
* Resolves #3151
2023-04-25 09:49:50 +10:00
morg 167acdf769 Add HyperX Pulsefire Mat RGB Mouse Pad XL support 2023-04-24 08:56:06 +02:00
Chris M 9672cc88e4 Added Razer Blackwidow V3 KLM layout 2023-04-24 12:43:42 +10:00
Adam Honse 9abf121514 Initial commit for AOC Mouse 2023-04-22 20:14:12 +00:00
skraus-dev d8cfd9b0ef CherryKeyboardController: Add devices (MX BOARD 3.0S FL RGB, G80-3000 TKL RGB, MX BOARD 10.0N FL RGB) 2023-04-22 20:04:40 +00:00
Brandon Waldman 7ef62e519c Add Support for Nvidia RTX4080 Founders Edition Sub-Device 1794 2023-04-22 16:45:33 +00:00
skraus-dev 36736aeda0 Support for Cherry Keyboard (G80-3000N RGB TKL) 2023-04-22 16:45:13 +00:00
Mola19 a050d8e311 support for Asus TUF Gaming K1 to resolve #2242 2023-04-21 23:31:40 +00:00
Adam Honse d4c158cc9c Enable effects modes for Cryorig H7 Quad Lumi 2023-04-19 20:24:51 -07:00
Adam Honse d4ce474016 Initial implementation of NZXT Hue 1 (Smart Device V1) 2023-04-20 01:27:31 +00:00
Copysiper d2b8ff79a4 Initial commit for iGame GeForce RTX 3070 Ti Ultra W OC LHR closes #3313 2023-04-19 15:00:47 +00:00
Adam Honse e8163043c5 Initial commit for AOC AGON AMM700 mousemat 2023-04-18 04:40:50 +00:00
morg 490e4df1fc Add support for Gigabyte RTX4070Ti Gaming OC 12G 2023-04-17 21:56:38 +00:00
Christopher Wróbel b0dfa868ec Add Gainward RTX 3090 Pheonix 2023-04-17 22:25:22 +02:00
Michael Kersey b84a93d17c Add support for MSI 0x7D75 (B650 Tomahawk Wi-Fi) 2023-04-17 04:57:06 +00:00
Sherif Madkor ae56af9130 [New Device] Redragon K552-2 new revision (VS11K28A, VID_320F&PID_5000). 2023-04-17 01:26:49 +00:00
Adam Honse f907b2f5c5 Initial Cryorig H7 Quad Lumi control 2023-04-16 20:19:52 +00:00
Chris M 2e764ccfb0 Moved Razer Blade 14 2022 to KLM layout 2023-04-15 13:29:07 +10:00
Chris M 6aaba9fd2d Moved Razer Blade 14 2021 to KLM layout
* Changed name of the razer_book_2020_layout as the mapping appears to
be common.
2023-04-15 10:18:23 +10:00
Chris M 87971cce6f Moved Razer Book 13 2020 to KLM layout 2023-04-14 17:12:52 +10:00
Chris M 5f43ec303a Moved Blackwidow V3 Mini to KLM layout 2023-04-13 20:45:42 +10:00
Chris M db5d9b4e4d Moved Blackwidow V3 TKL to KLM layout 2023-04-13 10:05:48 +10:00
Manatsawin Hanmongkolchai f2132d79c5 Add Palit 1080 controller 2023-04-12 17:50:15 +00:00
Chris M d012173ebe Moved Blackwidow Chroma TE to KLM layout 2023-04-12 07:32:52 +10:00
Chris M e4b9b8fce4 Moved Blackwidow Chroma to KLM layout 2023-04-12 07:06:46 +10:00
Chris M c7b417ed8a Moved Blackwidow Chroma V2 to KLM layout 2023-04-10 13:53:09 +10:00
Chris 2cc0c7aad8 Added more detail to Windows compiling instructions
* Detailed the QT version to avoid confusion when building prior to a shift to QT6
* Added links to download MSVC, QT and Git
* Added a link to wiki article to provide more detailed instructions
2023-04-07 21:42:15 +10:00
killerart 6f7c981d60 added MSI Pro B650-P WiFi 7D78 support 2023-04-06 19:20:38 +03:00
Chris M 2cfa73518b Fixed vector index crash in KeyboardLayoutManager
* Fixed crash when swapping key into the beginning of keymap vector
2023-04-05 23:17:19 +10:00
Chris M 1981e70830 Standardise KeyboardLayoutManager interface with Opcodes
* Added new KEYBOARD_OPCODE enum
* Updated `keyboard_leds` to include new opcode
* Reorganised InsertKeys and SwapKeys to work with struct change
* Changed public interfaces to only accept opcode changes
* Updated static keyboard declarations to align with new structures
2023-04-04 09:21:32 +10:00
Chris cb447e3391 Correcting Razer Blackwidow X TE layout
* As per the changes in 2bfa6e87 to the KLM changes made in 9cd278c3 need to be reverted to correct the layout.
2023-04-03 12:55:52 +10:00
Adam Honse 0572238e95 Remove empty_basemap as vector already starts empty 2023-04-02 20:07:16 -05:00
Adam Honse 28333888fd Move KeyboardLayoutManager to a new folder 2023-04-02 19:48:26 -05:00
Adam Honse 52e95355e2 Clean up RemoveKeys and add a remove list to the key overlay 2023-04-02 18:57:08 -05:00
Adam Honse 2bfa6e8797 Change Keyboard Layout Manager to build base map from zones, use a bitmask to define sizes as combinations of zones
* Rework Insert and Swap functions to use index-based loops
 * Insert shifts all keys after the inserted key in the same row to the right
 * Swap inserts without shifting when swapping a key into an unused space
2023-04-02 19:07:59 +00:00
Adam Honse 5f8ff8a659 Replace razer_empty_layout with NULL pointer for unimplemented KLM layouts 2023-04-02 14:05:06 -05:00
Adam Honse 16e76e8170 Fix crashing in RazerController when a keyboard has more than one matrix zone 2023-04-02 03:42:46 -05:00
flora 240414e12b More logic on RGB HSV tab order 2023-04-01 19:51:58 +02:00
Chris 3445991be6 Following on from commit 2e02f1d7 to remove redundant QM files
* Excluding .qm files from Windows build as they are inbuilt as of a7adfe251
2023-04-01 22:13:13 +11:00
Mola19 034a991076 fix detection and modes for Asus ROG Strix Impact 2023-03-31 03:12:05 +00:00
Adam Honse 0adfa7ea87 Restrict segment editing to all linear zones only if device is an LED Strip type 2023-03-29 21:43:37 -05:00
Manuel Dewald c3c7c1fcbf Add detection for AORUS Waterforce 2080 super 2023-03-30 02:38:01 +00:00
flora 8ea1b815e5 Support for MSI GeForce RTX 3050 Gaming X 8G 2023-03-30 02:35:40 +00:00
flora 5f87458405 Support for ASUS ROG STRIX RTX 4090 24G GAMING 2023-03-29 15:54:41 +02:00
Mola19 83a53482a5 optimize Asus ROG Claymore version fetching (resolves #3258) 2023-03-28 13:00:35 +00:00
Igor.Lovchikov 830bf69c7f added PALIT_RTX3090_GAMEROCK_SUB_DEV 2023-03-26 09:37:27 +03:00
Adam Honse cf46a8e724 Update Patriot Viper Steel detection and clean up Patriot Viper detection 2023-03-25 15:28:29 -05:00
Chris 71a3d5355b Minor changes to the KeyboardLayoutManager to cleanse log messaging
* Added KLM_CLASS_NAME for log entry consistency
* Small edits to messaging for clarity & replayability
* Minor style corrections
2023-03-25 08:04:30 +11:00
Chris 56bad3f2b4 Moved Razer Blade 15 2022 to KLM layout
* Removed `blade_15_2022_keymap`
* Added `razer_blade_15_2022_layout`
* Adjusted metadata to reflect change.
2023-03-25 00:04:47 +11:00
Sentox6 40fa598b2e Add basic support for Gigabyte RTX 4080 Eagle OC 2023-03-24 02:09:16 +00:00
Chris M 6091dc799c Initial commit for Razer Deathstalker V2 Pro to resolve #3106
+ Added PID entry for the Deathstalker V2 Pro
+ Registered detectors
+ Added metadata to RazerDevices.cpp
+ Added capabilities to RazerController.cpp
2023-03-23 12:00:10 +11:00
Mola19 76e7bd4d1f support for Mouse Dock of the Asus ROG Spatha X 2023-03-23 00:02:27 +01:00
morg 9f8e33b1e8 Adds segments support for all LINEAR zones 2023-03-22 14:39:27 +01:00
Derek Huber 2ab7013faa HyperX Alloy Origins 65 Initial Commit 2023-03-20 13:37:27 +00:00
Flora Aubry 73bba038c5 Added table of content to the readme 2023-03-20 09:08:55 +00:00
Алексей Куликов 6d9e4a86a2 Add support RGB keyboard for Lenovo IdeaPad3 2023-03-19 20:44:36 +00:00
Kamil c0102422e1 Add link to OpenRGB Ambient Pluigin 2023-03-19 18:05:46 +00:00
Chris 406c83b300 Initial commit for Razer Deathstalker V2
+ Added PID for the Deathstalker V2
+ Registered detectors
+ Added layout and metadata to RazerDevices.cpp
+ Added capabilities to RazerController.cpp
+ Resolves #2904
2023-03-19 18:04:43 +00:00
Chris 9cd278c3e3 Correcting new Razer keyboard layouts
* Fixed Blackwidow X Chroma TE layout
* Fixed Blackwidow layout
2023-03-19 20:08:20 +11:00
サイバーキラー 1f9948b4c2 added detection for signal aboutToQuit when system shutdown 2023-03-18 22:44:13 +00:00
morg a4130ba373 UI: add a dialog that shows local hardware IDs 2023-03-17 15:59:52 +00:00
Chris 482e8bf3e2 Small fix to correct the PU values for Glorious Model O Wireless
* Correcting both the HID_USAGE and non HID_USAGE values per @Kasper24's log
* Adding small fix for potential memeory leak
2023-03-18 00:11:02 +11:00
Bit Whisperer 6b6f75612f Add Support for Razer Blade 15" 2022 (Part 2) 2023-03-17 13:08:52 +00:00
Bit Whisperer 2925af9f31 Add Support for Razer Blade 15" 2022 2023-03-17 00:10:47 +00:00
Mola19 7ca21eafff support for Asus ROG Spatha X and fixes for Asus Chakram X 2023-03-16 00:05:54 +01:00
Chris M 27442475b1 Initial commit for Razer Blade Late 2021 Advanced to resolve #2520
+ Adding PID for the Blade 15 Late 2021 Advanced
+ Registered detectors
+ Added metadata to RazerDevices.cpp
+ Added capabilities to RazerController.cpp
2023-03-16 08:44:13 +11:00
Chris M 35453db3e0 Initial commit for the Keyboard Layout Manager
* Implements physical size:
    Full Size
    TKL
    60%
* Implements regional layouts
    ANSI QWERTY
    ISO QWERTY
    QWERTZ
    AZERTY
    JIS
* Customisible layouts produced by adding and swapping custom keys
allowing for keyboard SKU variants
* Exportable matrix maps filled by map count, matrix index or filled by an
array of values.
* Matrix map size adjustable to fixed width and height to support size
specific protocols. e.g. Razer
* Debug keyboards are customisable by adding the following values into
the JSON list.
    "Layout" (int),
    "Size" (int),
    "Linear" (bool),
    "Underglow" (bool),
    "Insert" array[ { "Zone" (int), "Row" (int), "Col" (int), "Val"
(int), "Name": (string) } ],
    "Swap" array[ { "Zone" (int), "Row" (int), "Col" (int), "Val" (int),
"Name": (string) } ]
2023-03-15 21:34:08 +00:00
Artem 269ebeddb4 Fix building with GCC 13 2023-03-15 20:34:35 +00:00
morg f579b1cd15 Add support for Hyperx duocast 2023-03-15 17:37:55 +00:00
flora bf51d4d82b Support for Rog Strix 6900XT LC 2023-03-15 08:02:59 +01:00
Chris baf5d30b27 Initial commit for the Corsair M55 mouse
* Added config to CorsairPeripheralV2Devices
* Adding device config to CorsairPeripheralV2Devices.cpp
* Extending the base CorsairPeripheralV2Controller to CorsairPeripheralV2HWController to account for HW modes
* Minor adjustments to the CorsairPeripheralV2SWController to accommodate
* Resolves #1951
2023-03-15 06:19:38 +11:00
thombo 549a631541 Support for MSI board 7D89 added 2023-03-14 17:36:33 +00:00
Chris 8f54583711 Initial commit for the Corsair Ironclaw Wireless Mouse to resolve #1421
+ Adding Ironclaw Wireless and Wired PIDs to CorsairPeripheralV2Devices.h
+ Adding device layout
+ Registering detector
2023-03-13 12:07:49 +11:00
Alexander Babayants 7fdabcad92 Add Palit RTX 3080 GamingPro 12G GPU 2023-03-12 12:59:03 +00:00
Morgan Guimard daaee0f921 Add support for Asus TUF RTX4080 O16G GAMING 2023-03-12 01:25:56 +00:00
Cooper Hall 45be4329c5 Fixed some warnings 2023-03-11 23:25:26 +00:00
flora b0b20b9f06 Support for tuf 3060ti gddr6 2023-03-09 11:08:09 +01:00
Mola19 6360457211 support for Asus ROG Strix XG279Q to resolve #3137 2023-03-08 22:29:22 +01:00
flora 17d6a65429 Added support for 4090 FE variant 2023-03-07 19:24:51 +00:00
Nexrem 2575c6adf4 Rework TUF WMI Laptop, implementing additional brightness and persistent saving 2023-03-06 22:39:48 +00:00
Flora Aubry 36ebdbec2c Added missing mode_flags to EVision controller, added GMMK TKL detection 2023-03-06 16:25:53 +00:00
DarioB92 3136b7c12c Added Sapphire Nitro+ RX 6750 XT support 2023-03-06 15:17:53 +00:00
flora 4aa4bd3a42 Added led amount condition for toggleledview 2023-03-06 14:56:47 +01:00
flora a084fad82d Added Rog Strix 4080 non oc 2023-03-05 22:28:46 +00:00
flora 35f8291c3d Support for GB 3080 eagle oc 2023-03-05 15:46:20 +01:00
flora dbe9553df8 Support for 3060 gaming Z 2023-03-04 07:28:44 +01:00
Adam Honse ff8ac680ad Replace most instances of sprintf() with snprintf() 2023-03-02 00:15:03 -06:00
Flora Aubry c02d401b1d Fixed detection for Dualsense 2023-03-01 18:06:00 +00:00
Riley Nielsen a4f86032a5 Add support for Gigabyte X470 AORUS GAMING 5 WIFI 2023-03-01 02:19:50 +00:00
Chris 4b29b56029 Fixes passing 0 to --brightness CLI parameter 2023-02-28 21:53:30 +11:00
thombo c1e745fa4d Support for MSI board 7D70 added, config of 7D86 corrected 2023-02-27 21:07:55 +01:00
Devin Wendt de43a02a1b Add support for TP-Link's Kasa Smart light bulbs 2023-02-26 04:59:04 +00:00
Nexrem b1f2231bc7 Implement full protocol support for SapphireNitroGlowV1 2023-02-24 01:35:30 +00:00
Adam Honse ddb7b141a3 Improve ENE config table decoding 2023-02-20 00:21:42 +00:00
thombo 907c64017b Support for MSI boards 7D73, 7D86 and B926 added 2023-02-19 23:56:28 +00:00
Chris 2ab731598e Adding Palit RTX 3080 Gamerock OC 10G GPU
* Added SubDev ID to pci_ids.h
* Registered detectors for both LHR and non LHR versions in `PNYGPUControllerDetect.cpp`
* Link to [webpage](https://www.palit.com/palit/vgapro.php?id=3779)
* Resolves #2948
2023-02-20 10:16:17 +11:00
Morgan Guimard a0422d7ea5 add support for Asus ROG STRIX RTX3080 GUNDAM EDITION 2023-02-15 22:29:17 +00:00
Chris f8fe2ff7f8 Updating Debian version to conform with expected numbering for upgrades
* Moving Debian changelog and Fedora specfile to input files and dynmaically updating versioning from OpenRGB.pro
* Resolves #2919
* Related #2666
2023-02-15 02:58:33 +00:00
Wojciech Łazarski 643e51e71b Fix SetupZones where on devices with more than one zone in ENESMBus 2023-02-14 01:23:55 +00:00
FlaminRage 04ebe3e702 Adds basic support for Gigabyte GeForce RTX 4090 GAMING OC 24G - resolves #2813 2023-02-11 21:25:54 +00:00
Chris f782c92faf Adding missing matrix type for Razer BlackWidow X Chroma TE
* Keyboard resposiveness was relying on memalloc initialising `matrix_type` with known value.
* Also adding log warning to default case for troubleshooting purposes.
2023-02-08 22:30:28 +11:00
ronny332 1e89f652cc ENE SMBus Controller AUMA0-E6K5-1110 detection. 2023-02-07 17:33:48 +00:00
Morgan Guimard 4879ae9bbe Add support for iGame GeForce RTX 3060 Ti Ultra W OC LHR-V 2023-02-05 22:28:45 +00:00
ronny332 cbf5fe90f6 Detection: ASUS ROG Strix 4080 OC. 2023-02-05 22:25:31 +00:00
ronny332 5ae3997e73 Fix: ViewSonic XG270QG profile save crash. 2023-02-05 21:26:28 +01:00
Wojciech Łazarski 8687bc23b3 Refactor of Everest keyboard 2023-02-04 13:21:58 -06:00
LucasStf 961aad8650 Added the RTX 3060 Aorus Elite 12Go Rev a1 2023-02-04 13:21:52 -06:00
Chris fed086e0c2 Adding Metadata to Viewsonic controller
+ Includes code cleanup
+ Removed redundant function
2023-02-04 10:14:25 +11:00
Wojciech Łazarski 0b78d81c4e Add MSI RTX4070Ti Suprim X support - resolves #3118 2023-02-02 17:59:47 +00:00
Vid Čufar bbbf93beae Add support for Manli GeForce RTX 3080 Ti Gallardo 2023-02-01 17:09:32 +00:00
Codename-Antares 99f7645d9a initial Support for the Gigabyte 3060Ti Gaming OC V1.0 2023-02-01 14:57:40 +00:00
Chris 847b10bda9 Initial commit for Razer Blade 14 2022 to resolve #3067
+ Adding entry for the Blade 14 2022 PID
+ Registered detectors
+ Added metadata to RazerDevices.h
+ Added capabilities to RazerController.cpp
+ Adding QWERTZ layout to Blade 12 2022 mapping
+ Adding missing DE key names to RGBControllerKeyNames and
DeviceView.cpp
2023-02-01 22:51:09 +11:00
TheRogueZeta 7825734f07 Initial commit for ASUS TUF RTX 4070Ti O12G device ID 2023-02-01 07:09:50 +00:00
Adam Honse b25dacd0c0 Remove unnecessary header file OpenRGB.h 2023-02-01 00:33:23 -06:00
Adam Honse b3ff39138a Save settings for wrapped HID device detectors 2023-01-31 19:18:32 -06:00
Ayexor 51a2fdb09d Gigabyte aorus geforce rtx380 ti extreme waterforce wb 12g lhr 2023-01-31 03:19:17 +00:00
Adam Honse 1930080bc6 Add Kraken X53 PID 2023-01-30 18:30:21 +00:00
Chris M a3e22bedcb Initial commit for Razer Mouse Dock Pro to resolve #3068
+ Added PID entry for the Mouse Dock Pro
+ Registered detectors
+ Added metadata to RazerDevices.cpp
+ Added capabilities to RazerController.cpp
2023-01-30 14:14:55 +00:00
Adam Honse b072b508ae Add wrapped hidapi devices to udev rules 2023-01-29 17:31:05 -06:00
Michael Stummvoll 3c7f53b544 Add support for Das Keyboard 5QS 2023-01-29 21:57:37 +00:00
Chris M 532eaa7478 Adding MSI 3090 Suprim 24G GPU
* Code clean up for the MSI GPU V1
* Registered detector in `MSIGPUControllerDetect.cpp`
* Link to [webpage](https://www.msi.com/Graphics-Card/GeForce-RTX-3090-
SUPRIM-24G/Specification)
2023-01-29 13:51:34 +11:00
Adam Honse 4c67d849b4 Use hidapi wrapper for HyperX mousemat controller 2023-01-28 11:46:31 -06:00
Adam Honse e30fbdef71 Fix build on musl and rename wrapper function to match hidapi's name 2023-01-28 11:37:18 -06:00
JDinABox 6fdc70d650 Add support for Razer Ornata V3X
Commit amended to address minor style issues by Adam Honse <[email protected]>
2023-01-27 22:39:23 -06:00
AnAvrgDev 9e9a583009 Added support for newer version (HP version) of Hyperx Pulsefire Dart (Wired & Wireless) 2023-01-27 14:26:56 +01:00
Chris M 97234c811f Adding media keys to Razer Cynosa V2 Keymap
* Resolves #3062
2023-01-27 17:52:17 +11:00
Adam Honse a7b6ef9e21 Remove redundant code that is no longer necessary with all controllers being registered via RegisterRGBController() 2023-01-26 23:07:30 -06:00
Adam Honse 92f0720639 Remove RGB controllers argument from standard detector 2023-01-26 20:36:02 -06:00
Adam Honse 060567548f Use RegisterRGBController for standard detectors 2023-01-26 20:35:52 -06:00
Adam Honse 29d34f7768 Implement the wrapper for Linux in ResourceManager, change IPU to I for HyperX Quadcast S, code cleanup 2023-01-26 23:56:36 +00:00
Adam Honse 45408ae159 Remove fake Off mode and color saving, as it was messing with the Set All Devices functionality 2023-01-26 23:56:36 +00:00
Adam Honse aec234e7c3 Update USB ID names for HyperX Quadcast S 2023-01-26 23:56:36 +00:00
Matt Silva 72fa099088 Initial commit for HyperX Quadcast S 2023-01-26 23:56:36 +00:00
Chris 856fbc1bb2 Fixing regression bug for the Logitech x56 HOTAS introduced in cac67592
* Added extra IPU detectors for the older x56 hardware
* Closes #2574
2023-01-26 04:30:00 +00:00
Shady Nawara b05b5205de Fix segments load from profile 2023-01-26 04:29:26 +00:00
Jack e15b299684 SDK Plugins Fix 2023-01-25 20:28:50 +00:00
Will Kennedy 3cf9750660 Support for Lian Li UNI Hub SL V2 2023-01-25 19:05:09 +00:00
Jack 4baf19f13a SDK plugin control 2023-01-25 17:50:28 +00:00
Wojciech Lazarski 98c5c177ab Added Polish translations 2023-01-25 15:51:20 +01:00
morg dbf055a89b HyperX Alloy Origins 60 detection fix for Linux. Closes #3074 2023-01-25 00:56:20 +00:00
Wojciech Łazarski 61b1638bb5 Added support for Mountain Everest Keyboard resolves #1085 2023-01-24 17:21:28 +00:00
Wojciech Lazarski 56e4f94be3 Added brightness support for HyperX Origin Core 2023-01-23 22:51:06 +01:00
Wojciech Lazarski 878e6c6d8b Fixed LED mapping for Aorus Master X570 2023-01-23 20:31:28 +01:00
Cyril Bosselut ec6ccf3011 Aorus rtx 4080 master 16g 2023-01-23 14:32:24 +00:00
Neshura d6ec41aba4 Support for Corsair Vengeance DDR5 2023-01-21 02:27:43 +00:00
Alexey Sokolov ba396da13e Fix build after !1239 2023-01-21 02:12:49 +00:00
flora bacbae7e7d Moved TUF RX6800 from AuraGPU to ENESMBus 2023-01-20 22:44:08 +00:00
Adam Honse c27bfe2f5f Fix zone box index processing when clicking the resize/edit button 2023-01-20 19:00:45 +00:00
Adam Honse 890a5846e6 Update UI after editing a zone to refresh zone list 2023-01-20 19:00:45 +00:00
Adam Honse b41ce2dd9d Increment plugin API version as Segments breaks the existing API 2023-01-20 19:00:45 +00:00
Adam Honse 5ee1968b25 Fix DeviceView clicking on Zone and Segment names 2023-01-20 19:00:45 +00:00
Adam Honse 72d8e66c91 Allow selection of segments within Zone box 2023-01-20 19:00:45 +00:00
Adam Honse 447e936464 Segments 2023-01-20 19:00:45 +00:00
Adam Honse ead55f4ea6 Fix is_directory on older versions of filesystem 2023-01-20 12:31:12 -06:00
flora 4913ee8502 Added colorful 4080 2023-01-20 10:48:02 +01:00
Flora Aubry 604c4cf39c Fixed incorrect detection for MSI 6700XT Gaming X closes #2994 2023-01-20 02:26:40 +00:00
flora 11ce757ae3 Support for TUF RX 6950XT 2023-01-20 02:25:24 +00:00
Markus Meissner 73d31a17ab Support for Corsair Dominator Platinum DDR5, closes #2435 2023-01-20 02:24:42 +00:00
flora ac987d5200 Ignore directories while checking for plugins 2023-01-19 19:48:05 +01:00
Flora Aubry a35521e987 Support for TUF RTX 4070TI closes #3065 2023-01-19 17:19:32 +00:00
Adam Honse 7bf0e40fd8 Load sizes for hardware controllers registered using RegisterRGBController() before putting them in the general controllers list and updating the UI 2023-01-18 22:56:44 -06:00
Shady Nawara 6cda8f56ab Asrock Polychrome USB RGSwap Reset Fix 2023-01-18 14:08:06 +00:00
Dmitry K b409b5f7cc Added support for unicode paths (filesystem::path approach) 2023-01-18 06:02:55 +00:00
Shady Nawara 351515f025 Asrock Polychrome USB Fix 2023-01-18 04:45:40 +00:00
flora edf05dc121 Support for Rog Strix RX 6800 2023-01-16 15:55:46 +01:00
Cooper Knaak 895566b8c1 Annotate RGBController_EVGAMouse.cpp to properly generate UDEV rules 2023-01-16 03:37:42 +00:00
César Navarro 6deda6f7d4 Added AORUS RTX 2070 XTREME 2nd vBIOS 2023-01-15 23:34:30 +00:00
Wojciech Łazarski e8f8d01447 Refactoring of MSI GPU 40xx 2023-01-15 23:33:28 +00:00
Flora Aubry 5c5ee6509a Support for Razer Basilisk V3 Pro 2023-01-15 19:05:51 +00:00
flora 5e1d817dea Removed IPU for viewsonic XG270QG 2023-01-15 15:18:43 +01:00
Chris 915ecefd16 Formatting and style fixes for the MSIGPUv2Controller
* Change Hex literals to uppercase
* Adjusting Metadata to correctly reflect the declared controller
* Adding defines for Speed and Brightness values and adjusting mode declarations to suit
* Replacing brightness array in favour of more flexible multiple
2023-01-14 03:26:22 +00:00
Flora Aubry 94a8ce3cbe Reworked "Save as" to include a profile list 2023-01-13 16:34:11 +00:00
Chris M 9ef8ea3fba Correction for the MSI RTX4070Ti Gaming X Trio detector name
* Minor correction to the detector name (refer #3059)
* Link to [webpage](https://www.msi.com/Graphics-Card/GeForce-RTX-4070-
Ti-GAMING-X-TRIO-12G)
2023-01-13 17:55:03 +11:00
Wojciech Łazarski 6f684f1d1e Added support for MSI 4080 & 4070TI Gaming X - closes #3059 2023-01-13 02:21:04 +00:00
Tim Demand dc92567202 Add support for Corsair HydroSeries H100i v2 2023-01-13 02:19:29 +00:00
Flora Aubry a936f91509 Support for Gigabyte 3060 eagle variant closes #3060 2023-01-12 17:12:08 +00:00
Wojciech Lazarski d6b6df3d86 Corrected IDs for MSI 4090 Suprim cards 2023-01-09 22:33:56 +01:00
LucasStf e663bc9114 Added Ionico laptop closes #2995 2023-01-09 19:25:53 +00:00
Adam Honse 2f1212444c Razer Core (v1) IPU changes 2023-01-09 02:19:44 +00:00
David Henry 9f1e53aa4e Add support for ZOTAC GAMING RTX 2070 SUPER Twin Fan 2023-01-08 18:57:41 +01:00
Chris 4cfe8c5d72 Adjusting IPU of Razer Core X Chroma due to 309557226
* Closes #2755
2023-01-08 16:29:56 +11:00
flora 1b8ae08726 Sorted GPU per Brand 2023-01-07 11:41:03 +01:00
Gianfranco Cossani Morales def6db0174 Support for MSI GeForce RTX 3070 SUPRIM 8G. Closes #3041 2023-01-07 06:55:34 +00:00
Flora Aubry f0f7301cad Support for ROG STRIX LC 6950XT 2023-01-07 03:16:52 +00:00
morg da074fbf61 Add support for ASUS ROG STRIX LC RX 6800XT O16G GAMING. Closes #2569 2023-01-06 09:40:08 +01:00
Flora Aubry 8d907e0c6f Added msi 4080 suprim X closes #3029 2023-01-05 22:23:22 +00:00
morg cd4a9098aa Add support for HyperX Alloy Origins 60 (HP version) 2023-01-05 10:03:39 +01:00
Wojciech Łazarski f824e9f653 Add support for MSI RTX 4090 Trio/Suprim/Suprim Liquid Cards - Resolves https://gitlab.com/CalcProgrammer1/OpenRGB/-/issues/2896 2023-01-04 19:34:16 +00:00
flora 6c1fec7855 Added colorful 3060 variant 2023-01-04 17:02:49 +01:00
Mola19 b9c0b274ab support for Asus ROG Chakram X 2023-01-03 23:06:25 +00:00
flora fc1395dfe6 Refactored redragon mouse controller and added M808 2023-01-03 19:26:50 +00:00
Jorge López Tello 865312b7c6 Adds Sapphire Nitro+ 7900 XTX closes #3017 2023-01-03 10:06:43 +00:00
LtdJorge fffc8e8b52 Adds Navi31 (7900XT/XTX) 2023-01-03 10:05:33 +00:00
D E c51b019ff7 Add ASUS ROG Strix Flare CoD BO4 Edition keyboard 2023-01-03 02:08:38 +00:00
Flora Aubry 84393884ca Added support for Roccat Elo 7.1 headset closes #3012 2023-01-02 21:14:24 +00:00
Shady Nawara 37fd9ced7a Per Led Support for Asrock Polychrome USB 2023-01-02 07:02:30 +00:00
Sergey Morozov 136b2c2e2c Add support for Gigabyte GeForce RTX 4080 Gaming OC 2023-01-01 09:40:37 +00:00
Simon Chopin acb313631f device page: disable resize button if there are no zones
I have an unsupported Asus GPU which shows up as a device but doesn't
have any zone configured. Clicking on the Resize button leads to an
out-of-bounds read in the empty `zones` vector to `zones[-1]` (default
value of the QComboBox property).

The fix is to entirely disable the button when we're disabling the zones
box.
2022-12-31 16:43:41 +01:00
morg b6172b71c8 Add support for Gigabyte Aorus M2 mouse - Closes #2538 2022-12-31 00:33:48 +00:00
morg 7a1af0854a Initial commit for Lenovo motherboards - #2999 2022-12-30 23:04:29 +00:00
Chris bce0efb083 Adding missing ISO keys to Huntsman V2 TKL layout to resolve #2927
* Appending the layout byte to the GetKeyboardLayoutName() in the default case
2022-12-30 23:55:46 +11:00
Chris 0fa2a6f039 Initial commit for ASUS ROG Strix RTX 4090 O24G Gaming to resolve #2991
* Adding to pci_ids.h
* Registering detector in ENESMBusControllerDetect.cpp
* Link to [webpage](https://rog.asus.com/graphics-cards/graphics-cards/rog-strix/rog-strix-rtx4090-o24g-gaming-model)
2022-12-30 07:28:48 +00:00
thombo 6020008040 Support for MSI board 7D76 added. 2022-12-30 05:31:20 +00:00
Chris f837ed8c26 Initial commit for ASUS TUF RTX 3070 8G Gaming
* Adding to pci_ids.h
* Registering detector in ENESMBusControllerDetect.cpp
* Link to [webpage](https://www.asus.com/motherboards-components/graphics-cards/tuf-gaming/tuf-rtx3070-8g-gaming/)
2022-12-29 23:14:38 +11:00
flora ef77af5da7 Promoted sliders to QTooltipedSliders 2022-12-28 19:05:05 +00:00
Sirn Thanabulpong 8c893fba4f Fix build on musl in Nanoleaf settings 2022-12-28 00:49:47 +09:00
thombo c1dc0fdfc5 Support for MSI boards 7B16 and 7E07 added 2022-12-27 07:02:59 +00:00
morg 02ddd7378a Add support for ASUS TUF RTX 3090Ti O24G OC GAMING 2022-12-26 01:27:43 +01:00
morg 9ff31055ae Add support for ASUS KO RTX 3060 Ti OC. Closes #1236 2022-12-25 13:44:12 +01:00
Chris d49c506e63 Minor cleanup to UDEV rules build script
* Changing Asus-wmi rules to an array for consistency.
2022-12-25 02:32:56 +00:00
Flora Aubry 3a2fa82e1a Support for ROG STRIX 6750XT closes #2858 2022-12-25 02:32:11 +00:00
Flora Aubry ca85fc06b4 Support for MSI 6750XT Gaming X TRIO closes #2912 2022-12-25 02:30:26 +00:00
morg 94aca7d76f Generate CSV file of device list 2022-12-25 02:26:10 +00:00
Moshe Schmidt 26dfceaf6d Lian Li Uni Hub: Leave room in the char array for the null character 2022-12-23 17:45:41 +00:00
Misaka19465 ac2af0c788 Fixing build-udev-rules.sh 2022-12-22 23:19:43 +08:00
Misaka 19465 c88a6021f2 Adding support for ASUS TUF Laptop keyboard LED for Linux 2022-12-22 14:57:58 +00:00
TheRogueZeta 1d27ff86c8 Add EVGA RTX 3080 12GB XC3 Ultra device ID and sort list for 3080 12G ID's 2022-12-21 17:42:26 +00:00
morg b79871fb32 Fix typo in Genesis Thor 300 metadata 2022-12-21 17:41:19 +00:00
flora 0a170cfb44 Fixed typo on lianli supported devices 2022-12-21 17:40:23 +00:00
morg 54f9118dda Fix metadata for Roccat Kova controller 2022-12-21 17:39:32 +00:00
TheRogueZeta 37d58c3aec Initial commit for NVIDIA RTX 4080 Founders Edition device ID 2022-12-20 11:10:20 -08:00
Flora Aubry 23f6efdb01 Support for Aorus 3060 non lhr closes #2950 2022-12-18 20:53:39 +00:00
flora 813bc9ae67 Added 5700XT Strix Variant 2022-12-16 18:16:30 +00:00
IOXAM 2f77af535a Support for AORUS GeForce RTX 4090 MASTER 24G - resolves #2959 2022-12-16 18:12:49 +00:00
Peter Vazny 120ce6abbd Removes unnecessary memory allocation in Lenovo USB Controller 2022-12-16 18:07:20 +00:00
Chris e1a6a74ba7 Removing redundant language resource file
* languages.qrc is no longer required as the .qrc is built and embeded since commit a7adfe251
2022-12-16 17:59:49 +00:00
morg fa406216d3 Add support for Gigabyte RTX2070 Gaming OC 8GC 2022-12-16 17:49:34 +00:00
krotter0 3708eaaab4 Fix SteelSeries Rival 600 flickering when setting colors 2022-12-16 17:47:01 +00:00
Bernhard M. Wiedemann a782c00784 Sort input file list 2022-12-10 20:19:13 +00:00
morg 5da85adb90 Add support for ASUS ROG STRIX 3060 12G GAMING 2022-12-09 17:30:40 +00:00
Flora Aubry 30c1168e1c Hide bottom buttons when a plugin tab is shown 2022-12-09 17:29:49 +00:00
Codename-Antares f85dd617d3 Initial Support for Razer Thunderbolt 4 Dock Chroma 2022-12-09 00:16:52 +00:00
flora cf25ccb304 Fixing margin for plugincontainer 2022-12-08 21:51:30 +01:00
Peter Vazny f8d7eb8bb8 Fixes layout detection for Lenovo Legion 7S 2022-12-08 04:39:17 +00:00
Chris d67acee002 Simplfying the Git commands in the project file
* Allowing commands to get the `GIT_COMMIT_ID`, `GIT_COMMIT_DATE` and `GIT_BRANCH` to work with spaces in path
2022-12-08 13:57:16 +11:00
Chris 86f0ab888d Adding Malaysian translation ms_MY 2022-12-07 23:17:12 +11:00
thombo cf610fa559 MSI boards 7C87 and 7D67 added 2022-12-06 21:43:50 +01:00
Chris 612c809b75 Initial commit for the Logitech G633 to resolve #2911
* Adding the G633 PID to LogitechControllerDetect.cpp
* Registering the detector for the common controller
* Fixing the indexing swap issue for LogitechLightspeedController
* Removing the `bright_cycle_swap` hack and using the queried effects index to set the mode.value for each mode
2022-12-06 12:45:46 +11:00
Mola19 c2c9b3aa99 fixing Roccat Vulcan 120-Series Aimo US layout key map 2022-12-04 00:46:56 +01:00
TheRogueZeta 7a7cea1e1e Initial commit for EVGA RTX 2070 XC Black device ID 2022-12-03 22:58:05 +00:00
Adam Honse 032d22b7ca Add PNY XLR8 Revel EPIC-X RTX 3060 and RTX 3070 2022-12-03 15:15:39 -06:00
Gustavo Parreira 7892713683 feat: Roccat Kova support 2022-12-03 07:45:42 +00:00
Mola19 790abdd9c0 adding hardware modes and layout detection to Asus ROG Falchion to resolve #2732 2022-12-03 00:51:52 +01:00
Chris M 34cb864147 Adding New Fusion2 USB board layout to resolve #2923
* Adding MSTR_ATX_2 layout to support the new layout of the X670E AORUS
Master
2022-12-02 19:20:24 +00:00
flora e30469adc4 Support for Gigabyte 3090 Vision OC 2022-12-02 13:15:34 +01:00
Chris 5c4c4479bf Initial commit for Gigabyte RTX3080Ti Eagle OC 12G
* Added ID to pci_ids.h
* Registering detector in GigabyteRGBFusionGPUControllerDetect.cpp
* Link to [webpage](https://www.gigabyte.com/au/Graphics-Card/GV-N308TEAGLE-OC-12GD/sp#sp)
2022-12-02 03:50:49 +00:00
Chris M ec531bd9fc Correcting defined hex for Lian Li Uni Hub to resolve #2916 2022-12-02 07:35:53 +11:00
Chris M 701cc4d0b3 Initial commit for Gigabyte RTX3070 Eagle V2 OC 8G LHR
* Registering detector in GigabyteRGBFusionGPUControllerDetect.cpp
* Link to [webpage](https://www.gigabyte.com/Graphics-Card/GV-
N3070EAGLE-OC-8GD-rev-20)
2022-12-01 07:05:50 +11:00
TheRogueZeta faa6a5060b Initial commit for Colorful iGame 3070 Ultra W OC device ID 2022-11-30 00:26:56 +00:00
TheRogueZeta c0be45182b Initial commit for ASUS ROG STRIX RX 6700XT O12G GAMING 2022-11-29 18:17:24 -06:00
Adam Honse b3da8beccf Remove device listing step from tests, as it can hang when using runner machines which actually have devices present if those devices lock up 2022-11-29 15:31:51 -06:00
Adam Honse d625021eca Increment version number post-release 2022-11-29 14:06:29 -06:00
538 changed files with 44477 additions and 10914 deletions
+2 -1
View File
@@ -6,6 +6,8 @@ OpenRGB
openrgb
OpenRGB-x86_64.AppImage
60-openrgb.rules
debian/changelog
fedora/OpenRGB.spec
# Directories
.build/
@@ -116,4 +118,3 @@ compile_commands.json
# Generated i18n files
*.qm
+14 -11
View File
@@ -43,6 +43,7 @@ before_script:
name: "${CI_PROJECT_NAME}_Supported_Devices_${CI_COMMIT_SHORT_SHA}"
paths:
- ./*.md
- Supported Devices.csv
exclude:
- README.md
- CONTRIBUTING.md
@@ -108,6 +109,7 @@ before_script:
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:buster-32
stage: build
script:
- ./scripts/build-package-files.sh debian/changelog
- dpkg-architecture -l
- dpkg-buildpackage --target-arch i386 -us -B
- rm -v ../openrgb-dbgsym*.*deb
@@ -136,6 +138,7 @@ before_script:
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:buster-64
stage: build
script:
- ./scripts/build-package-files.sh debian/changelog
- dpkg-architecture -l
- dpkg-buildpackage -us -B
- rm -v ../openrgb-dbgsym*.*deb
@@ -164,6 +167,7 @@ before_script:
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:bullseye-32
stage: build
script:
- ./scripts/build-package-files.sh debian/changelog
- dpkg-architecture -l
- dpkg-buildpackage --target-arch i386 -us -B
- rm -v ../openrgb-dbgsym*.*deb
@@ -192,6 +196,7 @@ before_script:
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:bullseye-64
stage: build
script:
- ./scripts/build-package-files.sh debian/changelog
- dpkg-architecture -l
- dpkg-buildpackage -us -B
- rm -v ../openrgb-dbgsym*.*deb
@@ -220,6 +225,7 @@ before_script:
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:bookworm-32
stage: build
script:
- ./scripts/build-package-files.sh debian/changelog
- dpkg-architecture -l
- dpkg-buildpackage --target-arch i386 -us -B
- rm -v ../openrgb-dbgsym*.deb
@@ -248,6 +254,7 @@ before_script:
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:bookworm-64
stage: build
script:
- ./scripts/build-package-files.sh debian/changelog
- dpkg-architecture -l
- dpkg-buildpackage -us -B
- rm -v ../openrgb-dbgsym*.deb
@@ -277,6 +284,7 @@ before_script:
script:
- dnf install rpmdevtools dnf-plugins-core -y
- rpmdev-setuptree
- ./scripts/build-package-files.sh fedora/OpenRGB.spec
- ls /root/
- cp fedora/OpenRGB.spec /root/rpmbuild/SPECS
- cp ../OpenRGB /root/rpmbuild/SOURCES/ -r
@@ -309,8 +317,9 @@ before_script:
image: fedora:36
stage: build
script:
- dnf install rpmdevtools dnf-plugins-core libcurl-devel -y
- dnf install rpmdevtools dnf-plugins-core libcurl-devel qt5-qtbase-devel -y
- rpmdev-setuptree
- ./scripts/build-package-files.sh fedora/OpenRGB.spec
- ls /root/
- cp fedora/OpenRGB.spec /root/rpmbuild/SPECS
- cp ../OpenRGB /root/rpmbuild/SOURCES/ -r
@@ -346,7 +355,6 @@ before_script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*i386.deb
- openrgb --version
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 32 .deb (Debian Buster)"
@@ -363,7 +371,6 @@ before_script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*amd64.deb
- openrgb --version
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 64 .deb (Debian Buster)"
@@ -380,7 +387,6 @@ before_script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*i386.deb
- openrgb --version
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 32 .deb (Debian Bullseye)"
@@ -397,7 +403,6 @@ before_script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*amd64.deb
- openrgb --version
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 64 .deb (Debian Bullseye)"
@@ -414,7 +419,6 @@ before_script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*i386.deb
- openrgb --version
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 32 .deb (Debian Bookworm)"
@@ -431,7 +435,6 @@ before_script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*amd64.deb
- openrgb --version
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 64 .deb (Debian Bookworm)"
@@ -448,7 +451,6 @@ before_script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*amd64.deb
- openrgb --version
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 64 .deb (Debian Buster)"
@@ -465,7 +467,6 @@ before_script:
- apt update
- DEBIAN_FRONTEND=noninteractive apt install -yq --no-install-recommends ./openrgb*amd64.deb
- openrgb --version
- openrgb -l
- apt remove -y openrgb
dependencies:
- "Linux 64 .deb (Debian Bookworm)"
@@ -481,7 +482,6 @@ before_script:
script:
- yum -y localinstall ./openrgb*64.rpm
- openrgb --version
- openrgb -l
- yum -y remove openrgb
dependencies:
- "Linux 64 f35 rpm"
@@ -497,7 +497,6 @@ before_script:
script:
- yum -y localinstall ./openrgb*64.rpm
- openrgb --version
- openrgb -l
- yum -y remove openrgb
dependencies:
- "Linux 64 f36 rpm"
@@ -571,6 +570,8 @@ before_script:
name: "${CI_PROJECT_NAME}_Windows_32_${CI_COMMIT_SHORT_SHA}"
paths:
- 'OpenRGB Windows 32-bit'
exclude:
- 'OpenRGB Windows 32-bit\*.qm'
expire_in: 30 days
rules:
@@ -647,6 +648,8 @@ before_script:
name: "${CI_PROJECT_NAME}_Windows_64_${CI_COMMIT_SHORT_SHA}"
paths:
- 'OpenRGB Windows 64-bit'
exclude:
- 'OpenRGB Windows 64-bit\*.qm'
expire_in: 30 days
#-----------------------------------------------------------------------#
@@ -0,0 +1,211 @@
/*-----------------------------------------*\
| AOCKeyboardController.cpp |
| |
| Driver for AOC Keyboard lighting |
| controller |
| |
| Adam Honse (CalcProgrammer1) 5/10/2023 |
\*-----------------------------------------*/
#include "AOCKeyboardController.h"
#include <cstring>
#include <chrono>
#include <thread>
using namespace std::chrono_literals;
AOCKeyboardController::AOCKeyboardController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
}
AOCKeyboardController::~AOCKeyboardController()
{
hid_close(dev);
}
std::string AOCKeyboardController::GetDeviceLocation()
{
return("HID " + location);
}
std::string AOCKeyboardController::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
void AOCKeyboardController::SetLightingConfig
(
unsigned char mode,
unsigned char random,
unsigned char brightness,
unsigned char speed,
unsigned char direction,
RGBColor* color_data
)
{
SendStartPacket();
std::this_thread::sleep_for(5ms);
SendLightingConfigPacket(mode, random, brightness, speed, direction, color_data);
std::this_thread::sleep_for(5ms);
SendEndPacket();
std::this_thread::sleep_for(10ms);
}
void AOCKeyboardController::SetCustom
(
RGBColor* color_data
)
{
SendStartPacket();
std::this_thread::sleep_for(5ms);
SendCustomPacket(color_data);
std::this_thread::sleep_for(5ms);
SendEndPacket();
std::this_thread::sleep_for(5ms);
}
/*-------------------------------------------------------------------------------------------------*\
| Private packet sending functions. |
\*-------------------------------------------------------------------------------------------------*/
void AOCKeyboardController::SendStartPacket()
{
unsigned char buf[64];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up start packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x09;
buf[0x01] = 0x21;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, buf, sizeof(buf));
}
void AOCKeyboardController::SendEndPacket()
{
unsigned char buf[64];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up end packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x09;
buf[0x01] = 0x22;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, buf, sizeof(buf));
}
void AOCKeyboardController::SendCustomPacket
(
RGBColor* color_data
)
{
unsigned char buf[361];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up custom lighting packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x20;
/*-----------------------------------------------------*\
| Copy in color data |
\*-----------------------------------------------------*/
for(unsigned int color_idx = 0; color_idx < 120; color_idx++)
{
buf[color_idx + 1] = RGBGetRValue(color_data[color_idx]);
buf[color_idx + 121] = RGBGetGValue(color_data[color_idx]);
buf[color_idx + 241] = RGBGetBValue(color_data[color_idx]);
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, sizeof(buf));
}
void AOCKeyboardController::SendLightingConfigPacket
(
unsigned char mode,
unsigned char random,
unsigned char brightness,
unsigned char speed,
unsigned char direction,
RGBColor* color_data
)
{
unsigned char buf[117];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up lighting configuration packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x14;
buf[0x01] = 0x01;
buf[0x06] = mode;
buf[0x07 + (9 * mode) + 0] = RGBGetRValue(color_data[0]);
buf[0x07 + (9 * mode) + 1] = RGBGetGValue(color_data[0]);
buf[0x07 + (9 * mode) + 2] = RGBGetBValue(color_data[0]);
buf[0x07 + (9 * mode) + 3] = random;
buf[0x07 + (9 * mode) + 4] = direction;
buf[0x07 + (9 * mode) + 5] = speed;
buf[0x07 + (9 * mode) + 6] = brightness;
unsigned short checksum = 0x4A9E;
for(unsigned int buf_idx = 0; buf_idx < 115; buf_idx++)
{
checksum += buf[buf_idx];
}
buf[115] = checksum & 0xFF;
buf[116] = checksum >> 8;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, 117);
}
@@ -0,0 +1,107 @@
/*-----------------------------------------*\
| AOCKeyboardController.h |
| |
| Definitions and types for AOC keyboard |
| lighting controller |
| |
| Adam Honse (CalcProgrammer1) 5/10/2023 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <hidapi/hidapi.h>
#include <string>
#pragma once
/*-----------------------------------------*\
| AOC Keyboard Modes |
\*-----------------------------------------*/
enum
{
AOC_KEYBOARD_MODE_STATIC = 0x00, /* Static mode */
AOC_KEYBOARD_MODE_BREATHING = 0x01, /* Breathing mode */
AOC_KEYBOARD_MODE_REACT = 0x02, /* React mode */
AOC_KEYBOARD_MODE_RIPPLE = 0x04, /* Ripple mode */
AOC_KEYBOARD_MODE_RADAR = 0x05, /* Radar mode */
AOC_KEYBOARD_MODE_FIREWORKS = 0x06, /* Fireworks mode */
AOC_KEYBOARD_MODE_BLINK = 0x07, /* Blink mode */
AOC_KEYBOARD_MODE_WAVE = 0x08, /* Wave mode */
AOC_KEYBOARD_MODE_CUSTOM = 0x09, /* Custom mode */
AOC_KEYBOARD_MODE_CONCENTRIC_CIRCLES = 0x0A, /* Concentric Circles mode */
AOC_KEYBOARD_MODE_W_WAVE = 0x0B, /* W Wave mode */
};
enum
{
AOC_KEYBOARD_SPEED_SLOW = 0x03, /* Slowest speed */
AOC_KEYBOARD_SPEED_MEDIUM = 0x02, /* Medium speed */
AOC_KEYBOARD_SPEED_FAST = 0x01, /* Fastest speed */
};
enum
{
AOC_KEYBOARD_BRIGHTNESS_OFF = 0x00, /* Lowest brightness (off) */
AOC_KEYBOARD_BRIGHTNESS_LOW = 0x01, /* Low brightness */
AOC_KEYBOARD_BRIGHTNESS_MEDIUM = 0x02, /* Medium brightness */
AOC_KEYBOARD_BRIGHTNESS_HIGH = 0x03, /* Highest brightness */
};
enum
{
AOC_KEYBOARD_SINGLE_COLOR = 0x00, /* Single color mode */
AOC_KEYBOARD_RANDOM = 0x01, /* Random color mode */
};
enum
{
AOC_KEYBOARD_DIRECTION_CLOCKWISE = 0x00, /* Clockwise direction */
AOC_KEYBOARD_DIRECTION_COUNTERCLOCKWISE = 0x01, /* Counter-clockwise direction */
};
class AOCKeyboardController
{
public:
AOCKeyboardController(hid_device* dev_handle, const char* path);
~AOCKeyboardController();
std::string GetDeviceLocation();
std::string GetSerialString();
void SetLightingConfig
(
unsigned char mode,
unsigned char random,
unsigned char brightness,
unsigned char speed,
unsigned char direction,
RGBColor* color_data
);
void SetCustom
(
RGBColor* color_data
);
private:
hid_device* dev;
std::string location;
void SendStartPacket();
void SendEndPacket();
void SendCustomPacket
(
RGBColor* color_data
);
void SendLightingConfigPacket
(
unsigned char mode,
unsigned char random,
unsigned char brightness,
unsigned char speed,
unsigned char direction,
RGBColor* color_data
);
};
@@ -0,0 +1,34 @@
#include "Detector.h"
#include "AOCKeyboardController.h"
#include "RGBController.h"
#include "RGBController_AOCKeyboard.h"
/*-----------------------------------------------------*\
| AOC Mousemat IDs |
\*-----------------------------------------------------*/
#define AOC_VID 0x3938
#define AOC_GK500_PID 0x1178
/******************************************************************************************\
* *
* DetectAOCKeyboardControllers *
* *
* Tests the USB address to see if an AOC Keyboard controller exists there. *
* *
\******************************************************************************************/
void DetectAOCKeyboardControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
AOCKeyboardController* controller = new AOCKeyboardController(dev, info->path);
RGBController_AOCKeyboard* rgb_controller = new RGBController_AOCKeyboard(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
REGISTER_HID_DETECTOR_PU("AOC GK500", DetectAOCKeyboardControllers, AOC_VID, AOC_GK500_PID, 0xFF19, 0xFF19);
@@ -0,0 +1,370 @@
/*-----------------------------------------*\
| RGBController_AOCKeyboard.cpp |
| |
| Generic RGB Interface for AOC keyboard |
| |
| Adam Honse (CalcProgrammer1) 5/10/2023 |
\*-----------------------------------------*/
#include "RGBController_AOCKeyboard.h"
#include "KeyboardLayoutManager.h"
/**--------------------------------------------------------------------*\
@name AOC Keyboard
@category Keyboard
@type USB
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAOCKeyboardControllers
@comment
\*---------------------------------------------------------------------*/
/*---------------------------------------------------------------------*\
| AOC Keyboard KLM Layout |
\*---------------------------------------------------------------------*/
layout_values aoc_keyboard_offset_values =
{
{
/* ESC F1 F2 F3 F4 F5 F6 F7 F8 F9 F10 F11 F12 PRSC SCLK PSBK */
90, 92, 77, 63, 79, 94, 81, 96, 82, 83, 98, 40, 55, 85, 100, 104,
/* BKTK 1 2 3 4 5 6 7 8 9 0 - = BSPC INS HOME PGUP NLCK NP/ NP* NP- */
75, 76, 91, 62, 48, 64, 50, 65, 66, 67, 97, 68, 84, 70, 59, 74, 89, 58, 73, 88, 103,
/* TAB Q W E R T Y U I O P [ ] \ DEL END PGDN NP7 NP8 NP9 NP+ */
60, 61, 47, 78, 33, 49, 35, 80, 51, 52, 53, 69, 99, 25, 44, 29, 14, 43, 28, 13, 102,
/* CPLK A S D F G H J K L ; " ENTR NP4 NP5 NP6 */
45, 46, 32, 93, 18, 34, 20, 95, 36, 37, 38, 54, 10, 57, 72, 87,
/* LSFT Z X C V B N M , . / RSFT ARWU NP1 NP2 NP3 NPEN */
30, 31, 17, 2, 3, 19, 5, 6, 21, 22, 23, 39, 11, 42, 27, 12, 101,
/* LCTL LWIN LALT SPC RALT RFNC RMNU RCTL ARWL ARWD ARWR NP0 NP. */
15, 0, 1, 4, 7, 8, 24, 9, 26, 41, 56, 71, 86
},
{
/* Add more regional layout fixes here */
}
};
RGBController_AOCKeyboard::RGBController_AOCKeyboard(AOCKeyboardController* controller_ptr)
{
controller = controller_ptr;
name = "AOC Keyboard Device";
vendor = "AOC";
type = DEVICE_TYPE_KEYBOARD;
description = "AOC Keyboard Device";
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Static;
Static.name = "Static";
Static.value = AOC_KEYBOARD_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
Static.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Static.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Static.colors_min = 1;
Static.colors_max = 1;
Static.colors.resize(1);
modes.push_back(Static);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = AOC_KEYBOARD_MODE_STATIC;
SpectrumCycle.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
SpectrumCycle.color_mode = MODE_COLORS_RANDOM;
SpectrumCycle.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
SpectrumCycle.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
SpectrumCycle.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
SpectrumCycle.speed_min = AOC_KEYBOARD_SPEED_SLOW;
SpectrumCycle.speed_max = AOC_KEYBOARD_SPEED_FAST;
SpectrumCycle.speed = AOC_KEYBOARD_SPEED_MEDIUM;
modes.push_back(SpectrumCycle);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AOC_KEYBOARD_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
Breathing.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Breathing.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Breathing.speed_min = AOC_KEYBOARD_SPEED_SLOW;
Breathing.speed_max = AOC_KEYBOARD_SPEED_FAST;
Breathing.speed = AOC_KEYBOARD_SPEED_MEDIUM;
Breathing.colors_min = 1;
Breathing.colors_max = 1;
Breathing.colors.resize(1);
modes.push_back(Breathing);
mode React;
React.name = "React";
React.value = AOC_KEYBOARD_MODE_REACT;
React.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
React.color_mode = MODE_COLORS_MODE_SPECIFIC;
React.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
React.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
React.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
React.speed_min = AOC_KEYBOARD_SPEED_SLOW;
React.speed_max = AOC_KEYBOARD_SPEED_FAST;
React.speed = AOC_KEYBOARD_SPEED_MEDIUM;
React.colors_min = 1;
React.colors_max = 1;
React.colors.resize(1);
modes.push_back(React);
mode Ripple;
Ripple.name = "Ripple";
Ripple.value = AOC_KEYBOARD_MODE_RIPPLE;
Ripple.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Ripple.color_mode = MODE_COLORS_MODE_SPECIFIC;
Ripple.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
Ripple.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Ripple.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Ripple.speed_min = AOC_KEYBOARD_SPEED_SLOW;
Ripple.speed_max = AOC_KEYBOARD_SPEED_FAST;
Ripple.speed = AOC_KEYBOARD_SPEED_MEDIUM;
Ripple.colors_min = 1;
Ripple.colors_max = 1;
Ripple.colors.resize(1);
modes.push_back(Ripple);
mode Radar;
Radar.name = "Radar";
Radar.value = AOC_KEYBOARD_MODE_RADAR;
Radar.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
Radar.color_mode = MODE_COLORS_MODE_SPECIFIC;
Radar.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
Radar.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Radar.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Radar.speed_min = AOC_KEYBOARD_SPEED_SLOW;
Radar.speed_max = AOC_KEYBOARD_SPEED_FAST;
Radar.speed = AOC_KEYBOARD_SPEED_MEDIUM;
Radar.colors_min = 1;
Radar.colors_max = 1;
Radar.colors.resize(1);
modes.push_back(Radar);
mode Fireworks;
Fireworks.name = "Fireworks";
Fireworks.value = AOC_KEYBOARD_MODE_FIREWORKS;
Fireworks.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Fireworks.color_mode = MODE_COLORS_MODE_SPECIFIC;
Fireworks.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
Fireworks.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Fireworks.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Fireworks.speed_min = AOC_KEYBOARD_SPEED_SLOW;
Fireworks.speed_max = AOC_KEYBOARD_SPEED_FAST;
Fireworks.speed = AOC_KEYBOARD_SPEED_MEDIUM;
Fireworks.colors_min = 1;
Fireworks.colors_max = 1;
Fireworks.colors.resize(1);
modes.push_back(Fireworks);
mode Blink;
Blink.name = "Flashing";
Blink.value = AOC_KEYBOARD_MODE_BLINK;
Blink.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Blink.color_mode = MODE_COLORS_MODE_SPECIFIC;
Blink.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
Blink.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Blink.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Blink.speed_min = AOC_KEYBOARD_SPEED_SLOW;
Blink.speed_max = AOC_KEYBOARD_SPEED_FAST;
Blink.speed = AOC_KEYBOARD_SPEED_MEDIUM;
Blink.colors_min = 1;
Blink.colors_max = 1;
Blink.colors.resize(1);
modes.push_back(Blink);
mode Wave;
Wave.name = "Wave";
Wave.value = AOC_KEYBOARD_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
Wave.color_mode = MODE_COLORS_MODE_SPECIFIC;
Wave.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
Wave.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Wave.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Wave.speed_min = AOC_KEYBOARD_SPEED_SLOW;
Wave.speed_max = AOC_KEYBOARD_SPEED_FAST;
Wave.speed = AOC_KEYBOARD_SPEED_MEDIUM;
Wave.colors_min = 1;
Wave.colors_max = 1;
Wave.colors.resize(1);
modes.push_back(Wave);
mode RainbowWave;
RainbowWave.name = "Rainbow Wave";
RainbowWave.value = AOC_KEYBOARD_MODE_WAVE;
RainbowWave.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
RainbowWave.color_mode = MODE_COLORS_RANDOM;
RainbowWave.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
RainbowWave.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
RainbowWave.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
RainbowWave.speed_min = AOC_KEYBOARD_SPEED_SLOW;
RainbowWave.speed_max = AOC_KEYBOARD_SPEED_FAST;
RainbowWave.speed = AOC_KEYBOARD_SPEED_MEDIUM;
modes.push_back(RainbowWave);
mode ConcentricCircles;
ConcentricCircles.name = "Concentric Circles";
ConcentricCircles.value = AOC_KEYBOARD_MODE_CONCENTRIC_CIRCLES;
ConcentricCircles.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
ConcentricCircles.color_mode = MODE_COLORS_MODE_SPECIFIC;
ConcentricCircles.brightness_min= AOC_KEYBOARD_BRIGHTNESS_OFF;
ConcentricCircles.brightness_max= AOC_KEYBOARD_BRIGHTNESS_HIGH;
ConcentricCircles.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
ConcentricCircles.speed_min = AOC_KEYBOARD_SPEED_SLOW;
ConcentricCircles.speed_max = AOC_KEYBOARD_SPEED_FAST;
ConcentricCircles.speed = AOC_KEYBOARD_SPEED_MEDIUM;
ConcentricCircles.colors_min = 1;
ConcentricCircles.colors_max = 1;
ConcentricCircles.colors.resize(1);
modes.push_back(ConcentricCircles);
mode WWave;
WWave.name = "W Wave";
WWave.value = AOC_KEYBOARD_MODE_W_WAVE;
WWave.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
WWave.color_mode = MODE_COLORS_MODE_SPECIFIC;
WWave.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
WWave.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
WWave.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
WWave.speed_min = AOC_KEYBOARD_SPEED_SLOW;
WWave.speed_max = AOC_KEYBOARD_SPEED_FAST;
WWave.speed = AOC_KEYBOARD_SPEED_MEDIUM;
WWave.colors_min = 1;
WWave.colors_max = 1;
WWave.colors.resize(1);
modes.push_back(WWave);
mode Direct;
Direct.name = "Direct";
Direct.value = AOC_KEYBOARD_MODE_CUSTOM;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Direct.color_mode = MODE_COLORS_PER_LED;
Direct.brightness_min = AOC_KEYBOARD_BRIGHTNESS_OFF;
Direct.brightness_max = AOC_KEYBOARD_BRIGHTNESS_HIGH;
Direct.brightness = AOC_KEYBOARD_BRIGHTNESS_HIGH;
modes.push_back(Direct);
SetupZones();
};
RGBController_AOCKeyboard::~RGBController_AOCKeyboard()
{
delete controller;
}
void RGBController_AOCKeyboard::SetupZones()
{
/*---------------------------------------------------------*\
| 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);
/*---------------------------------------------------------*\
| Create LEDs for the Matrix zone |
| Place keys in the layout to populate the matrix |
\*---------------------------------------------------------*/
for(size_t led_idx = 0; led_idx < new_zone.leds_count; led_idx++)
{
led new_led;
new_led.name = new_kb.GetKeyNameAt(led_idx);
new_led.value = new_kb.GetKeyValueAt(led_idx);
leds.push_back(new_led);
}
zones.push_back(new_zone);
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)
{
RGBColor color_buf[120];
for(unsigned int led_idx = 0; led_idx < leds.size(); led_idx++)
{
color_buf[leds[led_idx].value] = colors[led_idx];
}
controller->SetCustom(&color_buf[0]);
}
else
{
DeviceUpdateMode();
}
}
void RGBController_AOCKeyboard::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AOCKeyboard::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_AOCKeyboard::DeviceUpdateMode()
{
unsigned char aoc_direction = AOC_KEYBOARD_DIRECTION_CLOCKWISE;
unsigned char aoc_random = AOC_KEYBOARD_SINGLE_COLOR;
RGBColor* aoc_colors = &colors[0];
if(modes[active_mode].direction == MODE_DIRECTION_LEFT)
{
aoc_direction = AOC_KEYBOARD_DIRECTION_COUNTERCLOCKWISE;
}
if(modes[active_mode].color_mode == MODE_COLORS_RANDOM)
{
aoc_random = AOC_KEYBOARD_RANDOM;
}
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
aoc_colors = &modes[active_mode].colors[0];
}
controller->SetLightingConfig(modes[active_mode].value,
aoc_random,
modes[active_mode].brightness,
modes[active_mode].speed,
aoc_direction,
aoc_colors);
}
@@ -0,0 +1,32 @@
/*-----------------------------------------*\
| RGBController_AOCKeyboard.h |
| |
| Generic RGB Interface for AOC keyboard |
| |
| Adam Honse (CalcProgrammer1) 5/10/2023 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AOCKeyboardController.h"
class RGBController_AOCKeyboard : public RGBController
{
public:
RGBController_AOCKeyboard(AOCKeyboardController* controller_ptr);
~RGBController_AOCKeyboard();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode();
private:
AOCKeyboardController* controller;
};
@@ -0,0 +1,130 @@
/*-----------------------------------------*\
| AOCMouseController.cpp |
| |
| Driver for AOC Mouse lighting controller |
| |
| Adam Honse (CalcProgrammer1) 4/20/2023 |
\*-----------------------------------------*/
#include "AOCMouseController.h"
#include <cstring>
AOCMouseController::AOCMouseController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
}
AOCMouseController::~AOCMouseController()
{
hid_close(dev);
}
std::string AOCMouseController::GetDeviceLocation()
{
return("HID " + location);
}
std::string AOCMouseController::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
/*-------------------------------------------------------------------------------------------------*\
| Private packet sending functions. |
\*-------------------------------------------------------------------------------------------------*/
void AOCMouseController::SendDirect
(
RGBColor* color_data
)
{
SendPacket(AOC_MOUSE_MODE_STATIC_SINGLE_COLOR,
AOC_MOUSE_BRIGHTNESS_HIGH,
AOC_MOUSE_SPEED_MEDIUM,
AOC_MOUSE_DIRECTION_CLOCKWISE,
color_data);
}
void AOCMouseController::SendPacket
(
unsigned char mode,
unsigned char brightness,
unsigned char speed,
unsigned char direction,
RGBColor* color_data
)
{
unsigned char buf[60];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x20;
buf[0x01] = 0x03;
buf[0x02] = 0x01;
buf[0x03] = mode;
buf[0x04] = speed;
buf[0x05] = brightness;
buf[0x06] = direction;
buf[0x07] = 0x01;
buf[0x08] = 0x02;
buf[0x09] = 0xFF;
buf[0x0D] = 0x01;
buf[0x0E] = 0x03;
buf[0x0F] = 0xFF;
buf[0x10] = 0x7F;
buf[0x13] = 0x01;
buf[0x14] = 0x04;
buf[0x17] = 0xFF;
buf[0x19] = 0x01;
buf[0x1A] = 0x05;
buf[0x1C] = 0xFF;
buf[0x1F] = 0x01;
buf[0x20] = 0x06;
buf[0x21] = 0xFF;
buf[0x23] = 0xFF;
buf[0x25] = 0x01;
buf[0x26] = 0x07;
buf[0x27] = 0xFF;
buf[0x28] = 0xFF;
buf[0x2C] = 0x0A;
buf[0x2D] = 0x0A;
buf[0x30] = 0x14;
buf[0x31] = 0x08;
buf[0x3A] = 0x32;
buf[0x3B] = 0x32;
/*-----------------------------------------------------*\
| Copy in color |
\*-----------------------------------------------------*/
buf[0x33] = RGBGetRValue(color_data[0]);
buf[0x34] = RGBGetGValue(color_data[0]);
buf[0x35] = RGBGetBValue(color_data[0]);
buf[0x36] = RGBGetRValue(color_data[1]);
buf[0x37] = RGBGetGValue(color_data[1]);
buf[0x38] = RGBGetBValue(color_data[1]);
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, 60);
}
@@ -0,0 +1,80 @@
/*-----------------------------------------*\
| AOCMouseController.h |
| |
| Definitions and types for AOC mouse |
| lighting controller |
| |
| Adam Honse (CalcProgrammer1) 4/20/2023 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <hidapi/hidapi.h>
#include <string>
#pragma once
/*-----------------------------------------*\
| AOC Mousemat Modes |
| Note: The 0x80 bit is the random flag |
\*-----------------------------------------*/
enum
{
AOC_MOUSE_MODE_STATIC_SINGLE_COLOR = 0x00, /* Static single color mode */
AOC_MOUSE_MODE_STATIC_RANDOM = 0x80, /* Static random color mode */
AOC_MOUSE_MODE_BREATHING_SINGLE_COLOR = 0x01, /* Breathing single color mode */
AOC_MOUSE_MODE_BREATHING_RANDOM = 0x81, /* Breathing random color mode */
AOC_MOUSE_MODE_BLINK_SINGLE_COLOR = 0x02, /* Blink single color mode */
AOC_MOUSE_MODE_BLINK_RANDOM = 0x82, /* Blink random color mode */
AOC_MOUSE_MODE_WAVE_SINGLE_COLOR = 0x03, /* Wave single color mode */
AOC_MOUSE_MODE_WAVE_RANDOM = 0x83, /* Wave random color mode */
AOC_MOUSE_MODE_DPI = 0x04, /* DPI mode */
};
enum
{
AOC_MOUSE_SPEED_SLOW = 0x03, /* Slowest speed */
AOC_MOUSE_SPEED_MEDIUM = 0x02, /* Medium speed */
AOC_MOUSE_SPEED_FAST = 0x01, /* Fastest speed */
};
enum
{
AOC_MOUSE_BRIGHTNESS_OFF = 0x00, /* Lowest brightness (off) */
AOC_MOUSE_BRIGHTNESS_LOW = 0x01, /* Low brightness */
AOC_MOUSE_BRIGHTNESS_MEDIUM = 0x02, /* Medium brightness */
AOC_MOUSE_BRIGHTNESS_HIGH = 0x03, /* Highest brightness */
};
enum
{
AOC_MOUSE_DIRECTION_CLOCKWISE = 0x00, /* Clockwise direction */
AOC_MOUSE_DIRECTION_COUNTERCLOCKWISE = 0x01, /* Counter-clockwise direction */
};
class AOCMouseController
{
public:
AOCMouseController(hid_device* dev_handle, const char* path);
~AOCMouseController();
std::string GetDeviceLocation();
std::string GetSerialString();
void SendDirect
(
RGBColor* color_data
);
void SendPacket
(
unsigned char mode,
unsigned char brightness,
unsigned char speed,
unsigned char direction,
RGBColor* color_data
);
private:
hid_device* dev;
std::string location;
};
@@ -0,0 +1,34 @@
#include "Detector.h"
#include "AOCMouseController.h"
#include "RGBController.h"
#include "RGBController_AOCMouse.h"
/*-----------------------------------------------------*\
| AOC Mousemat 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)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
AOCMouseController* controller = new AOCMouseController(dev, info->path);
RGBController_AOCMouse* rgb_controller = new RGBController_AOCMouse(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
REGISTER_HID_DETECTOR_IPU("AOC GM500", DetectAOCMouseControllers, AOC_VID, AOC_GM500_PID, 1, 0xFF19, 0xFF19);
@@ -0,0 +1,215 @@
/*-----------------------------------------*\
| RGBController_AOCMouse.cpp |
| |
| Generic RGB Interface for AOC mouse |
| |
| Adam Honse (CalcProgrammer1) 4/20/2023 |
\*-----------------------------------------*/
#include "RGBController_AOCMouse.h"
/**------------------------------------------------------------------*\
@name AOC Mouse
@category Mouse
@type USB
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAOCMouseControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_AOCMouse::RGBController_AOCMouse(AOCMouseController* controller_ptr)
{
controller = controller_ptr;
name = "AOC Mouse Device";
vendor = "AOC";
type = DEVICE_TYPE_MOUSE;
description = "AOC Mouse Device";
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = AOC_MOUSE_MODE_STATIC_SINGLE_COLOR;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Direct.color_mode = MODE_COLORS_PER_LED;
Direct.brightness_min = AOC_MOUSE_BRIGHTNESS_OFF;
Direct.brightness_max = AOC_MOUSE_BRIGHTNESS_HIGH;
Direct.brightness = AOC_MOUSE_BRIGHTNESS_HIGH;
modes.push_back(Direct);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = AOC_MOUSE_MODE_STATIC_RANDOM;
SpectrumCycle.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
SpectrumCycle.color_mode = MODE_COLORS_RANDOM;
SpectrumCycle.brightness_min = AOC_MOUSE_BRIGHTNESS_OFF;
SpectrumCycle.brightness_max = AOC_MOUSE_BRIGHTNESS_HIGH;
SpectrumCycle.brightness = AOC_MOUSE_BRIGHTNESS_HIGH;
SpectrumCycle.speed_min = AOC_MOUSE_SPEED_SLOW;
SpectrumCycle.speed_max = AOC_MOUSE_SPEED_FAST;
SpectrumCycle.speed = AOC_MOUSE_SPEED_MEDIUM;
modes.push_back(SpectrumCycle);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AOC_MOUSE_MODE_BREATHING_SINGLE_COLOR;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Breathing.color_mode = MODE_COLORS_PER_LED;
Breathing.brightness_min = AOC_MOUSE_BRIGHTNESS_OFF;
Breathing.brightness_max = AOC_MOUSE_BRIGHTNESS_HIGH;
Breathing.brightness = AOC_MOUSE_BRIGHTNESS_HIGH;
Breathing.speed_min = AOC_MOUSE_SPEED_SLOW;
Breathing.speed_max = AOC_MOUSE_SPEED_FAST;
Breathing.speed = AOC_MOUSE_SPEED_MEDIUM;
modes.push_back(Breathing);
mode Blink;
Blink.name = "Flashing";
Blink.value = AOC_MOUSE_MODE_BLINK_SINGLE_COLOR;
Blink.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Blink.color_mode = MODE_COLORS_PER_LED;
Blink.brightness_min = AOC_MOUSE_BRIGHTNESS_OFF;
Blink.brightness_max = AOC_MOUSE_BRIGHTNESS_HIGH;
Blink.brightness = AOC_MOUSE_BRIGHTNESS_HIGH;
Blink.speed_min = AOC_MOUSE_SPEED_SLOW;
Blink.speed_max = AOC_MOUSE_SPEED_FAST;
Blink.speed = AOC_MOUSE_SPEED_MEDIUM;
modes.push_back(Blink);
mode Wave;
Wave.name = "Wave";
Wave.value = AOC_MOUSE_MODE_WAVE_SINGLE_COLOR;
Wave.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
Wave.color_mode = MODE_COLORS_PER_LED;
Wave.brightness_min = AOC_MOUSE_BRIGHTNESS_OFF;
Wave.brightness_max = AOC_MOUSE_BRIGHTNESS_HIGH;
Wave.brightness = AOC_MOUSE_BRIGHTNESS_HIGH;
Wave.speed_min = AOC_MOUSE_SPEED_SLOW;
Wave.speed_max = AOC_MOUSE_SPEED_FAST;
Wave.speed = AOC_MOUSE_SPEED_MEDIUM;
modes.push_back(Wave);
mode RainbowWave;
RainbowWave.name = "Rainbow Wave";
RainbowWave.value = AOC_MOUSE_MODE_WAVE_RANDOM;
RainbowWave.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
RainbowWave.color_mode = MODE_COLORS_RANDOM;
RainbowWave.brightness_min = AOC_MOUSE_BRIGHTNESS_OFF;
RainbowWave.brightness_max = AOC_MOUSE_BRIGHTNESS_HIGH;
RainbowWave.brightness = AOC_MOUSE_BRIGHTNESS_HIGH;
RainbowWave.speed_min = AOC_MOUSE_SPEED_SLOW;
RainbowWave.speed_max = AOC_MOUSE_SPEED_FAST;
RainbowWave.speed = AOC_MOUSE_SPEED_MEDIUM;
modes.push_back(RainbowWave);
mode DPI;
DPI.name = "DPI";
DPI.value = AOC_MOUSE_MODE_DPI;
DPI.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
DPI.color_mode = MODE_COLORS_RANDOM;
DPI.brightness_min = AOC_MOUSE_BRIGHTNESS_OFF;
DPI.brightness_max = AOC_MOUSE_BRIGHTNESS_HIGH;
DPI.brightness = AOC_MOUSE_BRIGHTNESS_HIGH;
modes.push_back(DPI);
SetupZones();
};
RGBController_AOCMouse::~RGBController_AOCMouse()
{
delete controller;
}
void RGBController_AOCMouse::SetupZones()
{
zone logo_zone;
logo_zone.name = "Logo";
logo_zone.type = ZONE_TYPE_SINGLE;
logo_zone.leds_min = 1;
logo_zone.leds_max = 1;
logo_zone.leds_count = 1;
logo_zone.matrix_map = NULL;
zones.push_back(logo_zone);
led logo_led;
logo_led.name = "Logo";
leds.push_back(logo_led);
zone scroll_wheel_zone;
scroll_wheel_zone.name = "Scroll Wheel";
scroll_wheel_zone.type = ZONE_TYPE_SINGLE;
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;
scroll_wheel_led.name = "Scroll Wheel";
leds.push_back(scroll_wheel_led);
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*/)
{
DeviceUpdateLEDs();
}
void RGBController_AOCMouse::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_AOCMouse::DeviceUpdateMode()
{
if(modes[active_mode].value == AOC_MOUSE_MODE_STATIC_SINGLE_COLOR)
{
controller->SendDirect(&colors[0]);
}
else
{
unsigned char aoc_direction = AOC_MOUSE_DIRECTION_CLOCKWISE;
unsigned int aoc_mode = modes[active_mode].value;
if(modes[active_mode].direction == MODE_DIRECTION_LEFT)
{
aoc_direction = AOC_MOUSE_DIRECTION_COUNTERCLOCKWISE;
}
if(modes[active_mode].color_mode == MODE_COLORS_RANDOM)
{
switch(modes[active_mode].value)
{
case AOC_MOUSE_MODE_BREATHING_SINGLE_COLOR:
aoc_mode = AOC_MOUSE_MODE_BREATHING_RANDOM;
break;
case AOC_MOUSE_MODE_BLINK_SINGLE_COLOR:
aoc_mode = AOC_MOUSE_MODE_BLINK_RANDOM;
break;
}
}
controller->SendPacket(aoc_mode,
modes[active_mode].brightness,
modes[active_mode].speed,
aoc_direction,
&colors[0]);
}
}
@@ -0,0 +1,32 @@
/*-----------------------------------------*\
| RGBController_AOCMouse.h |
| |
| Generic RGB Interface for AOC mouse |
| |
| Adam Honse (CalcProgrammer1) 4/20/2023 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AOCMouseController.h"
class RGBController_AOCMouse : public RGBController
{
public:
RGBController_AOCMouse(AOCMouseController* controller_ptr);
~RGBController_AOCMouse();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode();
private:
AOCMouseController* controller;
};
@@ -0,0 +1,112 @@
/*-----------------------------------------*\
| AOCMousematController.cpp |
| |
| Driver for AOC Mousemat lighting |
| controller |
| |
| Adam Honse (CalcProgrammer1) 4/15/2023 |
\*-----------------------------------------*/
#include "AOCMousematController.h"
#include <cstring>
AOCMousematController::AOCMousematController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
}
AOCMousematController::~AOCMousematController()
{
hid_close(dev);
}
std::string AOCMousematController::GetDeviceLocation()
{
return("HID " + location);
}
std::string AOCMousematController::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
/*-------------------------------------------------------------------------------------------------*\
| Private packet sending functions. |
\*-------------------------------------------------------------------------------------------------*/
void AOCMousematController::SendDirect
(
RGBColor* color_data
)
{
SendPacket(AOC_MOUSEMAT_MODE_STATIC_SINGLE_COLOR,
AOC_MOUSEMAT_BRIGHTNESS_HIGH,
AOC_MOUSEMAT_SPEED_MEDIUM,
AOC_MOUSEMAT_DIRECTION_CLOCKWISE,
color_data);
}
void AOCMousematController::SendPacket
(
unsigned char mode,
unsigned char brightness,
unsigned char speed,
unsigned char direction,
RGBColor* color_data
)
{
unsigned char buf[32];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x20;
buf[0x01] = brightness;
buf[0x02] = speed;
buf[0x03] = direction;
buf[0x04] = 0x01;
buf[0x05] = mode;
buf[0x09] = 0xFF;
buf[0x0C] = 0xFF;
buf[0x0D] = 0x3F;
buf[0x0F] = 0xFF;
buf[0x10] = 0xFF;
buf[0x13] = 0xFF;
buf[0x17] = 0xFF;
buf[0x19] = 0xFF;
buf[0x1A] = 0xFF;
buf[0x1B] = 0xFF;
buf[0x1D] = 0xFF;
buf[0x1E] = 0x32;
buf[0x1F] = 0x32;
/*-----------------------------------------------------*\
| Copy in color |
\*-----------------------------------------------------*/
buf[0x06] = RGBGetRValue(color_data[0]);
buf[0x07] = RGBGetGValue(color_data[0]);
buf[0x08] = RGBGetBValue(color_data[0]);
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, 32);
}
@@ -0,0 +1,79 @@
/*-----------------------------------------*\
| AOCMousematController.h |
| |
| Definitions and types for AOC mousemat |
| lighting controller |
| |
| Adam Honse (CalcProgrammer1) 4/15/2023 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <hidapi/hidapi.h>
#include <string>
#pragma once
/*-----------------------------------------*\
| AOC Mousemat Modes |
| Note: The 0x80 bit is the random flag |
\*-----------------------------------------*/
enum
{
AOC_MOUSEMAT_MODE_STATIC_SINGLE_COLOR = 0x00, /* Static single color mode */
AOC_MOUSEMAT_MODE_STATIC_RANDOM = 0x80, /* Static random color mode */
AOC_MOUSEMAT_MODE_BREATHING_SINGLE_COLOR = 0x01, /* Breathing single color mode */
AOC_MOUSEMAT_MODE_BREATHING_RANDOM = 0x81, /* Breathing random color mode */
AOC_MOUSEMAT_MODE_BLINK_SINGLE_COLOR = 0x02, /* Blink single color mode */
AOC_MOUSEMAT_MODE_BLINK_RANDOM = 0x82, /* Blink random color mode */
AOC_MOUSEMAT_MODE_WAVE_SINGLE_COLOR = 0x03, /* Wave single color mode */
AOC_MOUSEMAT_MODE_WAVE_RANDOM = 0x83, /* Wave random color mode */
};
enum
{
AOC_MOUSEMAT_SPEED_SLOW = 0x03, /* Slowest speed */
AOC_MOUSEMAT_SPEED_MEDIUM = 0x02, /* Medium speed */
AOC_MOUSEMAT_SPEED_FAST = 0x01, /* Fastest speed */
};
enum
{
AOC_MOUSEMAT_BRIGHTNESS_OFF = 0x00, /* Lowest brightness (off) */
AOC_MOUSEMAT_BRIGHTNESS_LOW = 0x01, /* Low brightness */
AOC_MOUSEMAT_BRIGHTNESS_MEDIUM = 0x02, /* Medium brightness */
AOC_MOUSEMAT_BRIGHTNESS_HIGH = 0x03, /* Highest brightness */
};
enum
{
AOC_MOUSEMAT_DIRECTION_CLOCKWISE = 0x00, /* Clockwise direction */
AOC_MOUSEMAT_DIRECTION_COUNTERCLOCKWISE = 0x01, /* Counter-clockwise direction */
};
class AOCMousematController
{
public:
AOCMousematController(hid_device* dev_handle, const char* path);
~AOCMousematController();
std::string GetDeviceLocation();
std::string GetSerialString();
void SendDirect
(
RGBColor* color_data
);
void SendPacket
(
unsigned char mode,
unsigned char brightness,
unsigned char speed,
unsigned char direction,
RGBColor* color_data
);
private:
hid_device* dev;
std::string location;
};
@@ -0,0 +1,34 @@
#include "Detector.h"
#include "AOCMousematController.h"
#include "RGBController.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)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
AOCMousematController* controller = new AOCMousematController(dev, info->path);
RGBController_AOCMousemat* rgb_controller = new RGBController_AOCMousemat(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
REGISTER_HID_DETECTOR_IPU("AOC AGON AMM700", DetectAOCMousematControllers, AOC_VID, AOC_AMM700_PID, 1, 0xFF19, 0xFF19);
@@ -0,0 +1,192 @@
/*-----------------------------------------*\
| RGBController_AOCMousemat.cpp |
| |
| Generic RGB Interface for AOC mousemat |
| |
| Adam Honse (CalcProgrammer1) 4/15/2023 |
\*-----------------------------------------*/
#include "RGBController_AOCMousemat.h"
/**------------------------------------------------------------------*\
@name AOC Mousemat
@category Mousemat
@type USB
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAOCMousematControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_AOCMousemat::RGBController_AOCMousemat(AOCMousematController* controller_ptr)
{
controller = controller_ptr;
name = "AOC Mousemat Device";
vendor = "AOC";
type = DEVICE_TYPE_MOUSEMAT;
description = "AOC Mousemat Device";
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = AOC_MOUSEMAT_MODE_STATIC_SINGLE_COLOR;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Direct.color_mode = MODE_COLORS_PER_LED;
Direct.brightness_min = AOC_MOUSEMAT_BRIGHTNESS_OFF;
Direct.brightness_max = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
Direct.brightness = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
modes.push_back(Direct);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = AOC_MOUSEMAT_MODE_STATIC_RANDOM;
SpectrumCycle.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
SpectrumCycle.color_mode = MODE_COLORS_RANDOM;
SpectrumCycle.brightness_min = AOC_MOUSEMAT_BRIGHTNESS_OFF;
SpectrumCycle.brightness_max = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
SpectrumCycle.brightness = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
SpectrumCycle.speed_min = AOC_MOUSEMAT_SPEED_SLOW;
SpectrumCycle.speed_max = AOC_MOUSEMAT_SPEED_FAST;
SpectrumCycle.speed = AOC_MOUSEMAT_SPEED_MEDIUM;
modes.push_back(SpectrumCycle);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AOC_MOUSEMAT_MODE_BREATHING_SINGLE_COLOR;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Breathing.color_mode = MODE_COLORS_PER_LED;
Breathing.brightness_min = AOC_MOUSEMAT_BRIGHTNESS_OFF;
Breathing.brightness_max = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
Breathing.brightness = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
Breathing.speed_min = AOC_MOUSEMAT_SPEED_SLOW;
Breathing.speed_max = AOC_MOUSEMAT_SPEED_FAST;
Breathing.speed = AOC_MOUSEMAT_SPEED_MEDIUM;
modes.push_back(Breathing);
mode Blink;
Blink.name = "Flashing";
Blink.value = AOC_MOUSEMAT_MODE_BLINK_SINGLE_COLOR;
Blink.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Blink.color_mode = MODE_COLORS_PER_LED;
Blink.brightness_min = AOC_MOUSEMAT_BRIGHTNESS_OFF;
Blink.brightness_max = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
Blink.brightness = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
Blink.speed_min = AOC_MOUSEMAT_SPEED_SLOW;
Blink.speed_max = AOC_MOUSEMAT_SPEED_FAST;
Blink.speed = AOC_MOUSEMAT_SPEED_MEDIUM;
modes.push_back(Blink);
mode Wave;
Wave.name = "Wave";
Wave.value = AOC_MOUSEMAT_MODE_WAVE_SINGLE_COLOR;
Wave.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
Wave.color_mode = MODE_COLORS_PER_LED;
Wave.brightness_min = AOC_MOUSEMAT_BRIGHTNESS_OFF;
Wave.brightness_max = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
Wave.brightness = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
Wave.speed_min = AOC_MOUSEMAT_SPEED_SLOW;
Wave.speed_max = AOC_MOUSEMAT_SPEED_FAST;
Wave.speed = AOC_MOUSEMAT_SPEED_MEDIUM;
modes.push_back(Wave);
mode RainbowWave;
RainbowWave.name = "Rainbow Wave";
RainbowWave.value = AOC_MOUSEMAT_MODE_WAVE_RANDOM;
RainbowWave.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
RainbowWave.color_mode = MODE_COLORS_RANDOM;
RainbowWave.brightness_min = AOC_MOUSEMAT_BRIGHTNESS_OFF;
RainbowWave.brightness_max = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
RainbowWave.brightness = AOC_MOUSEMAT_BRIGHTNESS_HIGH;
RainbowWave.speed_min = AOC_MOUSEMAT_SPEED_SLOW;
RainbowWave.speed_max = AOC_MOUSEMAT_SPEED_FAST;
RainbowWave.speed = AOC_MOUSEMAT_SPEED_MEDIUM;
modes.push_back(RainbowWave);
SetupZones();
};
RGBController_AOCMousemat::~RGBController_AOCMousemat()
{
delete controller;
}
void RGBController_AOCMousemat::SetupZones()
{
zone mousemat_zone;
mousemat_zone.name = "Mousemat";
mousemat_zone.type = ZONE_TYPE_SINGLE;
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;
mousemat_led.name = "Mousemat";
leds.push_back(mousemat_led);
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*/)
{
DeviceUpdateLEDs();
}
void RGBController_AOCMousemat::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_AOCMousemat::DeviceUpdateMode()
{
if(modes[active_mode].value == AOC_MOUSEMAT_MODE_STATIC_SINGLE_COLOR)
{
controller->SendDirect(&colors[0]);
}
else
{
unsigned char aoc_direction = AOC_MOUSEMAT_DIRECTION_CLOCKWISE;
unsigned int aoc_mode = modes[active_mode].value;
if(modes[active_mode].direction == MODE_DIRECTION_LEFT)
{
aoc_direction = AOC_MOUSEMAT_DIRECTION_COUNTERCLOCKWISE;
}
if(modes[active_mode].color_mode == MODE_COLORS_RANDOM)
{
switch(modes[active_mode].value)
{
case AOC_MOUSEMAT_MODE_BREATHING_SINGLE_COLOR:
aoc_mode = AOC_MOUSEMAT_MODE_BREATHING_RANDOM;
break;
case AOC_MOUSEMAT_MODE_BLINK_SINGLE_COLOR:
aoc_mode = AOC_MOUSEMAT_MODE_BLINK_RANDOM;
break;
}
}
controller->SendPacket(aoc_mode,
modes[active_mode].brightness,
modes[active_mode].speed,
aoc_direction,
&colors[0]);
}
}
@@ -0,0 +1,32 @@
/*-----------------------------------------*\
| RGBController_AOCMousemat.h |
| |
| Generic RGB Interface for AOC mousemat |
| |
| Adam Honse (CalcProgrammer1) 4/15/2023 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AOCMousematController.h"
class RGBController_AOCMousemat : public RGBController
{
public:
RGBController_AOCMousemat(AOCMousematController* controller_ptr);
~RGBController_AOCMousemat();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode();
private:
AOCMousematController* controller;
};
@@ -5,18 +5,22 @@
| lighting controller |
| |
| Ed Kambulow (dredvard) 12/20/2020 |
| Shady Nawara (ShadyNawara) 01/16/2023 |
\*-----------------------------------------*/
#include "RGBController.h"
#include "ASRockPolychromeUSBController.h"
#include <cstring>
#include <stdio.h>
#include "RGBController.h"
#include "ResourceManager.h"
#include "ASRockPolychromeUSBController.h"
#include "dependencies/dmiinfo.h"
#define POLYCHROME_USB_READ_ZONE_CONFIG 0x11
#define POLYCHROME_USB_READ_HEADER 0x14
#define POLYCHROME_USB_WRITE_HEADER 0x15
#define POLYCHROME_USB_SET_ZONE 0x10
#define POLYCHROME_USB_INITIAL_CHUNK 0xE3
#define POLYCHROME_USB_SEND_CHUNK 0xE4
#define POLYCHROME_USB_INIT 0xA4
#define POLYCHROME_USB_COMMIT 0x12
@@ -29,7 +33,7 @@ const char* polychrome_USB_zone_names[] =
"PCH",
"IO Cover",
"PCB",
"Audio",
"Addressable Header 3/Audio",
};
PolychromeUSBController::PolychromeUSBController(hid_device* dev_handle, const char* path)
@@ -72,7 +76,7 @@ std::string PolychromeUSBController::GetSerialString()
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
@@ -82,19 +86,64 @@ std::string PolychromeUSBController::GetSerialString()
void PolychromeUSBController::SetDeviceInfo()
{
PolychromeDeviceInfo newdev_info;
ReadConfigTables();
/*--------------------------------------------------*\
| Read settings to check for configured RGSwap |
\*--------------------------------------------------*/
const std::string detector_name = "ASRock Polychrome USB";
const std::string json_rgswap = "RGSwap";
SettingsManager* settings_manager = ResourceManager::get()->GetSettingsManager();
json device_settings = settings_manager->GetSettings(detector_name);
/*---------------------------------------------------------*\
| Get RGSwap settings from the settings manager |
| If RGSwap settings are not found then write them out |
| Onboard leds are set to their existing values, |
| Addressable RGB and RGB headers are set to false |
\*---------------------------------------------------------*/
if(!device_settings.contains(json_rgswap))
{
device_settings[json_rgswap][polychrome_USB_zone_names[0]] = false;
device_settings[json_rgswap][polychrome_USB_zone_names[1]] = false;
device_settings[json_rgswap][polychrome_USB_zone_names[2]] = false;
device_settings[json_rgswap][polychrome_USB_zone_names[3]] = false;
device_settings[json_rgswap][polychrome_USB_zone_names[4]] = ((configtable[8] >> 4) & 1) ? true : false;
device_settings[json_rgswap][polychrome_USB_zone_names[5]] = ((configtable[8] >> 5) & 1) ? true : false;
device_settings[json_rgswap][polychrome_USB_zone_names[6]] = ((configtable[8] >> 6) & 1) ? true : false;
device_settings[json_rgswap][polychrome_USB_zone_names[7]] = false;
settings_manager->SetSettings(detector_name, device_settings);
settings_manager->SaveSettings();
}
else
{
for(std::size_t idx = 0; idx < 8; idx++)
{
if(device_settings[json_rgswap].contains(polychrome_USB_zone_names[idx]))
{
rgswapconfig[idx] = device_settings[json_rgswap][polychrome_USB_zone_names[idx]];
}
}
}
bool rgswap_final[8] = {0};
for (unsigned int zonecnt = 0; zonecnt < POLYCHROME_USB_ZONE_MAX_NUM; zonecnt++)
{
if(configtable[zonecnt] == 0x1E)
if(configtable[zonecnt] == 0x1E || !((configtable[9] >> zonecnt) & 1))
{
/*-----------------------------------------------------------------------*\
| If we don't have this device type (0x1E) we will skip it and continue. |
| Or if the device is not available we skip it and continue |
\*-----------------------------------------------------------------------*/
continue;
}
newdev_info.num_leds = configtable[zonecnt];
newdev_info.rgswap = ((configtable[8] >> zonecnt) & 1) || rgswapconfig[zonecnt];
rgswap_final[zonecnt] = newdev_info.rgswap;
/*--------------------------------------------------------------------------------------------------*\
| We will need to know what zone type this is, so that we can look up the name and make calls later. |
@@ -108,6 +157,11 @@ void PolychromeUSBController::SetDeviceInfo()
\*-----------------------------------------*/
case POLYCHROME_USB_ZONE_ARGB1:
case POLYCHROME_USB_ZONE_ARGB2:
/*---------------------------------------------*\
| The last led channel is allocated to a |
| third ARGB header on some newer motherboards |
\*---------------------------------------------*/
case POLYCHROME_USB_ZONE_AUDIO:
newdev_info.device_type = PolychromeDeviceType::ADDRESSABLE;
break;
@@ -117,10 +171,9 @@ void PolychromeUSBController::SetDeviceInfo()
case POLYCHROME_USB_ZONE_PCH:
case POLYCHROME_USB_ZONE_IOCOVER:
case POLYCHROME_USB_ZONE_PCB:
case POLYCHROME_USB_ZONE_AUDIO:
newdev_info.device_type = PolychromeDeviceType::FIXED;
break;
/*-----------------------------------------*\
| Type: Fixed |
\*-----------------------------------------*/
@@ -133,6 +186,26 @@ void PolychromeUSBController::SetDeviceInfo()
device_info.push_back(newdev_info);
}
// set rgswap to match our settings
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)
{
unsigned char zonecfg[POLYCHROME_USB_ZONE_MAX_NUM];
memset(zonecfg, POLYCHROME_USB_ZONE_UNAVAILABLE, POLYCHROME_USB_ZONE_MAX_NUM);
configtable[zone] = new_size;
for(unsigned int i = 0; i < POLYCHROME_USB_ZONE_MAX_NUM; i++)
{
zonecfg[i] = configtable[i];
}
unsigned char zonecmd = POLYCHROME_USB_LEDCOUNT_CFG;
WriteHeader(zonecmd, zonecfg, sizeof(zonecfg));
}
void PolychromeUSBController::WriteZone
@@ -140,13 +213,13 @@ void PolychromeUSBController::WriteZone
unsigned char zone,
unsigned char mode,
unsigned char speed,
RGBColor rgb,
RGBColor rgb,
bool allzone = false
)
{
/*----------------------------------------------------*\
| Get the device info so we can look up the zone type. |
| Get the device info so we can look up the zone type. |
\*----------------------------------------------------*/
PolychromeDeviceInfo device_info = GetPolychromeDevices()[zone];
@@ -161,10 +234,20 @@ void PolychromeUSBController::WriteZone
| Set up message packet with leading 00 |
\*-----------------------------------------------------*/
usb_buf[0x01] = POLYCHROME_USB_SET_ZONE;
usb_buf[0x03] = device_info.zone_type;
usb_buf[0x03] = device_info.zone_type;
usb_buf[0x04] = mode;
usb_buf[0x05] = RGBGetRValue(rgb);
usb_buf[0x06] = RGBGetGValue(rgb);
if(device_info.rgswap)
{
usb_buf[0x05] = RGBGetRValue(rgb);
usb_buf[0x06] = RGBGetGValue(rgb);
}
else
{
usb_buf[0x05] = RGBGetGValue(rgb);
usb_buf[0x06] = RGBGetRValue(rgb);
}
usb_buf[0x07] = RGBGetBValue(rgb);
usb_buf[0x08] = speed;
usb_buf[0x09] = 0xFF;
@@ -179,67 +262,126 @@ void PolychromeUSBController::WriteZone
void PolychromeUSBController::WriteAllZones
(
const std::vector<PolychromeZoneInfo>& zones_info,
const std::vector<PolychromeZoneInfo>& /*zones_info*/,
const std::vector<zone>& zones
)
{
unsigned char usb_buf[65];
std::vector<unsigned char> combined_leds_rgb;
std::size_t max_led_count = 0;
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++){
PolychromeDeviceInfo device_info = GetPolychromeDevices()[zone_idx];
for(std::size_t led_idx = 0; led_idx < zones[zone_idx].leds_count; led_idx++)
{
if(device_info.rgswap)
{
combined_leds_rgb.push_back(RGBGetRValue(zones[zone_idx].colors[led_idx]));
combined_leds_rgb.push_back(RGBGetGValue(zones[zone_idx].colors[led_idx]));
}
else
{
combined_leds_rgb.push_back(RGBGetGValue(zones[zone_idx].colors[led_idx]));
combined_leds_rgb.push_back(RGBGetRValue(zones[zone_idx].colors[led_idx]));
}
combined_leds_rgb.push_back(RGBGetBValue(zones[zone_idx].colors[led_idx]));
}
max_led_count += zones[zone_idx].leds_max;
}
combined_leds_rgb.resize((max_led_count + 8) * 3, 0);
unsigned char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00 |
| Set up initial message packet with leading 00 |
\*-----------------------------------------------------*/
usb_buf[0x01] = POLYCHROME_USB_SET_ZONE;
usb_buf[0x03] = 0x07;
usb_buf[0x04] = zones_info[0].mode;
usb_buf[0x04] = 0xE2;
usb_buf[0x03] = 0xFF;
usb_buf[0x04] = POLYCHROME_USB_INITIAL_CHUNK;
usb_buf[0x07] = 0xFF;
usb_buf[0x40] = 0x65;
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
std::size_t initial_led_offset = 9;
std::size_t message_byte_capacity = 54; // 18 leds * 3 bytes
std::size_t led_byte_idx = 0;
while(led_byte_idx < combined_leds_rgb.size())
{
usb_buf[0x05 + (3 * zone_idx) ] = RGBGetRValue(zones[zone_idx].colors[0]);
usb_buf[0x05 + (3 * zone_idx) + 1] = RGBGetGValue(zones[zone_idx].colors[0]);
usb_buf[0x05 + (3 * zone_idx) + 2] = RGBGetBValue(zones[zone_idx].colors[0]);
for(std::size_t byte_idx = 0; byte_idx < message_byte_capacity; byte_idx++)
{
usb_buf[initial_led_offset + byte_idx] = combined_leds_rgb[led_byte_idx++];
if(led_byte_idx >= combined_leds_rgb.size())
{
break;
}
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, usb_buf, 65);
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00 |
\*-----------------------------------------------------*/
usb_buf[0x01] = POLYCHROME_USB_SET_ZONE;
usb_buf[0x03] = 0xFF;
usb_buf[0x04] = POLYCHROME_USB_SEND_CHUNK;
usb_buf[0x40] = 0x65;
initial_led_offset = 5;
message_byte_capacity = 57; // 19 leds * 3 bytes
}
}
/*-----------------------------------------------------*\
| If reset is true, rgswap is set to the values |
| specified in the settings file, otherwise set to off |
\*-----------------------------------------------------*/
void PolychromeUSBController::SetRGSwap(bool reset)
{
if(reset)
{
bool rg[8] = {0};
std::vector<PolychromeDeviceInfo> devices_info = GetPolychromeDevices();
for (PolychromeDeviceInfo device : devices_info)
{
rg[device.zone_type] = device.rgswap;
}
WriteRGSwap(rg[0], rg[1], rg[2], rg[3], rg[4], rg[5], rg[6], rg[7]);
}
else
{
/*-----------------------------------------------------------------*\
| Disable RGSwap as it causes flashing on each update in direct mode|
\*-----------------------------------------------------------------*/
WriteRGSwap(0, 0, 0, 0, 0, 0, 0, 0);
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, usb_buf, 65);
hid_read(dev, usb_buf, 64);
}
void PolychromeUSBController::WriteRGSwap
(
bool ahdr1,
bool ahdr0,
bool hdr0,
bool hdr1,
bool hdr0
bool ahdr0,
bool ahdr1,
bool pch,
bool io,
bool pcb,
bool chnl8
)
{
unsigned char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00 |
\*-----------------------------------------------------*/
usb_buf[0x01] = POLYCHROME_USB_WRITE_HEADER;
usb_buf[0x04] = POLYCHROME_USB_RGSWAP_CFG;
usb_buf[0x05] = ((ahdr1 << 3) & (ahdr0 << 2) & (hdr1 << 1) & hdr0) & 0x40;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, usb_buf, 65);
hid_read(dev, usb_buf, 64);
unsigned char rgconfig[1] = {static_cast<unsigned char>(((chnl8 << 7) | (pcb << 6) | (io << 5) | (pch << 4) | (ahdr1 << 3) | (ahdr0 << 2) | (hdr1 << 1) | hdr0))};
WriteHeader(POLYCHROME_USB_RGSWAP_CFG, rgconfig, 1);
}
void PolychromeUSBController::WriteHeader
@@ -292,7 +434,7 @@ PolychromeZoneInfo PolychromeUSBController::GetZoneConfig(unsigned char zone)
| Set up config table request packet |
\*-----------------------------------------------------*/
usb_buf[0x01] = POLYCHROME_USB_READ_ZONE_CONFIG;
usb_buf[0x03] = device_info.zone_type;
usb_buf[0x03] = device_info.zone_type;
/*-----------------------------------------------------*\
| Send packet |
@@ -304,13 +446,28 @@ PolychromeZoneInfo PolychromeUSBController::GetZoneConfig(unsigned char zone)
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
hid_read(dev, usb_buf, 64);
r = usb_buf[0x05];
g = usb_buf[0x06];
b = usb_buf[0x07];
zoneinfo.mode = usb_buf[0x04] != 0xE2 ? usb_buf[0x04] : 0x0F;
zoneinfo.color = ToRGBColor(r,g,b);
/*------------------------------------------------------*\
| Set Chroma mode (0xE2) & Per-Led mode (0xE3) as Direct |
\*------------------------------------------------------*/
zoneinfo.mode = usb_buf[0x04] != 0xE2 && usb_buf[0x04] != 0xE3 && usb_buf[0x04] < 0x0F ? usb_buf[0x04] : 0x0F;
/*------------------------------------------------------*\
| G & R are swapped since RGSwap is disabled on init, |
| Unless overwritten in settings |
\*------------------------------------------------------*/
if(device_info.rgswap)
{
zoneinfo.color = ToRGBColor(r,g,b);
}
else
{
zoneinfo.color = ToRGBColor(g,r,b);
}
zoneinfo.speed = usb_buf[0x08];
zoneinfo.zone = usb_buf[0x03];
@@ -321,7 +478,7 @@ void PolychromeUSBController::ReadConfigTables()
{
unsigned char usb_buf[65];
unsigned char maxzoneleds[8];
unsigned char rgbswap;
unsigned char rgswap;
unsigned char header1;
/*-----------------------------------------------------*\
@@ -348,7 +505,7 @@ void PolychromeUSBController::ReadConfigTables()
/*-----------------------------------------------------*\
| Reads in format: RGB1, RGB2, ARGB1, ARGB2, PCH, IO, |
| PCB, AUDIO |
| PCB, AUDIO/ARGB3 |
\*-----------------------------------------------------*/
memcpy(&maxzoneleds,&usb_buf[0x04],8);
@@ -368,10 +525,10 @@ void PolychromeUSBController::ReadConfigTables()
hid_read(dev, usb_buf, 64);
/*-----------------------------------------------------*\
| Reads bitwise in format: AUDIO, PCB, IO, PCH, ARGB2, |
| ARGB1, RGB2, RGB1 if available |
| Reads bitwise in format: AUDIO/ARGB3, PCB, IO, PCH, |
| ARGB2,ARGB1, RGB2, RGB1 if available |
\*-----------------------------------------------------*/
rgbswap=usb_buf[4];
rgswap=usb_buf[4];
/*-----------------------------------------------------*\
| Zero out buffer |
@@ -387,10 +544,15 @@ void PolychromeUSBController::ReadConfigTables()
hid_write(dev, usb_buf, 64);
memset(usb_buf, 0x00, sizeof(usb_buf));
hid_read(dev, usb_buf, 64);
/*-----------------------------------------------------*\
| Reads bitwise in format: AUDIO/ARGB3, PCB, IO, PCH, |
| ARGB2,ARGB1, RGB2, RGB1 if available |
\*-----------------------------------------------------*/
header1=usb_buf[4];
memcpy(configtable,&maxzoneleds,8);
configtable[8]=rgbswap;
configtable[8]=rgswap;
configtable[9]=header1;
return;
}
@@ -5,6 +5,7 @@
| lighting controller |
| |
| Ed Kambulow (dredvard) 12/20/2020 |
| Shady Nawara (ShadyNawara) 01/16/2023 |
\*-----------------------------------------*/
#include "RGBController.h"
@@ -69,7 +70,7 @@ enum
POLYCHROME_USB_ZONE_PCH = 0X04, // PCH
POLYCHROME_USB_ZONE_IOCOVER = 0X05, // IOCOVER
POLYCHROME_USB_ZONE_PCB = 0X06, // PCB - Could be mixed swapped with 0x07
POLYCHROME_USB_ZONE_AUDIO = 0X07 // AUDIO
POLYCHROME_USB_ZONE_AUDIO = 0X07 // AUDIO/ARGB Header 3
};
enum class PolychromeDeviceType
@@ -91,6 +92,7 @@ struct PolychromeDeviceInfo
unsigned char effect_channel;
unsigned char num_leds;
unsigned char zone_type;
bool rgswap;
PolychromeDeviceType device_type;
};
@@ -131,17 +133,31 @@ public:
unsigned int configsize
);
void ResizeZone(int zone, int new_size);
void SetRGSwap(bool reset);
protected:
hid_device* dev;
std::vector<PolychromeDeviceInfo> device_info;
std::string location;
void WriteRGSwap(bool ahdr1, bool ahdr0, bool hdr1, bool hdr0);
void WriteRGSwap
(
bool hdr0,
bool hdr1,
bool ahdr0,
bool ahdr1,
bool pch,
bool io,
bool pcb,
bool chnl8
);
private:
unsigned int led_count;
std::string device_name;
unsigned char configtable[12];
bool rgswapconfig[8] = { 0 };
void SetDeviceInfo();
void ReadConfigTables();
@@ -5,6 +5,7 @@
| ASRock Polychrome USB Driver |
| |
| Ed Kambulow (Dredvard) 12/26/2020 |
| Shady Nawara (ShadyNawara) 01/16/2023 |
\*-----------------------------------------*/
#include "RGBController_ASRockPolychromeUSB.h"
@@ -22,7 +23,6 @@
@effects :white_check_mark:
@detectors DetectPolychromeUSBControllers
@comment ASRock Polychrome controllers will save with each update.
Per ARGB LED support is not possible with these devices.
\*-------------------------------------------------------------------*/
RGBController_PolychromeUSB::RGBController_PolychromeUSB(PolychromeUSBController* controller_ptr)
@@ -181,11 +181,6 @@ RGBController_PolychromeUSB::RGBController_PolychromeUSB(PolychromeUSBController
modes.push_back(Direct);
SetupZones();
/*-------------------------------------------------*\
| Initialize active mode |
\*-------------------------------------------------*/
active_mode = GetDeviceMode(1);
}
void RGBController_PolychromeUSB::SetupZones()
@@ -238,16 +233,6 @@ void RGBController_PolychromeUSB::SetupZones()
SetupColors();
/*---------------------------------------------------------*\
| Initialize colors for each LED |
\*---------------------------------------------------------*/
for(std::size_t led_idx = 0; led_idx < leds.size(); led_idx++)
{
unsigned char led = (unsigned char)leds[led_idx].value;
colors[led_idx] = controller->GetZoneConfig(led).color; // TODO Get addressable instead of zone idx
}
/*---------------------------------------------------------*\
| Initialize zone info to track zone, speed, mode |
| B550 Boards have modes, speed for each zone |
@@ -259,26 +244,37 @@ void RGBController_PolychromeUSB::SetupZones()
zones_info.push_back(zoneinfo);
}
/*---------------------------------------------------------*\
| Initialize colors for each LED |
| We cannot currently get the individual led color so |
| we use the zone color in each zone to set all leds |
| !!TODO: in Per-Led mode, zone color is always black |
\*---------------------------------------------------------*/
for(std::size_t led_idx = 0; led_idx < leds.size(); led_idx++)
{
unsigned char led = (unsigned char)leds[led_idx].value;
colors[led_idx] = zones_info[led].color;
}
/*-------------------------------------------------*\
| Initialize active mode |
\*-------------------------------------------------*/
active_mode = zones_info.size() > 1 ? zones_info[0].mode : 0x0;
/*-----------------------------------------------------*\
| If in Direct mode, reset all Leds to match interface |
\*-----------------------------------------------------*/
if(active_mode == 0x0F)
{
controller->WriteAllZones(zones_info, zones);
}
}
void RGBController_PolychromeUSB::ResizeZone(int zone, int new_size)
{
unsigned char zonecfg[ASROCK_USB_MAX_ZONES];
/*---------------------------------------------------------*\
| This device does not currently support resizing zones |
\*---------------------------------------------------------*/
zones[zone].leds_count = (unsigned char) new_size;
memset(zonecfg, POLYCHROME_USB_ZONE_UNAVAILABLE, ASROCK_USB_MAX_ZONES);
for(unsigned int i = 0; i < zones.size(); i++)
{
zonecfg[i]=zones[i].leds_count;
}
// unsigned char zonecmd = POLYCHROME_USB_LEDCOUNT_CFG;
// WriteHeader(zonecmd, zonecfg, sizeof(zonecfg));
controller->ResizeZone(zones_info[zone].zone, new_size);
}
void RGBController_PolychromeUSB::DeviceUpdateLEDs()
@@ -338,6 +334,12 @@ unsigned char RGBController_PolychromeUSB::GetDeviceMode(unsigned char zone)
void RGBController_PolychromeUSB::DeviceUpdateMode()
{
/*-----------------------------------------------------------------*\
| Disable RGSwap as it causes flashing on each update in direct mode|
| Otherwise, reset to values specified in settings.json |
\*-----------------------------------------------------------------*/
controller->SetRGSwap(modes[active_mode].name != "Direct");
for(unsigned int zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
if(zones[zone_idx].leds_count > 0)
@@ -5,6 +5,7 @@
| ASRock Polychrome USB Driver |
| |
| Ed Kambulow (Dredvard) 12/26/2020 |
| Shady Nawara (ShadyNawara) 01/16/2023 |
\*-----------------------------------------*/
#pragma once
@@ -105,7 +105,7 @@ RGBController_ASRockPolychromeV1SMBus::RGBController_ASRockPolychromeV1SMBus(ASR
mode Music;
Music.name = "Music";
Music.value = POLYCHROME_V1_MODE_MUSIC;
Music.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Music.flags = MODE_FLAG_AUTOMATIC_SAVE;
Music.color_mode = MODE_COLORS_NONE;
modes.push_back(Music);
@@ -122,7 +122,6 @@ RGBController_ASRockPolychromeV1SMBus::RGBController_ASRockPolychromeV1SMBus(ASR
/*---------------------------------------------------------------------*\
| Comment out until per zone modes are working. These are only for ARGB |
\*---------------------------------------------------------------------*/
/*
mode Spring;
Spring.name = "Spring";
Spring.value = POLYCHROME_V1_MODE_SPRING;
@@ -192,7 +191,6 @@ RGBController_ASRockPolychromeV1SMBus::RGBController_ASRockPolychromeV1SMBus(ASR
Rainbow.speed = POLYCHROME_V1_SPEED_DEFAULT_RAINBOW;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
*/
/*---------------------------------------------------------------------*\
| This ARGB_Config section is a hack to allow users to configure the |
@@ -65,6 +65,10 @@ void DetectAsusAuraGPUControllers(i2c_smbus_interface* bus, uint8_t i2c_addr, co
}
} /* DetectAsusAuraGPUControllers() */
/*-----------------------------------------*\
| NVidia GPUs |
\*-----------------------------------------*/
REGISTER_I2C_PCI_DETECTOR("ASUS ROG Strix GTX 1050 O2G Gaming" , DetectAsusAuraGPUControllers, NVIDIA_VEN, NVIDIA_GTX1050_DEV, ASUS_SUB_VEN, ASUS_GTX1050_STRIX_O2G_GAMING, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG Strix GTX 1050 TI 4G Gaming" , DetectAsusAuraGPUControllers, NVIDIA_VEN, NVIDIA_GTX1050TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1050TI_4G_GAMING, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG Strix GTX 1050 TI O4G Gaming" , DetectAsusAuraGPUControllers, NVIDIA_VEN, NVIDIA_GTX1050TI_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_GTX1050TI_O4G_GAMING, 0x29);
@@ -113,14 +117,20 @@ REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX RTX 2080 Ti 11G Gaming" , DetectAs
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX RTX 2080 Ti A11G Gaming" , DetectAsusAuraGPUControllers, NVIDIA_VEN, NVIDIA_RTX2080TI_A_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080TI_A11G_GAMING, 0x2A);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX RTX 2080 Ti O11G Gaming" , DetectAsusAuraGPUControllers, NVIDIA_VEN, NVIDIA_RTX2080TI_A_DEV, ASUS_SUB_VEN, ASUS_ROG_STRIX_RTX2080TI_O11G_GAMING, 0x2A);
REGISTER_I2C_PCI_DETECTOR("ASUS TUF RTX 3060 Ti 8G Gaming OC" , DetectAsusAuraGPUControllers, NVIDIA_VEN, NVIDIA_RTX3060TI_LHR_DEV, ASUS_SUB_VEN, ASUS_TUF_RTX_3060_TI_O8G_OC, 0x2A);
/*-----------------------------------------*\
| AMD GPUs |
\*-----------------------------------------*/
REGISTER_I2C_PCI_DETECTOR("ASUS AREZ Strix RX Vega 56 O8G" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_VEGA10_DEV, ASUS_SUB_VEN, ASUS_AREZ_STRIX_VEGA56_08G_GAMING, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS Vega 64 Strix" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_VEGA10_DEV, ASUS_SUB_VEN, ASUS_VEGA64_STRIX, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS RX 5600XT Strix O6G Gaming" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_NAVI10_DEV, ASUS_SUB_VEN, ASUS_RX5600XT_STRIX_O6G_GAMING, 0x2A);
REGISTER_I2C_PCI_DETECTOR("ASUS RX 5700XT Strix Gaming OC" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_NAVI10_DEV, ASUS_SUB_VEN, ASUS_RX5700XT_STRIX_GAMING_OC, 0x2A);
REGISTER_I2C_PCI_DETECTOR("ASUS RX 6800 TUF Gaming OC" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_NAVI21_DEV1, ASUS_SUB_VEN, ASUS_RX6800_TUF_GAMING_OC, 0x2A);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX RX470 O4G GAMING" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX470_STRIX_O4G_GAMING, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS RX 5700XT Strix 08G Gaming" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_NAVI10_DEV, ASUS_SUB_VEN, ASUS_RX5700XT_STRIX_O8G_GAMING, 0x2A);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX RX470 O4G Gaming" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX470_STRIX_O4G_GAMING, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX RX480 Gaming OC" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX480_STRIX_GAMING_OC, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG STRIX RX560 Gaming" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_POLARIS11, ASUS_SUB_VEN, ASUS_RX560_STRIX_4G_GAMING, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS RX 570 Strix O4G Gaming OC" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX570_STRIX_O4G_GAMING_OC, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS RX 570 Strix O8G Gaming OC" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX570_STRIX_O8G_GAMING_OC, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS RX 580 Strix Gaming OC" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX580_STRIX_GAMING_OC, 0x29);
REGISTER_I2C_PCI_DETECTOR("ASUS RX 580 Strix Gaming TOP" , DetectAsusAuraGPUControllers, AMD_GPU_VEN, AMD_POLARIS_DEV, ASUS_SUB_VEN, ASUS_RX580_STRIX_GAMING_TOP, 0x29);
@@ -83,17 +83,19 @@ void AuraMonitorController::UpdateLed
usb_buf[0x02] = 0xA1;
usb_buf[0x03] = 0x80;
usb_buf[0x04] = 16 + led * 3;
unsigned char offset = (device_pid == AURA_ROG_STRIX_XG279Q_PID) ? 0 : 16;
usb_buf[0x04] = offset + led * 3;
usb_buf[0x05] = red;
hid_send_feature_report(dev, usb_buf, 8);
usb_buf[0x04] = 16 + led * 3 + 1;
usb_buf[0x04] = offset + led * 3 + 1;
usb_buf[0x05] = blue;
hid_send_feature_report(dev, usb_buf, 8);
usb_buf[0x04] = 16 + led * 3 + 2;
usb_buf[0x04] = offset + led * 3 + 2;
usb_buf[0x05] = green;
hid_send_feature_report(dev, usb_buf, 8);
@@ -15,9 +15,11 @@
enum
{
AURA_ROG_STRIX_XG27AQ_PID = 0x198C,
AURA_ROG_STRIX_XG27W_PID = 0x1933,
AURA_ROG_PG32UQ_PID = 0x19B9,
AURA_ROG_STRIX_XG27AQ_PID = 0x198C,
AURA_ROG_STRIX_XG27AQM_PID = 0x19BB,
AURA_ROG_STRIX_XG279Q_PID = 0x1919,
AURA_ROG_STRIX_XG27W_PID = 0x1933,
AURA_ROG_PG32UQ_PID = 0x19B9,
};
@@ -67,15 +67,17 @@ std::string AuraMouseController::GetVersion(bool wireless, int protocol)
break;
case 1:
case 2:
{
char version[9];
int offset = (wireless ? 13 : 4);
int wireless_offset = (protocol == 2 ? 14 : 13);
int offset = (wireless ? wireless_offset : 4);
snprintf(version, 9, "%2X.%02X.%02X", usb_buf_out[offset + 2], usb_buf_out[offset + 1], usb_buf_out[offset]);
str = std::string(version);
}
break;
case 2:
case 3:
{
unsigned char* offset = usb_buf_out + (wireless ? 13 : 4);
str = std::string(offset, offset + 4);
@@ -83,7 +85,7 @@ std::string AuraMouseController::GetVersion(bool wireless, int protocol)
}
break;
case 3:
case 4:
{
char version[16];
int offset = (wireless ? 13 : 4);
@@ -25,6 +25,10 @@
#define AURA_ROG_CHAKRAM_WIRELESS_PID 0x18E5
#define AURA_ROG_CHAKRAM_WIRED_1_PID 0x18E3
#define AURA_ROG_CHAKRAM_CORE_PID 0x1958
#define AURA_ROG_CHAKRAM_X_USB_PID 0x1A18
#define AURA_ROG_CHAKRAM_X_2_4_PID 0x1A1A
#define AURA_ROG_SPATHA_X_USB_PID 0x1977
#define AURA_ROG_SPATHA_X_2_4_PID 0x1979
#define AURA_ROG_PUGIO_PID 0x1846
#define AURA_ROG_PUGIO_II_WIRED_PID 0x1906
#define AURA_ROG_PUGIO_II_WIRELESS_PID 0x1908
@@ -42,12 +46,15 @@
#define AURA_TUF_M3_PID 0x1910
#define AURA_TUF_M5_PID 0x1898
#define AURA_ROG_SPATHA_X_DOCK_FAKE_PID 0xFFFF
enum
{
AURA_MOUSE_ZONE_LOGO = 0,
AURA_MOUSE_ZONE_SCROLL = 1,
AURA_MOUSE_ZONE_UNDERGLOW = 2,
AURA_MOUSE_ZONE_ALL = 3,
AURA_MOUSE_ZONE_DOCK = 4,
};
enum
@@ -266,6 +273,58 @@ static std::map<int,mouse_type> aura_mouse_devices =
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_REACTIVE }
}
},
{
AURA_ROG_CHAKRAM_X_USB_PID, // ROG Chakram X USB
{
15, // technically until 255, but unusably slow after 15
1,
0,
64,
false,
2,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_CHAKRAM_X_2_4_PID, // ROG Chakram X 2.4GHz Dongle
{
15, // technically until 255, but unusably slow after 15
1,
0,
64,
true,
2,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_SPATHA_X_USB_PID, // ROG Spatha X USB
{
15, // technically until 255, but unusably slow after 15
1,
0,
64,
false,
1,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_SPATHA_X_2_4_PID, // ROG Spatha X 2.4GHz Dock
{
15, // technically until 255, but unusably slow after 15
1,
0,
64,
true,
1,
{ AURA_MOUSE_ZONE_LOGO, AURA_MOUSE_ZONE_SCROLL, AURA_MOUSE_ZONE_UNDERGLOW },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_WAVE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_COMET, AURA_MOUSE_MODE_BATTERY }
}
},
{
AURA_ROG_PUGIO_PID, // ROG Pugio
{
@@ -313,9 +372,9 @@ static std::map<int,mouse_type> aura_mouse_devices =
0,
4,
false,
3,
4,
{ AURA_MOUSE_ZONE_LOGO },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM }
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_REACTIVE }
}
},
{
@@ -469,9 +528,22 @@ static std::map<int,mouse_type> aura_mouse_devices =
0,
4,
false,
2,
3,
{ AURA_MOUSE_ZONE_LOGO },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_REACTIVE }
}
},
{
AURA_ROG_SPATHA_X_DOCK_FAKE_PID, // Asus ROG Spatha X Dock (only in wireless mode)
{
0,
0,
0,
100,
false,
1,
{ AURA_MOUSE_ZONE_DOCK },
{ AURA_MOUSE_MODE_STATIC, AURA_MOUSE_MODE_BREATHING, AURA_MOUSE_MODE_SPECTRUM, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_REACTIVE, AURA_MOUSE_MODE_NONE, AURA_MOUSE_MODE_BATTERY }
}
},
};
@@ -55,8 +55,8 @@ std::string AuraMousematController::GetVersion()
unsigned char usb_buf_out[65];
hid_read(dev, usb_buf_out, 65);
char version[5];
snprintf(version, 5, "%04X", (usb_buf_out[6] << 8) | usb_buf_out[7]);
char version[9];
snprintf(version, 9, "%X.%02X.%02X", usb_buf_out[6], usb_buf_out[7], usb_buf_out[8]);
return std::string(version);
}
@@ -116,7 +116,7 @@ void AuraMousematController::UpdateDevice
usb_buf[0x0b + i * 3] = RGBGetGValue(colors[i]);
usb_buf[0x0c + i * 3] = RGBGetBValue(colors[i]);
}
hid_write(dev, usb_buf, 65);
}
@@ -128,7 +128,7 @@ void AuraMousematController::SaveMode()
usb_save_buf[0x00] = 0xEE;
usb_save_buf[0x01] = 0x50;
usb_save_buf[0x02] = 0x55;
usb_save_buf[0x02] = 0x03;
hid_write(dev, usb_save_buf, 65);
}
@@ -17,12 +17,14 @@
#include <string.h>
#include <cmath>
AuraTUFKeyboardController::AuraTUFKeyboardController(hid_device* dev_handle, const char* path, uint16_t pid, unsigned short rev_version)
AuraTUFKeyboardController::AuraTUFKeyboardController(hid_device* dev_handle, const char* path, uint16_t pid, unsigned short version)
{
dev = dev_handle;
location = path;
device_pid = pid;
version = rev_version;
rev_version = version;
is_per_led_keyboard = (pid != AURA_TUF_K1_GAMING_PID && pid != AURA_TUF_K5_GAMING_PID);
}
AuraTUFKeyboardController::~AuraTUFKeyboardController()
@@ -57,6 +59,7 @@ std::string AuraTUFKeyboardController::GetVersion()
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x12;
usb_buf[0x02] = 0x00;
@@ -92,9 +95,7 @@ std::string AuraTUFKeyboardController::GetVersion()
usb_buf[0x05] = 0x00; // set to 1 to get firmware version of numpad
ClearResponses();
hid_write(dev, usb_buf, 65);
AwaitResponse(20);
unsigned char usb_buf1[65];
@@ -137,13 +138,7 @@ int AuraTUFKeyboardController::GetLayout()
}
else
{
char layout[4];
sprintf(layout, "%X", version);
int layoutnum = std::stoi(std::string(layout, 1));
switch(layoutnum)
switch(rev_version >> 0b1100)
{
case 1:
return 117;
@@ -166,12 +161,12 @@ int AuraTUFKeyboardController::GetNumpadLocation()
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x40;
usb_buf[0x02] = 0x60;
ClearResponses();
hid_write(dev, usb_buf, 65);
unsigned char usb_buf_out[65];
@@ -183,7 +178,6 @@ int AuraTUFKeyboardController::GetNumpadLocation()
void AuraTUFKeyboardController::SaveMode()
{
unsigned char usb_save_buf[65];
memset(usb_save_buf, 0x00, sizeof(usb_save_buf));
usb_save_buf[0x00] = 0x00;
@@ -191,9 +185,7 @@ void AuraTUFKeyboardController::SaveMode()
usb_save_buf[0x02] = 0x55;
ClearResponses();
hid_write(dev, usb_save_buf, 65);
AwaitResponse(60);
}
@@ -203,7 +195,6 @@ void AuraTUFKeyboardController::SaveMode()
void AuraTUFKeyboardController::AllowRemoteControl(unsigned char type)
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
@@ -211,9 +202,7 @@ void AuraTUFKeyboardController::AllowRemoteControl(unsigned char type)
usb_buf[0x02] = type;
ClearResponses();
hid_write(dev, usb_buf, 65);
AwaitResponse(20);
}
@@ -229,7 +218,6 @@ void AuraTUFKeyboardController::UpdateSingleLed
| Set up message packet for single LED |
\*-----------------------------------------------------*/
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0] = 0x00;
@@ -247,9 +235,7 @@ void AuraTUFKeyboardController::UpdateSingleLed
usb_buf[8] = blue;
ClearResponses();
hid_write(dev, usb_buf, 65);
AwaitResponse(20);
}
@@ -263,7 +249,6 @@ void AuraTUFKeyboardController::UpdateLeds
for(int i = 0; i < packets; i++)
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
int remaining = colors.size() - i * 15;
@@ -278,20 +263,63 @@ void AuraTUFKeyboardController::UpdateLeds
for(int j = 0; j < leds; j++)
{
usb_buf[j * 4 + 5] = colors[i * 15 + j].value;
usb_buf[j * 4 + 5] = (is_per_led_keyboard) ? colors[i * 15 + j].value : 0x00;
usb_buf[j * 4 + 6] = RGBGetRValue(colors[i * 15 + j].color);
usb_buf[j * 4 + 7] = RGBGetGValue(colors[i * 15 + j].color);
usb_buf[j * 4 + 8] = RGBGetBValue(colors[i * 15 + j].color);
}
ClearResponses();
hid_write(dev, usb_buf, 65);
AwaitResponse(20);
}
}
void AuraTUFKeyboardController::UpdateK1Wave
(
std::vector<RGBColor> colors,
unsigned char direction,
unsigned char speed,
unsigned char brightness
)
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x51;
usb_buf[0x02] = 0x2C;
usb_buf[0x03] = 0x03;
usb_buf[0x04] = 0x00;
usb_buf[0x05] = speed;
usb_buf[0x06] = brightness;
usb_buf[0x07] = 0x00;
usb_buf[0x08] = direction;
usb_buf[0x09] = 0x00;
usb_buf[10] = 5;
usb_buf[11] = RGBGetRValue(colors[4]);
usb_buf[12] = RGBGetGValue(colors[4]);
usb_buf[13] = RGBGetBValue(colors[4]);
ClearResponses();
hid_write(dev, usb_buf, 65);
AwaitResponse(20);
for(unsigned int i = 0; i < 4; i ++)
{
usb_buf[10 + i * 4] = i + 1;
usb_buf[11 + i * 4] = RGBGetRValue(colors[i]);
usb_buf[12 + i * 4] = RGBGetGValue(colors[i]);
usb_buf[13 + i * 4] = RGBGetBValue(colors[i]);
}
ClearResponses();
hid_write(dev, usb_buf, 65);
AwaitResponse(20);
}
void AuraTUFKeyboardController::UpdateDevice
(
unsigned char mode,
@@ -302,8 +330,12 @@ void AuraTUFKeyboardController::UpdateDevice
unsigned char brightness
)
{
unsigned char usb_buf[65];
if(device_pid == AURA_TUF_K1_GAMING_PID && mode == AURA_KEYBOARD_MODE_WAVE)
{
return UpdateK1Wave(colors, direction, speed, brightness);
}
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
@@ -318,41 +350,79 @@ void AuraTUFKeyboardController::UpdateDevice
usb_buf[0x06] = brightness;
usb_buf[0x07] = color_mode;
usb_buf[0x08] = direction;
usb_buf[0x09] = 0x02;
if(mode == AURA_KEYBOARD_MODE_WAVE || mode == AURA_KEYBOARD_MODE_RIPPLE)
if(is_per_led_keyboard)
{
usb_buf[0x0A] = colors.size();
usb_buf[0x09] = 0x02;
/*-----------------------------------------------------*\
| Loop over every color given |
\*-----------------------------------------------------*/
for(unsigned int i = 0; i < colors.size(); i ++)
if(mode == AURA_KEYBOARD_MODE_WAVE || mode == AURA_KEYBOARD_MODE_RIPPLE)
{
if(colors[i])
usb_buf[0x0A] = colors.size();
/*-----------------------------------------------------*\
| Loop over every color given |
\*-----------------------------------------------------*/
for(unsigned int i = 0; i < colors.size(); i ++)
{
usb_buf[11 + i * 4] = 100/(double)colors.size()*(i+1);
usb_buf[12 + i * 4] = RGBGetRValue(colors[i]);
usb_buf[13 + i * 4] = RGBGetGValue(colors[i]);
usb_buf[14 + i * 4] = RGBGetBValue(colors[i]);
if(colors[i])
{
usb_buf[11 + i * 4] = 100/(double)colors.size()*(i+1);
usb_buf[12 + i * 4] = RGBGetRValue(colors[i]);
usb_buf[13 + i * 4] = RGBGetGValue(colors[i]);
usb_buf[14 + i * 4] = RGBGetBValue(colors[i]);
}
}
}
else
{
/*-----------------------------------------------------*\
| Loop over Color1, Color2 and Background if there |
\*-----------------------------------------------------*/
for(unsigned int i = 0; i != colors.size(); i++)
{
if(colors[i])
{
usb_buf[10 + i * 3] = RGBGetRValue(colors[i]);
usb_buf[11 + i * 3] = RGBGetGValue(colors[i]);
usb_buf[12 + i * 3] = RGBGetBValue(colors[i]);
}
}
}
}
else
{
/*-----------------------------------------------------*\
| Loop over Color1, Color2 and Background if there |
\*-----------------------------------------------------*/
for(unsigned int i = 0; i != colors.size(); i++)
/*-----------------------------------------------------------------*\
| Only handles K5 Rainbow. |
| K1 is filtered out earlier and is executed in `UpdateK1Wave()` |
\*-----------------------------------------------------------------*/
if(mode == AURA_KEYBOARD_MODE_WAVE)
{
if(colors[i])
usb_buf[0x09] = 0x05;
for(unsigned int i = 0; i < 5; i ++)
{
usb_buf[10 + i * 3] = RGBGetRValue(colors[i]);
usb_buf[11 + i * 3] = RGBGetGValue(colors[i]);
usb_buf[12 + i * 3] = RGBGetBValue(colors[i]);
usb_buf[10 + i * 4] = i + 1;
usb_buf[11 + i * 4] = RGBGetRValue(colors[i]);
usb_buf[12 + i * 4] = RGBGetGValue(colors[i]);
usb_buf[13 + i * 4] = RGBGetBValue(colors[i]);
}
}
else
{
/*-----------------------------------------------------*\
| Loop over Color1, Color2 and Background if there |
\*-----------------------------------------------------*/
for(unsigned int i = 0; i != colors.size(); i++)
{
if(colors[i])
{
usb_buf[ 9 + i * 3] = RGBGetRValue(colors[i]);
usb_buf[10 + i * 3] = RGBGetGValue(colors[i]);
usb_buf[11 + i * 3] = RGBGetBValue(colors[i]);
}
}
}
}
}
else
@@ -401,12 +471,7 @@ void AuraTUFKeyboardController::UpdateDevice
}
ClearResponses();
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, usb_buf, 65);
AwaitResponse(20);
}
@@ -419,7 +484,6 @@ void AuraTUFKeyboardController::UpdateQuicksandColors
)
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
@@ -437,9 +501,7 @@ void AuraTUFKeyboardController::UpdateQuicksandColors
}
ClearResponses();
hid_write(dev, usb_buf, 65);
AwaitResponse(20);
}
@@ -449,7 +511,6 @@ void AuraTUFKeyboardController::UpdateQuicksandColors
void AuraTUFKeyboardController::UpdateMode(unsigned char mode)
{
unsigned char usb_buf[65];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x00;
@@ -460,9 +521,7 @@ void AuraTUFKeyboardController::UpdateMode(unsigned char mode)
usb_buf[0x05] = mode;
ClearResponses();
hid_write(dev, usb_buf, 65);
AwaitResponse(20);
}
@@ -33,8 +33,12 @@ enum
enum
{
AURA_TUF_K7_GAMING_PID = 0x18AA,
AURA_ROG_FALCHION_WIRED_PID = 0x193C,
AURA_ROG_FALCHION_WIRELESS_PID = 0x193E,
AURA_TUF_K1_GAMING_PID = 0x1945,
AURA_TUF_K3_GAMING_PID = 0x194B,
AURA_TUF_K5_GAMING_PID = 0x1899,
AURA_TUF_K7_GAMING_PID = 0x18AA,
AURA_ROG_CLAYMORE_PID = 0x184D,
};
@@ -47,7 +51,7 @@ struct led_color
class AuraTUFKeyboardController
{
public:
AuraTUFKeyboardController(hid_device* dev_handle, const char* path, uint16_t pid, unsigned short rev_version);
AuraTUFKeyboardController(hid_device* dev_handle, const char* path, uint16_t pid, unsigned short version);
~AuraTUFKeyboardController();
std::string GetDeviceLocation();
@@ -71,11 +75,19 @@ public:
std::vector<led_color> colors
);
void UpdateK1Wave
(
std::vector<RGBColor> colors,
unsigned char direction,
unsigned char speed,
unsigned char brightness
);
void UpdateDevice
(
unsigned char mode,
std::vector<RGBColor> colors,
unsigned char dir,
unsigned char direction,
unsigned char color_mode,
unsigned char speed,
unsigned char brightness
@@ -86,10 +98,11 @@ public:
void ClearResponses();
uint16_t device_pid;
bool is_per_led_keyboard;
private:
hid_device* dev;
std::string location;
unsigned short version;
unsigned short rev_version;
};
@@ -60,7 +60,8 @@ struct layout_info
std::vector<led_value> led_names;
};
static unsigned int ASUS_TUF_K7_LAYOUT_KEYS_US[6][24] = {
static unsigned int ASUS_TUF_K7_LAYOUT_KEYS_US[6][24] =
{
{ 0, NA, 8, 14, 19, 24, NA, 34, 39, 44, 49, 55, 61, 66, 70, NA, 74, 78, 83, NA, NA, NA, NA, NA },
{ 1, 6, 9, 15, 20, 25, 29, 35, 40, 45, 50, 56, 62, 67, NA, NA, 75, 79, 84, NA, 87, 92, 96, 101 },
{ 2, NA, 10, 16, 21, 26, 30, 36, 41, 46, 51, 57, 63, 68, 71, NA, 76, 80, 85, NA, 88, 93, 97, 102 },
@@ -70,7 +71,8 @@ static unsigned int ASUS_TUF_K7_LAYOUT_KEYS_US[6][24] = {
};
static unsigned int ASUS_TUF_K7_LAYOUT_KEYS_UK[6][24] = {
static unsigned int ASUS_TUF_K7_LAYOUT_KEYS_UK[6][24] =
{
{ 0, NA, 9, 15, 20, 25, NA, 35, 40, 45, 50, 56, 62, 67, 72, NA, 75, 79, 84, NA, NA, NA, NA, NA },
{ 1, 6, 10, 16, 21, 26, 30, 36, 41, 46, 51, 57, 63, 68, NA, NA, 76, 80, 85, NA, 88, 93, 97, 102 },
{ 2, NA, 11, 17, 22, 27, 31, 37, 42, 47, 52, 58, 64, 69, NA, NA, 77, 81, 86, NA, 89, 94, 98, 103 },
@@ -79,7 +81,26 @@ static unsigned int ASUS_TUF_K7_LAYOUT_KEYS_UK[6][24] = {
{ 5, 8, 14, NA, NA, NA, 34, NA, NA, NA, 55, 61, 66, NA, 74, NA, 78, 83, 87, NA, 92, NA, 101, NA }
};
static unsigned int ASUS_CLAYMORE_NO_NUMPAD_LAYOUT_KEYS_US[7][19] = {
static unsigned int ASUS_FALCHION_LAYOUT_KEYS_US[5][16] =
{
{ 0, 5, 7, 12, 16, 20, 24, 29, 33, 37, 41, 46, 51, 56, NA, 63 },
{ 1, NA, 8, 13, 17, 21, 25, 30, 34, 38, 42, 47, 52, 57, 59, 64 },
{ 2, NA, 9, 14, 18, 22, 26, 31, 35, 39, 43, 48, 53, NA, 60, 65 },
{ 3, NA, 10, 15, 19, 23, 27, 32, 36, 40, 44, 49, 54, NA, 61, 66 },
{ 4, 6, 11, NA, NA, NA, 28, NA, NA, NA, 45, 50, 55, 58, 62, 67 }
};
static unsigned int ASUS_FALCHION_LAYOUT_KEYS_UK[5][16] =
{
{ 0, 5, 8, 13, 17, 21, 25, 30, 34, 38, 42, 47, 52, 57, NA, 64 },
{ 1, NA, 9, 14, 18, 22, 26, 31, 35, 39, 43, 48, 53, 58, 61, 65 },
{ 2, NA, 10, 15, 19, 23, 27, 32, 36, 40, 44, 49, 54, 59, NA, 66 },
{ 3, 6, 11, 16, 20, 24, 28, 33, 37, 41, 45, 50, 55, NA, 62, 67 },
{ 4, 7, 12, NA, NA, NA, 29, NA, NA, NA, 46, 51, 56, 60, 63, 68 }
};
static unsigned int ASUS_CLAYMORE_NO_NUMPAD_LAYOUT_KEYS_US[7][19] =
{
{ 0, NA, 8, 14, 19, 24, NA, 34, 39, 45, 50, 56, 62, 67, 71, NA, 75, 79, 84 },
{ 1, 6, 9, 15, 20, 25, 29, 35, 40, 46, 51, 57, 63, 68, NA, NA, 76, 80, 85 },
{ 2, NA, 10, 16, 21, 26, 30, 36, 41, 47, 52, 58, 64, 69, 72, NA, 77, 81, 86 },
@@ -89,7 +110,8 @@ static unsigned int ASUS_CLAYMORE_NO_NUMPAD_LAYOUT_KEYS_US[7][19] = {
{ NA, NA, NA, NA, NA, NA, NA, NA, 44, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA }
};
static unsigned int ASUS_CLAYMORE_NO_NUMPAD_LAYOUT_KEYS_UK[7][19] = {
static unsigned int ASUS_CLAYMORE_NO_NUMPAD_LAYOUT_KEYS_UK[7][19] =
{
{ 0, NA, 9, 15, 20, 25, NA, 35, 40, 46, 51, 57, 63, 68, 73, NA, 76, 80, 85 },
{ 1, 6, 10, 16, 21, 26, 30, 36, 41, 47, 52, 58, 64, 69, NA, NA, 77, 81, 86 },
{ 2, NA, 11, 17, 22, 27, 31, 37, 42, 48, 53, 59, 65, 70, NA, NA, 78, 82, 87 },
@@ -99,7 +121,8 @@ static unsigned int ASUS_CLAYMORE_NO_NUMPAD_LAYOUT_KEYS_UK[7][19] = {
{ NA, NA, NA, NA, NA, NA, NA, NA, 45, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA }
};
static unsigned int ASUS_CLAYMORE_NUMPAD_RIGHT_LAYOUT_KEYS_US[7][24] = {
static unsigned int ASUS_CLAYMORE_NUMPAD_RIGHT_LAYOUT_KEYS_US[7][24] =
{
{ 0, NA, 8, 14, 19, 24, NA, 34, 39, 45, 50, 56, 62, 67, 71, NA, 75, 79, 84, NA, NA, NA, NA, NA },
{ 1, 6, 9, 15, 20, 25, 29, 35, 40, 46, 51, 57, 63, 68, NA, NA, 76, 80, 85, NA, 88, 93, 97, 102 },
{ 2, NA, 10, 16, 21, 26, 30, 36, 41, 47, 52, 58, 64, 69, 72, NA, 77, 81, 86, NA, 89, 94, 98, 103 },
@@ -109,7 +132,8 @@ static unsigned int ASUS_CLAYMORE_NUMPAD_RIGHT_LAYOUT_KEYS_US[7][24] = {
{ NA, NA, NA, NA, NA, NA, NA, NA, 44, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA }
};
static unsigned int ASUS_CLAYMORE_NUMPAD_RIGHT_LAYOUT_KEYS_UK[7][24] = {
static unsigned int ASUS_CLAYMORE_NUMPAD_RIGHT_LAYOUT_KEYS_UK[7][24] =
{
{ 0, NA, 9, 15, 20, 25, NA, 35, 40, 46, 51, 57, 63, 68, 73, NA, 76, 80, 85, NA, NA, NA, NA, NA },
{ 1, 6, 10, 16, 21, 26, 30, 36, 41, 47, 52, 58, 64, 69, NA, NA, 77, 81, 86, NA, 89, 94, 98, 103 },
{ 2, NA, 11, 17, 22, 27, 31, 37, 42, 48, 53, 59, 65, 70, NA, NA, 78, 82, 87, NA, 90, 95, 99, 104 },
@@ -119,7 +143,8 @@ static unsigned int ASUS_CLAYMORE_NUMPAD_RIGHT_LAYOUT_KEYS_UK[7][24] = {
{ NA, NA, NA, NA, NA, NA, NA, NA, 45, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA }
};
static unsigned int ASUS_CLAYMORE_NUMPAD_LEFT_LAYOUT_KEYS_US[7][24] = {
static unsigned int ASUS_CLAYMORE_NUMPAD_LEFT_LAYOUT_KEYS_US[7][24] =
{
{ NA, NA, NA, NA, NA, 17, NA, 25, 31, 36, 41, NA, 51, 56, 62, 67, 73, 79, 84, 88, NA, 92, 96, 101 },
{ 0, 5, 9, 14, NA, 18, 23, 26, 32, 37, 42, 46, 52, 57, 63, 68, 74, 80, 85, NA, NA, 93, 97, 102 },
{ 1, 6, 10, 15, NA, 19, NA, 27, 33, 38, 43, 47, 53, 58, 64, 69, 75, 81, 86, 89, NA, 94, 98, 103 },
@@ -129,7 +154,8 @@ static unsigned int ASUS_CLAYMORE_NUMPAD_LEFT_LAYOUT_KEYS_US[7][24] = {
{ NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, 61, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA }
};
static unsigned int ASUS_CLAYMORE_NUMPAD_LEFT_LAYOUT_KEYS_UK[7][24] = {
static unsigned int ASUS_CLAYMORE_NUMPAD_LEFT_LAYOUT_KEYS_UK[7][24] =
{
{ NA, NA, NA, NA, NA, 17, NA, 26, 32, 37, 42, NA, 52, 57, 63, 68, 74, 80, 85, 90, NA, 93, 97, 102 },
{ 0, 5, 9, 14, NA, 18, 23, 27, 33, 38, 43, 47, 53, 58, 64, 69, 75, 81, 86, NA, NA, 94, 98, 103 },
{ 1, 6, 10, 15, NA, 19, NA, 28, 34, 39, 44, 48, 54, 59, 65, 70, 76, 82, 87, NA, NA, 95, 99, 104 },
@@ -139,6 +165,11 @@ static unsigned int ASUS_CLAYMORE_NUMPAD_LEFT_LAYOUT_KEYS_UK[7][24] = {
{ NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, 62, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA }
};
static unsigned int ASUS_TUF_K1_LAYOUT_KEYS[1][5] =
{
{ 0, 1, 2, 3, 4 },
};
static std::map<int,layout_info> AsusTUFK7Layouts =
{
{
@@ -416,6 +447,200 @@ static std::map<int,layout_info> AsusTUFK7Layouts =
},
};
static std::map<int,layout_info> AsusFalchionLayouts =
{
{
ASUS_TUF_K7_LAYOUT_UK,
{
*ASUS_FALCHION_LAYOUT_KEYS_UK,
69,
5,
16,
{
{ KEY_EN_ESCAPE, 0x00 },
{ KEY_EN_TAB, 0x01 },
{ KEY_EN_CAPS_LOCK, 0x02 },
{ KEY_EN_LEFT_SHIFT, 0x03 },
{ KEY_EN_LEFT_CONTROL, 0x04 },
{ KEY_EN_1, 0x08 },
{ KEY_EN_ISO_BACK_SLASH, 0x0B },
{ KEY_EN_LEFT_WINDOWS, 0x0C },
{ KEY_EN_2, 0x10 },
{ KEY_EN_Q, 0x09 },
{ KEY_EN_A, 0x0A },
{ KEY_EN_Z, 0x13 },
{ KEY_EN_LEFT_ALT, 0x14 },
{ KEY_EN_3, 0x18 },
{ KEY_EN_W, 0x11 },
{ KEY_EN_S, 0x12 },
{ KEY_EN_X, 0x1B },
{ KEY_EN_4, 0x20 },
{ KEY_EN_E, 0x19 },
{ KEY_EN_D, 0x1A },
{ KEY_EN_C, 0x23 },
{ KEY_EN_5, 0x28 },
{ KEY_EN_R, 0x21 },
{ KEY_EN_F, 0x22 },
{ KEY_EN_V, 0x2B },
{ KEY_EN_6, 0x30 },
{ KEY_EN_T, 0x29 },
{ KEY_EN_G, 0x2A },
{ KEY_EN_B, 0x33 },
{ KEY_EN_SPACE, 0x34 },
{ KEY_EN_7, 0x38 },
{ KEY_EN_Y, 0x31 },
{ KEY_EN_H, 0x32 },
{ KEY_EN_N, 0x3B },
{ KEY_EN_8, 0x40 },
{ KEY_EN_U, 0x39 },
{ KEY_EN_J, 0x3A },
{ KEY_EN_M, 0x43 },
{ KEY_EN_9, 0x48 },
{ KEY_EN_I, 0x41 },
{ KEY_EN_K, 0x42 },
{ KEY_EN_COMMA, 0x4B },
{ KEY_EN_0, 0x50 },
{ KEY_EN_O, 0x49 },
{ KEY_EN_L, 0x4A },
{ KEY_EN_PERIOD, 0x53 },
{ KEY_EN_RIGHT_ALT, 0x4C },
{ KEY_EN_MINUS, 0x58 },
{ KEY_EN_P, 0x51 },
{ KEY_EN_SEMICOLON, 0x52 },
{ KEY_EN_FORWARD_SLASH, 0x5B },
{ KEY_EN_RIGHT_FUNCTION, 0x54 },
{ KEY_EN_EQUALS, 0x60 },
{ KEY_EN_LEFT_BRACKET, 0x59 },
{ KEY_EN_QUOTE, 0x5A },
{ KEY_EN_RIGHT_SHIFT, 0x63 },
{ KEY_EN_RIGHT_CONTROL, 0x5C },
{ KEY_EN_BACKSPACE, 0x68 },
{ KEY_EN_RIGHT_BRACKET, 0x61 },
{ KEY_EN_POUND, 0x62 },
{ KEY_EN_LEFT_ARROW, 0x64 },
{ KEY_EN_ISO_ENTER, 0x6A },
{ KEY_EN_UP_ARROW, 0x6B },
{ KEY_EN_DOWN_ARROW, 0x6C },
{ KEY_EN_INSERT, 0x70 },
{ KEY_EN_DELETE, 0x71 },
{ KEY_EN_PAGE_UP, 0x72 },
{ KEY_EN_PAGE_DOWN, 0x73 },
{ KEY_EN_RIGHT_ARROW, 0x74 },
}
}
},
{
ASUS_TUF_K7_LAYOUT_US,
{
*ASUS_FALCHION_LAYOUT_KEYS_US,
68,
5,
16,
{
{ KEY_EN_ESCAPE, 0x00 },
{ KEY_EN_TAB, 0x01 },
{ KEY_EN_CAPS_LOCK, 0x02 },
{ KEY_EN_LEFT_SHIFT, 0x03 },
{ KEY_EN_LEFT_CONTROL, 0x04 },
{ KEY_EN_1, 0x08 },
{ KEY_EN_LEFT_WINDOWS, 0x0C },
{ KEY_EN_2, 0x10 },
{ KEY_EN_Q, 0x09 },
{ KEY_EN_A, 0x0A },
{ KEY_EN_Z, 0x13 },
{ KEY_EN_LEFT_ALT, 0x14 },
{ KEY_EN_3, 0x18 },
{ KEY_EN_W, 0x11 },
{ KEY_EN_S, 0x12 },
{ KEY_EN_X, 0x1B },
{ KEY_EN_4, 0x20 },
{ KEY_EN_E, 0x19 },
{ KEY_EN_D, 0x1A },
{ KEY_EN_C, 0x23 },
{ KEY_EN_5, 0x28 },
{ KEY_EN_R, 0x21 },
{ KEY_EN_F, 0x22 },
{ KEY_EN_V, 0x2B },
{ KEY_EN_6, 0x30 },
{ KEY_EN_T, 0x29 },
{ KEY_EN_G, 0x2A },
{ KEY_EN_B, 0x33 },
{ KEY_EN_SPACE, 0x34 },
{ KEY_EN_7, 0x38 },
{ KEY_EN_Y, 0x31 },
{ KEY_EN_H, 0x32 },
{ KEY_EN_N, 0x3B },
{ KEY_EN_8, 0x40 },
{ KEY_EN_U, 0x39 },
{ KEY_EN_J, 0x3A },
{ KEY_EN_M, 0x43 },
{ KEY_EN_9, 0x48 },
{ KEY_EN_I, 0x41 },
{ KEY_EN_K, 0x42 },
{ KEY_EN_COMMA, 0x4B },
{ KEY_EN_0, 0x50 },
{ KEY_EN_O, 0x49 },
{ KEY_EN_L, 0x4A },
{ KEY_EN_PERIOD, 0x53 },
{ KEY_EN_RIGHT_ALT, 0x4C },
{ KEY_EN_MINUS, 0x58 },
{ KEY_EN_P, 0x51 },
{ KEY_EN_SEMICOLON, 0x52 },
{ KEY_EN_FORWARD_SLASH, 0x5B },
{ KEY_EN_RIGHT_FUNCTION, 0x54 },
{ KEY_EN_EQUALS, 0x60 },
{ KEY_EN_LEFT_BRACKET, 0x59 },
{ KEY_EN_QUOTE, 0x5A },
{ KEY_EN_RIGHT_SHIFT, 0x63 },
{ KEY_EN_RIGHT_CONTROL, 0x5C },
{ KEY_EN_BACKSPACE, 0x68 },
{ KEY_EN_RIGHT_BRACKET, 0x61 },
{ KEY_EN_LEFT_ARROW, 0x64 },
{ KEY_EN_ANSI_BACK_SLASH, 0x69 },
{ KEY_EN_ANSI_ENTER, 0x6A },
{ KEY_EN_UP_ARROW, 0x6B },
{ KEY_EN_DOWN_ARROW, 0x6C },
{ KEY_EN_INSERT, 0x70 },
{ KEY_EN_DELETE, 0x71 },
{ KEY_EN_PAGE_UP, 0x72 },
{ KEY_EN_PAGE_DOWN, 0x73 },
{ KEY_EN_RIGHT_ARROW, 0x74 },
}
}
},
};
static std::map<int,layout_info> AsusClaymoreNoNumpadLayouts =
{
{
@@ -1092,3 +1317,39 @@ static std::map<int,layout_info> AsusClaymoreNumpadLeftLayouts =
}
},
};
static std::map<int,layout_info> AsusTufK1Layouts =
{
{
ASUS_TUF_K7_LAYOUT_UK,
{
*ASUS_TUF_K1_LAYOUT_KEYS,
5,
1,
5,
{
{ "Keyboard LED 1", 0x00 },
{ "Keyboard LED 2", 0x01 },
{ "Keyboard LED 3", 0x02 },
{ "Keyboard LED 4", 0x03 },
{ "Keyboard LED 5", 0x04 },
}
}
},
{
ASUS_TUF_K7_LAYOUT_US,
{
*ASUS_TUF_K1_LAYOUT_KEYS,
5,
1,
5,
{
{ "Keyboard LED 1", 0x00 },
{ "Keyboard LED 2", 0x01 },
{ "Keyboard LED 3", 0x02 },
{ "Keyboard LED 4", 0x03 },
{ "Keyboard LED 5", 0x04 },
}
}
},
};
@@ -6,6 +6,7 @@
#include "AsusAuraMainboardController.h"
#include "AsusAuraMouseController.h"
#include "AsusAuraMousematController.h"
#include "AsusROGAllyController.h"
#include "AsusAuraStrixEvolveController.h"
#include "AsusAuraMonitorController.h"
#include "AsusAuraRyuoAIOController.h"
@@ -16,6 +17,7 @@
#include "RGBController_AsusAuraTUFKeyboard.h"
#include "RGBController_AsusAuraMouse.h"
#include "RGBController_AsusAuraMousemat.h"
#include "RGBController_AsusROGAlly.h"
#include "RGBController_ROGStrixLC_Controller.h"
#include "RGBController_AsusAuraStrixEvolve.h"
#include "RGBController_AsusAuraMonitor.h"
@@ -44,13 +46,17 @@
#define AURA_ROG_FALCHION_WIRELESS_PID 0x193E
#define AURA_ROG_STRIX_FLARE_PID 0x1875
#define AURA_ROG_STRIX_FLARE_PNK_LTD_PID 0x18CF
#define AURA_ROG_STRIX_FLARE_COD_BO4_PID 0x18AF
#define AURA_ROG_STRIX_SCOPE_PID 0x18F8
#define AURA_ROG_STRIX_SCOPE_RX_PID 0x1951
#define AURA_ROG_STRIX_SCOPE_TKL_PID 0x190C
#define AURA_ROG_STRIX_SCOPE_RX_TKL_DELUXE_PID 0x1A05
#define AURA_ROG_STRIX_SCOPE_TKL_PNK_LTD_PID 0x1954
#define AURA_ROG_CLAYMORE_PID 0x184D
#define AURA_TUF_K7_GAMING_PID 0x18AA
#define AURA_TUF_K1_GAMING_PID 0x1945
#define AURA_TUF_K3_GAMING_PID 0x194B
#define AURA_TUF_K5_GAMING_PID 0x1899
#define AURA_TUF_K7_GAMING_PID 0x18AA
/*-----------------------------------------------------------------*\
| MICE - defined in AsusAuraMouseDevices.h |
@@ -70,6 +76,7 @@
#define AURA_ROG_STRIX_XG27AQ_PID 0x198C
#define AURA_ROG_STRIX_XG27AQM_PID 0x19BB
#define AURA_ROG_STRIX_XG279Q_PID 0x1919
#define AURA_ROG_STRIX_XG27W_PID 0x1933
#define AURA_ROG_PG32UQ_PID 0x19B9
@@ -87,6 +94,7 @@
#define AURA_TERMINAL_PID 0x1889
#define ROG_STRIX_LC120_PID 0x879E
#define AURA_RYUO_AIO_PID 0x1887
#define ASUS_ROG_ALLY_PID 0x1ABE
AuraKeyboardMappingLayoutType GetKeyboardMappingLayoutType(int pid)
{
@@ -94,6 +102,7 @@ AuraKeyboardMappingLayoutType GetKeyboardMappingLayoutType(int pid)
{
case AURA_ROG_STRIX_FLARE_PID:
case AURA_ROG_STRIX_FLARE_PNK_LTD_PID:
case AURA_ROG_STRIX_FLARE_COD_BO4_PID:
return FLARE_LAYOUT;
case AURA_ROG_STRIX_SCOPE_PID:
@@ -103,13 +112,10 @@ AuraKeyboardMappingLayoutType GetKeyboardMappingLayoutType(int pid)
return SCOPE_RX_LAYOUT;
case AURA_ROG_STRIX_SCOPE_TKL_PID:
case AURA_ROG_STRIX_SCOPE_RX_TKL_DELUXE_PID:
case AURA_ROG_STRIX_SCOPE_TKL_PNK_LTD_PID:
return SCOPE_TKL_LAYOUT;
case AURA_ROG_FALCHION_WIRED_PID:
case AURA_ROG_FALCHION_WIRELESS_PID:
return FALCHION_LAYOUT;
default:
return FLARE_LAYOUT;
}
@@ -188,6 +194,15 @@ void DetectAsusAuraUSBMice(hid_device_info* info, const std::string& name)
RGBController_AuraMouse* rgb_controller = new RGBController_AuraMouse(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
// adding the mouse dock for the ASUS ROG Spatha X
if(info->product_id == AURA_ROG_SPATHA_X_2_4_PID)
{
AuraMouseController* dock_controller = new AuraMouseController(dev, info->path, AURA_ROG_SPATHA_X_DOCK_FAKE_PID);
RGBController_AuraMouse* rgb_controller_dock = new RGBController_AuraMouse(dock_controller);
rgb_controller_dock->name = "Asus ROG Spatha X Dock";
ResourceManager::get()->RegisterRGBController(rgb_controller_dock);
}
}
}
@@ -282,6 +297,19 @@ void DetectAsusAuraUSBMonitor(hid_device_info* info, const std::string& name)
}
}
void DetectAsusROGAlly(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
ROGAllyController* controller = new ROGAllyController(dev, info->path);
RGBController_AsusROGAlly* rgb_controller = new RGBController_AsusROGAlly(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
/*-----------------------------------------------------------------*\
| MOTHERBOARDS |
\*-----------------------------------------------------------------*/
@@ -296,17 +324,21 @@ REGISTER_HID_DETECTOR ("ASUS Aura Motherboard", DetectAs
/*-----------------------------------------------------------------*\
| KEYBOARDS |
\*-----------------------------------------------------------------*/
REGISTER_HID_DETECTOR_IP("ASUS ROG Falchion (Wired)", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_FALCHION_WIRED_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Falchion (Wireless)", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_FALCHION_WIRELESS_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Flare", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_FLARE_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Flare PNK LTD", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_FLARE_PNK_LTD_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Flare CoD Black Ops 4 Edition",DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_FLARE_COD_BO4_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Scope", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_SCOPE_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Scope RX", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_SCOPE_RX_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Scope TKL", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_SCOPE_TKL_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Scope RX TKL Wireless Deluxe", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_SCOPE_RX_TKL_DELUXE_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Scope TKL PNK LTD", DetectAsusAuraUSBKeyboards, AURA_USB_VID, AURA_ROG_STRIX_SCOPE_TKL_PNK_LTD_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Claymore", DetectAsusAuraTUFUSBKeyboard, AURA_USB_VID, AURA_ROG_CLAYMORE_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS TUF Gaming K7", DetectAsusAuraTUFUSBKeyboard, AURA_USB_VID, AURA_TUF_K7_GAMING_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Falchion (Wired)", DetectAsusAuraTUFUSBKeyboard, AURA_USB_VID, AURA_ROG_FALCHION_WIRED_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS ROG Falchion (Wireless)", DetectAsusAuraTUFUSBKeyboard, AURA_USB_VID, AURA_ROG_FALCHION_WIRELESS_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS TUF Gaming K1", DetectAsusAuraTUFUSBKeyboard, AURA_USB_VID, AURA_TUF_K1_GAMING_PID, 2, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS TUF Gaming K3", DetectAsusAuraTUFUSBKeyboard, AURA_USB_VID, AURA_TUF_K3_GAMING_PID, 1, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS TUF Gaming K5", DetectAsusAuraTUFUSBKeyboard, AURA_USB_VID, AURA_TUF_K5_GAMING_PID, 2, 0xFF00);
REGISTER_HID_DETECTOR_IP("ASUS TUF Gaming K7", DetectAsusAuraTUFUSBKeyboard, AURA_USB_VID, AURA_TUF_K7_GAMING_PID, 1, 0xFF00);
/*-----------------------------------------------------------------*\
| MICE |
@@ -325,10 +357,14 @@ REGISTER_HID_DETECTOR_IP("ASUS ROG Gladius III Wireless Bluetooth", DetectAs
REGISTER_HID_DETECTOR_IP("ASUS ROG Chakram (Wireless)", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_CHAKRAM_WIRELESS_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("Asus ROG Chakram (Wired)", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_CHAKRAM_WIRED_1_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("Asus ROG Chakram Core", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_CHAKRAM_CORE_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("Asus ROG Chakram X USB", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_CHAKRAM_X_USB_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("Asus ROG Chakram X 2.4GHz", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_CHAKRAM_X_2_4_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("Asus ROG Spatha X USB", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_SPATHA_X_USB_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("Asus ROG Spatha X 2.4GHz", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_SPATHA_X_2_4_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Pugio", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_PUGIO_PID, 2, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Pugio II (Wired)", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_PUGIO_II_WIRED_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Pugio II (Wireless)", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_PUGIO_II_WIRELESS_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Impact", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_STRIX_IMPACT_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Impact", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_STRIX_IMPACT_PID, 2, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Impact II", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_STRIX_IMPACT_II_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Impact II Gundam", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_STRIX_IMPACT_II_GUNDAM_PID, 0, 0xFF01);
REGISTER_HID_DETECTOR_IP("ASUS ROG Strix Impact II Electro Punk", DetectAsusAuraUSBMice, AURA_USB_VID, AURA_ROG_STRIX_IMPACT_II_PUNK_PID, 0, 0xFF01);
@@ -355,6 +391,7 @@ REGISTER_HID_DETECTOR_PU("ASUS ROG Balteus Qi", DetectAs
\*-----------------------------------------------------------------*/
REGISTER_HID_DETECTOR_PU("ASUS ROG Strix XG27AQ", DetectAsusAuraUSBMonitor, AURA_USB_VID, AURA_ROG_STRIX_XG27AQ_PID, 0xFFA0, 1);
REGISTER_HID_DETECTOR_PU("ASUS ROG Strix XG27AQM", DetectAsusAuraUSBMonitor, AURA_USB_VID, AURA_ROG_STRIX_XG27AQM_PID, 0xFFA0, 1);
REGISTER_HID_DETECTOR_PU("ASUS ROG Strix XG279Q", DetectAsusAuraUSBMonitor, AURA_USB_VID, AURA_ROG_STRIX_XG279Q_PID, 0xFFA0, 1);
REGISTER_HID_DETECTOR_PU("ASUS ROG Strix XG27W", DetectAsusAuraUSBMonitor, AURA_USB_VID, AURA_ROG_STRIX_XG27W_PID, 0xFFA0, 1);
REGISTER_HID_DETECTOR_PU("ASUS ROG PG32UQ", DetectAsusAuraUSBMonitor, AURA_USB_VID, AURA_ROG_PG32UQ_PID, 0xFFA0, 1);
@@ -367,3 +404,4 @@ REGISTER_HID_DETECTOR_PU ("ASUS ROG Ryuo AIO", DetectAs
REGISTER_HID_DETECTOR_I ("ASUS ROG Throne", DetectAsusAuraUSBHeadsetStand, AURA_USB_VID, AURA_ROG_THRONE_PID, 0);
REGISTER_HID_DETECTOR_I ("ASUS ROG Throne QI", DetectAsusAuraUSBHeadsetStand, AURA_USB_VID, AURA_ROG_THRONE_QI_PID, 0);
REGISTER_HID_DETECTOR_I ("ASUS ROG Throne QI GUNDAM", DetectAsusAuraUSBHeadsetStand, AURA_USB_VID, AURA_ROG_THRONE_QI_GUNDAM_PID, 0);
REGISTER_HID_DETECTOR_IPU("ASUS ROG Ally", DetectAsusROGAlly, AURA_USB_VID, ASUS_ROG_ALLY_PID, 2, 0xFF31, 0x0076);
@@ -0,0 +1,127 @@
/*-----------------------------------------*\
| AsusROGAllyController.cpp |
| |
| Driver for ASUS ROG Ally lighting |
| controller |
| |
| Adam Honse (CalcProgrammer1) 6/12/2023 |
\*-----------------------------------------*/
#include "AsusROGAllyController.h"
#include <cstring>
ROGAllyController::ROGAllyController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
}
ROGAllyController::~ROGAllyController()
{
hid_close(dev);
}
std::string ROGAllyController::GetDeviceLocation()
{
return("HID: " + location);
}
std::string ROGAllyController::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
std::string ROGAllyController::GetVersion()
{
return("");
}
void ROGAllyController::UpdateLeds
(
std::vector<RGBColor> colors
)
{
unsigned char usb_buf[64];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x5A;
usb_buf[0x01] = 0xD1;
usb_buf[0x02] = 0x08;
usb_buf[0x03] = 0x0C;
for(unsigned int color_idx = 0; color_idx < colors.size(); color_idx++)
{
usb_buf[color_idx * 3 + 4] = RGBGetRValue(colors[color_idx]);
usb_buf[color_idx * 3 + 5] = RGBGetGValue(colors[color_idx]);
usb_buf[color_idx * 3 + 6] = RGBGetBValue(colors[color_idx]);
}
hid_send_feature_report(dev, usb_buf, sizeof(usb_buf));
}
void ROGAllyController::UpdateDevice
(
unsigned char mode,
std::vector<RGBColor> colors,
unsigned char speed,
unsigned char /*brightness*/,
unsigned char direction
)
{
unsigned char usb_buf[64];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x5A;
usb_buf[0x01] = 0xB3;
usb_buf[0x02] = 0x00;
usb_buf[0x03] = mode;
if(colors.size() > 0)
{
usb_buf[0x04] = RGBGetRValue(colors[0]);
usb_buf[0x05] = RGBGetGValue(colors[0]);
usb_buf[0x06] = RGBGetBValue(colors[0]);
}
usb_buf[0x07] = speed;
usb_buf[0x08] = direction;
if(colors.size() > 1)
{
usb_buf[0x0A] = RGBGetRValue(colors[1]);
usb_buf[0x0B] = RGBGetGValue(colors[1]);
usb_buf[0x0C] = RGBGetBValue(colors[1]);
}
hid_send_feature_report(dev, usb_buf, sizeof(usb_buf));
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x5A;
usb_buf[0x01] = 0xB5;
hid_send_feature_report(dev, usb_buf, sizeof(usb_buf));
}
void ROGAllyController::SaveMode()
{
unsigned char usb_buf[64];
memset(usb_buf, 0x00, sizeof(usb_buf));
usb_buf[0x00] = 0x5A;
usb_buf[0x01] = 0xB4;
hid_send_feature_report(dev, usb_buf, sizeof(usb_buf));
}
@@ -0,0 +1,67 @@
/*-----------------------------------------*\
| AsusROGAllyController.h |
| |
| Definitions and types for ASUS ROG Ally |
| lighting controller |
| |
| Adam Honse (CalcProgrammer1) 6/12/2023 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <hidapi/hidapi.h>
#pragma once
enum
{
ROG_ALLY_MODE_STATIC = 0,
ROG_ALLY_MODE_BREATHING = 1,
ROG_ALLY_MODE_COLOR_CYCLE = 2,
ROG_ALLY_MODE_RAINBOW = 3,
ROG_ALLY_MODE_STROBING = 10,
ROG_ALLY_MODE_DIRECT = 0xFF,
};
enum
{
ROG_ALLY_SPEED_MIN = 0xE1,
ROG_ALLY_SPEED_MED = 0xEB,
ROG_ALLY_SPEED_MAX = 0xF5
};
enum
{
ROG_ALLY_DIRECTION_RIGHT = 0x00,
ROG_ALLY_DIRECTION_LEFT = 0x01
};
class ROGAllyController
{
public:
ROGAllyController(hid_device* dev_handle, const char* path);
virtual ~ROGAllyController();
std::string GetDeviceLocation();
std::string GetSerialString();
std::string GetVersion();
void UpdateLeds
(
std::vector<RGBColor> colors
);
void UpdateDevice
(
unsigned char mode,
std::vector<RGBColor> colors,
unsigned char speed,
unsigned char brightness,
unsigned char direction
);
void SaveMode();
private:
hid_device* dev;
std::string location;
};
@@ -9,11 +9,12 @@
#include "RGBController_AsusAuraMouse.h"
static std::string aura_mouse_zone_names[3]
static std::string aura_mouse_zone_names[4]
{
"Logo",
"Scroll Wheel",
"Underglow"
"Underglow",
"Dock"
};
/**------------------------------------------------------------------*\
@@ -29,9 +30,9 @@ static std::string aura_mouse_zone_names[3]
RGBController_AuraMouse::RGBController_AuraMouse(AuraMouseController* controller_ptr)
{
controller = controller_ptr;
controller = controller_ptr;
uint16_t pid = controller->device_pid;
pid = controller->device_pid;
name = "ASUS Aura Mouse";
vendor = "ASUS";
@@ -168,8 +169,6 @@ RGBController_AuraMouse::~RGBController_AuraMouse()
void RGBController_AuraMouse::SetupZones()
{
uint16_t pid = controller->device_pid;
for(std::vector<uint8_t>::iterator zone_it = aura_mouse_devices[pid].mouse_zones.begin(); zone_it != aura_mouse_devices[pid].mouse_zones.end(); zone_it++)
{
zone mouse_zone;
@@ -207,9 +206,9 @@ void RGBController_AuraMouse::DeviceUpdateLEDs()
}
}
void RGBController_AuraMouse::UpdateZoneLEDs(int zone)
void RGBController_AuraMouse::UpdateZoneLEDs(int /*zone*/)
{
UpdateSingleLED(zone);
DeviceUpdateLEDs();
}
void RGBController_AuraMouse::UpdateSingleLED(int led)
@@ -240,7 +239,22 @@ void RGBController_AuraMouse::DeviceUpdateMode()
blu = RGBGetBValue(modes[active_mode].colors[0]);
}
controller->SendUpdate(AURA_MOUSE_ZONE_ALL, modes[active_mode].value, red, grn, blu, modes[active_mode].direction, modes[active_mode].color_mode == MODE_COLORS_RANDOM, modes[active_mode].speed, modes[active_mode].brightness);
if(pid == AURA_ROG_SPATHA_X_DOCK_FAKE_PID)
{
controller->SendUpdate(AURA_MOUSE_ZONE_DOCK, modes[active_mode].value, red, grn, blu, modes[active_mode].direction, modes[active_mode].color_mode == MODE_COLORS_RANDOM, modes[active_mode].speed, modes[active_mode].brightness);
}
else if(pid == AURA_ROG_STRIX_IMPACT_PID)
{
/*-----------------------------------------------------------------*\
| The ROG Impact doesn't accept AURA_MOUSE_ZONE_ALL |
\*-----------------------------------------------------------------*/
controller->SendUpdate(AURA_MOUSE_ZONE_LOGO, modes[active_mode].value, red, grn, blu, modes[active_mode].direction, modes[active_mode].color_mode == MODE_COLORS_RANDOM, modes[active_mode].speed, modes[active_mode].brightness);
}
else
{
controller->SendUpdate(AURA_MOUSE_ZONE_ALL, modes[active_mode].value, red, grn, blu, modes[active_mode].direction, modes[active_mode].color_mode == MODE_COLORS_RANDOM, modes[active_mode].speed, modes[active_mode].brightness);
}
}
}
@@ -30,4 +30,5 @@ public:
private:
AuraMouseController* controller;
uint16_t pid;
};
@@ -38,6 +38,40 @@ RGBController_AuraTUFKeyboard::RGBController_AuraTUFKeyboard(AuraTUFKeyboardCont
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
unsigned char AURA_KEYBOARD_SPEED_MIN = 0;
unsigned char AURA_KEYBOARD_SPEED_MAX = 0;
unsigned char AURA_KEYBOARD_SPEED_DEFAULT = 0;
switch(pid)
{
case AURA_TUF_K1_GAMING_PID:
AURA_KEYBOARD_SPEED_MIN = 0;
AURA_KEYBOARD_SPEED_MAX = 2;
AURA_KEYBOARD_SPEED_DEFAULT = 1;
break;
case AURA_TUF_K3_GAMING_PID:
case AURA_TUF_K7_GAMING_PID:
AURA_KEYBOARD_SPEED_MIN = 15;
AURA_KEYBOARD_SPEED_MAX = 0;
AURA_KEYBOARD_SPEED_DEFAULT = 8;
break;
case AURA_TUF_K5_GAMING_PID:
AURA_KEYBOARD_SPEED_MIN = 63;
AURA_KEYBOARD_SPEED_MAX = 0;
AURA_KEYBOARD_SPEED_DEFAULT = 31;
break;
case AURA_ROG_FALCHION_WIRED_PID:
case AURA_ROG_FALCHION_WIRELESS_PID:
AURA_KEYBOARD_SPEED_MIN = 255;
AURA_KEYBOARD_SPEED_MAX = 0;
AURA_KEYBOARD_SPEED_DEFAULT = 8;
break;
default:
AURA_KEYBOARD_SPEED_MIN = 15;
AURA_KEYBOARD_SPEED_MAX = 0;
AURA_KEYBOARD_SPEED_DEFAULT = 8;
}
mode Direct;
Direct.name = "Direct";
Direct.value = AURA_KEYBOARD_MODE_DIRECT;
@@ -61,7 +95,9 @@ RGBController_AuraTUFKeyboard::RGBController_AuraTUFKeyboard(AuraTUFKeyboardCont
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_KEYBOARD_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
if(controller->is_per_led_keyboard) Breathing.flags |= MODE_FLAG_HAS_RANDOM_COLOR;
Breathing.speed_min = AURA_KEYBOARD_SPEED_MIN;
Breathing.speed_max = AURA_KEYBOARD_SPEED_MAX;
Breathing.speed = AURA_KEYBOARD_SPEED_DEFAULT;
@@ -90,7 +126,9 @@ RGBController_AuraTUFKeyboard::RGBController_AuraTUFKeyboard(AuraTUFKeyboardCont
mode Wave;
Wave.name = "Rainbow Wave";
Wave.value = AURA_KEYBOARD_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_HAS_DIRECTION_HV | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Wave.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_DIRECTION_HV | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
if(controller->is_per_led_keyboard) Wave.flags |= MODE_FLAG_HAS_DIRECTION_UD;
Wave.speed_min = AURA_KEYBOARD_SPEED_MIN;
Wave.speed_max = AURA_KEYBOARD_SPEED_MAX;
Wave.speed = AURA_KEYBOARD_SPEED_DEFAULT;
@@ -99,107 +137,120 @@ RGBController_AuraTUFKeyboard::RGBController_AuraTUFKeyboard(AuraTUFKeyboardCont
Wave.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Wave.direction = MODE_DIRECTION_LEFT;
Wave.color_mode = MODE_COLORS_MODE_SPECIFIC;
Wave.colors_min = 1;
Wave.colors_max = 7;
Wave.colors.resize(7);
if(!controller->is_per_led_keyboard)
{
Wave.colors_min = 5;
Wave.colors_max = 5;
}
else
{
Wave.colors_min = 1;
Wave.colors_max = 7;
}
Wave.colors.resize(Wave.colors_max);
modes.push_back(Wave);
mode Ripple;
Ripple.name = "Ripple";
Ripple.value = AURA_KEYBOARD_MODE_RIPPLE;
Ripple.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Ripple.speed_min = AURA_KEYBOARD_SPEED_MIN;
Ripple.speed_max = AURA_KEYBOARD_SPEED_MAX;
Ripple.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Ripple.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Ripple.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Ripple.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Ripple.color_mode = MODE_COLORS_MODE_SPECIFIC;
Ripple.colors_min = 1;
Ripple.colors_max = 8;
Ripple.colors.resize(7);
modes.push_back(Ripple);
if(controller->is_per_led_keyboard)
{
mode Reactive;
Reactive.name = "Reactive";
Reactive.value = AURA_KEYBOARD_MODE_REACTIVE;
Reactive.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Reactive.speed_min = AURA_KEYBOARD_SPEED_MIN;
Reactive.speed_max = AURA_KEYBOARD_SPEED_MAX;
Reactive.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Reactive.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Reactive.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Reactive.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Reactive.color_mode = MODE_COLORS_MODE_SPECIFIC;
Reactive.colors_min = 1;
Reactive.colors_max = 2;
Reactive.colors.resize(1);
modes.push_back(Reactive);
mode Reactive;
Reactive.name = "Reactive";
Reactive.value = AURA_KEYBOARD_MODE_REACTIVE;
Reactive.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Reactive.speed_min = AURA_KEYBOARD_SPEED_MIN;
Reactive.speed_max = AURA_KEYBOARD_SPEED_MAX;
Reactive.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Reactive.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Reactive.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Reactive.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Reactive.color_mode = MODE_COLORS_MODE_SPECIFIC;
Reactive.colors_min = 1;
Reactive.colors_max = 2;
Reactive.colors.resize(1);
modes.push_back(Reactive);
mode Ripple;
Ripple.name = "Ripple";
Ripple.value = AURA_KEYBOARD_MODE_RIPPLE;
Ripple.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Ripple.speed_min = AURA_KEYBOARD_SPEED_MIN;
Ripple.speed_max = AURA_KEYBOARD_SPEED_MAX;
Ripple.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Ripple.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Ripple.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Ripple.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Ripple.color_mode = MODE_COLORS_MODE_SPECIFIC;
Ripple.colors_min = 1;
Ripple.colors_max = 8;
Ripple.colors.resize(7);
modes.push_back(Ripple);
mode Starry_Night;
Starry_Night.name = "Starry Night";
Starry_Night.value = AURA_KEYBOARD_MODE_STARRY_NIGHT;
Starry_Night.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Starry_Night.speed_min = AURA_KEYBOARD_SPEED_MIN;
Starry_Night.speed_max = AURA_KEYBOARD_SPEED_MAX;
Starry_Night.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Starry_Night.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Starry_Night.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Starry_Night.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Starry_Night.color_mode = MODE_COLORS_MODE_SPECIFIC;
Starry_Night.colors_min = 1;
Starry_Night.colors_max = 3;
Starry_Night.colors.resize(1);
modes.push_back(Starry_Night);
mode Starry_Night;
Starry_Night.name = "Starry Night";
Starry_Night.value = AURA_KEYBOARD_MODE_STARRY_NIGHT;
Starry_Night.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Starry_Night.speed_min = AURA_KEYBOARD_SPEED_MIN;
Starry_Night.speed_max = AURA_KEYBOARD_SPEED_MAX;
Starry_Night.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Starry_Night.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Starry_Night.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Starry_Night.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Starry_Night.color_mode = MODE_COLORS_MODE_SPECIFIC;
Starry_Night.colors_min = 1;
Starry_Night.colors_max = 3;
Starry_Night.colors.resize(1);
modes.push_back(Starry_Night);
mode Quicksand;
Quicksand.name = "Quicksand";
Quicksand.value = AURA_KEYBOARD_MODE_QUICKSAND;
Quicksand.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Quicksand.direction = MODE_DIRECTION_DOWN;
Quicksand.speed_min = AURA_KEYBOARD_SPEED_MIN;
Quicksand.speed_max = AURA_KEYBOARD_SPEED_MAX;
Quicksand.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Quicksand.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Quicksand.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Quicksand.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Quicksand.color_mode = MODE_COLORS_MODE_SPECIFIC;
Quicksand.colors_min = 6;
Quicksand.colors_max = 6;
Quicksand.colors.resize(6);
modes.push_back(Quicksand);
mode Quicksand;
Quicksand.name = "Quicksand";
Quicksand.value = AURA_KEYBOARD_MODE_QUICKSAND;
Quicksand.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Quicksand.direction = MODE_DIRECTION_DOWN;
Quicksand.speed_min = AURA_KEYBOARD_SPEED_MIN;
Quicksand.speed_max = AURA_KEYBOARD_SPEED_MAX;
Quicksand.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Quicksand.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Quicksand.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Quicksand.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Quicksand.color_mode = MODE_COLORS_MODE_SPECIFIC;
Quicksand.colors_min = 6;
Quicksand.colors_max = 6;
Quicksand.colors.resize(6);
modes.push_back(Quicksand);
mode Current;
Current.name = "Current";
Current.value = AURA_KEYBOARD_MODE_CURRENT;
Current.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Current.speed_min = AURA_KEYBOARD_SPEED_MIN;
Current.speed_max = AURA_KEYBOARD_SPEED_MAX;
Current.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Current.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Current.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Current.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Current.color_mode = MODE_COLORS_MODE_SPECIFIC;
Current.colors_min = 1;
Current.colors_max = 3;
Current.colors.resize(1);
modes.push_back(Current);
mode Current;
Current.name = "Current";
Current.value = AURA_KEYBOARD_MODE_CURRENT;
Current.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Current.speed_min = AURA_KEYBOARD_SPEED_MIN;
Current.speed_max = AURA_KEYBOARD_SPEED_MAX;
Current.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Current.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Current.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Current.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Current.color_mode = MODE_COLORS_MODE_SPECIFIC;
Current.colors_min = 1;
Current.colors_max = 3;
Current.colors.resize(1);
modes.push_back(Current);
mode Rain_Drop;
Rain_Drop.name = "Rain Drop";
Rain_Drop.value = AURA_KEYBOARD_MODE_RAIN_DROP;
Rain_Drop.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Rain_Drop.speed_min = AURA_KEYBOARD_SPEED_MIN;
Rain_Drop.speed_max = AURA_KEYBOARD_SPEED_MAX;
Rain_Drop.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Rain_Drop.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Rain_Drop.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Rain_Drop.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Rain_Drop.color_mode = MODE_COLORS_MODE_SPECIFIC;
Rain_Drop.colors_min = 1;
Rain_Drop.colors_max = 3;
Rain_Drop.colors.resize(1);
modes.push_back(Rain_Drop);
mode Rain_Drop;
Rain_Drop.name = "Rain Drop";
Rain_Drop.value = AURA_KEYBOARD_MODE_RAIN_DROP;
Rain_Drop.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_BRIGHTNESS;
Rain_Drop.speed_min = AURA_KEYBOARD_SPEED_MIN;
Rain_Drop.speed_max = AURA_KEYBOARD_SPEED_MAX;
Rain_Drop.speed = AURA_KEYBOARD_SPEED_DEFAULT;
Rain_Drop.brightness_min = AURA_KEYBOARD_BRIGHTNESS_MIN;
Rain_Drop.brightness_max = AURA_KEYBOARD_BRIGHTNESS_MAX;
Rain_Drop.brightness = AURA_KEYBOARD_BRIGHTNESS_DEFAULT;
Rain_Drop.color_mode = MODE_COLORS_MODE_SPECIFIC;
Rain_Drop.colors_min = 1;
Rain_Drop.colors_max = 3;
Rain_Drop.colors.resize(1);
modes.push_back(Rain_Drop);
}
}
else
{
@@ -341,12 +392,18 @@ RGBController_AuraTUFKeyboard::~RGBController_AuraTUFKeyboard()
void RGBController_AuraTUFKeyboard::SetupZones()
{
unsigned char layout = controller->GetLayout();
std::map<int,layout_info> * keyboard_ptr;
switch(pid)
{
case AURA_TUF_K3_GAMING_PID:
case AURA_TUF_K7_GAMING_PID:
keyboard_ptr = &AsusTUFK7Layouts;
break;
case AURA_ROG_FALCHION_WIRED_PID:
case AURA_ROG_FALCHION_WIRELESS_PID:
keyboard_ptr = &AsusFalchionLayouts;
break;
case AURA_ROG_CLAYMORE_PID:
unsigned char numpad;
numpad = controller->GetNumpadLocation();
@@ -365,8 +422,9 @@ void RGBController_AuraTUFKeyboard::SetupZones()
keyboard_ptr = &AsusClaymoreNoNumpadLayouts;
}
break;
case AURA_TUF_K7_GAMING_PID:
keyboard_ptr = &AsusTUFK7Layouts;
case AURA_TUF_K1_GAMING_PID:
case AURA_TUF_K5_GAMING_PID:
keyboard_ptr = &AsusTufK1Layouts;
break;
default:
keyboard_ptr = &AsusTUFK7Layouts;
@@ -374,6 +432,8 @@ void RGBController_AuraTUFKeyboard::SetupZones()
std::map<int,layout_info> & keyboard = *keyboard_ptr;
unsigned char layout = controller->GetLayout();
if(keyboard.find(layout % 100) == keyboard.end())
{
/*---------------------------------------------------------*\
@@ -423,13 +483,12 @@ void RGBController_AuraTUFKeyboard::DeviceUpdateLEDs()
{
std::vector<led_color> led_color_list = {};
for(unsigned int i = 0; i < colors.size(); i++)
for(size_t i = 0; i < colors.size(); i++)
{
led_color_list.push_back({ leds[i].value, colors[i] });
}
controller->UpdateLeds(led_color_list);
}
void RGBController_AuraTUFKeyboard::UpdateZoneLEDs(int /*zone*/)
@@ -439,6 +498,11 @@ void RGBController_AuraTUFKeyboard::UpdateZoneLEDs(int /*zone*/)
void RGBController_AuraTUFKeyboard::UpdateSingleLED(int led)
{
if(!controller->is_per_led_keyboard)
{
return DeviceUpdateLEDs();
}
unsigned char red = RGBGetRValue(colors[led]);
unsigned char green = RGBGetGValue(colors[led]);
unsigned char blue = RGBGetBValue(colors[led]);
@@ -480,6 +544,12 @@ void RGBController_AuraTUFKeyboard::DeviceUpdateMode()
case AURA_KEYBOARD_MODE_STARRY_NIGHT:
case AURA_KEYBOARD_MODE_CURRENT:
case AURA_KEYBOARD_MODE_RAIN_DROP:
if(!controller->is_per_led_keyboard && modes[active_mode].colors.size() > 1)
{
color_mode = 1;
break;
}
bool color_is_black = (modes[active_mode].colors.size() > 1 && modes[active_mode].colors[1] == 000);
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC && !color_is_black)
@@ -519,6 +589,7 @@ void RGBController_AuraTUFKeyboard::DeviceUpdateMode()
}
}
controller->UpdateDevice(modes[active_mode].value, std::vector<RGBColor>(modes[active_mode].colors), direction, color_mode, modes[active_mode].speed, brightness);
if(pid == AURA_ROG_CLAYMORE_PID)
@@ -13,9 +13,6 @@
enum
{
AURA_KEYBOARD_SPEED_MIN = 15,
AURA_KEYBOARD_SPEED_MAX = 0,
AURA_KEYBOARD_SPEED_DEFAULT = 8,
AURA_KEYBOARD_BRIGHTNESS_MIN = 0,
AURA_KEYBOARD_BRIGHTNESS_MAX = 4,
AURA_KEYBOARD_BRIGHTNESS_DEFAULT = 4,
@@ -23,17 +20,16 @@ enum
enum
{
AURA_CLAYMORE_SPEED_MIN = 254,
AURA_CLAYMORE_SPEED_MAX = 0,
AURA_CLAYMORE_SPEED_DEFAULT_STATIC = 0,
AURA_CLAYMORE_SPEED_DEFAULT_BREATHING = 107,
AURA_CLAYMORE_SPEED_DEFAULT_COLOR_CYCLE = 121,
AURA_CLAYMORE_SPEED_DEFAULT_REACTIVE = 56,
AURA_CLAYMORE_SPEED_DEFAULT_WAVE = 50,
AURA_CLAYMORE_SPEED_DEFAULT_RIPPLE = 108,
AURA_CLAYMORE_SPEED_DEFAULT_STARRY_NIGHT = 54,
AURA_CLAYMORE_SPEED_DEFAULT_QUICKSAND = 103,
AURA_CLAYMORE_SPEED_MIN = 254,
AURA_CLAYMORE_SPEED_MAX = 0,
AURA_CLAYMORE_SPEED_DEFAULT_STATIC = 0,
AURA_CLAYMORE_SPEED_DEFAULT_BREATHING = 107,
AURA_CLAYMORE_SPEED_DEFAULT_COLOR_CYCLE = 121,
AURA_CLAYMORE_SPEED_DEFAULT_REACTIVE = 56,
AURA_CLAYMORE_SPEED_DEFAULT_WAVE = 50,
AURA_CLAYMORE_SPEED_DEFAULT_RIPPLE = 108,
AURA_CLAYMORE_SPEED_DEFAULT_STARRY_NIGHT = 54,
AURA_CLAYMORE_SPEED_DEFAULT_QUICKSAND = 103
};
class RGBController_AuraTUFKeyboard : public RGBController
@@ -0,0 +1,196 @@
/*-----------------------------------------*\
| RGBController_AsusROGAlly.cpp |
| |
| Generic RGB Interface for Asus ROG Ally |
| controller driver |
| |
| Adam Honse (CalcProgrammer1) 6/12/2023 |
\*-----------------------------------------*/
#include "RGBController_AsusROGAlly.h"
/**------------------------------------------------------------------*\
@name Asus ROG Ally
@category Gamepad
@type USB
@save :x:
@direct :white_check_mark:
@effects :x:
@detectors DetectAsusROGAlly
@comment
\*-------------------------------------------------------------------*/
RGBController_AsusROGAlly::RGBController_AsusROGAlly(ROGAllyController* controller_ptr)
{
controller = controller_ptr;
name = "ASUS ROG Ally";
vendor = "ASUS";
type = DEVICE_TYPE_GAMEPAD;
description = "ASUS ROG Ally Device";
version = controller->GetVersion();
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = ROG_ALLY_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Static;
Static.name = "Static";
Static.value = ROG_ALLY_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_MANUAL_SAVE;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors_min = 1;
Static.colors_max = 1;
Static.colors.resize(1);
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = ROG_ALLY_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_SPEED;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.speed_min = ROG_ALLY_SPEED_MIN;
Breathing.speed_max = ROG_ALLY_SPEED_MAX;
Breathing.speed = ROG_ALLY_SPEED_MED;
Breathing.colors_min = 2;
Breathing.colors_max = 2;
Breathing.colors.resize(2);
modes.push_back(Breathing);
mode ColorCycle;
ColorCycle.name = "Spectrum Cycle";
ColorCycle.value = ROG_ALLY_MODE_COLOR_CYCLE;
ColorCycle.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_SPEED;
ColorCycle.color_mode = MODE_COLORS_RANDOM;
ColorCycle.speed_min = ROG_ALLY_SPEED_MIN;
ColorCycle.speed_max = ROG_ALLY_SPEED_MAX;
ColorCycle.speed = ROG_ALLY_SPEED_MED;
modes.push_back(ColorCycle);
mode Rainbow;
Rainbow.name = "Rainbow Wave";
Rainbow.value = ROG_ALLY_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_MANUAL_SAVE | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
Rainbow.color_mode = MODE_COLORS_RANDOM;
Rainbow.speed_min = ROG_ALLY_SPEED_MIN;
Rainbow.speed_max = ROG_ALLY_SPEED_MAX;
Rainbow.speed = ROG_ALLY_SPEED_MED;
modes.push_back(Rainbow);
mode Strobing;
Strobing.name = "Strobing";
Strobing.value = ROG_ALLY_MODE_STROBING;
Strobing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_MANUAL_SAVE;
Strobing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Strobing.colors_min = 1;
Strobing.colors_max = 1;
Strobing.colors.resize(1);
modes.push_back(Strobing);
SetupZones();
}
RGBController_AsusROGAlly::~RGBController_AsusROGAlly()
{
delete controller;
}
void RGBController_AsusROGAlly::SetupZones()
{
zone left_stick_zone;
left_stick_zone.name = "Left Stick";
left_stick_zone.type = ZONE_TYPE_SINGLE;
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);
for(unsigned int i = 0; i < 2; i++)
{
led left_stick_led;
left_stick_led.name = "Left Stick LED " + std::to_string(i);
leds.push_back(left_stick_led);
}
zone right_stick_zone;
right_stick_zone.name = "Right Stick";
right_stick_zone.type = ZONE_TYPE_SINGLE;
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);
for(unsigned int i = 0; i < 2; i++)
{
led right_stick_led;
right_stick_led.name = "Right Stick LED " + std::to_string(i);
leds.push_back(right_stick_led);
}
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)
{
controller->UpdateLeds(std::vector<RGBColor>(colors));
}
}
void RGBController_AsusROGAlly::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AsusROGAlly::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_AsusROGAlly::DeviceUpdateMode()
{
if(modes[active_mode].value == ROG_ALLY_MODE_DIRECT)
{
DeviceUpdateLEDs();
}
else
{
unsigned int rog_ally_direction = ROG_ALLY_DIRECTION_RIGHT;
if((modes[active_mode].flags & MODE_FLAG_HAS_DIRECTION_LR) && (modes[active_mode].direction == MODE_DIRECTION_LEFT))
{
rog_ally_direction = ROG_ALLY_DIRECTION_LEFT;
}
controller->UpdateDevice(modes[active_mode].value, modes[active_mode].colors, modes[active_mode].speed, modes[active_mode].brightness, rog_ally_direction);
}
}
void RGBController_AsusROGAlly::DeviceSaveMode()
{
DeviceUpdateMode();
controller->SaveMode();
}
@@ -0,0 +1,34 @@
/*-----------------------------------------*\
| RGBController_AsusROGAlly.cpp |
| |
| Generic RGB Interface for Asus ROG Ally |
| controller driver |
| |
| Adam Honse (CalcProgrammer1) 6/12/2023 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AsusROGAllyController.h"
class RGBController_AsusROGAlly : public RGBController
{
public:
RGBController_AsusROGAlly(ROGAllyController* controller_ptr);
~RGBController_AsusROGAlly();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode();
void DeviceSaveMode();
private:
ROGAllyController* controller;
};
@@ -23,7 +23,7 @@ ROGStrixLC_Controller::ROGStrixLC_Controller(hid_device* dev_handle, const char*
ROGStrixLC_Controller::~ROGStrixLC_Controller()
{
hid_close(dev);
// Device will close at AuraUSBController destructor
}
std::string ROGStrixLC_Controller::GetLocation()
@@ -55,8 +55,8 @@ std::string AsusCerberusKeyboardController::GetSerialString()
std::string AsusCerberusKeyboardController::GetVersion()
{
char versionstr[5];
snprintf(versionstr, 3, "%X", version);
return(std::string(versionstr, 3));
snprintf(versionstr, 5, "%X", version);
return(std::string(versionstr));
}
void AsusCerberusKeyboardController::SetProfile
@@ -0,0 +1,330 @@
#ifdef _WIN32
#include "AsusTUFLaptopController.h"
#include <Objbase.h>
#include <setupapi.h>
#include <comdef.h>
#include <Wbemidl.h>
#include <cstdint>
#include <cstring>
#include <cstdio>
static bool coInitialized = 0;
static GUID CLSID_GUID_DEVCLASS_SYSTEM = { 0x4D36E97D, 0xE325, 0x11CE, {0xBF, 0xC1, 0x08, 0x00, 0x2B, 0xE1, 0x03, 0x18 } };
int AsusTUFLaptopController::checkWMIType()
{
int n;
int v6;
int result = 0;
struct _SP_DEVINFO_DATA DeviceInfoData;
const int bufsize = 260;
wchar_t PropertyBuffer[bufsize];
HDEVINFO devinfo = SetupDiGetClassDevsW(&CLSID_GUID_DEVCLASS_SYSTEM, 0, 0, 2u);
if ( devinfo == HDEVINFO(-1) )
{
return 0;
}
n = 0;
DeviceInfoData.cbSize = sizeof(DeviceInfoData);
while ( SetupDiEnumDeviceInfo(devinfo, n, &DeviceInfoData) ) // Invalid buffer
{
if ( SetupDiGetDeviceRegistryPropertyW(devinfo,
&DeviceInfoData,
SPDRP_ENUMERATOR_NAME,
NULL,
PBYTE(PropertyBuffer),
sizeof(PropertyBuffer),
0) )
{
// If we found property "ACPI"
if(!wcscmp(PropertyBuffer, L"ACPI"))
{
memset(PropertyBuffer, 0, sizeof(PropertyBuffer));
if ( SetupDiGetDeviceInstanceIdW(devinfo, &DeviceInfoData, PropertyBuffer, bufsize, 0) )
{
_wcsupr_s(PropertyBuffer, bufsize);
if(wcsstr(PropertyBuffer, L"ACPI\\ATK0100"))
{
result = 1;
break;
}
if(!wcscmp(PropertyBuffer, L"ACPI\\PNP0C14\\ATK"))
{
result = 2;
break;
}
}
}
}
++n;
}
SetupDiDestroyDeviceInfoList(devinfo);
return result;
}
AsusTUFLaptopController::AsusTUFLaptopController()
{
hDevice = CreateFileW(L"\\\\.\\ATKACPI", 0xC0000000, 3u, 0, 3u, 0, 0);
}
AsusTUFLaptopController* AsusTUFLaptopController::checkAndCreate()
{
// This might cause issues when coInitialize() is used in multiple places
HRESULT init = CoInitializeEx(0, COINIT_APARTMENTTHREADED);
if ( init < 0 && init != 0x80010106 )
return 0;
coInitialized = 1;
int type = checkWMIType();
if ( type == 2 )
{
AsusTUFLaptopController* controller = new AsusTUFLaptopController();
if(controller->hDevice != HANDLE(-1))
{
return controller;
}
delete controller;
}
return nullptr;
}
AsusTUFLaptopController::~AsusTUFLaptopController()
{
if ( hDevice && hDevice != HANDLE(-1) )
{
CloseHandle(hDevice);
hDevice = 0;
}
// This might cause issues when coInitialize() is used in multiple places
if ( coInitialized )
{
CoUninitialize();
coInitialized = 0;
}
}
bool AsusTUFLaptopController::deviceIoControlWrapper(const void *dataIn, int commandIndex, int dataSizeIn, void *dataOut, int *dataSizeOut)
{
size_t BytesReturned;
const int bufsize = 1024;
char outBuffer[bufsize];
LPDWORD inBuffer = LPDWORD(malloc(dataSizeIn + 8));
inBuffer[0] = commandIndex;
inBuffer[1] = dataSizeIn;
memmove(inBuffer + 2, dataIn, dataSizeIn);
memset(outBuffer, 0, bufsize);
BytesReturned = 0;
bool result = DeviceIoControl(
hDevice,
0x22240Cu,
inBuffer,
dataSizeIn + 8,
outBuffer,
bufsize,
LPDWORD(&BytesReturned),
0);
if ( result )
{
if ( *dataSizeOut < BytesReturned )
{
BytesReturned = *dataSizeOut;
}
memmove(dataOut, outBuffer, BytesReturned);
}
free(inBuffer);
return result;
}
bool AsusTUFLaptopController::deviceControl(int a1, int a2)
{
if ( hDevice && hDevice != HANDLE(-1) )
{
int data[2];
data[0] = a1;
data[1] = a2;
int result;
int outBufSize = 4;
if ( deviceIoControlWrapper(&data, 1398162756, 8, &result, &outBufSize) )
{
if(outBufSize < 4)
{
result = 0;
}
if ( result == 1 )
{
return 1;
}
}
}
return 0;
}
bool AsusTUFLaptopController::deviceControl(int a1, int a2, int a3)
{
unsigned int data[3];
data[0] = a1;
data[1] = a2;
data[2] = a3;
int outBuf;
int outBufSize = 4;
if ( hDevice && hDevice != HANDLE(-1) )
{
if ( deviceIoControlWrapper(data, 0x53564544, 12, &outBuf, &outBufSize) )
{
if(outBufSize < 4)
{
outBuf = 0;
}
if ( outBuf == 1 )
{
return 1;
}
}
}
return 0;
}
bool AsusTUFLaptopController::getStatus(int a1, int *out)
{
int status;
int statusSize = 4;
if ( !hDevice || hDevice == HANDLE(-1) || (!deviceIoControlWrapper(&a1, 1398035268, 4, &status, &statusSize)) )
{
return 0;
}
if(statusSize < 4)
{
status = 0;
}
*out = status;
return 1;
}
bool AsusTUFLaptopController::getStatusExtended(int a1, int a2, int *status1, int *status2, int* status3)
{
int commandData[2];
commandData[0] = a1;
commandData[1] = a2;
int statusBuffer[3];
int statusSize = 12;
if ( hDevice && hDevice != HANDLE(-1)
&& deviceIoControlWrapper(commandData, 1398035268, 8, statusBuffer, &statusSize) )
{
*status1 = statusBuffer[0];
*status2 = statusBuffer[1];
*status3 = statusBuffer[2];
return 1;
}
else
{
return 0;
}
}
void AsusTUFLaptopController::setMode(unsigned char red,
unsigned char green,
unsigned char blue,
unsigned char mode,
unsigned char speed,
bool save)
{
/*--------------------------------------------------------*\
| Use switch case since our speed values are magic numbers |
| Default to Medium/Normal speed |
\*--------------------------------------------------------*/
unsigned char speed_val;
switch(speed)
{
case(1):
speed_val = ASUS_WMI_KEYBOARD_SPEED_SLOW;
break;
default:
case(2):
speed_val = ASUS_WMI_KEYBOARD_SPEED_NORMAL;
break;
case(3):
speed_val = ASUS_WMI_KEYBOARD_SPEED_FAST;
break;
}
/*----------------------------------------------------------*\
| We need to use a magic value to save to firmware in order |
| To persist reboots. Save is normal op with different magic |
\*---------------------------------------------------------*/
unsigned char save_val = ASUS_WMI_KEYBOARD_MAGIC_USE;
if (save)
{
save_val = ASUS_WMI_KEYBOARD_MAGIC_SAVE;
}
// B3 is store value
unsigned int high = save_val | (mode<<8) | (red<<16) | (green<<24);
unsigned int low = blue | (speed_val<<8);
deviceControl(ASUS_WMI_DEVID_TUF_RGB_MODE, high, low);
}
unsigned char AsusTUFLaptopController::getBrightness()
{
int backlight_state = 0;
getStatus(ASUS_WMI_DEVID_KBD_BACKLIGHT, &backlight_state);
/*----------------------------------------------*\
| Only lowest two bits indicate brightness level |
\*----------------------------------------------*/
return backlight_state & 0x7F;
}
void AsusTUFLaptopController::setBrightness(unsigned char brightness)
{
/*-----------------------------------------------------*\
| Only calls in this format persistently set brightness |
\*-----------------------------------------------------*/
int ctrl_param = 0x80 | (brightness & 0x7F);
deviceControl(ASUS_WMI_DEVID_KBD_BACKLIGHT, ctrl_param);
}
/*-----------------------------------------------------------*\
| These settings will not persist a reboot unless save is set |
\*-----------------------------------------------------------*/
void AsusTUFLaptopController::setPowerState(bool boot,
bool awake,
bool sleep,
bool shutdown,
bool save)
{
unsigned int state = 0xBD;
if (boot) state = state | ASUS_WMI_KEYBOARD_POWER_BOOT;
if (awake) state = state | ASUS_WMI_KEYBOARD_POWER_AWAKE;
if (sleep) state = state | ASUS_WMI_KEYBOARD_POWER_SLEEP;
if (shutdown) state = state | ASUS_WMI_KEYBOARD_POWER_SHUTDOWN;
if (save) state = state | ASUS_WMI_KEYBOARD_POWER_SAVE;
deviceControl(ASUS_WMI_DEVID_TUF_RGB_STATE, state);
}
void AsusTUFLaptopController::setFanMode(int mode)
{
deviceControl(ASUS_WMI_DEVID_FAN_BOOST_MODE, mode);
}
#endif
@@ -0,0 +1,82 @@
#ifndef ASUSTUFLAPTOPCONTROLLER_H
#define ASUSTUFLAPTOPCONTROLLER_H
#ifdef _WIN32
#include <windows.h>
#define ASUS_WMI_DEVID_KBD_BACKLIGHT 0x00050021
#define ASUS_WMI_DEVID_TUF_RGB_MODE 0x00100056
#define ASUS_WMI_DEVID_TUF_RGB_STATE 0x00100057
#define ASUS_WMI_DEVID_FAN_BOOST_MODE 0x00110018
#define ASUS_WMI_DEVID_THROTTLE_THERMAL_POLICY 0x00120075
#define ASUS_WMI_KEYBOARD_SPEED_SLOW 0xE1
#define ASUS_WMI_KEYBOARD_SPEED_NORMAL 0xEB
#define ASUS_WMI_KEYBOARD_SPEED_FAST 0xF5
#define ASUS_WMI_KEYBOARD_SPEED_MIN 1
#define ASUS_WMI_KEYBOARD_SPEED_MAX 3
#define ASUS_WMI_KEYBOARD_MODE_STATIC 0x00
#define ASUS_WMI_KEYBOARD_MODE_BREATHING 0x01
#define ASUS_WMI_KEYBOARD_MODE_COLORCYCLE 0x02
#define ASUS_WMI_KEYBOARD_MODE_STROBING 0x0A
#define ASUS_WMI_KEYBOARD_BRIGHTNESS_MIN 0
#define ASUS_WMI_KEYBOARD_BRIGHTNESS_MAX 3
#define ASUS_WMI_KEYBOARD_MAGIC_USE 0xB3
#define ASUS_WMI_KEYBOARD_MAGIC_SAVE 0xB4
#define ASUS_WMI_KEYBOARD_POWER_BOOT 0x03<<16
#define ASUS_WMI_KEYBOARD_POWER_AWAKE 0x0C<<16
#define ASUS_WMI_KEYBOARD_POWER_SLEEP 0x30<<16
#define ASUS_WMI_KEYBOARD_POWER_SHUTDOWN 0xC0<<16
#define ASUS_WMI_KEYBOARD_POWER_SAVE 0x01<<8
#define ASUS_WMI_FAN_SPEED_NORMAL 0
#define ASUS_WMI_FAN_SPEED_TURBO 1
#define ASUS_WMI_FAN_SPEED_SILENT 2
class AsusTUFLaptopController
{
private:
HANDLE hDevice;
static int checkWMIType();
AsusTUFLaptopController();
bool deviceIoControlWrapper(const void *dataIn, int commandIndex, int dataSizeIn, void *dataOut, int *dataSizeOut);
bool deviceControl(int a1, int a2);
bool deviceControl(int a1, int a2, int a3);
bool getStatus(int a1, int *out);
bool getStatusExtended(int a1, int a2, int *status1, int *status2, int* status3);
public:
static AsusTUFLaptopController * checkAndCreate();
~AsusTUFLaptopController();
void setMode(unsigned char red,
unsigned char green,
unsigned char blue,
unsigned char mode,
unsigned char speed,
bool save);
unsigned char getBrightness();
void setBrightness(unsigned char brightness);
void setPowerState(bool boot,
bool awake,
bool sleep,
bool shutdown,
bool save);
void setFanMode(int mode);
};
#endif
#endif // ASUSTUFLAPTOPCONTROLLER_H
@@ -0,0 +1,51 @@
#include "AsusTUFLaptopLinuxController.h"
#include <string>
void AsusTUFLaptopLinuxController::SendUpdate
(
unsigned char mode,
unsigned char speed,
unsigned char save,
unsigned char red,
unsigned char green,
unsigned char blue
)
{
std::string s = "";
s.append(ASUS_KBD_BACKLIGHT_BASE_PATH);
s.append(ASUS_KBD_BACKLIGHT_MODE_PATH);
FILE *controller = fopen(s.c_str(), "w");
s = "";
s.append(std::to_string(save));
s.append(" ");
s.append(std::to_string(mode));
s.append(" ");
s.append(std::to_string(red));
s.append(" ");
s.append(std::to_string(green));
s.append(" ");
s.append(std::to_string(blue));
s.append(" ");
s.append(std::to_string(speed));
fputs(s.c_str(), controller);
fclose(controller);
}
void AsusTUFLaptopLinuxController::SendBrightness
(
unsigned char brightness
)
{
std::string s = "";
s.append(ASUS_KBD_BACKLIGHT_BASE_PATH);
s.append(ASUS_KBD_BACKLIGHT_BRIGHTNESS_PATH);
FILE *controller = fopen(s.c_str(), "w");
fputs(std::to_string(brightness).c_str(), controller);
fclose(controller);
}
@@ -0,0 +1,37 @@
#ifndef ASUSTUFLAPTOPLINUXCONTROLLER_H
#define ASUSTUFLAPTOPLINUXCONTROLLER_H
#include "RGBController.h"
#define ASUS_KBD_BACKLIGHT_BRIGHTNESS_MIN 0
#define ASUS_KBD_BACKLIGHT_BRIGHTNESS_MAX 3
#define ASUS_KBD_BACKLIGHT_BRIGHTNESS 3
#define ASUS_KBD_BACKLIGHT_SPEED_MIN 0
#define ASUS_KBD_BACKLIGHT_SPEED_MAX 2
#define ASUS_KBD_BACKLIGHT_SPEED 1
#define ASUS_KBD_BACKLIGHT_BASE_PATH "/sys/devices/platform/asus-nb-wmi/leds/asus::kbd_backlight"
#define ASUS_KBD_BACKLIGHT_MODE_PATH "/kbd_rgb_mode"
#define ASUS_KBD_BACKLIGHT_BRIGHTNESS_PATH "/brightness"
class AsusTUFLaptopLinuxController
{
public:
void SendBrightness
(
unsigned char brightness
);
void SendUpdate
(
unsigned char mode,
unsigned char speed,
unsigned char save,
unsigned char red,
unsigned char green,
unsigned char blue
);
};
#endif // ASUSTUFLAPTOPLINUXCONTROLLER_H
@@ -0,0 +1,28 @@
#include "RGBController_AsusTUFLaptopLinux.h"
#include "AsusTUFLaptopLinuxController.h"
#include <string>
#include "Detector.h"
#include <unistd.h>
static void DetectAsusTUFLaptopLinuxControllers()
{
/*-------------------------------------------------------------------------------------*\
| If /sys/devices/platform/asus-nb-wmi/leds/asus::kbd_backlight/kbd_rgb_mode exists, |
| the kernel support TUF Laptop keyboard LED controlling. |
\*-------------------------------------------------------------------------------------*/
std::string s = "";
s.append(ASUS_KBD_BACKLIGHT_BASE_PATH);
s.append(ASUS_KBD_BACKLIGHT_MODE_PATH);
if(!access(s.c_str(), F_OK))
{
AsusTUFLaptopLinuxController* controller = new AsusTUFLaptopLinuxController();
RGBController_AsusTUFLaptopLinux* rgb_controller = new RGBController_AsusTUFLaptopLinux(controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
return;
}
REGISTER_DETECTOR("ASUS TUF Laptop", DetectAsusTUFLaptopLinuxControllers);
@@ -1,13 +1,13 @@
#ifdef _WIN32
#include "AsusTUFLaptopController.h"
#include "RGBController_AsusTUFLaptopWMI.h"
#include "acpiwmi.h"
#include "Detector.h"
#include "wmi.h"
#include <string>
static void DetectAsusTUFLaptopWMIControllers(std::vector<RGBController*>&)
static void DetectAsusTUFLaptopWMIControllers()
{
// Try to retrieve ProductID / Device name from WMI; Possibly can be rewritten to use wmi.cpp
// IF you encounter false detection ( e.g. if your laptop keyboard backlight uses USB interface
@@ -29,19 +29,21 @@ static void DetectAsusTUFLaptopWMIControllers(std::vector<RGBController*>&)
return;
}
std::string& name = systemProduct[0]["Name"];
if(name.find("TUF Gaming") == name.npos)
{
return;
}
if(AsWMI_Open())
AsusTUFLaptopController* controller = AsusTUFLaptopController::checkAndCreate();
if(controller)
{
RGBController* new_controller = new RGBController_AsusTUFLaptopWMI();
ResourceManager::get()->RegisterRGBController(new_controller);
// Success! No more if's
}
} /* DetectFaustusControllers() */
RGBController* new_controller = new RGBController_AsusTUFLaptopWMI(controller);
REGISTER_DETECTOR("TUF Laptop WMI", DetectAsusTUFLaptopWMIControllers);
ResourceManager::get()->RegisterRGBController(new_controller);
}
} /* DetectAsusTUFLaptopWMIControllers() */
REGISTER_DETECTOR("ASUS TUF Laptop", DetectAsusTUFLaptopWMIControllers);
#endif
@@ -0,0 +1,150 @@
#include "RGBController_AsusTUFLaptopLinux.h"
/**------------------------------------------------------------------*\
@name Asus TUF Laptop Linux WMI
@category Keyboard
@type File Stream
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAsusTUFLaptopLinuxControllers
@comment Tested on ASUS TUF Gaming A15 2022
PLEASE UPDATE YOUR KERNEL TO A VERSION NEWER THAN 6.1.0
Every devices supported by asus-wmi would work technically.
\*-------------------------------------------------------------------*/
RGBController_AsusTUFLaptopLinux::RGBController_AsusTUFLaptopLinux(AsusTUFLaptopLinuxController* controller_ptr)
{
controller = controller_ptr;
name = "ASUS TUF Keyboard";
vendor = "ASUS";
type = DEVICE_TYPE_KEYBOARD;
description = "Asus TUF Device";
location = ASUS_KBD_BACKLIGHT_BASE_PATH;
mode Direct;
Direct.name = "Direct";
Direct.value = 4;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Direct.brightness_min = ASUS_KBD_BACKLIGHT_BRIGHTNESS_MIN;
Direct.brightness_max = ASUS_KBD_BACKLIGHT_BRIGHTNESS_MAX;
Direct.brightness = ASUS_KBD_BACKLIGHT_BRIGHTNESS;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Static;
Static.name = "Static";
Static.value = 0;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Static.brightness_min = ASUS_KBD_BACKLIGHT_BRIGHTNESS_MIN;
Static.brightness_max = ASUS_KBD_BACKLIGHT_BRIGHTNESS_MAX;
Static.brightness = ASUS_KBD_BACKLIGHT_BRIGHTNESS;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = 1;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Breathing.speed_min = ASUS_KBD_BACKLIGHT_SPEED_MIN;
Breathing.speed_max = ASUS_KBD_BACKLIGHT_SPEED_MAX;
Breathing.brightness_min = ASUS_KBD_BACKLIGHT_BRIGHTNESS_MIN;
Breathing.brightness_max = ASUS_KBD_BACKLIGHT_BRIGHTNESS_MAX;
Breathing.brightness = ASUS_KBD_BACKLIGHT_BRIGHTNESS;
Breathing.color_mode = MODE_COLORS_PER_LED;
Breathing.speed = ASUS_KBD_BACKLIGHT_SPEED;
modes.push_back(Breathing);
mode Cycle;
Cycle.name = "Spectrum Cycle";
Cycle.value = 2;
Cycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_BRIGHTNESS;
Cycle.speed_min = ASUS_KBD_BACKLIGHT_SPEED_MIN;
Cycle.speed_max = ASUS_KBD_BACKLIGHT_SPEED_MAX;
Cycle.brightness_min = ASUS_KBD_BACKLIGHT_BRIGHTNESS_MIN;
Cycle.brightness_max = ASUS_KBD_BACKLIGHT_BRIGHTNESS_MAX;
Cycle.brightness = ASUS_KBD_BACKLIGHT_BRIGHTNESS;
Cycle.color_mode = MODE_COLORS_NONE;
Cycle.speed = ASUS_KBD_BACKLIGHT_SPEED;
modes.push_back(Cycle);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = 0x0A;
Flashing.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Flashing.brightness_min = ASUS_KBD_BACKLIGHT_BRIGHTNESS_MIN;
Flashing.brightness_max = ASUS_KBD_BACKLIGHT_BRIGHTNESS_MAX;
Flashing.brightness = ASUS_KBD_BACKLIGHT_BRIGHTNESS;
Flashing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Flashing);
SetupZones();
}
void RGBController_AsusTUFLaptopLinux::SetupZones()
{
/*---------------------------------------------------------*\
| Set up zone |
\*---------------------------------------------------------*/
zones.resize(1);
zones[0].type = ZONE_TYPE_SINGLE;
zones[0].name = "Keyboard Backlight zone";
zones[0].leds_min = 1;
zones[0].leds_max = 1;
zones[0].leds_count = 1;
zones[0].matrix_map = NULL;
/*---------------------------------------------------------*\
| Set up LED |
\*---------------------------------------------------------*/
leds.resize(1);
leds[0].name = "Keyboard Backlight LED";
SetupColors();
}
void RGBController_AsusTUFLaptopLinux::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_AsusTUFLaptopLinux::DeviceUpdateLEDs()
{
uint8_t red = RGBGetRValue(colors[0]);
uint8_t green = RGBGetGValue(colors[0]);
uint8_t blue = RGBGetBValue(colors[0]);
uint8_t speed = 0;
uint8_t mode = modes[active_mode].value;
uint8_t save = 1;
if(mode == 4)
{
mode = 0;
save = 0;
}
if(mode == 1 || mode == 2)
{
speed = modes[active_mode].speed;
}
controller->SendUpdate(mode, speed, save, red, green, blue);
controller->SendBrightness(modes[active_mode].brightness);
}
void RGBController_AsusTUFLaptopLinux::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_AsusTUFLaptopLinux::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_AsusTUFLaptopLinux::DeviceUpdateMode()
{
DeviceUpdateLEDs();
}
@@ -0,0 +1,27 @@
#ifndef RGBCONTROLLER_ASUSTUFLAPTOPLINUX_H
#define RGBCONTROLLER_ASUSTUFLAPTOPLINUX_H
#include "RGBController.h"
#include "AsusTUFLaptopLinuxController.h"
class RGBController_AsusTUFLaptopLinux : public RGBController
{
public:
RGBController_AsusTUFLaptopLinux(AsusTUFLaptopLinuxController* controller_ptr);
void SetupZones() override;
void ResizeZone(int zone, int new_size) override;
void DeviceUpdateLEDs() override;
void UpdateZoneLEDs(int zone) override;
void UpdateSingleLED(int led) override;
void DeviceUpdateMode() override;
private:
AsusTUFLaptopLinuxController* controller;
};
#endif // RGBCONTROLLER_ASUSTUFLAPTOPLINUX_H
@@ -2,12 +2,6 @@
#include "RGBController_AsusTUFLaptopWMI.h"
#include "acpiwmi.h"
#include "ResourceManager.h"
#include "Detector.h"
#include "wmi.h"
#include <string>
using namespace std::chrono_literals;
/**------------------------------------------------------------------*\
@@ -21,72 +15,91 @@ using namespace std::chrono_literals;
@comment
\*-------------------------------------------------------------------*/
RGBController_AsusTUFLaptopWMI::RGBController_AsusTUFLaptopWMI()
RGBController_AsusTUFLaptopWMI::RGBController_AsusTUFLaptopWMI(AsusTUFLaptopController* controller_ptr)
{
name = "ASUS TUF Keyboard";
vendor = "ASUS";
type = DEVICE_TYPE_KEYBOARD;
description = "WMI Device";
location = "\\\\.\\ATKACPI";
name = "ASUS TUF Keyboard";
vendor = "ASUS";
type = DEVICE_TYPE_KEYBOARD;
description = "WMI Device";
location = "\\\\.\\ATKACPI";
modes.resize(5);
modes[0].name = "Direct";
modes[0].value = 4;
modes[0].flags = MODE_FLAG_HAS_PER_LED_COLOR;
modes[0].color_mode = MODE_COLORS_PER_LED;
mode Static;
Static.name = "Static";
Static.value = ASUS_WMI_KEYBOARD_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
Static.color_mode = MODE_COLORS_PER_LED;
Static.brightness_max = ASUS_WMI_KEYBOARD_BRIGHTNESS_MAX;
Static.brightness_min = ASUS_WMI_KEYBOARD_BRIGHTNESS_MIN;
Static.brightness = ASUS_WMI_KEYBOARD_BRIGHTNESS_MAX;
modes.push_back(Static);
modes[1].name = "Static";
modes[1].value = 0;
modes[1].flags = MODE_FLAG_HAS_PER_LED_COLOR;
modes[1].color_mode = MODE_COLORS_PER_LED;
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = ASUS_WMI_KEYBOARD_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
Breathing.color_mode = MODE_COLORS_PER_LED;
Breathing.speed_min = ASUS_WMI_KEYBOARD_SPEED_MIN;
Breathing.speed_max = ASUS_WMI_KEYBOARD_SPEED_MAX;
Breathing.speed = 2;
Breathing.brightness_max = ASUS_WMI_KEYBOARD_BRIGHTNESS_MAX;
Breathing.brightness_min = ASUS_WMI_KEYBOARD_BRIGHTNESS_MIN;
Breathing.brightness = ASUS_WMI_KEYBOARD_BRIGHTNESS_MAX;
modes.push_back(Breathing);
modes[2].name = "Breathing";
modes[2].value = 1;
modes[2].flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
modes[2].speed_min = 0;
modes[2].speed_max = 2;
modes[2].color_mode = MODE_COLORS_PER_LED;
modes[2].speed = 1;
mode ColorCycle;
ColorCycle.name = "Color Cycle";
ColorCycle.value = ASUS_WMI_KEYBOARD_MODE_COLORCYCLE;
ColorCycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
ColorCycle.color_mode = MODE_COLORS_NONE;
ColorCycle.speed_min = ASUS_WMI_KEYBOARD_SPEED_MIN;
ColorCycle.speed_max = ASUS_WMI_KEYBOARD_SPEED_MAX;
ColorCycle.speed = 2;
ColorCycle.brightness_max = ASUS_WMI_KEYBOARD_BRIGHTNESS_MAX;
ColorCycle.brightness_min = ASUS_WMI_KEYBOARD_BRIGHTNESS_MIN;
ColorCycle.brightness = ASUS_WMI_KEYBOARD_BRIGHTNESS_MAX;
modes.push_back(ColorCycle);
modes[3].name = "Color Cycle";
modes[3].value = 2;
modes[3].flags = MODE_FLAG_HAS_SPEED;
modes[3].speed_min = 0;
modes[3].speed_max = 2;
modes[3].color_mode = MODE_COLORS_NONE;
modes[3].speed = 1;
modes[4].name = "Strobe";
modes[4].value = 0x0A;
modes[4].flags = MODE_FLAG_HAS_PER_LED_COLOR;
modes[4].color_mode = MODE_COLORS_PER_LED;
mode Strobing;
Strobing.name = "Strobing";
Strobing.value = ASUS_WMI_KEYBOARD_MODE_STROBING;
Strobing.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
Strobing.color_mode = MODE_COLORS_PER_LED;
Strobing.brightness_max = ASUS_WMI_KEYBOARD_BRIGHTNESS_MAX;
Strobing.brightness_min = ASUS_WMI_KEYBOARD_BRIGHTNESS_MIN;
Strobing.brightness = ASUS_WMI_KEYBOARD_BRIGHTNESS_MAX;
modes.push_back(Strobing);
SetupZones();
controller = controller_ptr;
ReadConfiguration();
}
RGBController_AsusTUFLaptopWMI::~RGBController_AsusTUFLaptopWMI()
{
AsWMI_Close();
delete controller;
}
void RGBController_AsusTUFLaptopWMI::SetupZones()
{
/*---------------------------------------------------------*\
| Set up zone |
| Device only has one zone and one led |
\*---------------------------------------------------------*/
zones.resize(1);
zones[0].type = ZONE_TYPE_SINGLE;
zones[0].name = "Keyboard Backlight zone";
zones[0].leds_min = 1;
zones[0].leds_max = 1;
zones[0].leds_count = 1;
zones[0].matrix_map = NULL;
zone* new_zone = new zone();
led* new_led = new led();
/*---------------------------------------------------------*\
| Set up LED |
\*---------------------------------------------------------*/
leds.resize(1);
leds[0].name = "Keyboard Backlight LED";
new_zone->type = ZONE_TYPE_SINGLE;
new_zone->name = "Keyboard Backlight zone";
new_zone->leds_min = 1;
new_zone->leds_max = 1;
new_zone->leds_count = 1;
new_zone->matrix_map = NULL;
new_led->name = "Keyboard Backlight LED";
zones.push_back(*new_zone);
leds.push_back(*new_led);
SetupColors();
}
@@ -98,52 +111,66 @@ void RGBController_AsusTUFLaptopWMI::ResizeZone(int /*zone*/, int /*new_size*/)
\*---------------------------------------------------------*/
}
/*---------------------------------------------------------*\
| Break this function off since we have to call save in the |
same operation as doing everything else. |
\*---------------------------------------------------------*/
void RGBController_AsusTUFLaptopWMI::ControllerSetMode(bool save)
{
unsigned char red = RGBGetRValue(colors[0]);
unsigned char green = RGBGetGValue(colors[0]);
unsigned char blue = RGBGetBValue(colors[0]);
unsigned char mode = (unsigned char)modes[(unsigned int)active_mode].value;
/*------------------------------------------------------------*\
| Use speed only if the mode supports it. Otherwise set normal |
\*------------------------------------------------------------*/
unsigned char speed = ASUS_WMI_KEYBOARD_SPEED_NORMAL;
if (modes[(unsigned int)active_mode].flags & MODE_FLAG_HAS_SPEED)
{
speed = (unsigned char)modes[(unsigned int)active_mode].speed;
}
controller->setMode(red, green, blue, mode, speed, save);
}
void RGBController_AsusTUFLaptopWMI::DeviceUpdateLEDs()
{
uint8_t red = RGBGetRValue(colors[0]);
uint8_t green = RGBGetGValue(colors[0]);
uint8_t blue = RGBGetBValue(colors[0]);
uint8_t speed_byte = 0;
uint8_t mode = modes[active_mode].value;
uint8_t inv = 0;
if(mode == 4)
{
mode = 1;
inv = 4; // Any invalid mode, i.e. anything other than 0, 1, 2 and 10
}
if(mode == 1 || mode == 2)
{
switch(modes[active_mode].speed)
{
case 0: speed_byte = 0xE1; break;
case 1: speed_byte = 0xEB; break;
case 2: speed_byte = 0xF5; break;
}
}
int high = ((mode | ((red | (green << 8)) << 8)) << 8) | 0xB3;
int low = blue | (speed_byte << 8);
AsWMI_NB_DeviceControl_2arg(0x100056, high, low);
if(inv)
{
//std::this_thread::sleep_for(10ms);
high = ((inv | ((red | (green << 8)) << 8)) << 8) | 0xB3;
AsWMI_NB_DeviceControl_2arg(0x100056, high, low);
}
ControllerSetMode(false);
}
void RGBController_AsusTUFLaptopWMI::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
ControllerSetMode(false);
}
void RGBController_AsusTUFLaptopWMI::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
ControllerSetMode(false);
}
void RGBController_AsusTUFLaptopWMI::DeviceUpdateMode()
{
DeviceUpdateLEDs();
if (modes[(unsigned int)active_mode].flags & MODE_FLAG_HAS_BRIGHTNESS)
{
controller->setBrightness((unsigned char)modes[(unsigned int)active_mode].brightness);
}
ControllerSetMode(false);
}
void RGBController_AsusTUFLaptopWMI::ReadConfiguration()
{
if (modes[(unsigned int)active_mode].flags & MODE_FLAG_HAS_BRIGHTNESS)
{
modes[(unsigned int)active_mode].brightness = controller->getBrightness();
}
}
void RGBController_AsusTUFLaptopWMI::DeviceSaveMode()
{
ControllerSetMode(true);
}
#endif
@@ -1,27 +1,35 @@
#ifdef _WIN32
#ifndef RGBCONTROLLER_ASUSTUFLAPTOPWMI_H
#define RGBCONTROLLER_ASUSTUFLAPTOPWMI_H
#ifdef _WIN32
#include "AsusTUFLaptopController.h"
#include "RGBController.h"
class RGBController_AsusTUFLaptopWMI : public RGBController
{
public:
RGBController_AsusTUFLaptopWMI();
RGBController_AsusTUFLaptopWMI(AsusTUFLaptopController* controller_ptr);
virtual ~RGBController_AsusTUFLaptopWMI();
void SetupZones() override;
void SetupZones();
void ResizeZone(int zone, int new_size) override;
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs() override;
void UpdateZoneLEDs(int zone) override;
void UpdateSingleLED(int led) override;
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode() override;
void DeviceUpdateMode();
void DeviceSaveMode();
private:
AsusTUFLaptopController* controller;
void ReadConfiguration();
void ControllerSetMode(bool save);
};
#endif
#endif // RGBCONTROLLER_ASUSTUFLAPTOPWMI_H
#endif // _WIN32
@@ -19,7 +19,7 @@
* *
\******************************************************************************************/
void DetectBlinkyTapeControllers(std::vector<RGBController*> &rgb_controllers)
void DetectBlinkyTapeControllers()
{
std::vector<std::string *> device_locations = find_usb_serial_port(BLINKINLABS_VID, BLINKYTAPE_PID);
@@ -29,7 +29,7 @@ void DetectBlinkyTapeControllers(std::vector<RGBController*> &rgb_controllers)
controller->Initialize(*device_locations[device_idx]);
RGBController_BlinkyTape* rgb_controller = new RGBController_BlinkyTape(controller);
rgb_controllers.push_back(rgb_controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
@@ -0,0 +1,262 @@
/*-----------------------------------------*\
| CherryKeyboardController.cpp |
| |
| Driver for Cherry RGB keyboard lighting |
| controller |
| |
| Sebastian Kraus 12/25/2021 |
\*-----------------------------------------*/
#include "CherryKeyboardController.h"
#include <cstring>
CherryKeyboardController::CherryKeyboardController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
}
CherryKeyboardController::~CherryKeyboardController()
{
hid_close(dev);
}
std::string CherryKeyboardController::GetDeviceLocation()
{
return("HID: " + location);
}
std::string CherryKeyboardController::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
void CherryKeyboardController::SetKeyboardColors
(
unsigned char * color_data,
unsigned int size
)
{
unsigned int packet_size = 0;
unsigned int packet_offset = 0;
while(size > 0)
{
if(size >= CHERRY_KB_MAX_PACKET_SIZE)
{
packet_size = CHERRY_KB_MAX_PACKET_SIZE;
}
else
{
packet_size = size;
}
SendKeyboardData
(
&color_data[packet_offset],
packet_size,
packet_offset
);
size -= packet_size;
packet_offset += packet_size;
}
}
void CherryKeyboardController::SendKeyboardMode
(
unsigned char mode
)
{
SendKeyboardParameter(CHERRY_KB_PARAMETER_MODE, 1, &mode);
}
void CherryKeyboardController::SendKeyboardModeEx
(
unsigned char mode,
unsigned char brightness,
unsigned char speed,
unsigned char direction,
unsigned char random_flag,
unsigned char red,
unsigned char green,
unsigned char blue
)
{
unsigned char parameter_data[8];
parameter_data[0] = mode;
parameter_data[1] = brightness;
parameter_data[2] = speed;
parameter_data[3] = direction;
parameter_data[4] = random_flag;
parameter_data[5] = red;
parameter_data[6] = green;
parameter_data[7] = blue;
SendKeyboardParameter(0, 8, parameter_data);
}
/*-------------------------------------------------------------------------------------------------*\
| Private packet sending functions. |
\*-------------------------------------------------------------------------------------------------*/
void CherryKeyboardController::ComputeChecksum
(
char usb_buf[CHERRY_KB_PACKET_SIZE]
)
{
unsigned short checksum = 0;
for(unsigned int byte_idx = 0x03; byte_idx < CHERRY_KB_PACKET_SIZE; byte_idx++)
{
checksum += usb_buf[byte_idx];
}
usb_buf[0x01] = checksum & 0xFF;
usb_buf[0x02] = checksum >> 8;
}
void CherryKeyboardController::SendKeyboardBegin()
{
unsigned char usb_buf[CHERRY_KB_PACKET_SIZE];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Keyboard Begin (0x01) packet |
| Note: Not computing checksum as packet contents are |
| fixed |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x04;
usb_buf[0x01] = CHERRY_KB_COMMAND_BEGIN;
usb_buf[0x02] = 0x00;
usb_buf[0x03] = CHERRY_KB_COMMAND_BEGIN;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, usb_buf, CHERRY_KB_PACKET_SIZE);
hid_read(dev, usb_buf, CHERRY_KB_PACKET_SIZE);
}
void CherryKeyboardController::SendKeyboardEnd()
{
char usb_buf[CHERRY_KB_PACKET_SIZE];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Keyboard End (0x02) packet |
| Note: Not computing checksum as packet contents are |
| fixed |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x04;
usb_buf[0x01] = CHERRY_KB_COMMAND_END;
usb_buf[0x02] = 0x00;
usb_buf[0x03] = CHERRY_KB_COMMAND_END;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, (unsigned char *)usb_buf, CHERRY_KB_PACKET_SIZE);
hid_read(dev, (unsigned char *)usb_buf, CHERRY_KB_PACKET_SIZE);
}
void CherryKeyboardController::SendKeyboardData
(
unsigned char * data,
unsigned char data_size,
unsigned short data_offset
)
{
char usb_buf[CHERRY_KB_PACKET_SIZE];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Keyboard Color Data (0x0B) packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x04;
usb_buf[0x03] = CHERRY_KB_COMMAND_WRITE_CUSTOM_COLOR_DATA;
usb_buf[0x04] = data_size;
usb_buf[0x05] = data_offset & 0x00FF;
usb_buf[0x06] = data_offset >> 8;
/*-----------------------------------------------------*\
| Copy in data bytes |
\*-----------------------------------------------------*/
memcpy(&usb_buf[0x08], data, data_size);
/*-----------------------------------------------------*\
| Compute Checksum |
\*-----------------------------------------------------*/
ComputeChecksum(usb_buf);
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, (unsigned char *)usb_buf, CHERRY_KB_PACKET_SIZE);
hid_read(dev, (unsigned char *)usb_buf, CHERRY_KB_PACKET_SIZE);
}
void CherryKeyboardController::SendKeyboardParameter
(
unsigned char parameter,
unsigned char parameter_size,
unsigned char* parameter_data
)
{
char usb_buf[CHERRY_KB_PACKET_SIZE];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Keyboard Parameter (0x06) packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x04;
usb_buf[0x03] = CHERRY_KB_COMMAND_SET_PARAMETER;
usb_buf[0x04] = parameter_size;
usb_buf[0x05] = parameter;
/*-----------------------------------------------------*\
| Copy in data bytes |
\*-----------------------------------------------------*/
memcpy(&usb_buf[0x09], parameter_data, parameter_size);
/*-----------------------------------------------------*\
| Compute Checksum |
\*-----------------------------------------------------*/
ComputeChecksum(usb_buf);
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, (unsigned char *)usb_buf, CHERRY_KB_PACKET_SIZE);
hid_read(dev, (unsigned char *)usb_buf, CHERRY_KB_PACKET_SIZE);
}
@@ -0,0 +1,150 @@
/*-----------------------------------------*\
| CherryKeyboardController.h |
| |
| Definitions and types for Cherry RGB |
| keyboard lighting controller |
| |
| Sebastian Kraus 12/25/2021 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <string>
#include <hidapi/hidapi.h>
#pragma once
#define CHERRY_KB_PACKET_SIZE 64
#define CHERRY_KB_MAX_PACKET_SIZE ( 0x36 )/* max packet size for color*/
/* update packets */
enum
{
CHERRY_KB_COMMAND_BEGIN = 0x01, /* Begin packet command */
CHERRY_KB_COMMAND_END = 0x02, /* End packet command */
CHERRY_KB_COMMAND_SET_PARAMETER = 0x06, /* Set parameter command */
CHERRY_KB_COMMAND_READ_CUSTOM_COLOR_DATA = 0x1B, /* Read custom color data */
CHERRY_KB_COMMAND_WRITE_CUSTOM_COLOR_DATA = 0x0B, /* Write custom color data */
};
enum
{
CHERRY_KB_PARAMETER_MODE = 0x00, /* Mode parameter */
CHERRY_KB_PARAMETER_BRIGHTNESS = 0x01, /* Brightness parameter */
CHERRY_KB_PARAMETER_SPEED = 0x02, /* Speed parameter */
CHERRY_KB_PARAMETER_DIRECTION = 0x03, /* Direction parameter */
CHERRY_KB_PARAMETER_RANDOM_COLOR_FLAG = 0x04, /* Random color parameter */
CHERRY_KB_PARAMETER_MODE_COLOR = 0x05, /* Mode color (RGB) */
CHERRY_KB_PARAMETER_POLLING_RATE = 0x0F, /* Polling rate */
CHERRY_KB_PARAMETER_SURMOUNT_MODE_COLOR = 0x11, /* Surmount mode color */
};
enum
{
CHERRY_KB_MODE_WAVE = 0x00,
CHERRY_KB_MODE_SPECTRUM = 0x01,
CHERRY_KB_MODE_BREATHING = 0x02,
CHERRY_KB_MODE_STATIC = 0x03,
CHERRY_KB_MODE_RADAR = 0x04,
CHERRY_KB_MODE_VORTEX = 0x05,
CHERRY_KB_MODE_FIRE = 0x06,
CHERRY_KB_MODE_STARS = 0x07,
CHERRY_KB_MODE_CUSTOM = 0x08,
CHERRY_KB_MODE_ROLLING = 0x0A,
CHERRY_KB_MODE_RAIN = 0x0B,
CHERRY_KB_MODE_CURVE = 0x0C,
CHERRY_KB_MODE_WAVE_MID = 0x0E,
CHERRY_KB_MODE_SCAN = 0x0F,
CHERRY_KB_MODE_RADIATION = 0x12,
CHERRY_KB_MODE_RIPPLES = 0x13,
CHERRY_KB_MODE_SINGLE_KEY = 0x15,
};
enum
{
CHERRY_KB_BRIGHTNESS_LOWEST = 0x00, /* Lowest brightness (off) */
CHERRY_KB_BRIGHTNESS_HIGHEST = 0x04, /* Highest brightness */
};
enum
{
CHERRY_KB_SPEED_SLOWEST = 0x04, /* Slowest speed setting */
CHERRY_KB_SPEED_NORMAL = 0x02, /* Normal speed setting */
CHERRY_KB_SPEED_FASTEST = 0x00, /* Fastest speed setting */
};
enum
{
CHERRY_KB_SURMOUNT_MODE_COLOR_RED = 0x01, /* Red surmount color */
CHERRY_KB_SURMOUNT_MODE_COLOR_YELLOW = 0x02, /* Yellow surmount color */
CHERRY_KB_SURMOUNT_MODE_COLOR_GREEN = 0x03, /* Green surmount color */
CHERRY_KB_SURMOUNT_MODE_COLOR_BLUE = 0x04, /* Blue surmount color */
};
enum
{
CHERRY_KB_POLLING_RATE_125HZ = 0x00, /* 125Hz polling rate */
CHERRY_KB_POLLING_RATE_250HZ = 0x01, /* 250Hz polling rate */
CHERRY_KB_POLLING_RATE_500HZ = 0x02, /* 500Hz polling rate */
CHERRY_KB_POLLING_RATE_1000HZ = 0x03, /* 1000Hz polling rate */
};
class CherryKeyboardController
{
public:
CherryKeyboardController(hid_device* dev_handle, const char* path);
~CherryKeyboardController();
std::string GetDeviceLocation();
std::string GetSerialString();
void SetKeyboardColors
(
unsigned char * color_data,
unsigned int size
);
void SendKeyboardBegin();
void SendKeyboardMode
(
unsigned char mode
);
void SendKeyboardModeEx
(
unsigned char mode,
unsigned char brightness,
unsigned char speed,
unsigned char direction,
unsigned char random_flag,
unsigned char red,
unsigned char green,
unsigned char blue
);
void SendKeyboardData
(
unsigned char * data,
unsigned char data_size,
unsigned short data_offset
);
void SendKeyboardEnd();
private:
hid_device* dev;
std::string location;
void ComputeChecksum
(
char usb_buf[CHERRY_KB_PACKET_SIZE]
);
void SendKeyboardParameter
(
unsigned char parameter,
unsigned char parameter_size,
unsigned char* parameter_data
);
};
@@ -0,0 +1,80 @@
#include "Detector.h"
#include "CherryKeyboardController.h"
#include "RGBController.h"
#include "RGBController_CherryKeyboard.h"
#include <vector>
#include <hidapi/hidapi.h>
/*-----------------------------------------------------*\
| Keyboard product IDs |
\*-----------------------------------------------------*/
#define CHERRY_KEYBOARD_VID 0x046A
#define CHERRY_KEYBOARD_USAGE_PAGE 0xFF1C
#define MX_BOARD_3_0S_FL_NBL_PID 0x0077
#define MX_BOARD_3_0S_FL_RGB_PID 0x0079
#define MX_BOARD_3_0S_FL_RGB_KOR_PID 0x0083
#define MX_1_0_FL_BL_PID 0x00AB
#define MX_BOARD_1_0_TKL_RGB_PID 0x00AC
#define MX_BOARD_8_0_TKL_RGB_PID 0x00B7
#define MX_BOARD_10_0_FL_RGB_PID 0x00BB
#define G80_3000_TKL_NBL_PID 0x00C3
#define MX_BOARD_2_0S_FL_RGB_PID 0x00C4
#define G80_3000_TKL_RGB_PID 0x00C5
#define MV_BOARD_3_0FL_RGB_PID 0x00C7
#define CCF_MX_8_0_TKL_BL_PID 0x00C9
#define CCF_MX_1_0_TKL_BL_PID 0x00CA
#define CCF_MX_1_0_TKL_NBL_PID 0x00CB
#define G30_3000_TKL_NBL_KOR_PID 0x00CD
#define MX_BOARD_2_0S_FL_NBL_PID 0x00CE
#define MX_1_0_FL_NBL_PID 0x00D2
#define MX_1_0_FL_RGB_PID 0x00D3
#define G80_3000N_TKL_RGB_PID 0x00DD
#define G30_3000N_FL_RGB_PID 0x00DE
#define MX_BOARD_10_0N_FL_RGB_PID 0x00DF
#define MX_BOARD_2_0S_FL_RGB_DE_PID 0x01A6
/******************************************************************************************\
* *
* DetectCherryKeyboards *
* *
* Tests the USB address to see if an Cherry RGB Keyboard controller exists there. *
* *
\******************************************************************************************/
void DetectCherryKeyboards(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if( dev )
{
CherryKeyboardController* controller = new CherryKeyboardController(dev, info->path);
RGBController_CherryKeyboard* rgb_controller = new RGBController_CherryKeyboard(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
/*---------------------------------------------------------------------------------------------------------------------------------------------*\
| Keyboards |
\*---------------------------------------------------------------------------------------------------------------------------------------------*/
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX BOARD 3.0S FL NBL", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_BOARD_3_0S_FL_NBL_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX BOARD 3.0S FL RGB", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_BOARD_3_0S_FL_RGB_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX BOARD 3.0S FL RGB KOREAN", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_BOARD_3_0S_FL_RGB_KOR_PID, 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX 1.0 FL BL", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_1_0_FL_BL_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX BOARD 1.0 TKL RGB", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_BOARD_1_0_TKL_RGB_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX BOARD 8.0 TKL RGB", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_BOARD_8_0_TKL_RGB_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX BOARD 10.0 FL RGB", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_BOARD_10_0_FL_RGB_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard G80-3000 TKL NBL", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, G80_3000_TKL_NBL_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX BOARD 2.0S FL RGB", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_BOARD_2_0S_FL_RGB_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard G80-3000 TKL RGB", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, G80_3000_TKL_RGB_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MV BOARD 3.0 FL RGB", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MV_BOARD_3_0FL_RGB_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard CCF MX 8.0 TKL BL", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, CCF_MX_8_0_TKL_BL_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard CCF MX 1.0 TKL BL", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, CCF_MX_1_0_TKL_BL_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard CCF MX 1.0 TKL NBL", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, CCF_MX_1_0_TKL_NBL_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard G80-3000 TKL NBL KOREAN", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, G30_3000_TKL_NBL_KOR_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX BOARD 2.0S FL NBL", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_BOARD_2_0S_FL_NBL_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX 1.0 FL NBL", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_1_0_FL_NBL_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX 1.0 FL RGB", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_1_0_FL_RGB_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard G80-3000N TKL RGB", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, G80_3000N_TKL_RGB_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard G80-3000N FL RGB", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, G30_3000N_FL_RGB_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX BOARD 10.0N FL RGB", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_BOARD_10_0N_FL_RGB_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
REGISTER_HID_DETECTOR_IP("Cherry Keyboard MX BOARD 2.0S FL RGB DE", DetectCherryKeyboards, CHERRY_KEYBOARD_VID, MX_BOARD_2_0S_FL_RGB_DE_PID , 1, CHERRY_KEYBOARD_USAGE_PAGE);
@@ -0,0 +1,358 @@
/*-----------------------------------------*\
| RGBController_CherryKeyboard.cpp |
| |
| Generic RGB Interface for Cherry RGB |
| Keyboard |
| |
| Sebastian Kraus 12/25/2021 |
\*-----------------------------------------*/
#include "RGBController_CherryKeyboard.h"
//0xFFFFFFFF indicates an unused entry in matrix
#define NA 0xFFFFFFFF
static unsigned int matrix_map[6][23] =
{ { 0, NA, 12, 18, 24, 30, 36, 42, 48, 54, 60, 66, 72, 78, 84, 90, 96, NA, NA, NA, NA, NA, NA },
{ 1, 7, 13, 19, 25, 31, 37, 43, 49, 55, 61, 67, 73, 79, 85, 91, 97, NA, NA, NA, NA, NA, NA },
{ 2, 8, 14, 20, 26, 32, 38, 44, 50, 56, 62, 68, 74, NA, 86, 92, 98, NA, NA, NA, NA, NA, NA },
{ 3, 9, 15, 21, 27, 33, 39, 45, 51, 57, 63, 69, 75, 81, NA, NA, NA, NA, NA, NA, NA, NA, NA },
{ 4, 10, 16, 22, 28, 34, 40, 46, 52, 58, 64, 70, NA, 82, NA, 94, NA, NA, NA, NA, NA, NA, NA },
{ 5, 11, 17, NA, NA, NA, 41, NA, NA, NA, 65, 71, 77, 83, 89, 95, 101, NA, NA, NA, NA, NA, NA } };
/**------------------------------------------------------------------*\
@name Cherry Keyboard
@category Keyboard
@type USB
@save :robot:
@direct :rotating_light:
@effects :white_check_mark:
@detectors DetectCherryKeyboards
@comment
\*-------------------------------------------------------------------*/
RGBController_CherryKeyboard::RGBController_CherryKeyboard(CherryKeyboardController* controller_ptr)
{
controller = controller_ptr;
name = "Cherry Keyboard Device";
vendor = "Cherry";
type = DEVICE_TYPE_KEYBOARD;
description = "Cherry Keyboard Device";
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Custom;
Custom.name = "Custom";
Custom.value = CHERRY_KB_MODE_CUSTOM;
Custom.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Custom.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Custom);
mode Wave;
Wave.name = "Wave";
Wave.value = CHERRY_KB_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Wave.speed_min = CHERRY_KB_SPEED_SLOWEST;
Wave.speed_max = CHERRY_KB_SPEED_FASTEST;
Wave.speed = CHERRY_KB_SPEED_NORMAL;
Wave.colors_min = 1;
Wave.colors_max = 1;
Wave.color_mode = MODE_COLORS_MODE_SPECIFIC;
Wave.colors.resize(1);
modes.push_back(Wave);
mode Spectrum;
Spectrum.name = "Spectrum";
Spectrum.value = CHERRY_KB_MODE_SPECTRUM;
Spectrum.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
Spectrum.speed_min = CHERRY_KB_SPEED_SLOWEST;
Spectrum.speed_max = CHERRY_KB_SPEED_FASTEST;
Spectrum.speed = CHERRY_KB_SPEED_NORMAL;
Spectrum.color_mode = MODE_COLORS_NONE;
Spectrum.colors.resize(1);
modes.push_back(Spectrum);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = CHERRY_KB_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Breathing.speed_min = CHERRY_KB_SPEED_SLOWEST;
Breathing.speed_max = CHERRY_KB_SPEED_FASTEST;
Breathing.speed = CHERRY_KB_SPEED_NORMAL;
Breathing.colors_min = 1;
Breathing.colors_max = 1;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(1);
modes.push_back(Breathing);
mode Static;
Static.name = "Static";
Static.value = CHERRY_KB_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Static.colors_min = 1;
Static.colors_max = 1;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
mode Radar;
Radar.name = "Radar";
Radar.value = CHERRY_KB_MODE_RADAR;
Radar.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Radar.speed_min = CHERRY_KB_SPEED_SLOWEST;
Radar.speed_max = CHERRY_KB_SPEED_FASTEST;
Radar.speed = CHERRY_KB_SPEED_NORMAL;
Radar.colors_min = 1;
Radar.colors_max = 1;
Radar.color_mode = MODE_COLORS_MODE_SPECIFIC;
Radar.colors.resize(1);
modes.push_back(Radar);
mode Vortex;
Vortex.name = "Vortex";
Vortex.value = CHERRY_KB_MODE_VORTEX;
Vortex.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Vortex.speed_min = CHERRY_KB_SPEED_SLOWEST;
Vortex.speed_max = CHERRY_KB_SPEED_FASTEST;
Vortex.speed = CHERRY_KB_SPEED_NORMAL;
Vortex.colors_min = 1;
Vortex.colors_max = 1;
Vortex.color_mode = MODE_COLORS_MODE_SPECIFIC;
Vortex.colors.resize(1);
modes.push_back(Vortex);
mode Fire;
Fire.name = "Fire";
Fire.value = CHERRY_KB_MODE_FIRE;
Fire.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Fire.speed_min = CHERRY_KB_SPEED_SLOWEST;
Fire.speed_max = CHERRY_KB_SPEED_FASTEST;
Fire.speed = CHERRY_KB_SPEED_NORMAL;
Fire.colors_min = 1;
Fire.colors_max = 1;
Fire.color_mode = MODE_COLORS_MODE_SPECIFIC;
Fire.colors.resize(1);
modes.push_back(Fire);
mode Stars;
Stars.name = "Stars";
Stars.value = CHERRY_KB_MODE_STARS;
Stars.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Stars.speed_min = CHERRY_KB_SPEED_SLOWEST;
Stars.speed_max = CHERRY_KB_SPEED_FASTEST;
Stars.speed = CHERRY_KB_SPEED_NORMAL;
Stars.color_mode = MODE_COLORS_MODE_SPECIFIC;
Stars.colors.resize(1);
modes.push_back(Stars);
mode Rain;
Rain.name = "Rain";
Rain.value = CHERRY_KB_MODE_RAIN;
Rain.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Rain.speed_min = CHERRY_KB_SPEED_SLOWEST;
Rain.speed_max = CHERRY_KB_SPEED_FASTEST;
Rain.speed = CHERRY_KB_SPEED_NORMAL;
Rain.colors_min = 1;
Rain.colors_max = 1;
Rain.color_mode = MODE_COLORS_MODE_SPECIFIC;
Rain.colors.resize(1);
modes.push_back(Rain);
mode Rolling;
Rolling.name = "Rolling";
Rolling.value = CHERRY_KB_MODE_ROLLING;
Rolling.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
Rolling.speed_min = CHERRY_KB_SPEED_SLOWEST;
Rolling.speed_max = CHERRY_KB_SPEED_FASTEST;
Rolling.speed = CHERRY_KB_SPEED_NORMAL;
Rolling.color_mode = MODE_COLORS_NONE;
modes.push_back(Rolling);
mode Curve;
Curve.name = "Curve";
Curve.value = CHERRY_KB_MODE_CURVE;
Curve.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Curve.speed_min = CHERRY_KB_SPEED_SLOWEST;
Curve.speed_max = CHERRY_KB_SPEED_FASTEST;
Curve.speed = CHERRY_KB_SPEED_NORMAL;
Curve.colors_min = 1;
Curve.colors_max = 1;
Curve.color_mode = MODE_COLORS_MODE_SPECIFIC;
Curve.colors.resize(1);
modes.push_back(Curve);
mode WaveMid;
WaveMid.name = "Wave Mid";
WaveMid.value = CHERRY_KB_MODE_WAVE_MID;
WaveMid.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
WaveMid.speed_min = CHERRY_KB_SPEED_SLOWEST;
WaveMid.speed_max = CHERRY_KB_SPEED_FASTEST;
WaveMid.speed = CHERRY_KB_SPEED_NORMAL;
WaveMid.color_mode = MODE_COLORS_NONE;
WaveMid.colors.resize(1);
modes.push_back(WaveMid);
mode Scan;
Scan.name = "Scan";
Scan.value = CHERRY_KB_MODE_SCAN;
Scan.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Scan.colors_min = 1;
Scan.colors_max = 1;
Scan.color_mode = MODE_COLORS_MODE_SPECIFIC;
Scan.colors.resize(1);
modes.push_back(Scan);
mode Radiation;
Radiation.name = "Radiation";
Radiation.value = CHERRY_KB_MODE_RADIATION;
Radiation.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Radiation.speed_min = CHERRY_KB_SPEED_SLOWEST;
Radiation.speed_max = CHERRY_KB_SPEED_FASTEST;
Radiation.speed = CHERRY_KB_SPEED_NORMAL;
Radiation.colors_min = 1;
Radiation.colors_max = 1;
Radiation.color_mode = MODE_COLORS_MODE_SPECIFIC;
Radiation.colors.resize(1);
modes.push_back(Radiation);
mode Ripples;
Ripples.name = "Ripples";
Ripples.value = CHERRY_KB_MODE_RIPPLES;
Ripples.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Ripples.speed_min = CHERRY_KB_SPEED_SLOWEST;
Ripples.speed_max = CHERRY_KB_SPEED_FASTEST;
Ripples.speed = CHERRY_KB_SPEED_NORMAL;
Ripples.colors_min = 1;
Ripples.colors_max = 1;
Ripples.color_mode = MODE_COLORS_MODE_SPECIFIC;
Ripples.colors.resize(1);
modes.push_back(Ripples);
mode SingleKey;
SingleKey.name = "Single Key";
SingleKey.value = CHERRY_KB_MODE_SINGLE_KEY;
SingleKey.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
SingleKey.speed_min = CHERRY_KB_SPEED_SLOWEST;
SingleKey.speed_max = CHERRY_KB_SPEED_FASTEST;
SingleKey.speed = CHERRY_KB_SPEED_NORMAL;
SingleKey.colors_min = 1;
SingleKey.colors_max = 1;
SingleKey.color_mode = MODE_COLORS_MODE_SPECIFIC;
SingleKey.colors.resize(1);
modes.push_back(SingleKey);
SetupZones();
}
RGBController_CherryKeyboard::~RGBController_CherryKeyboard()
{
/*---------------------------------------------------------*\
| Delete the matrix map |
\*---------------------------------------------------------*/
for(unsigned int zone_index = 0; zone_index < zones.size(); zone_index++)
{
if(zones[zone_index].matrix_map != NULL)
{
delete zones[zone_index].matrix_map;
}
}
delete controller;
}
void RGBController_CherryKeyboard::SetupZones()
{
zone new_zone;
new_zone.name = "Keyboard";
new_zone.type = ZONE_TYPE_MATRIX;
new_zone.leds_min = 126;
new_zone.leds_max = 126;
new_zone.leds_count = 126;
new_zone.matrix_map = new matrix_map_type;
new_zone.matrix_map->height = 6;
new_zone.matrix_map->width = 23;
new_zone.matrix_map->map = (unsigned int *)&matrix_map;
zones.push_back(new_zone);
for(int led_idx = 0; led_idx < 126; led_idx++)
{
led new_led;
new_led.name = "Keyboard LED ";
new_led.name.append(std::to_string(led_idx));
leds.push_back(new_led);
}
SetupColors();
}
void RGBController_CherryKeyboard::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_CherryKeyboard::DeviceUpdateLEDs()
{
unsigned char color_data[7*CHERRY_KB_MAX_PACKET_SIZE];
for(int led_idx = 0; led_idx < 126; led_idx++)
{
color_data[(3 * led_idx) + 0] = RGBGetRValue(colors[led_idx]);
color_data[(3 * led_idx) + 1] = RGBGetGValue(colors[led_idx]);
color_data[(3 * led_idx) + 2] = RGBGetBValue(colors[led_idx]);
}
controller->SetKeyboardColors
(
color_data,
CHERRY_KB_MAX_PACKET_SIZE * 7
);
}
void RGBController_CherryKeyboard::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_CherryKeyboard::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_CherryKeyboard::SetCustomMode()
{
}
void RGBController_CherryKeyboard::DeviceUpdateMode()
{
unsigned char red = 0x00;
unsigned char grn = 0x00;
unsigned char blu = 0x00;
unsigned char random = (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
if(modes[active_mode].colors.size() > 0)
{
red = RGBGetRValue(modes[active_mode].colors[0]);
grn = RGBGetGValue(modes[active_mode].colors[0]);
blu = RGBGetBValue(modes[active_mode].colors[0]);
}
controller->SendKeyboardModeEx
(
modes[active_mode].value,
CHERRY_KB_BRIGHTNESS_HIGHEST,
modes[active_mode].speed,
0,
random,
red,
grn,
blu
);
}
@@ -0,0 +1,33 @@
/*-----------------------------------------*\
| RGBController_CherryKeyboard.h |
| |
| Generic RGB Interface for Cherry RGB |
| Keyboard |
| |
| Sebastian Kraus 12/25/2021 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "CherryKeyboardController.h"
class RGBController_CherryKeyboard : public RGBController
{
public:
RGBController_CherryKeyboard(CherryKeyboardController* controller_ptr);
~RGBController_CherryKeyboard();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
CherryKeyboardController* controller;
};
@@ -37,7 +37,16 @@ void DetectColorfulGPUControllers(i2c_smbus_interface* bus, uint8_t i2c_addr, co
}
}
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3060 Ultra W OC 12G L-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3060_LHR_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3060_ULTRAW_OC_12G, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3070 Advanced OC-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3070_ADVANCED_OCV, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3070 Advanced OC-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3070_ADVANCED_OCV2, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3070 Ti Advanced OC-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070TI_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3070_TI_ADVANCED_OCV2, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3060 Advanced OC 12G L-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3060_LHR_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3060_ADVANCED_OC_12G_LV, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3060 Ultra W OC 12G L-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3060_LHR_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3060_ULTRAW_OC_12G, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3060 Ultra W OC 12G L-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3060_LHR_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3060_ULTRAW_OC_12G_2, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3060 Ti Ultra W OC LHR-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3060TI_LHR_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3060_ULTRAW_OC_12G_2, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3060 Ti Advanced OC-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3060TI_LHR_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3070_ADVANCED_OCV, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3070 Advanced OC-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3070_ADVANCED_OCV, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3070 Advanced OC-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3070_ADVANCED_OCV2, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3070 Ultra W OC LHR", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070_LHR_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3070_ULTRAW_OC, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3070 Ti Ultra W OC LHR", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070TI_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3070_TI_ULTRAW_OC, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3070 Ti Advanced OC-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070TI_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3070_TI_ADVANCED_OCV2, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 3080 Ti Advanced OC-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX3080TI_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3080_TI_ADVANCED_OCV2, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 4070 Ti Advanced OC-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX4070TI_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_4070_TI_ADVANCED_OCV, 0x61);
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 4080 Ultra W OC-V", DetectColorfulGPUControllers, NVIDIA_VEN, NVIDIA_RTX4080_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_4080_ULTRAW_OCV2, 0x61);
@@ -0,0 +1,144 @@
#include "ColorfulTuringGPUController.h"
#include <cstring>
ColorfulTuringGPUController::ColorfulTuringGPUController(i2c_smbus_interface* bus, colorful_gpu_dev_id dev)
{
this->bus = bus;
this->dev = dev;
}
ColorfulTuringGPUController::~ColorfulTuringGPUController()
{
}
std::string ColorfulTuringGPUController::GetDeviceLocation()
{
std::string return_string(bus->device_name);
char addr[5];
snprintf(addr, 5, "0x%02X", dev);
return_string.append(", address ");
return_string.append(addr);
return("I2C: " + return_string);
}
int ColorfulTuringGPUController::GetMode()
{
uint8_t data_pkt[COLORFUL_MODE_PACKET_LENGTH];
int size = COLORFUL_MODE_PACKET_LENGTH;
bus->i2c_read_block(dev, &size, data_pkt);
int mode = data_pkt[2]<<16 | data_pkt[3]<<8 | data_pkt[4];
return mode;
}
RGBColor ColorfulTuringGPUController::GetColor()
{
uint8_t data_pkt[COLORFUL_MODE_PACKET_LENGTH];
int size = COLORFUL_MODE_PACKET_LENGTH;
bus->i2c_read_block(dev, &size, data_pkt);
RGBColor color = ToRGBColor(data_pkt[5], data_pkt[6], data_pkt[7]);
return color;
}
void ColorfulTuringGPUController::SetStateDisplay(RGBColor color)
{
uint8_t r = RGBGetRValue(color);
uint8_t g = RGBGetGValue(color);
uint8_t b = RGBGetBValue(color);
uint8_t data_pkt[COLORFUL_COLOR_PACKET_LENGTH] = { 0x08, 0x01, 0x32, 0x04, r, g, b};
int crc = 1;
for(int i = 0; i < COLORFUL_COLOR_PACKET_LENGTH - 1; ++i)
{
crc += data_pkt[i];
}
crc &= 0xFF;
crc = 256-crc;
data_pkt[COLORFUL_COLOR_PACKET_LENGTH - 1] = crc & 0xFF;
bus->i2c_write_block(dev, COLORFUL_COLOR_PACKET_LENGTH, data_pkt);
}
void ColorfulTuringGPUController::SetDirect(RGBColor color)
{
uint8_t r = RGBGetRValue(color);
uint8_t g = RGBGetGValue(color);
uint8_t b = RGBGetBValue(color);
uint8_t data_pkt[COLORFUL_COLOR_PACKET_LENGTH] = { 0x88, 0x02, 0x32, 0x02, r, g, b};
int crc = 1;
for(int i = 0; i < COLORFUL_COLOR_PACKET_LENGTH - 1; ++i)
{
crc += data_pkt[i];
}
crc &= 0xFF;
crc = 256-crc;
data_pkt[COLORFUL_COLOR_PACKET_LENGTH - 1] = crc & 0xFF;
bus->i2c_write_block(dev, COLORFUL_COLOR_PACKET_LENGTH, data_pkt);
}
void ColorfulTuringGPUController::SetBreathing(RGBColor color)
{
uint8_t r = RGBGetRValue(color);
uint8_t g = RGBGetGValue(color);
uint8_t b = RGBGetBValue(color);
uint8_t data_pkt[COLORFUL_COLOR_PACKET_LENGTH] = { 0x88, 0x01, 0x32, 0x02, r, g, b};
int crc = 1;
for(int i = 0; i < COLORFUL_COLOR_PACKET_LENGTH - 1; ++i)
{
crc += data_pkt[i];
}
crc &= 0xFF;
crc = 256-crc;
data_pkt[COLORFUL_COLOR_PACKET_LENGTH - 1] = crc & 0xFF;
bus->i2c_write_block(dev, COLORFUL_COLOR_PACKET_LENGTH, data_pkt);
}
void ColorfulTuringGPUController::SetOff()
{
uint8_t data_pkt[COLORFUL_NON_COLOR_PACKET_LENGTH] = { 0x85, 0x00, 0x00, 0x0A };
int crc = 1;
for(int i = 0; i < COLORFUL_NON_COLOR_PACKET_LENGTH - 1; ++i)
{
crc += data_pkt[i];
}
crc &= 0xFF;
crc = 256-crc;
data_pkt[COLORFUL_NON_COLOR_PACKET_LENGTH - 1] = crc & 0xFF;
bus->i2c_write_block(dev, COLORFUL_NON_COLOR_PACKET_LENGTH, data_pkt);
}
void ColorfulTuringGPUController::SetRainbow()
{
uint8_t data_pkt[COLORFUL_NON_COLOR_PACKET_LENGTH] = { 0x85, 0x04, 0x32, 0x02 };
int crc = 1;
for(int i = 0; i < COLORFUL_NON_COLOR_PACKET_LENGTH - 1; ++i)
{
crc += data_pkt[i];
}
crc &= 0xFF;
crc = 256-crc;
data_pkt[COLORFUL_NON_COLOR_PACKET_LENGTH - 1] = crc & 0xFF;
bus->i2c_write_block(dev, COLORFUL_NON_COLOR_PACKET_LENGTH, data_pkt);
}
@@ -0,0 +1,41 @@
#include <string>
#include "i2c_smbus.h"
#include "RGBController.h"
#pragma once
typedef unsigned char colorful_gpu_dev_id;
#define COLORFUL_COLOR_PACKET_LENGTH 8
#define COLORFUL_NON_COLOR_PACKET_LENGTH 5
#define COLORFUL_MODE_PACKET_LENGTH 0x1B
enum
{
COLORFUL_TURING_GPU_RGB_MODE_STATE_DISPLAY = 0x013204,
COLORFUL_TURING_GPU_RGB_MODE_OFF = 0x00000A,
COLORFUL_TURING_GPU_RGB_MODE_STATIC = 0x023202,
COLORFUL_TURING_GPU_RGB_MODE_RAINBOW = 0x043202,
COLORFUL_TURING_GPU_RGB_MODE_BREATHING = 0x013202,
};
class ColorfulTuringGPUController
{
public:
ColorfulTuringGPUController(i2c_smbus_interface* bus, colorful_gpu_dev_id dev);
~ColorfulTuringGPUController();
std::string GetDeviceLocation();
int GetMode();
RGBColor GetColor();
void SetDirect(RGBColor color);
void SetStateDisplay(RGBColor color);
void SetBreathing(RGBColor color);
void SetOff();
void SetRainbow();
private:
i2c_smbus_interface * bus;
colorful_gpu_dev_id dev;
};
@@ -0,0 +1,23 @@
#include "Detector.h"
#include "ColorfulTuringGPUController.h"
#include "RGBController.h"
#include "RGBController_ColorfulTuringGPU.h"
#include "i2c_smbus.h"
#include "pci_ids.h"
#include <vector>
#include <stdio.h>
#include <stdlib.h>
void DetectColorfulTuringGPUControllers(i2c_smbus_interface* bus, uint8_t i2c_addr, const std::string& name)
{
if(bus->port_id == 1)
{
ColorfulTuringGPUController* controller = new ColorfulTuringGPUController(bus, i2c_addr);
RGBController_ColorfulTuringGPU* rgb_controller = new RGBController_ColorfulTuringGPU(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
REGISTER_I2C_PCI_DETECTOR("iGame GeForce RTX 2070 SUPER Advanced OC-V", DetectColorfulTuringGPUControllers, NVIDIA_VEN, NVIDIA_RTX2070S_OC_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_2070_SUPER_ADVANCED_OCV, 0x50);
@@ -0,0 +1,145 @@
#include "RGBController_ColorfulTuringGPU.h"
#include <array>
/**------------------------------------------------------------------*\
@name Colorful GPU
@category GPU
@type I2C
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectColorfulTuringGPUControllers
@comment This card supports off, direct, rainbow and pulse mode.
\*-------------------------------------------------------------------*/
RGBController_ColorfulTuringGPU::RGBController_ColorfulTuringGPU(ColorfulTuringGPUController * colorful_gpu_ptr)
{
controller = colorful_gpu_ptr;
name = "Colorful GPU Device";
vendor = "Colorful";
type = DEVICE_TYPE_GPU;
description = name;
location = controller->GetDeviceLocation();
mode Off;
Off.name = "Off";
Off.value = COLORFUL_TURING_GPU_RGB_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
mode Direct;
Direct.name = "Direct";
Direct.value = COLORFUL_TURING_GPU_RGB_MODE_STATIC;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode StateDisplay;
StateDisplay.name = "State Display";
StateDisplay.value = COLORFUL_TURING_GPU_RGB_MODE_STATE_DISPLAY;
StateDisplay.flags = MODE_FLAG_HAS_PER_LED_COLOR;
StateDisplay.color_mode = MODE_COLORS_PER_LED;
modes.push_back(StateDisplay);
mode Rainbow;
Rainbow.name = "Spectrum Cycle";
Rainbow.value = COLORFUL_TURING_GPU_RGB_MODE_RAINBOW;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = COLORFUL_TURING_GPU_RGB_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
SetupZones();
// Initialize active mode
active_mode = getModeIndex(controller->GetMode());
colors[0] = controller->GetColor();
}
RGBController_ColorfulTuringGPU::~RGBController_ColorfulTuringGPU()
{
delete controller;
}
int RGBController_ColorfulTuringGPU::getModeIndex(int mode_value)
{
for(std::size_t mode_index = 0; mode_index < modes.size(); mode_index++)
{
if (modes[mode_index].value == mode_value)
{
return mode_index;
}
}
return 0;
}
void RGBController_ColorfulTuringGPU::SetupZones()
{
zone new_zone;
new_zone.name = "GPU";
new_zone.type = ZONE_TYPE_LINEAR;
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);
leds.resize(new_zone.leds_count);
leds[0].name = "GPU LED";
SetupColors();
}
void RGBController_ColorfulTuringGPU::ResizeZone(int /*zone*/, int /*new_size*/)
{
}
void RGBController_ColorfulTuringGPU::DeviceUpdateLEDs()
{
switch(modes[active_mode].value)
{
case COLORFUL_TURING_GPU_RGB_MODE_BREATHING:
controller->SetBreathing(colors[0]);
break;
case COLORFUL_TURING_GPU_RGB_MODE_OFF:
controller->SetOff();
break;
case COLORFUL_TURING_GPU_RGB_MODE_RAINBOW:
controller->SetRainbow();
break;
case COLORFUL_TURING_GPU_RGB_MODE_STATE_DISPLAY:
controller->SetStateDisplay(colors[0]);
break;
case COLORFUL_TURING_GPU_RGB_MODE_STATIC:
controller->SetDirect(colors[0]);
break;
default:
controller->SetDirect(colors[0]);
}
}
void RGBController_ColorfulTuringGPU::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_ColorfulTuringGPU::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_ColorfulTuringGPU::DeviceUpdateMode()
{
DeviceUpdateLEDs();
}
@@ -0,0 +1,25 @@
#pragma once
#include "RGBController.h"
#include "ColorfulTuringGPUController.h"
class RGBController_ColorfulTuringGPU : public RGBController
{
public:
RGBController_ColorfulTuringGPU(ColorfulTuringGPUController* colorful_gpu_ptr);
~RGBController_ColorfulTuringGPU();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode();
private:
ColorfulTuringGPUController* controller;
int getModeIndex(int mode_value);
};
@@ -14,7 +14,7 @@
using namespace std::chrono_literals;
CorsairCommanderCoreController::CorsairCommanderCoreController(hid_device* dev_handle, const char* path)
CorsairCommanderCoreController::CorsairCommanderCoreController(hid_device* dev_handle, const char* path, int pid)
{
dev = dev_handle;
location = path;
@@ -22,6 +22,7 @@ CorsairCommanderCoreController::CorsairCommanderCoreController(hid_device* dev_h
controller_ready = 0;
packet_size = CORSAIR_COMMANDER_CORE_PACKET_SIZE_V2;
command_res_size = packet_size - 4;
this->pid = pid;
/*-----------------------------------------------------*\
| Initialize controller |
@@ -62,11 +63,15 @@ void CorsairCommanderCoreController::InitController()
version[2] = res[2];
delete[] res;
if(version[0] == 1)
if (pid == 0x0C1C && version[0] == 1)
{
packet_size = CORSAIR_COMMANDER_CORE_PACKET_SIZE_V1;
command_res_size = packet_size - 4;
}
else if (pid == 0x0C32)
{
packet_size = CORSAIR_COMMANDER_CORE_PACKET_SIZE_V3;
}
/*-----------------------------------------------------*\
| Wake up device |
@@ -17,6 +17,8 @@
#define CORSAIR_COMMANDER_CORE_PACKET_SIZE_V1 1025 // First bit is the report bit
#define CORSAIR_COMMANDER_CORE_PACKET_SIZE_V2 97 // First bit is the report bit
#define CORSAIR_COMMANDER_CORE_PACKET_SIZE_V3 65 // First bit is the report bit
#define CORSAIR_COMMANDER_CORE_RGB_DATA_LENGTH 699
#define CORSAIR_QL_FAN_ZONE_OFFSET 102
#define CORSAIR_COMMANDER_CORE_NUM_CHANNELS 6
@@ -29,7 +31,7 @@ enum
class CorsairCommanderCoreController
{
public:
CorsairCommanderCoreController(hid_device* dev_handle, const char* path);
CorsairCommanderCoreController(hid_device* dev_handle, const char* path, int pid);
~CorsairCommanderCoreController();
std::string GetFirmwareString();
@@ -55,6 +57,7 @@ private:
unsigned short int version[3] = {0, 0, 0};
int packet_size;
int command_res_size;
int pid;
std::chrono::time_point<std::chrono::steady_clock> last_commit_time;
void SendCommand(unsigned char command[2], unsigned char data[], unsigned short int data_len, unsigned char res[]);
@@ -14,6 +14,7 @@
| Commander Core product IDs |
\*-----------------------------------------------------*/
#define CORSAIR_COMMANDER_CORE_PID 0x0C1C
#define CORSAIR_COMMANDER_CORE2_PID 0x0C32
/******************************************************************************************\
* *
@@ -29,7 +30,7 @@ void DetectCorsairCapellixHIDControllers(hid_device_info* info, const std::strin
if(dev)
{
CorsairCommanderCoreController* controller = new CorsairCommanderCoreController(dev, info->path);
CorsairCommanderCoreController* controller = new CorsairCommanderCoreController(dev, info->path, info->product_id);
RGBController_CorsairCommanderCore* rgb_controller = new RGBController_CorsairCommanderCore(controller);
rgb_controller->name = name;
@@ -38,4 +39,5 @@ void DetectCorsairCapellixHIDControllers(hid_device_info* info, const std::strin
}
}
REGISTER_HID_DETECTOR_IPU("Corsair Commander Core", DetectCorsairCapellixHIDControllers, CORSAIR_VID, CORSAIR_COMMANDER_CORE_PID, 0x00, 0xFF42, 0x01);
REGISTER_HID_DETECTOR_IPU("Corsair Commander Core", DetectCorsairCapellixHIDControllers, CORSAIR_VID, CORSAIR_COMMANDER_CORE_PID, 0x00, 0xFF42, 0x01);
REGISTER_HID_DETECTOR_IPU("Corsair Commander Core", DetectCorsairCapellixHIDControllers, CORSAIR_VID, CORSAIR_COMMANDER_CORE2_PID, 0x00, 0xFF42, 0x01);
@@ -13,22 +13,22 @@
using namespace std::chrono_literals;
CorsairDominatorPlatinumController::CorsairDominatorPlatinumController(i2c_smbus_interface *bus, corsair_dev_id dev)
CorsairDominatorPlatinumController::CorsairDominatorPlatinumController(i2c_smbus_interface *bus, corsair_dev_id dev, unsigned int leds_count)
{
this->bus = bus;
this->dev = dev;
this->bus = bus;
this->dev = dev;
this->leds_count = leds_count;
led_data[0] = 0xc;
}
CorsairDominatorPlatinumController::~CorsairDominatorPlatinumController()
{
}
std::string CorsairDominatorPlatinumController::GetDeviceName()
unsigned int CorsairDominatorPlatinumController::GetLEDCount()
{
return "Corsair Dominator Platinum RGB";
return leds_count;
}
std::string CorsairDominatorPlatinumController::GetDeviceLocation()
@@ -48,7 +48,7 @@ void CorsairDominatorPlatinumController::SetAllColors
unsigned char blue
)
{
for(unsigned int led = 0; led < CORSAIR_PLAT_LED_COUNT; led++)
for(unsigned int led = 0; led < leds_count; led++)
{
SetLEDColor(led, red, green, blue);
}
@@ -62,7 +62,7 @@ void CorsairDominatorPlatinumController::SetLEDColor
unsigned char blue
)
{
if(led >= CORSAIR_PLAT_LED_COUNT)
if(led >= leds_count)
{
return;
}
@@ -10,35 +10,31 @@
#include <string>
#include "i2c_smbus.h"
#define CORSAIR_DOMINATOR_PLATINUM_DATA_SIZE 38
#pragma once
typedef unsigned char corsair_dev_id;
#define CORSAIR_DOMINATOR_PLATINUM_NAME "Corsair Dominator Platinum"
class CorsairDominatorPlatinumController
{
public:
CorsairDominatorPlatinumController(i2c_smbus_interface *bus, corsair_dev_id dev);
CorsairDominatorPlatinumController(i2c_smbus_interface *bus, corsair_dev_id dev, unsigned int leds_count);
~CorsairDominatorPlatinumController();
std::string GetDeviceName();
std::string GetDeviceLocation();
unsigned int GetLEDCount();
size_t GetLEDCount() { return CORSAIR_PLAT_LED_COUNT; }
void SetAllColors(unsigned char red, unsigned char green, unsigned char blue);
void SetLEDColor(unsigned int led, unsigned char red, unsigned char green, unsigned char blue);
void ApplyColors();
bool WaitReady();
private:
static constexpr size_t CORSAIR_PLAT_LED_COUNT = 12;
unsigned char led_data[CORSAIR_PLAT_LED_COUNT * 3 + 2];
unsigned char led_data[CORSAIR_DOMINATOR_PLATINUM_DATA_SIZE];
i2c_smbus_interface* bus;
corsair_dev_id dev;
unsigned int leds_count;
static unsigned char crc8(unsigned char init, unsigned char poly, unsigned char *data, unsigned char len);
};
@@ -11,6 +11,40 @@
using namespace std::chrono_literals;
json corsair_dominator_models =
{
{
"CMT",
{
{"name", "Corsair Dominator Platinum"},
{"leds", 12}
}
},
{
"CMH",
{
{"name", "Corsair Vengeance Pro SL"},
{"leds", 10}
}
},
{
"CMN",
{
{"name", "Corsair Vengeance RGB RT"},
{"leds", 10}
}
},
{
"CMG",
{
{"name", "Corsair Vengeance RGB RS"},
{"leds", 6}
}
}
};
#define CORSAIR_DOMINATOR_PLATINUM_NAME "Corsair Dominator Platinum"
bool TestForCorsairDominatorPlatinumController(i2c_smbus_interface *bus, unsigned char address)
{
int res = bus->i2c_smbus_write_quick(address, I2C_SMBUS_WRITE);
@@ -55,21 +89,65 @@ bool TestForCorsairDominatorPlatinumController(i2c_smbus_interface *bus, unsigne
void DetectCorsairDominatorPlatinumControllers(std::vector<i2c_smbus_interface *> &busses)
{
SettingsManager* settings_manager = ResourceManager::get()->GetSettingsManager();
json corsair_dominator_settings = settings_manager->GetSettings("CorsairDominatorSettings");
if(!corsair_dominator_settings.contains("model"))
{
// Set default value
corsair_dominator_settings["model"] = "CMT";
settings_manager->SetSettings("CorsairDominatorSettings", corsair_dominator_settings);
settings_manager->SaveSettings();
}
std::string model = corsair_dominator_settings["model"];
for(unsigned int bus = 0; bus < busses.size(); bus++)
{
IF_DRAM_SMBUS(busses[bus]->pci_vendor, busses[bus]->pci_device)
{
LOG_DEBUG("[%s] Testing bus %d", CORSAIR_DOMINATOR_PLATINUM_NAME, bus);
std::vector<unsigned char> addresses;
for(unsigned char addr = 0x58; addr <= 0x5F; addr++)
{
addresses.push_back(addr);
}
for(unsigned char addr = 0x18; addr <= 0x1F; addr++)
{
addresses.push_back(addr);
}
for(unsigned char addr : addresses)
{
if(TestForCorsairDominatorPlatinumController(busses[bus], addr))
{
CorsairDominatorPlatinumController* new_controller = new CorsairDominatorPlatinumController(busses[bus], addr);
RGBController_CorsairDominatorPlatinum* new_rgbcontroller = new RGBController_CorsairDominatorPlatinum(new_controller);
ResourceManager::get()->RegisterRGBController(new_rgbcontroller);
unsigned int leds;
std::string name;
if(corsair_dominator_models.contains(model))
{
leds = corsair_dominator_models[model]["leds"];
name = corsair_dominator_models[model]["name"];
}
else
{
leds = corsair_dominator_models["CMT"]["leds"];
name = corsair_dominator_models["CMT"]["name"];
}
LOG_DEBUG("[%s] Model: %s, Leds: %d", CORSAIR_DOMINATOR_PLATINUM_NAME, name.c_str(), leds);
CorsairDominatorPlatinumController* controller = new CorsairDominatorPlatinumController(busses[bus], addr, leds);
RGBController_CorsairDominatorPlatinum* rgbcontroller = new RGBController_CorsairDominatorPlatinum(controller);
rgbcontroller->name = name;
ResourceManager::get()->RegisterRGBController(rgbcontroller);
}
std::this_thread::sleep_for(10ms);
}
}
@@ -80,4 +158,4 @@ void DetectCorsairDominatorPlatinumControllers(std::vector<i2c_smbus_interface *
}
} /* DetectCorsairDominatorPlatinumControllers() */
REGISTER_I2C_DETECTOR("Corsair Dominator Platinum", DetectCorsairDominatorPlatinumControllers);
REGISTER_I2C_DETECTOR(CORSAIR_DOMINATOR_PLATINUM_NAME, DetectCorsairDominatorPlatinumControllers);
@@ -23,10 +23,9 @@ RGBController_CorsairDominatorPlatinum::RGBController_CorsairDominatorPlatinum(C
{
controller = controller_ptr;
name = controller->GetDeviceName();
vendor = "Corsair";
type = DEVICE_TYPE_DRAM;
description = "Corsair Dominator Platinum RGB Device";
description = "Corsair RAM RGB Device";
location = controller->GetDeviceLocation();
mode Direct;
@@ -55,7 +54,7 @@ void RGBController_CorsairDominatorPlatinum::SetupZones()
| Set up zone |
\*---------------------------------------------------------*/
zone new_zone;
new_zone.name = "Corsair Platinum Zone";
new_zone.name = "Corsair RAM Zone";
new_zone.type = ZONE_TYPE_LINEAR;
new_zone.leds_min = controller->GetLEDCount();
new_zone.leds_max = controller->GetLEDCount();
@@ -68,10 +67,10 @@ void RGBController_CorsairDominatorPlatinum::SetupZones()
\*---------------------------------------------------------*/
for(std::size_t led_idx = 0; led_idx < zones[0].leds_count; led_idx++)
{
led *new_led = new led();
new_led->name = "Corsair Platinum LED ";
new_led->name.append(std::to_string(led_idx));
leds.push_back(*new_led);
led new_led;
new_led.name = "Corsair RAM LED ";
new_led.name.append(std::to_string(led_idx));
leds.push_back(new_led);
}
SetupColors();
@@ -0,0 +1,91 @@
/*-----------------------------------------*\
| CorsairHydro2Controller.cpp |
| |
| Controller for Corsair H100i v2 |
| |
| Tim Demand (tim.dmd) 1/10/2023 |
\*-----------------------------------------*/
#include "CorsairHydro2Controller.h"
#include <cstring>
#include <iomanip>
#include <sstream>
CorsairHydro2Controller::CorsairHydro2Controller(libusb_device_handle* dev_handle)
{
dev = dev_handle;
libusb_device_descriptor descriptor;
libusb_get_device_descriptor(libusb_get_device(dev_handle), &descriptor);
std::stringstream location_stream;
location_stream << std::hex << std::setfill('0') << std::setw(4) << descriptor.idVendor << ":" << std::hex << std::setfill('0') << std::setw(4) << descriptor.idProduct;
location = location_stream.str();
SendInit();
}
CorsairHydro2Controller::~CorsairHydro2Controller()
{
if(dev)
{
libusb_close(dev);
}
}
std::string CorsairHydro2Controller::GetLocation()
{
return("USB: " + location);
}
void CorsairHydro2Controller::SetLED(std::vector<RGBColor>& colors)
{
unsigned char usb_buf[32];
memset(usb_buf, 0, sizeof(usb_buf));
int actual;
unsigned char led_enable = 0x01;
unsigned char rr = RGBGetRValue(colors[0]);
unsigned char gg = RGBGetBValue(colors[0]);
unsigned char bb = RGBGetGValue(colors[0]);
if((rr + gg + bb) == 0)
{
led_enable = 0x00; // needed because leds won't turn off completely if color is 00 00 00
}
usb_buf[0] = 0x10;
usb_buf[1] = rr;
usb_buf[2] = bb;
usb_buf[3] = gg;
usb_buf[4] = 0x00;
usb_buf[5] = 0xFF;
usb_buf[6] = 0xFF;
usb_buf[7] = 0xFF;
usb_buf[8] = 0xFF;
usb_buf[9] = 0xFF;
usb_buf[10] = 0x00;
usb_buf[11] = 0x0A;
usb_buf[12] = 0x05;
usb_buf[13] = led_enable;
usb_buf[14] = 0x00;
usb_buf[15] = 0x00;
usb_buf[16] = 0x00;
usb_buf[17] = 0x00;
usb_buf[18] = 0x01;
libusb_bulk_transfer(dev, 0x02, usb_buf, 19, &actual, 1000);
libusb_bulk_transfer(dev, 0x82, usb_buf, 32, &actual, 1000);
if(actual != 32) SendInit(); // reinitialization after sleep
}
void CorsairHydro2Controller::SendInit()
{
libusb_reset_device(dev); // needed for reinitialization after sleep
libusb_control_transfer(dev, 0x40, 0, 0xffff, 0x0000, NULL, 0, 0);
libusb_control_transfer(dev, 0x40, 2, 0x0002, 0x0000, NULL, 0, 0);
libusb_control_transfer(dev, 0x40, 1, 0x0002, 0x0000, NULL, 0, 0);
libusb_control_transfer(dev, 0x40, 4, 0x0002, 0x0000, NULL, 0, 0);
}
@@ -0,0 +1,35 @@
/*-----------------------------------------*\
| CorsairHydro2Controller.h |
| |
| Controller for Corsair H100i v2 |
| |
| Tim Demand (tim.dmd) 1/10/2023 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <vector>
#ifdef __FreeBSD__
#include <libusb.h>
#else
#include <libusb-1.0/libusb.h>
#endif
#pragma once
class CorsairHydro2Controller
{
public:
CorsairHydro2Controller(libusb_device_handle* dev_handle);
~CorsairHydro2Controller();
std::string GetLocation();
void SetLED(std::vector<RGBColor>& colors);
private:
libusb_device_handle* dev;
std::string firmware_version;
std::string location;
void SendInit();
};
@@ -0,0 +1,51 @@
/*-----------------------------------------*\
| CorsairHydro2ControllerDetect.cpp |
| |
| Detector for Corsair H100i v2 |
| |
| Tim Demand (tim.dmd) 1/10/2023 |
\*-----------------------------------------*/
#include "Detector.h"
#include "CorsairHydro2Controller.h"
#include "RGBController.h"
#include "RGBController_CorsairHydro2.h"
#include <vector>
#ifdef __FreeBSD__
#include <libusb.h>
#else
#include <libusb-1.0/libusb.h>
#endif
#define CORSAIR_VID 0x1B1C
#define H100I_V2_PID 0x0C09
void DetectCorsairHydro2Controllers()
{
libusb_init(NULL);
#ifdef _WIN32
libusb_set_option(NULL, LIBUSB_OPTION_USE_USBDK);
#endif
libusb_device_handle* dev = libusb_open_device_with_vid_pid(NULL, CORSAIR_VID, H100I_V2_PID);
if(dev)
{
libusb_detach_kernel_driver(dev, 0);
libusb_claim_interface(dev, 0);
CorsairHydro2Controller* controller = new CorsairHydro2Controller(dev);
RGBController_CorsairHydro2* rgb_controller = new RGBController_CorsairHydro2(controller);
rgb_controller->name = "Corsair H100i v2";
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
REGISTER_DETECTOR("Corsair H100i v2", DetectCorsairHydro2Controllers);
/*---------------------------------------------------------------------------------------------------------*\
| Entries for dynamic UDEV rules |
| |
| DUMMY_DEVICE_DETECTOR("Corsair H100i v2", DetectCorsairHydro2Controllers, 0x1B1C, 0x0C09 ) |
\*---------------------------------------------------------------------------------------------------------*/
@@ -0,0 +1,91 @@
/*-----------------------------------------*\
| RGBController_CorsairHydro2.cpp |
| |
| RGB Controller for Corsair H100i v2 |
| |
| Tim Demand (tim.dmd) 1/10/2023 |
\*-----------------------------------------*/
#include "RGBController_CorsairHydro2.h"
/**------------------------------------------------------------------*\
@name Corsair Hydro Series H100i v2 AIO
@category Cooler
@type USB
@save :x:
@direct :white_check_mark:
@effects :x:
@detectors DetectCorsairHydro2Controllers
@comment
\*-------------------------------------------------------------------*/
RGBController_CorsairHydro2::RGBController_CorsairHydro2(CorsairHydro2Controller* controller_ptr)
{
controller = controller_ptr;
vendor = "Corsair";
description = "Corsair H100i v2";
type = DEVICE_TYPE_COOLER;
location = controller->GetLocation();
mode Direct;
Direct.name = "Direct";
Direct.value = 0;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
SetupZones();
}
RGBController_CorsairHydro2::~RGBController_CorsairHydro2()
{
delete controller;
}
void RGBController_CorsairHydro2::SetupZones()
{
zone new_zone;
new_zone.name = "Pump Zone";
new_zone.type = ZONE_TYPE_SINGLE;
new_zone.leds_min = 1;
new_zone.leds_max = 1;
new_zone.leds_count = 1;
new_zone.matrix_map = NULL;
zones.push_back(new_zone);
led new_led;
new_led.name = "Pump LED";
leds.push_back(new_led);
SetupColors();
}
void RGBController_CorsairHydro2::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_CorsairHydro2::DeviceUpdateLEDs()
{
controller->SetLED(colors);
}
void RGBController_CorsairHydro2::UpdateZoneLEDs(int /*zone*/)
{
controller->SetLED(colors);
}
void RGBController_CorsairHydro2::UpdateSingleLED(int /*led*/)
{
controller->SetLED(colors);
}
void RGBController_CorsairHydro2::DeviceUpdateMode()
{
}
@@ -0,0 +1,31 @@
/*-----------------------------------------*\
| RGBController_CorsairHydro2.h |
| |
| RGB Controller for Corsair H100i v2 |
| |
| Tim Demand (tim.dmd) 1/10/2023 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "CorsairHydro2Controller.h"
class RGBController_CorsairHydro2 : public RGBController
{
public:
RGBController_CorsairHydro2(CorsairHydro2Controller* controller_ptr);
~RGBController_CorsairHydro2();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode();
private:
CorsairHydro2Controller* controller;
};
@@ -49,7 +49,7 @@ static const corsair_hydro_device device_list[] =
* *
\******************************************************************************************/
void DetectCorsairHydroControllers(std::vector<RGBController*>& rgb_controllers)
void DetectCorsairHydroControllers()
{
libusb_init(NULL);
@@ -69,10 +69,9 @@ void DetectCorsairHydroControllers(std::vector<RGBController*>& rgb_controllers)
CorsairHydroController* controller = new CorsairHydroController(dev);
RGBController_CorsairHydro* rgb_controller = new RGBController_CorsairHydro(controller);
rgb_controller->name = device_list[device_idx].name;
rgb_controller->name = device_list[device_idx].name;
rgb_controllers.push_back(rgb_controller);
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
} /* DetectCorsairHydroControllers() */
@@ -240,7 +240,7 @@ void RGBController_CorsairLightingNode::SetupZones()
for (unsigned int channel_idx = 0; channel_idx < CORSAIR_LIGHTING_NODE_NUM_CHANNELS; channel_idx++)
{
char ch_idx_string[2];
sprintf(ch_idx_string, "%d", channel_idx + 1);
snprintf(ch_idx_string, 2, "%d", channel_idx + 1);
zones[channel_idx].name = "Corsair Channel ";
zones[channel_idx].name.append(ch_idx_string);
@@ -264,7 +264,7 @@ void RGBController_CorsairLightingNode::SetupZones()
for (unsigned int led_ch_idx = 0; led_ch_idx < zones[channel_idx].leds_count; led_ch_idx++)
{
char led_idx_string[4];
sprintf(led_idx_string, "%d", led_ch_idx + 1);
snprintf(led_idx_string, 4, "%d", led_ch_idx + 1);
led new_led;
new_led.name = "Corsair Channel ";
@@ -9,6 +9,8 @@
#include "CorsairPeripheralV2Controller.h"
using namespace std::chrono_literals;
CorsairPeripheralV2Controller::CorsairPeripheralV2Controller(hid_device* dev_handle, const char* path, std::string /*name*/, uint16_t pid)
{
const uint8_t sz = HID_MAX_STR;
@@ -33,14 +35,29 @@ CorsairPeripheralV2Controller::CorsairPeripheralV2Controller(hid_device* dev_han
| Set device ID |
\*---------------------------------------------------------*/
device_index = i;
write_cmd = CORSAIR_V2_WRITE_ID + corsair_v2_device_list[device_index]->wireless;
}
}
/*---------------------------------------------------------*\
| Possibly is Wireless connected? |
| NB: If the device is not found in the device list |
| then wireless mode may not work reliably |
\*---------------------------------------------------------*/
bool wireless = corsair_v2_device_list[device_index]->wireless;
if(wireless)
{
write_cmd = CORSAIR_V2_WRITE_WIRELESS_ID;
}
LOG_DEBUG("[%s] Setting write CMD to %02X for %s mode", device_name.c_str(),
write_cmd, (wireless) ? "wireless" : "wired" );
/*---------------------------------------------------------*\
| Get VID |
\*---------------------------------------------------------*/
GetAddress(0x11);
/*---------------------------------------------------------*\
| Get PID |
\*---------------------------------------------------------*/
GetAddress(0x12);
}
CorsairPeripheralV2Controller::~CorsairPeripheralV2Controller()
@@ -102,6 +119,7 @@ void CorsairPeripheralV2Controller::SetRenderMode(corsair_v2_device_mode mode)
buffer[5] = mode;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_read_timeout(dev, buffer, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT);
}
void CorsairPeripheralV2Controller::LightingControl(uint8_t opt1, uint8_t opt2)
@@ -121,6 +139,7 @@ void CorsairPeripheralV2Controller::LightingControl(uint8_t opt1, uint8_t opt2)
buffer[5] = 0x00;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_read_timeout(dev, buffer, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT);
/*---------------------------------------------------------*\
| Open a RGB lighting handle |
@@ -131,9 +150,15 @@ void CorsairPeripheralV2Controller::LightingControl(uint8_t opt1, uint8_t opt2)
buffer[5] = opt2;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_read_timeout(dev, buffer, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT);
}
void CorsairPeripheralV2Controller::GetAddress(uint8_t address)
unsigned int CorsairPeripheralV2Controller::GetKeyboardLayout()
{
return GetAddress(0x41);
}
unsigned int CorsairPeripheralV2Controller::GetAddress(uint8_t address)
{
uint8_t buffer[CORSAIR_V2_WRITE_SIZE];
uint8_t read[CORSAIR_V2_WRITE_SIZE];
@@ -146,10 +171,20 @@ void CorsairPeripheralV2Controller::GetAddress(uint8_t address)
buffer[3] = address;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_read(dev, read, CORSAIR_V2_WRITE_SIZE);
hid_read_timeout(dev, read, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT);
unsigned int temp = (unsigned int)(read[6] << 24 | read[5] << 16 | read[4] << 8 | read[3]);
LOG_DEBUG("[%s] GetAddress %02X - %02X %02X - %02X %02X %02X %02X %02X %02X %02X %02X", device_name.c_str(),
address, read[0], read[1], read[2], read[3], read[4], read[5], read[6], read[7], read[8], read[9]);
uint8_t result = read[2];
if(result > 0)
{
LOG_DEBUG("[%s] An error occurred! Get Address %02X failed - %d %s", device_name.c_str(),
address, result, (result == 5) ? "unsupported" : "");
return -1;
}
return temp;
}
void CorsairPeripheralV2Controller::StartTransaction(uint8_t opt1)
@@ -164,6 +199,7 @@ void CorsairPeripheralV2Controller::StartTransaction(uint8_t opt1)
buffer[4] = 0x01;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_read_timeout(dev, buffer, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT);
}
void CorsairPeripheralV2Controller::StopTransaction(uint8_t opt1)
@@ -178,6 +214,7 @@ void CorsairPeripheralV2Controller::StopTransaction(uint8_t opt1)
buffer[4] = opt1;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_read_timeout(dev, buffer, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT);
}
void CorsairPeripheralV2Controller::SetLEDs(uint8_t *data, uint16_t data_size)
@@ -211,6 +248,7 @@ void CorsairPeripheralV2Controller::SetLEDs(uint8_t *data, uint16_t data_size)
memcpy(&buffer[offset1], &data[0], copy_bytes);
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_read_timeout(dev, buffer, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT_SHORT);
remaining -= copy_bytes;
buffer[2] = CORSAIR_V2_CMD_BLK_WN;
@@ -231,6 +269,7 @@ void CorsairPeripheralV2Controller::SetLEDs(uint8_t *data, uint16_t data_size)
memcpy(&buffer[offset2], &data[index], copy_bytes);
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_read_timeout(dev, buffer, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT_SHORT);
remaining -= copy_bytes;
}
@@ -16,48 +16,51 @@
#include "RGBController.h"
#include "CorsairPeripheralV2Devices.h"
#define NA 0xFFFFFFFF
#define HID_MAX_STR 255
#define NA 0xFFFFFFFF
#define HID_MAX_STR 255
#define CORSAIR_V2_WRITE_ID 8
#define CORSAIR_V2_VALUE_MODE 3
#define CORSAIR_V2_WRITE_SIZE 65
#define CORSAIR_V2_TIMEOUT 50
#define CORSAIR_V2_TIMEOUT_SHORT 3
#define CORSAIR_V2_VALUE_MODE 3
#define CORSAIR_V2_WRITE_WIRED_ID 8
#define CORSAIR_V2_WRITE_WIRELESS_ID 9
#define CORSAIR_V2_WRITE_SIZE 65
#define CORSAIR_V2_BRIGHTNESS_MIN 0
#define CORSAIR_V2_BRIGHTNESS_MAX 0xFF
#define CORSAIR_V2_BRIGHTNESS_MIN 0
#define CORSAIR_V2_BRIGHTNESS_MAX 0xFF
enum corsair_v2_cmd
{
CORSAIR_V2_CMD_SET = 0x01, /* Command for setting values */
CORSAIR_V2_CMD_GET = 0x02, /* Command for getting values */
CORSAIR_V2_CMD_STOP_TX = 0x05, /* Finish Transaction */
CORSAIR_V2_CMD_BLK_W1 = 0x06, /* Block write packet 1 */
CORSAIR_V2_CMD_BLK_WN = 0x07, /* Block write remaining packets */
CORSAIR_V2_CMD_START_TX = 0x0D, /* Start Transaction */
CORSAIR_V2_CMD_SET = 0x01, /* Command for setting values */
CORSAIR_V2_CMD_GET = 0x02, /* Command for getting values */
CORSAIR_V2_CMD_STOP_TX = 0x05, /* Finish Transaction */
CORSAIR_V2_CMD_BLK_W1 = 0x06, /* Block write packet 1 */
CORSAIR_V2_CMD_BLK_WN = 0x07, /* Block write remaining packets */
CORSAIR_V2_CMD_START_TX = 0x0D, /* Start Transaction */
};
enum corsair_v2_mode
{
CORSAIR_V2_MODE_DIRECT = 0x0000,
CORSAIR_V2_MODE_STATIC = 0x207E,
CORSAIR_V2_MODE_FLASHING = 0xAD4F,
CORSAIR_V2_MODE_BREATHING = 0xA5FA,
CORSAIR_V2_MODE_SPECTRUM = 0x7BFF,
CORSAIR_V2_MODE_RAINBOW = 0xB94C,
CORSAIR_V2_MODE_RAIN = 0xA07E,
CORSAIR_V2_MODE_SPIRAL = 0xAB87,
CORSAIR_V2_MODE_WATERCOLOR = 0x0022,
CORSAIR_V2_MODE_REACTIVE = 0xB1F9,
CORSAIR_V2_MODE_RIPPLE = 0x09A2,
CORSAIR_V2_MODE_VISOR = 0x90C0
CORSAIR_V2_MODE_DIRECT = 0x0012,
CORSAIR_V2_MODE_STATIC = 0x207E,
CORSAIR_V2_MODE_FLASHING = 0xAD4F,
CORSAIR_V2_MODE_BREATHING = 0xA5FA,
CORSAIR_V2_MODE_SPECTRUM = 0x7BFF,
CORSAIR_V2_MODE_RAINBOW = 0xB94C,
CORSAIR_V2_MODE_RAIN = 0xA07E,
CORSAIR_V2_MODE_SPIRAL = 0xAB87,
CORSAIR_V2_MODE_WATERCOLOR = 0x0022,
CORSAIR_V2_MODE_REACTIVE = 0xB1F9,
CORSAIR_V2_MODE_RIPPLE = 0x09A2,
CORSAIR_V2_MODE_VISOR = 0x90C0
};
enum corsair_v2_color
{
CORSAIR_V2_COLOR_NONE = 0x00,
CORSAIR_V2_COLOR_SPECIFIC = 0x01,
CORSAIR_V2_COLOR_RANDOM = 0x02,
CORSAIR_V2_COLOR_UNKNOWN = 0x03
CORSAIR_V2_COLOR_NONE = 0x00,
CORSAIR_V2_COLOR_SPECIFIC = 0x01,
CORSAIR_V2_COLOR_RANDOM = 0x02,
CORSAIR_V2_COLOR_UNKNOWN = 0x03
};
@@ -72,6 +75,7 @@ public:
std::string GetName();
std::string GetSerialString();
const corsair_v2_device* GetDeviceData();
unsigned int GetKeyboardLayout();
void SetRenderMode(corsair_v2_device_mode mode);
void LightingControl(uint8_t opt1, uint8_t opt2);
@@ -80,16 +84,19 @@ public:
uint8_t direction, uint8_t brightness, std::vector<RGBColor> colors);
virtual void SetLedsDirect(std::vector<RGBColor *> colors) = 0;
protected:
uint16_t device_index;
std::string device_name;
private:
void GetAddress(uint8_t address);
unsigned int GetAddress(uint8_t address);
void StartTransaction(uint8_t opt1);
void StopTransaction(uint8_t opt1);
hid_device* dev;
uint8_t write_cmd;
uint16_t device_index;
uint8_t write_cmd = CORSAIR_V2_WRITE_WIRED_ID;
std::string firmware_version;
std::string location;
std::string device_name;
};
@@ -10,6 +10,7 @@
| Corsair Peripheral specific includes |
\*-----------------------------------------------------*/
#include "CorsairPeripheralV2Devices.h"
#include "RGBController_CorsairV2Hardware.h"
#include "RGBController_CorsairV2Software.h"
#define CORSAIR_PERIPHERAL_CONTROLLER_NAME "Corsair V2 Peripheral"
@@ -19,6 +20,19 @@
\*-----------------------------------------------------*/
#define CORSAIR_VID 0x1B1C
void DetectCorsairV2HardwareControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
CorsairPeripheralV2HWController* controller = new CorsairPeripheralV2HWController(dev, info->path, name, info->product_id);
RGBController_CorsairV2HW* rgb_controller = new RGBController_CorsairV2HW(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
} /* DetectCorsairV2SoftwareControllers() */
void DetectCorsairV2SoftwareControllers(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
@@ -36,11 +50,18 @@ void DetectCorsairV2SoftwareControllers(hid_device_info* info, const std::string
/*-----------------------------------------------------------------------------------------------------*\
| Keyboards |
\*-----------------------------------------------------------------------------------------------------*/
REGISTER_HID_DETECTOR_IP("Corsair K55 RGB PRO", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_K55_RGB_PRO_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair K60 RGB PRO", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_K60_RGB_PRO_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair K60 RGB PRO Low Profile", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_K60_RGB_PRO_LP_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair K55 RGB PRO", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_K55_RGB_PRO_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair K60 RGB PRO", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_K60_RGB_PRO_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair K60 RGB PRO Low Profile", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_K60_RGB_PRO_LP_PID, 1, 0xFF42);
/*-----------------------------------------------------------------------------------------------------*\
| Mice |
\*-----------------------------------------------------------------------------------------------------*/
REGISTER_HID_DETECTOR_IP("Corsair Ironclaw Wireless", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_IRONCLAW_WIRELESS_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair Ironclaw Wireless (Wired)", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_IRONCLAW_WIRELESS_WIRED_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair M55 RGB PRO", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_M55_RGB_PRO_PID, 1, 0xFF42);
/*-----------------------------------------------------------------------------------------------------*\
| Mousemat |
\*-----------------------------------------------------------------------------------------------------*/
REGISTER_HID_DETECTOR_IP("Corsair MM700", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_MM700_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair MM700", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_MM700_PID, 1, 0xFF42);
@@ -1,127 +1,147 @@
#include "CorsairPeripheralV2Devices.h"
/*-------------------------------------------------------------------------*\
| Corsair Key Values |
\*-------------------------------------------------------------------------*/
std::vector<unsigned int> corsair_full_size_values =
{
/* ESC F1 F2 F3 F4 F5 F6 F7 F8 F9 F10 F11 F12 PRSC SCLK PSBK */
41, 58, 59, 60, 61, 62, 63, 64, 65, 66, 67, 68, 69, 70, 71, 72,
/* BKTK 1 2 3 4 5 6 7 8 9 0 - = BSPC INS HOME PGUP NMLK NMDV NMTM NMMI */
53, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 45, 46, 42, 73, 74, 75, 83, 84, 85, 86,
/* TAB Q W E R T Y U I O P [ ] \ DEL END PGDN NM7 NM8 NM9 NMPL */
43, 20, 26, 8, 21, 23, 28, 24, 12, 18, 19, 47, 48, 49, 76, 77, 78, 95, 96, 97, 87,
/* CPLK A S D F G H J K L ; " ENTR NM4 NM5 NM6 */
57, 4, 22, 7, 9, 10, 11, 13, 14, 15, 51, 52, 40, 92, 93, 94,
/* LSFT Z X C V B N M , . / RSFT ARWU NM1 NM2 NM3 NMER */
106, 29, 27, 6, 25, 5, 17, 16, 54, 55, 56, 110, 82, 89, 90, 91, 88,
/* LCTL LWIN LALT SPC RALT RFNC RMNU RCTL ARWR ARWD ARWR NM0 NMPD */
105, 108, 107, 44, 111, 122, 101, 109, 80, 81, 79, 98, 99,
};
/*-------------------------------------------------------------------------*\
| KEYMAPS |
\*-------------------------------------------------------------------------*/
#define K60_KEYMAP_SIZE (sizeof(K60_keymap) / sizeof(K60_keymap[0]))
static const corsair_v2_led K60_keymap[] =
keyboard_keymap_overlay_values corsair_K60_layout
{
/*---------------------------------------------------------------------*\
| Zone, Row, Column, Index, Name |
\*---------------------------------------------------------------------*/
{ 0, 0, 0, 41, KEY_EN_ESCAPE },
{ 0, 0, 2, 58, KEY_EN_F1 },
{ 0, 0, 3, 59, KEY_EN_F2 },
{ 0, 0, 4, 60, KEY_EN_F3 },
{ 0, 0, 5, 61, KEY_EN_F4 },
{ 0, 0, 6, 62, KEY_EN_F5 },
{ 0, 0, 7, 63, KEY_EN_F6 },
{ 0, 0, 8, 64, KEY_EN_F7 },
{ 0, 0, 9, 65, KEY_EN_F8 },
{ 0, 0, 10, 66, KEY_EN_F9 },
{ 0, 0, 11, 67, KEY_EN_F10 },
{ 0, 0, 12, 68, KEY_EN_F11 },
{ 0, 0, 13, 69, KEY_EN_F12 },
{ 0, 0, 14, 70, KEY_EN_PRINT_SCREEN },
{ 0, 0, 15, 71, KEY_EN_SCROLL_LOCK },
{ 0, 0, 16, 72, KEY_EN_PAUSE_BREAK },
{ 0, 1, 0, 53, KEY_EN_BACK_TICK },
{ 0, 1, 1, 30, KEY_EN_1 },
{ 0, 1, 2, 31, KEY_EN_2 },
{ 0, 1, 3, 32, KEY_EN_3 },
{ 0, 1, 4, 33, KEY_EN_4 },
{ 0, 1, 5, 34, KEY_EN_5 },
{ 0, 1, 6, 35, KEY_EN_6 },
{ 0, 1, 7, 36, KEY_EN_7 },
{ 0, 1, 8, 37, KEY_EN_8 },
{ 0, 1, 9, 38, KEY_EN_9 },
{ 0, 1, 10, 39, KEY_EN_0 },
{ 0, 1, 11, 45, KEY_EN_MINUS },
{ 0, 1, 12, 46, KEY_EN_EQUALS },
{ 0, 1, 13, 42, KEY_EN_BACKSPACE },
{ 0, 1, 14, 73, KEY_EN_INSERT },
{ 0, 1, 15, 74, KEY_EN_HOME },
{ 0, 1, 16, 75, KEY_EN_PAGE_UP },
{ 0, 1, 17, 83, KEY_EN_NUMPAD_LOCK },
{ 0, 1, 18, 84, KEY_EN_NUMPAD_DIVIDE },
{ 0, 1, 19, 85, KEY_EN_NUMPAD_TIMES },
{ 0, 1, 20, 86, KEY_EN_NUMPAD_MINUS },
{ 0, 2, 0, 43, KEY_EN_TAB },
{ 0, 2, 1, 20, KEY_EN_Q },
{ 0, 2, 2, 26, KEY_EN_W },
{ 0, 2, 3, 8, KEY_EN_E },
{ 0, 2, 4, 21, KEY_EN_R },
{ 0, 2, 5, 23, KEY_EN_T },
{ 0, 2, 6, 28, KEY_EN_Y },
{ 0, 2, 7, 24, KEY_EN_U },
{ 0, 2, 8, 12, KEY_EN_I },
{ 0, 2, 9, 18, KEY_EN_O },
{ 0, 2, 10, 19, KEY_EN_P },
{ 0, 2, 11, 47, KEY_EN_LEFT_BRACKET },
{ 0, 2, 12, 48, KEY_EN_RIGHT_BRACKET },
{ 0, 2, 13, 49, KEY_EN_ANSI_BACK_SLASH },
{ 0, 2, 14, 76, KEY_EN_DELETE },
{ 0, 2, 15, 77, KEY_EN_END },
{ 0, 2, 16, 78, KEY_EN_PAGE_DOWN },
{ 0, 2, 17, 95, KEY_EN_NUMPAD_7 },
{ 0, 2, 18, 96, KEY_EN_NUMPAD_8 },
{ 0, 2, 19, 97, KEY_EN_NUMPAD_9 },
{ 0, 2, 20, 87, KEY_EN_NUMPAD_PLUS },
{ 0, 3, 0, 57, KEY_EN_CAPS_LOCK },
{ 0, 3, 1, 4, KEY_EN_A },
{ 0, 3, 2, 22, KEY_EN_S },
{ 0, 3, 3, 7, KEY_EN_D },
{ 0, 3, 4, 9, KEY_EN_F },
{ 0, 3, 5, 10, KEY_EN_G },
{ 0, 3, 6, 11, KEY_EN_H },
{ 0, 3, 7, 13, KEY_EN_J },
{ 0, 3, 8, 14, KEY_EN_K },
{ 0, 3, 9, 15, KEY_EN_L },
{ 0, 3, 10, 51, KEY_EN_SEMICOLON },
{ 0, 3, 11, 52, KEY_EN_QUOTE },
{ 0, 3, 12, 50, KEY_EN_POUND },
{ 0, 3, 13, 40, KEY_EN_ANSI_ENTER },
{ 0, 3, 17, 92, KEY_EN_NUMPAD_4 },
{ 0, 3, 18, 93, KEY_EN_NUMPAD_5 },
{ 0, 3, 19, 94, KEY_EN_NUMPAD_6 },
{ 0, 4, 0, 106, KEY_EN_LEFT_SHIFT },
{ 0, 4, 1, 100, KEY_EN_ISO_BACK_SLASH },
{ 0, 4, 2, 29, KEY_EN_Z },
{ 0, 4, 3, 27, KEY_EN_X },
{ 0, 4, 4, 6, KEY_EN_C },
{ 0, 4, 5, 25, KEY_EN_V },
{ 0, 4, 6, 5, KEY_EN_B },
{ 0, 4, 7, 17, KEY_EN_N },
{ 0, 4, 8, 16, KEY_EN_M },
{ 0, 4, 9, 54, KEY_EN_COMMA },
{ 0, 4, 10, 55, KEY_EN_PERIOD },
{ 0, 4, 11, 56, KEY_EN_FORWARD_SLASH },
{ 0, 4, 13, 110, KEY_EN_RIGHT_SHIFT },
{ 0, 4, 15, 82, KEY_EN_UP_ARROW },
{ 0, 4, 17, 89, KEY_EN_NUMPAD_1 },
{ 0, 4, 18, 90, KEY_EN_NUMPAD_2 },
{ 0, 4, 19, 91, KEY_EN_NUMPAD_3 },
{ 0, 4, 20, 88, KEY_EN_NUMPAD_ENTER },
{ 0, 5, 0, 105, KEY_EN_LEFT_CONTROL },
{ 0, 5, 1, 108, KEY_EN_LEFT_WINDOWS },
{ 0, 5, 2, 107, KEY_EN_LEFT_ALT },
{ 0, 5, 6, 44, KEY_EN_SPACE },
{ 0, 5, 10, 111, KEY_EN_RIGHT_ALT },
{ 0, 5, 11, 122, KEY_EN_RIGHT_FUNCTION },
{ 0, 5, 12, 101, KEY_EN_MENU },
{ 0, 5, 13, 109, KEY_EN_RIGHT_CONTROL },
{ 0, 5, 14, 80, KEY_EN_LEFT_ARROW },
{ 0, 5, 15, 81, KEY_EN_DOWN_ARROW },
{ 0, 5, 16, 79, KEY_EN_RIGHT_ARROW },
{ 0, 5, 18, 98, KEY_EN_NUMPAD_0 },
{ 0, 5, 19, 99, KEY_EN_NUMPAD_PERIOD },
KEYBOARD_SIZE::KEYBOARD_SIZE_FULL,
{
corsair_full_size_values,
{
{
KEYBOARD_LAYOUT_ISO_QWERTY,
{
/*---------------------------------------------------------------------------------------------------------*\
| Edit Keys |
| Zone, Row, Column, Value, Key, OpCode, |
\*---------------------------------------------------------------------------------------------------------*/
{ 0, 3, 12, 50, KEY_EN_POUND, KEYBOARD_OPCODE_SWAP_ONLY, },
{ 0, 4, 1, 100, KEY_EN_ISO_BACK_SLASH, KEYBOARD_OPCODE_SWAP_ONLY, },
}
},
/* Add more regional layout fixes here */
}
},
{
/*---------------------------------------------------------------------------------------------------------*\
| Edit Keys |
| Zone, Row, Column, Value, Key, OpCode, |
\*---------------------------------------------------------------------------------------------------------*/
}
};
/*-------------------------------------------------------------------------*\
| CORSAIR DEVICES |
\*-------------------------------------------------------------------------*/
/*-------------------------------------------------------------*\
| Corsair Ironclaw Wireless 1B1C:1B66 |
| Corsair Ironclaw Wireless (Wired) 1B1C:1B4C |
| |
| Zone "Logo" |
| Single |
| |
| Zone "Scroll Wheel" |
| Single |
| |
| Zone "Buttons" |
| Single |
| |
| Zone "Side" |
| Linear |
| 1 Row, 3 Columns |
\*-------------------------------------------------------------*/
static const corsair_v2_zone ironclaw_logo_zone =
{
"Logo",
ZONE_TYPE_SINGLE,
1,
1
};
static const corsair_v2_zone ironclaw_scroll_zone =
{
"Scroll Wheel",
ZONE_TYPE_SINGLE,
1,
1
};
static const corsair_v2_zone ironclaw_button_zone =
{
"Buttons",
ZONE_TYPE_SINGLE,
1,
1
};
static const corsair_v2_zone ironclaw_side_zone =
{
"Side Zone",
ZONE_TYPE_LINEAR,
1,
3
};
static const corsair_v2_device ironclaw_wired_device =
{
CORSAIR_IRONCLAW_WIRELESS_WIRED_PID,
false,
DEVICE_TYPE_MOUSE,
CORSAIR_V2_TYPE_SW_COLOUR_BLOCK,
1,
6,
{
&ironclaw_logo_zone,
&ironclaw_scroll_zone,
&ironclaw_button_zone,
&ironclaw_side_zone,
nullptr,
nullptr
},
nullptr
};
static const corsair_v2_device ironclaw_wireless_device =
{
CORSAIR_IRONCLAW_WIRELESS_PID,
true,
DEVICE_TYPE_MOUSE,
CORSAIR_V2_TYPE_SW_COLOUR_BLOCK,
1,
6,
{
&ironclaw_logo_zone,
&ironclaw_scroll_zone,
&ironclaw_button_zone,
&ironclaw_side_zone,
nullptr,
nullptr
},
nullptr
};
/*-------------------------------------------------------------*\
| Corsair K55 RGB Pro 1B1C:1BA4 |
| |
@@ -142,7 +162,7 @@ static const corsair_v2_device k55_rgb_pro_device =
CORSAIR_K55_RGB_PRO_PID,
false,
DEVICE_TYPE_KEYBOARD,
CORSAIR_V2_MODE_SW,
CORSAIR_V2_TYPE_SW_COLOUR_BLOCK,
1,
6,
{
@@ -153,8 +173,7 @@ static const corsair_v2_device k55_rgb_pro_device =
nullptr,
nullptr
},
nullptr,
0
nullptr
};
/*-------------------------------------------------------------*\
@@ -177,7 +196,7 @@ static const corsair_v2_device k60_rgb_pro_device =
CORSAIR_K60_RGB_PRO_PID,
false,
DEVICE_TYPE_KEYBOARD,
CORSAIR_V2_MODE_SW,
CORSAIR_V2_TYPE_SW_COLOUR_BLOCK,
6,
21,
{
@@ -188,8 +207,7 @@ static const corsair_v2_device k60_rgb_pro_device =
nullptr,
nullptr
},
K60_keymap,
K60_KEYMAP_SIZE
&corsair_K60_layout
};
/*-------------------------------------------------------------*\
@@ -212,7 +230,7 @@ static const corsair_v2_device k60_rgb_pro_lp_device =
CORSAIR_K60_RGB_PRO_LP_PID,
false,
DEVICE_TYPE_KEYBOARD,
CORSAIR_V2_MODE_SW,
CORSAIR_V2_TYPE_SW_COLOUR_BLOCK,
6,
21,
{
@@ -223,8 +241,52 @@ static const corsair_v2_device k60_rgb_pro_lp_device =
nullptr,
nullptr
},
K60_keymap,
K60_KEYMAP_SIZE
&corsair_K60_layout
};
/*-------------------------------------------------------------*\
| Corsair M55 1B1C:1B70 |
| |
| Zone "Logo" |
| Single |
| |
| Zone "Edge" |
| Linear |
| 1 Row, 2 Columns |
\*-------------------------------------------------------------*/
static const corsair_v2_zone m55_mid_zone =
{
"Middle Button",
ZONE_TYPE_SINGLE,
1,
1
};
static const corsair_v2_zone m55_logo_zone =
{
"Logo",
ZONE_TYPE_SINGLE,
1,
1
};
static const corsair_v2_device m55_device =
{
CORSAIR_M55_RGB_PRO_PID,
false,
DEVICE_TYPE_MOUSE,
CORSAIR_V2_TYPE_SW_COLOUR_BLOCK,
1,
2,
{
&m55_mid_zone,
&m55_logo_zone,
nullptr,
nullptr,
nullptr,
nullptr
},
nullptr
};
/*-------------------------------------------------------------*\
@@ -266,7 +328,7 @@ static const corsair_v2_device mm700_device =
CORSAIR_MM700_PID,
false,
DEVICE_TYPE_MOUSEMAT,
CORSAIR_V2_MODE_SW,
CORSAIR_V2_TYPE_SW_COLOUR_BLOCK,
1,
3,
{
@@ -277,8 +339,7 @@ static const corsair_v2_device mm700_device =
nullptr,
nullptr
},
nullptr,
0
nullptr
};
/*-------------------------------------------------------------------------*\
@@ -293,6 +354,13 @@ const corsair_v2_device* corsair_v2_device_list_data[] =
&k60_rgb_pro_device,
&k60_rgb_pro_lp_device,
/*-----------------------------------------------------------------*\
| MICE |
\*-----------------------------------------------------------------*/
&ironclaw_wired_device,
&ironclaw_wireless_device,
&m55_device,
/*-----------------------------------------------------------------*\
| MOUSEMATS |
\*-----------------------------------------------------------------*/
@@ -3,43 +3,59 @@
#include <string>
#include "RGBController.h"
#include "RGBControllerKeyNames.h"
#include "KeyboardLayoutManager.h"
#define CORSAIR_ZONES_MAX 6
#define CORSAIR_ZONES_MAX 6
enum corsair_v2_device_mode
{
CORSAIR_V2_MODE_HW = 0x01, /* Hardware RGB mode */
CORSAIR_V2_MODE_SW = 0x02, /* Software RGB mode */
CORSAIR_V2_MODE_HW = 0x01, /* Hardware RGB mode */
CORSAIR_V2_MODE_SW = 0x02, /* Software RGB mode */
};
enum corsair_v2_supports
{
CORSAIR_V2_TYPE_SW_COLOUR_BLOCK = 1,
CORSAIR_V2_TYPE_HW_COLOUR_BLOCK = 2,
CORSAIR_V2_TYPE_SW_TRIPLETS = 3,
CORSAIR_V2_TYPE_HW_TRIPLETS = 4,
};
enum corsair_v2_kb_layout
{
CORSAIR_V2_KB_LAYOUT_ANSI = 0x01, /* US ANSI Layout */
CORSAIR_V2_KB_LAYOUT_ISO = 0x02, /* EURO ISO Layout */
CORSAIR_V2_KB_LAYOUT_ABNT = 0x03, /* Brazilian Layout */
CORSAIR_V2_KB_LAYOUT_JIS = 0x04, /* Japanese Layout */
};
typedef struct
{
std::string name;
zone_type type;
uint8_t rows;
uint8_t cols;
std::string name;
zone_type type;
uint8_t rows;
uint8_t cols;
} corsair_v2_zone;
typedef struct
{
uint8_t zone;
uint8_t row;
uint8_t col;
uint8_t index;
const char* name;
uint8_t zone;
uint8_t row;
uint8_t col;
uint8_t index;
const char* name;
} corsair_v2_led;
typedef struct
{
uint16_t pid;
bool wireless;
device_type type;
uint8_t supports;
uint8_t rows;
uint8_t cols;
const corsair_v2_zone* zones[CORSAIR_ZONES_MAX];
const corsair_v2_led* layout;
uint16_t layout_size;
uint16_t pid;
bool wireless;
device_type type;
corsair_v2_supports protocol;
uint8_t rows;
uint8_t cols;
const corsair_v2_zone* zones[CORSAIR_ZONES_MAX];
keyboard_keymap_overlay_values* layout_new;
} corsair_v2_device;
/*-----------------------------------------------------*\
@@ -49,6 +65,13 @@ typedef struct
#define CORSAIR_K60_RGB_PRO_PID 0x1BA0
#define CORSAIR_K60_RGB_PRO_LP_PID 0x1BAD
/*-----------------------------------------------------*\
| Corsair V2 Protocol Mice |
\*-----------------------------------------------------*/
#define CORSAIR_IRONCLAW_WIRELESS_PID 0x1BA6
#define CORSAIR_IRONCLAW_WIRELESS_WIRED_PID 0x1B4C
#define CORSAIR_M55_RGB_PRO_PID 0x1B70
/*-----------------------------------------------------*\
| Corsair V2 Protocol Mousemats |
\*-----------------------------------------------------*/
@@ -0,0 +1,89 @@
/*---------------------------------------------------------------------*\
| CorsairPeripheralV2HardwareController.cpp |
| |
| Driver for the newer Corsair peripherals that use the '08' |
| based USB protocol and support hardware lighting modes. |
| |
| Chris M (Dr_No) 07 Dec 2022 |
\*---------------------------------------------------------------------*/
#include "LogManager.h"
#include "CorsairPeripheralV2HardwareController.h"
CorsairPeripheralV2HWController::CorsairPeripheralV2HWController(hid_device* dev_handle, const char* path, std::string name, uint16_t pid) : CorsairPeripheralV2Controller(dev_handle, path, name, pid)
{
SetRenderMode(CORSAIR_V2_MODE_SW);
LightingControl(0x5F, 0x00);
}
CorsairPeripheralV2HWController::~CorsairPeripheralV2HWController()
{
}
void CorsairPeripheralV2HWController::SetLedsDirect(std::vector<RGBColor *>colors)
{
switch(corsair_v2_device_list[device_index]->protocol)
{
case CORSAIR_V2_TYPE_HW_TRIPLETS:
SetLedsDirectTriplets(colors);
break;
case CORSAIR_V2_TYPE_HW_COLOUR_BLOCK:
SetLedsDirectColourBlocks(colors);
break;
default:
LOG_ERROR("[%s] Error setting Direct mode: Device supportes returned %i", device_name.c_str(),
corsair_v2_device_list[device_index]->protocol);
break;
}
}
void CorsairPeripheralV2HWController::SetLedsDirectColourBlocks(std::vector<RGBColor *>colors)
{
uint16_t count = colors.size();
uint16_t green = count + CORSAIR_V2HW_DATA_OFFSET;
uint16_t blue = (count * 2) + CORSAIR_V2HW_DATA_OFFSET;
uint16_t length = (count * 3) + CORSAIR_V2HW_DATA_OFFSET;
uint8_t* buffer = new uint8_t[length];
memset(buffer, 0, length);
buffer[0] = CORSAIR_V2_MODE_DIRECT & 0xFF;
buffer[1] = CORSAIR_V2_MODE_DIRECT >> 8;
for(std::size_t i = 0; i < count; i++)
{
RGBColor color = *colors[i];
std::size_t idx = i + CORSAIR_V2HW_DATA_OFFSET;
buffer[idx] = RGBGetRValue(color);
buffer[idx + green] = RGBGetGValue(color);
buffer[idx + blue] = RGBGetBValue(color);
}
SetLEDs(buffer, length);
delete[] buffer;
}
void CorsairPeripheralV2HWController::SetLedsDirectTriplets(std::vector<RGBColor *>colors)
{
uint16_t count = colors.size();
uint16_t length = (count * 3) + CORSAIR_V2HW_DATA_OFFSET;
uint8_t* buffer = new uint8_t[length];
memset(buffer, 0, length);
buffer[0] = CORSAIR_V2_MODE_DIRECT & 0xFF;
buffer[1] = CORSAIR_V2_MODE_DIRECT >> 8;
for(std::size_t i = 0; i < count; i++)
{
RGBColor color = *colors[i];
std::size_t idx = (i * 3) + CORSAIR_V2HW_DATA_OFFSET;
buffer[idx] = RGBGetRValue(color);
buffer[idx + 1] = RGBGetGValue(color);
buffer[idx + 2] = RGBGetBValue(color);
}
SetLEDs(buffer, length);
delete[] buffer;
}
@@ -0,0 +1,32 @@
/*---------------------------------------------------------------------*\
| CorsairPeripheralV2HardwareController.h |
| |
| Driver for the newer Corsair peripherals that use the '08' |
| based USB protocol and support hardware lighting modes. |
| |
| Chris M (Dr_No) 07 Dec 2022 |
\*---------------------------------------------------------------------*/
#pragma once
#include "RGBController.h"
#include "CorsairPeripheralV2Controller.h"
#include <string>
#include <hidapi/hidapi.h>
#undef CORSAIR_V2_WRITE_SIZE
#define CORSAIR_V2_WRITE_SIZE 1025
#define CORSAIR_V2HW_DATA_OFFSET 2
class CorsairPeripheralV2HWController : public CorsairPeripheralV2Controller
{
public:
CorsairPeripheralV2HWController(hid_device* dev_handle, const char* path, std::string name, uint16_t pid);
~CorsairPeripheralV2HWController();
void SetLedsDirect(std::vector<RGBColor *> colors);
private:
void SetLedsDirectColourBlocks(std::vector<RGBColor *> colors);
void SetLedsDirectTriplets(std::vector<RGBColor *> colors);
};
@@ -0,0 +1,268 @@
/*---------------------------------------------------------------------*\
| RGBController_CorsairV2HardwareController.cpp |
| |
| Driver for the newer Corsair peripherals that use the '08' |
| based USB protocol and support hardware lighting modes. |
| |
| Chris M (Dr_No) 10 Dec 2022 |
\*---------------------------------------------------------------------*/
#include "LogManager.h"
#include "RGBController_CorsairV2Hardware.h"
using namespace std::chrono_literals;
/**------------------------------------------------------------------*\
@name Corsair Peripherals V2 Hardware
@category Keyboard
@type USB
@save :robot:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectCorsairV2HardwareControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_CorsairV2HW::RGBController_CorsairV2HW(CorsairPeripheralV2Controller *controller_ptr)
{
controller = controller_ptr;
const corsair_v2_device* corsair = controller->GetDeviceData();
vendor = "Corsair";
description = controller->GetName();
type = corsair->type;
version = controller->GetFirmwareString();
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = CORSAIR_V2_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Static;
Static.name = "Static";
Static.value = CORSAIR_V2_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Static.colors_min = 1;
Static.colors_max = 1;
Static.colors.resize(Static.colors_max);
Static.brightness_min = CORSAIR_V2_BRIGHTNESS_MIN;
Static.brightness_max = CORSAIR_V2_BRIGHTNESS_MAX;
Static.brightness = CORSAIR_V2_BRIGHTNESS_MAX;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
modes.push_back(Static);
SetupZones();
/*-----------------------------------------------------*\
| The Corsair K55 RGB PRO requires a packet within |
| 1 minutes of sending the lighting change in order |
| to not revert back into rainbow mode. Start a thread |
| to continuously send a keepalive packet every 50 sec |
\*-----------------------------------------------------*/
keepalive_thread_run = true;
keepalive_thread = new std::thread(&RGBController_CorsairV2HW::KeepaliveThread, this);
}
RGBController_CorsairV2HW::~RGBController_CorsairV2HW()
{
/*-----------------------------------------------------*\
| Close keepalive thread |
\*-----------------------------------------------------*/
keepalive_thread_run = false;
keepalive_thread->join();
delete keepalive_thread;
/*---------------------------------------------------------*\
| Delete the matrix map |
\*---------------------------------------------------------*/
for(unsigned int zone_index = 0; zone_index < zones.size(); zone_index++)
{
if(zones[zone_index].type == ZONE_TYPE_MATRIX)
{
delete zones[zone_index].matrix_map;
}
}
delete controller;
}
void RGBController_CorsairV2HW::SetupZones()
{
std::string physical_size;
KEYBOARD_LAYOUT new_layout;
unsigned int max_led_value = 0;
const corsair_v2_device* corsair = controller->GetDeviceData();
unsigned int layout = controller->GetKeyboardLayout();
switch(layout)
{
case CORSAIR_V2_KB_LAYOUT_ISO:
new_layout = KEYBOARD_LAYOUT_ISO_QWERTY;
break;
case CORSAIR_V2_KB_LAYOUT_JIS:
new_layout = KEYBOARD_LAYOUT_JIS;
break;
case CORSAIR_V2_KB_LAYOUT_ANSI:
case CORSAIR_V2_KB_LAYOUT_ABNT:
default:
new_layout = KEYBOARD_LAYOUT_ANSI_QWERTY;
break;
}
/*---------------------------------------------------------*\
| Fill in zones from the device data |
\*---------------------------------------------------------*/
for(size_t i = 0; i < CORSAIR_ZONES_MAX; i++)
{
if(corsair->zones[i] == NULL)
{
break;
}
else
{
zone new_zone;
new_zone.name = corsair->zones[i]->name;
new_zone.type = corsair->zones[i]->type;
if(new_zone.type == ZONE_TYPE_MATRIX)
{
KeyboardLayoutManager new_kb(new_layout, corsair->layout_new->base_size, corsair->layout_new->key_values);
matrix_map_type * new_map = new matrix_map_type;
new_zone.matrix_map = new_map;
new_map->height = corsair->zones[i]->rows;
new_map->width = corsair->zones[i]->cols;
new_map->map = new unsigned int[new_map->height * new_map->width];
if(corsair->layout_new->base_size != KEYBOARD_SIZE_EMPTY)
{
/*---------------------------------------------------------*\
| Minor adjustments to keyboard layout |
\*---------------------------------------------------------*/
new_zone.leds_count = new_kb.GetKeyCount();
keyboard_keymap_overlay_values* temp = corsair->layout_new;
new_kb.ChangeKeys(*temp);
/*---------------------------------------------------------*\
| 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);
/*---------------------------------------------------------*\
| Create LEDs for the Matrix zone |
| Place keys in the layout to populate the matrix |
\*---------------------------------------------------------*/
for(size_t led_idx = 0; led_idx < new_zone.leds_count; led_idx++)
{
led new_led;
new_led.name = new_kb.GetKeyNameAt(led_idx);
new_led.value = new_kb.GetKeyValueAt(led_idx);
max_led_value = std::max(max_led_value, new_led.value);
leds.push_back(new_led);
}
}
/*---------------------------------------------------------*\
| Add 1 the max_led_value to account for the 0th index |
\*---------------------------------------------------------*/
max_led_value++;
}
else
{
new_zone.leds_count = corsair->zones[i]->rows * corsair->zones[i]->cols;
new_zone.matrix_map = NULL;
/*---------------------------------------------------------*\
| Create LEDs for the Linear / Single zone |
\*---------------------------------------------------------*/
for(size_t led_idx = 0; led_idx < new_zone.leds_count; led_idx++)
{
led new_led;
new_led.name = new_zone.name + " ";
new_led.name.append(std::to_string( led_idx ));
new_led.value = leds.size();
leds.push_back(new_led);
}
max_led_value = std::max(max_led_value, (unsigned int)leds.size());
}
LOG_DEBUG("[%s] Creating a %s zone: %s with %d LEDs", name.c_str(),
((new_zone.type == ZONE_TYPE_MATRIX) ? "matrix": "linear"),
new_zone.name.c_str(), new_zone.leds_count);
new_zone.leds_min = new_zone.leds_count;
new_zone.leds_max = new_zone.leds_count;
zones.push_back(new_zone);
}
}
SetupColors();
/*---------------------------------------------------------*\
| Create a buffer map of pointers which contains the |
| layout order of colors the device expects. |
\*---------------------------------------------------------*/
for(size_t led_idx = 0; led_idx < max_led_value; led_idx++)
{
buffer_map.push_back(&null_color);
}
for(size_t led_idx = 0; led_idx < leds.size(); led_idx++)
{
buffer_map[leds[led_idx].value] = &colors[led_idx];
}
}
void RGBController_CorsairV2HW::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_CorsairV2HW::DeviceUpdateLEDs()
{
last_update_time = std::chrono::steady_clock::now();
controller->SetLedsDirect(buffer_map);
}
void RGBController_CorsairV2HW::UpdateZoneLEDs(int /*zone*/)
{
controller->SetLedsDirect(buffer_map);
}
void RGBController_CorsairV2HW::UpdateSingleLED(int /*led*/)
{
controller->SetLedsDirect(buffer_map);
}
void RGBController_CorsairV2HW::DeviceUpdateMode()
{
}
void RGBController_CorsairV2HW::KeepaliveThread()
{
while(keepalive_thread_run.load())
{
if(active_mode == 0)
{
if((std::chrono::steady_clock::now() - last_update_time) > std::chrono::milliseconds(50000))
{
DeviceUpdateLEDs();
}
}
std::this_thread::sleep_for(30000ms);
}
}
@@ -0,0 +1,42 @@
/*---------------------------------------------------------------------*\
| RGBController_CorsairV2HardwareController.h |
| |
| Driver for the newer Corsair peripherals that use the '08' |
| based USB protocol and support hardware lighting modes. |
| |
| Chris M (Dr_No) 10 Dec 2022 |
\*---------------------------------------------------------------------*/
#pragma once
#include "RGBController.h"
#include "CorsairPeripheralV2Controller.h"
#include "CorsairPeripheralV2HardwareController.h"
class RGBController_CorsairV2HW : public RGBController
{
public:
RGBController_CorsairV2HW(CorsairPeripheralV2Controller* controller_ptr);
~RGBController_CorsairV2HW();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode();
void KeepaliveThread();
private:
CorsairPeripheralV2Controller* controller;
RGBColor null_color = 0;
std::vector<RGBColor *> buffer_map;
std::thread* keepalive_thread;
std::atomic<bool> keepalive_thread_run;
std::chrono::time_point
<std::chrono::steady_clock> last_update_time;
};
@@ -13,7 +13,7 @@
using namespace std::chrono_literals;
/**------------------------------------------------------------------*\
@name Corsair K55 RGB Pro
@name Corsair Peripherals V2 Software
@category Keyboard
@type USB
@save :x:
@@ -35,7 +35,7 @@ RGBController_CorsairV2SW::RGBController_CorsairV2SW(CorsairPeripheralV2Controll
location = controller->GetDeviceLocation();
serial = controller->GetSerialString();
if(corsair->supports & CORSAIR_V2_MODE_SW)
if(corsair->protocol & CORSAIR_V2_TYPE_SW_COLOUR_BLOCK)
{
mode Direct;
Direct.name = "Direct";
@@ -43,10 +43,7 @@ RGBController_CorsairV2SW::RGBController_CorsairV2SW(CorsairPeripheralV2Controll
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
}
if(corsair->supports & CORSAIR_V2_MODE_HW)
{
mode Static;
Static.name = "Static";
Static.value = CORSAIR_V2_MODE_STATIC;
@@ -97,8 +94,28 @@ RGBController_CorsairV2SW::~RGBController_CorsairV2SW()
void RGBController_CorsairV2SW::SetupZones()
{
std::string physical_size;
KEYBOARD_LAYOUT new_layout;
unsigned int max_led_value = 0;
const corsair_v2_device* corsair = controller->GetDeviceData();
unsigned int layout = controller->GetKeyboardLayout();
switch(layout)
{
case CORSAIR_V2_KB_LAYOUT_ISO:
new_layout = KEYBOARD_LAYOUT_ISO_QWERTY;
break;
case CORSAIR_V2_KB_LAYOUT_JIS:
new_layout = KEYBOARD_LAYOUT_JIS;
break;
case CORSAIR_V2_KB_LAYOUT_ANSI:
case CORSAIR_V2_KB_LAYOUT_ABNT:
default:
new_layout = KEYBOARD_LAYOUT_ANSI_QWERTY;
break;
}
/*---------------------------------------------------------*\
| Fill in zones from the device data |
@@ -118,44 +135,45 @@ void RGBController_CorsairV2SW::SetupZones()
if(new_zone.type == ZONE_TYPE_MATRIX)
{
new_zone.leds_count = corsair->layout_size;
KeyboardLayoutManager new_kb(new_layout, corsair->layout_new->base_size, corsair->layout_new->key_values);
matrix_map_type * new_map = new matrix_map_type;
new_zone.matrix_map = new_map;
new_map->height = corsair->zones[i]->rows;
new_map->width = corsair->zones[i]->cols;
new_map->map = new unsigned int[new_map->height * new_map->width];
new_map->map = new unsigned int[new_map->height * new_map->width];
/*---------------------------------------------------------*\
| Create an empty matrix |
\*---------------------------------------------------------*/
for(unsigned int y = 0; y < new_map->height; y++)
if(corsair->layout_new->base_size != KEYBOARD_SIZE_EMPTY)
{
for(unsigned int x = 0; x < new_map->width; x++)
/*---------------------------------------------------------*\
| Minor adjustments to keyboard layout |
\*---------------------------------------------------------*/
new_zone.leds_count = new_kb.GetKeyCount();
keyboard_keymap_overlay_values* temp = corsair->layout_new;
new_kb.ChangeKeys(*temp);
/*---------------------------------------------------------*\
| 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);
/*---------------------------------------------------------*\
| Create LEDs for the Matrix zone |
| Place keys in the layout to populate the matrix |
\*---------------------------------------------------------*/
for(size_t led_idx = 0; led_idx < new_zone.leds_count; led_idx++)
{
new_map->map[(y * new_map->width) + x] = NA;
led new_led;
new_led.name = new_kb.GetKeyNameAt(led_idx);
new_led.value = new_kb.GetKeyValueAt(led_idx);
max_led_value = std::max(max_led_value, new_led.value);
leds.push_back(new_led);
}
}
/*---------------------------------------------------------*\
| Create LEDs for the Matrix zone |
| Place keys in the layout to populate the matrix |
\*---------------------------------------------------------*/
for(size_t led_idx = 0; led_idx < new_zone.leds_count; led_idx++)
{
led new_led;
new_led.name = corsair->layout[led_idx].name;
new_led.value = corsair->layout[led_idx].index;
max_led_value = std::max(max_led_value, new_led.value);
leds.push_back(new_led);
uint8_t layout_index = (corsair->layout[led_idx].row * new_map->width)
+ corsair->layout[led_idx].col;
new_map->map[layout_index] = led_idx;
}
/*---------------------------------------------------------*\
| Add 1 the max_led_value to account for the 0th index |
\*---------------------------------------------------------*/
@@ -249,6 +267,6 @@ void RGBController_CorsairV2SW::KeepaliveThread()
DeviceUpdateLEDs();
}
}
std::this_thread::sleep_for(3000ms);
std::this_thread::sleep_for(30000ms);
}
}
@@ -10,6 +10,7 @@
#include "RGBController.h"
#include "CorsairPeripheralV2Controller.h"
#include "CorsairPeripheralV2HardwareController.h"
#include "CorsairPeripheralV2SoftwareController.h"
class RGBController_CorsairV2SW : public RGBController
@@ -65,6 +65,16 @@ void DetectCorsairVengeanceControllers(std::vector<i2c_smbus_interface*> &busses
CorsairVengeanceController* new_controller = new CorsairVengeanceController(busses[bus], addr);
RGBController_CorsairVengeance* new_rgbcontroller = new RGBController_CorsairVengeance(new_controller);
ResourceManager::get()->RegisterRGBController(new_rgbcontroller);
}
}
for(unsigned char addr = 0x18; addr <= 0x1F; addr++)
{
if(TestForCorsairVengeanceController(busses[bus], addr))
{
CorsairVengeanceController* new_controller = new CorsairVengeanceController(busses[bus], addr);
RGBController_CorsairVengeance* new_rgbcontroller = new RGBController_CorsairVengeance(new_controller);
ResourceManager::get()->RegisterRGBController(new_rgbcontroller);
}
}
@@ -197,6 +197,7 @@ void RGBController_Crucial::DeviceUpdateMode()
if(modes[active_mode].value == 0xFFFF)
{
controller->SetMode(CRUCIAL_MODE_STATIC);
controller->SetAllColorsEffect(&colors[0]);
return;
}
@@ -0,0 +1,234 @@
/*---------------------------------------------------------*\
| Processing Code for Cryorig H7 Quad Lumi |
| |
| Adam Honse ([email protected]), 4/15/2023 |
\*---------------------------------------------------------*/
#include "CryorigH7QuadLumiController.h"
#include "LogManager.h"
#include <fstream>
#include <iostream>
#include <string>
#include <cstring>
CryorigH7QuadLumiController::CryorigH7QuadLumiController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
SendFirmwareRequest();
}
CryorigH7QuadLumiController::~CryorigH7QuadLumiController()
{
hid_close(dev);
}
std::string CryorigH7QuadLumiController::GetLocation()
{
return("HID: " + location);
}
std::string CryorigH7QuadLumiController::GetFirmwareVersion()
{
return(firmware_version);
}
std::string CryorigH7QuadLumiController::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
std::wstring return_wstring = serial_string;
std::string return_string(return_wstring.begin(), return_wstring.end());
return(return_string);
}
void CryorigH7QuadLumiController::SetChannelEffect
(
unsigned char channel,
unsigned char mode,
unsigned char speed,
bool direction,
RGBColor * colors,
unsigned int num_colors
)
{
unsigned char color_data[120];
/*-----------------------------------------------------*\
| If mode requires no colors, send packet |
\*-----------------------------------------------------*/
if(num_colors == 0)
{
/*-----------------------------------------------------*\
| Send mode without color data |
\*-----------------------------------------------------*/
SendPacket(channel, mode, direction, 0, speed, 0, NULL);
}
/*-----------------------------------------------------*\
| If mode requires indexed colors, send color index |
| packets for each mode color |
\*-----------------------------------------------------*/
else if(num_colors <= 8)
{
for(std::size_t color_idx = 0; color_idx < num_colors; color_idx++)
{
/*-----------------------------------------------------*\
| Fill in color data (5 entries per color) |
\*-----------------------------------------------------*/
for (std::size_t idx = 0; idx < 40; idx++)
{
int pixel_idx = idx * 3;
RGBColor color = colors[color_idx];
color_data[pixel_idx + 0x00] = RGBGetGValue(color);
color_data[pixel_idx + 0x01] = RGBGetRValue(color);
color_data[pixel_idx + 0x02] = RGBGetBValue(color);
}
/*-----------------------------------------------------*\
| Send mode and color data |
\*-----------------------------------------------------*/
SendPacket(channel, mode, direction, color_idx, speed, 5, &color_data[0]);
}
}
/*-----------------------------------------------------*\
| If mode requires per-LED colors, fill colors array |
\*-----------------------------------------------------*/
else
{
/*-----------------------------------------------------*\
| Fill in color data (up to 40 colors) |
\*-----------------------------------------------------*/
for (std::size_t idx = 0; idx < num_colors; idx++)
{
int pixel_idx = idx * 3;
RGBColor color = colors[idx];
color_data[pixel_idx + 0x00] = RGBGetGValue(color);
color_data[pixel_idx + 0x01] = RGBGetRValue(color);
color_data[pixel_idx + 0x02] = RGBGetBValue(color);
}
/*-----------------------------------------------------*\
| Send mode and color data |
\*-----------------------------------------------------*/
SendPacket(channel, mode, direction, 0, speed, num_colors, &color_data[0]);
}
}
void CryorigH7QuadLumiController::SetChannelLEDs
(
unsigned char channel,
RGBColor * colors,
unsigned int num_colors
)
{
unsigned char color_data[120];
/*-----------------------------------------------------*\
| Fill in color data (up to 40 colors) |
\*-----------------------------------------------------*/
for (std::size_t idx = 0; idx < num_colors; idx++)
{
int pixel_idx = idx * 3;
RGBColor color = colors[idx];
color_data[pixel_idx + 0x00] = RGBGetGValue(color);
color_data[pixel_idx + 0x01] = RGBGetRValue(color);
color_data[pixel_idx + 0x02] = RGBGetBValue(color);
}
/*-----------------------------------------------------*\
| Send color data |
\*-----------------------------------------------------*/
SendPacket(channel, CRYORIG_H7_QUAD_LUMI_MODE_FIXED, false, 0, 0, num_colors, &color_data[0]);
}
/*-------------------------------------------------------------------------------------------------*\
| Private packet sending functions. |
\*-------------------------------------------------------------------------------------------------*/
void CryorigH7QuadLumiController::SendPacket
(
unsigned char channel,
unsigned char mode,
bool direction,
unsigned char color_idx,
unsigned char speed,
unsigned char color_count,
unsigned char* color_data
)
{
unsigned char usb_buf[65];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up RGB packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x02;
usb_buf[0x01] = 0x4C;
/*-----------------------------------------------------*\
| Set channel and direction in RGB packet |
\*-----------------------------------------------------*/
usb_buf[0x02] = (channel + 1) | (direction ? (1 << 4) : 0);
/*-----------------------------------------------------*\
| Set mode in RGB packet |
\*-----------------------------------------------------*/
usb_buf[0x03] = mode;
/*-----------------------------------------------------*\
| Set color index and speed in RGB packet |
\*-----------------------------------------------------*/
usb_buf[0x04] = ( color_idx << 5 ) | speed;
/*-----------------------------------------------------*\
| Copy in color data bytes |
\*-----------------------------------------------------*/
memcpy(&usb_buf[0x05 + (channel * 15)], color_data, color_count * 3);
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_write(dev, usb_buf, 65);
}
void CryorigH7QuadLumiController::SendFirmwareRequest()
{
unsigned char usb_buf[17];
unsigned int ret_val = 0;
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Firmware Request packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x02;
usb_buf[0x01] = 0x5C;
hid_write(dev, usb_buf, 65);
/*-----------------------------------------------------*\
| Receive packets until 0x11 0x01 is received |
\*-----------------------------------------------------*/
do
{
ret_val = hid_read(dev, usb_buf, sizeof(usb_buf));
} while( (ret_val != 17) );
snprintf(firmware_version, 16, "%u.%u", usb_buf[0x0D], usb_buf[0x0E]);
}
@@ -0,0 +1,88 @@
/*---------------------------------------------------------*\
| Definitions for Cryorig H7 Quad Lumi |
| |
| Adam Honse ([email protected]), 4/15/2023 |
\*---------------------------------------------------------*/
#include "RGBController.h"
#include <string>
#include <vector>
#include <hidapi/hidapi.h>
#pragma once
enum
{
CRYORIG_H7_QUAD_LUMI_CHANNEL_ALL = 0x00, /* All channels */
CRYORIG_H7_QUAD_LUMI_CHANNEL_1 = 0x01, /* Channel 1 */
CRYORIG_H7_QUAD_LUMI_CHANNEL_2 = 0x02, /* Channel 2 */
CRYORIG_H7_QUAD_LUMI_NUM_CHANNELS = 0x02 /* Number of channels */
};
enum
{
CRYORIG_H7_QUAD_LUMI_SPEED_SLOWEST = 0x00, /* Slowest speed */
CRYORIG_H7_QUAD_LUMI_SPEED_SLOW = 0x01, /* Slow speed */
CRYORIG_H7_QUAD_LUMI_SPEED_NORMAL = 0x02, /* Normal speed */
CRYORIG_H7_QUAD_LUMI_SPEED_FAST = 0x03, /* Fast speed */
CRYORIG_H7_QUAD_LUMI_SPEED_FASTEST = 0x04, /* Fastest speed */
};
enum
{
CRYORIG_H7_QUAD_LUMI_MODE_FIXED = 0x00, /* Fixed colors mode */
CRYORIG_H7_QUAD_LUMI_MODE_FADING = 0x01, /* Fading mode */
CRYORIG_H7_QUAD_LUMI_MODE_SPECTRUM = 0x02, /* Spectrum cycle mode */
CRYORIG_H7_QUAD_LUMI_MODE_MARQUEE = 0x03, /* Marquee mode */
CRYORIG_H7_QUAD_LUMI_MODE_COVER_MARQUEE = 0x04, /* Cover marquee mode */
CRYORIG_H7_QUAD_LUMI_MODE_ALTERNATING = 0x05, /* Alternating mode */
CRYORIG_H7_QUAD_LUMI_MODE_BREATHING = 0x06, /* Breathing mode */
CRYORIG_H7_QUAD_LUMI_MODE_PULSING = 0x07, /* Pulsing mode */
};
class CryorigH7QuadLumiController
{
public:
CryorigH7QuadLumiController(hid_device* dev_handle, const char* path);
~CryorigH7QuadLumiController();
std::string GetFirmwareVersion();
std::string GetLocation();
std::string GetSerialString();
void SetChannelEffect
(
unsigned char channel,
unsigned char mode,
unsigned char speed,
bool direction,
RGBColor * colors,
unsigned int num_colors
);
void SetChannelLEDs
(
unsigned char channel,
RGBColor * colors,
unsigned int num_colors
);
private:
hid_device* dev;
char firmware_version[16];
std::string location;
void SendPacket
(
unsigned char channel,
unsigned char mode,
bool direction,
unsigned char color_idx,
unsigned char speed,
unsigned char color_count,
unsigned char* color_data
);
void SendFirmwareRequest();
};
@@ -0,0 +1,27 @@
#include "Detector.h"
#include "CryorigH7QuadLumiController.h"
#include "RGBController.h"
#include "RGBController_CryorigH7QuadLumi.h"
#include <hidapi/hidapi.h>
/*-----------------------------------------------------*\
| CRYORIG/NZXT USB IDs |
\*-----------------------------------------------------*/
#define NZXT_VID 0x1E71
#define CRYORIG_H7_QUAD_LUMI_PID 0x1712
static void DetectCryorigH7QuadLumi(hid_device_info* info, const std::string& name)
{
hid_device* dev = hid_open_path(info->path);
if(dev)
{
CryorigH7QuadLumiController* controller = new CryorigH7QuadLumiController(dev, info->path);
RGBController_CryorigH7QuadLumi* rgb_controller = new RGBController_CryorigH7QuadLumi(controller);
rgb_controller->name = name;
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
REGISTER_HID_DETECTOR("CRYORIG H7 Quad Lumi", DetectCryorigH7QuadLumi, NZXT_VID, CRYORIG_H7_QUAD_LUMI_PID);
@@ -0,0 +1,247 @@
/*-----------------------------------------*\
| RGBController_CryorigH7QuadLumi.cpp |
| |
| Generic RGB Interface for Cryorig H7 |
| Quad Lumi |
| |
| Adam Honse (CalcProgrammer1) 4/15/2023 |
\*-----------------------------------------*/
#include "RGBController_CryorigH7QuadLumi.h"
/**------------------------------------------------------------------*\
@name Cryorig H7 Quad Lumi
@category Cooler
@type USB
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectCryorigH7QuadLumi
@comment
\*-------------------------------------------------------------------*/
RGBController_CryorigH7QuadLumi::RGBController_CryorigH7QuadLumi(CryorigH7QuadLumiController* controller_ptr)
{
controller = controller_ptr;
name = "CRYORIG H7 Quad Lumi";
vendor = "CRYORIG";
type = DEVICE_TYPE_COOLER;
description = "CRYORIG H7 Quad Lumi Device";
version = controller->GetFirmwareVersion();
location = controller->GetLocation();
serial = controller->GetSerialString();
mode Direct;
Direct.name = "Direct";
Direct.value = CRYORIG_H7_QUAD_LUMI_MODE_FIXED;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Fading;
Fading.name = "Fading";
Fading.value = CRYORIG_H7_QUAD_LUMI_MODE_FADING;
Fading.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Fading.speed_min = CRYORIG_H7_QUAD_LUMI_SPEED_SLOWEST;
Fading.speed_max = CRYORIG_H7_QUAD_LUMI_SPEED_FASTEST;
Fading.colors_min = 1;
Fading.colors_max = 8;
Fading.speed = CRYORIG_H7_QUAD_LUMI_SPEED_NORMAL;
Fading.color_mode = MODE_COLORS_MODE_SPECIFIC;
Fading.colors.resize(2);
modes.push_back(Fading);
mode SpectrumCycle;
SpectrumCycle.name = "Rainbow Wave";
SpectrumCycle.value = CRYORIG_H7_QUAD_LUMI_MODE_SPECTRUM;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
SpectrumCycle.speed_min = CRYORIG_H7_QUAD_LUMI_SPEED_SLOWEST;
SpectrumCycle.speed_max = CRYORIG_H7_QUAD_LUMI_SPEED_FASTEST;
SpectrumCycle.speed = CRYORIG_H7_QUAD_LUMI_SPEED_NORMAL;
SpectrumCycle.direction = MODE_DIRECTION_RIGHT;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
mode Marquee;
Marquee.name = "Marquee";
Marquee.value = CRYORIG_H7_QUAD_LUMI_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Marquee.speed_min = CRYORIG_H7_QUAD_LUMI_SPEED_SLOWEST;
Marquee.speed_max = CRYORIG_H7_QUAD_LUMI_SPEED_FASTEST;
Marquee.colors_min = 1;
Marquee.colors_max = 1;
Marquee.speed = CRYORIG_H7_QUAD_LUMI_SPEED_NORMAL;
Marquee.direction = MODE_DIRECTION_RIGHT;
Marquee.color_mode = MODE_COLORS_MODE_SPECIFIC;
Marquee.colors.resize(1);
modes.push_back(Marquee);
mode CoverMarquee;
CoverMarquee.name = "Cover Marquee";
CoverMarquee.value = CRYORIG_H7_QUAD_LUMI_MODE_COVER_MARQUEE;
CoverMarquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
CoverMarquee.speed_min = CRYORIG_H7_QUAD_LUMI_SPEED_SLOWEST;
CoverMarquee.speed_max = CRYORIG_H7_QUAD_LUMI_SPEED_FASTEST;
CoverMarquee.colors_min = 1;
CoverMarquee.colors_max = 8;
CoverMarquee.speed = CRYORIG_H7_QUAD_LUMI_SPEED_NORMAL;
CoverMarquee.direction = MODE_DIRECTION_RIGHT;
CoverMarquee.color_mode = MODE_COLORS_MODE_SPECIFIC;
CoverMarquee.colors.resize(2);
modes.push_back(CoverMarquee);
mode Alternating;
Alternating.name = "Alternating";
Alternating.value = CRYORIG_H7_QUAD_LUMI_MODE_ALTERNATING;
Alternating.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Alternating.speed_min = CRYORIG_H7_QUAD_LUMI_SPEED_SLOWEST;
Alternating.speed_max = CRYORIG_H7_QUAD_LUMI_SPEED_FASTEST;
Alternating.colors_min = 1;
Alternating.colors_max = 2;
Alternating.speed = CRYORIG_H7_QUAD_LUMI_SPEED_NORMAL;
Alternating.direction = MODE_DIRECTION_RIGHT;
Alternating.color_mode = MODE_COLORS_MODE_SPECIFIC;
Alternating.colors.resize(2);
modes.push_back(Alternating);
mode Pulsing;
Pulsing.name = "Pulsing";
Pulsing.value = CRYORIG_H7_QUAD_LUMI_MODE_PULSING;
Pulsing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Pulsing.speed_min = CRYORIG_H7_QUAD_LUMI_SPEED_SLOWEST;
Pulsing.speed_max = CRYORIG_H7_QUAD_LUMI_SPEED_FASTEST;
Pulsing.colors_min = 1;
Pulsing.colors_max = 8;
Pulsing.speed = CRYORIG_H7_QUAD_LUMI_SPEED_NORMAL;
Pulsing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Pulsing.colors.resize(2) ;
modes.push_back(Pulsing);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = CRYORIG_H7_QUAD_LUMI_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.speed_min = CRYORIG_H7_QUAD_LUMI_SPEED_SLOWEST;
Breathing.speed_max = CRYORIG_H7_QUAD_LUMI_SPEED_FASTEST;
Breathing.colors_min = 1;
Breathing.colors_max = 8;
Breathing.speed = CRYORIG_H7_QUAD_LUMI_SPEED_NORMAL;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(2);
modes.push_back(Breathing);
SetupZones();
}
RGBController_CryorigH7QuadLumi::~RGBController_CryorigH7QuadLumi()
{
delete controller;
}
void RGBController_CryorigH7QuadLumi::SetupZones()
{
const char* zone_names[] = { "Logo", "Underglow" };
/*-------------------------------------------------*\
| Set up zones |
\*-------------------------------------------------*/
for(unsigned int zone_idx = 0; zone_idx < 2; zone_idx++)
{
zone* new_zone = new zone;
new_zone->name = zone_names[zone_idx];
new_zone->type = ZONE_TYPE_LINEAR;
new_zone->leds_min = 5;
new_zone->leds_max = 5;
new_zone->leds_count = 5;
new_zone->matrix_map = NULL;
zones.push_back(*new_zone);
}
/*-------------------------------------------------*\
| Set up LEDs |
\*-------------------------------------------------*/
for(unsigned int zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
for(unsigned int led_idx = 0; led_idx < zones[zone_idx].leds_count; led_idx++)
{
led new_led;
new_led.name = zone_names[zone_idx];
new_led.name.append(", LED ");
new_led.name.append(std::to_string(led_idx + 1));
new_led.value = zone_idx;
leds.push_back(new_led);
}
}
SetupColors();
}
void RGBController_CryorigH7QuadLumi::ResizeZone(int /*zone*/, int /*new_size*/)
{
}
void RGBController_CryorigH7QuadLumi::DeviceUpdateLEDs()
{
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
controller->SetChannelLEDs(zone_idx, zones[zone_idx].colors, zones[zone_idx].leds_count);
}
}
void RGBController_CryorigH7QuadLumi::UpdateZoneLEDs(int zone)
{
controller->SetChannelLEDs(zone, zones[zone].colors, zones[zone].leds_count);
}
void RGBController_CryorigH7QuadLumi::UpdateSingleLED(int led)
{
unsigned int zone_idx = leds[led].value;
controller->SetChannelLEDs(zone_idx, zones[zone_idx].colors, zones[zone_idx].leds_count);
}
void RGBController_CryorigH7QuadLumi::SetCustomMode()
{
active_mode = 0;
}
void RGBController_CryorigH7QuadLumi::DeviceUpdateMode()
{
if(modes[active_mode].value == CRYORIG_H7_QUAD_LUMI_MODE_FIXED)
{
DeviceUpdateLEDs();
}
else
{
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
RGBColor* colors = NULL;
bool direction = false;
if(modes[active_mode].direction == MODE_DIRECTION_LEFT)
{
direction = true;
}
if(modes[active_mode].colors.size() > 0)
{
colors = &modes[active_mode].colors[0];
}
controller->SetChannelEffect
(
zone_idx,
modes[active_mode].value,
modes[active_mode].speed,
direction,
colors,
modes[active_mode].colors.size()
);
}
}
}
@@ -0,0 +1,35 @@
/*-----------------------------------------*\
| RGBController_CryorigH7QuadLumi.h |
| |
| Generic RGB Interface for Cryorig H7 |
| Quad Lumi |
| |
| Adam Honse (CalcProgrammer1) 4/15/2023 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "CryorigH7QuadLumiController.h"
class RGBController_CryorigH7QuadLumi : public RGBController
{
public:
RGBController_CryorigH7QuadLumi(CryorigH7QuadLumiController* controller_ptr);
~RGBController_CryorigH7QuadLumi();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void DeviceUpdateMode();
private:
CryorigH7QuadLumiController* controller;
std::vector<unsigned int> leds_channel;
std::vector<unsigned int> zones_channel;
};
@@ -0,0 +1,142 @@
#include "Detector.h"
#include "RGBController.h"
#include "RGBController_DMX.h"
#include "SettingsManager.h"
#include <vector>
#include <stdio.h>
#include <stdlib.h>
#include <fcntl.h>
#include <string.h>
#include <fstream>
#include <iostream>
#include <string>
/******************************************************************************************\
* *
* DetectDMXControllers *
* *
* Detect devices supported by the DMX driver *
* *
\******************************************************************************************/
void DetectDMXControllers()
{
json dmx_settings;
std::vector<std::vector<DMXDevice>> device_lists;
DMXDevice dev;
/*-------------------------------------------------*\
| Get DMX settings from settings manager |
\*-------------------------------------------------*/
dmx_settings = ResourceManager::get()->GetSettingsManager()->GetSettings("DMXDevices");
/*-------------------------------------------------*\
| If the DMX settings contains devices, process |
\*-------------------------------------------------*/
if(dmx_settings.contains("devices"))
{
for(unsigned int device_idx = 0; device_idx < dmx_settings["devices"].size(); device_idx++)
{
/*-------------------------------------------------*\
| Clear DMX device data |
\*-------------------------------------------------*/
dev.name = "";
dev.keepalive_time = 0;
if(dmx_settings["devices"][device_idx].contains("name"))
{
dev.name = dmx_settings["devices"][device_idx]["name"];
}
if(dmx_settings["devices"][device_idx].contains("port"))
{
dev.port = dmx_settings["devices"][device_idx]["port"];
}
if(dmx_settings["devices"][device_idx].contains("keepalive_time"))
{
dev.keepalive_time = dmx_settings["devices"][device_idx]["keepalive_time"];
}
if(dmx_settings["devices"][device_idx].contains("red_channel"))
{
dev.red_channel = dmx_settings["devices"][device_idx]["red_channel"];
}
if(dmx_settings["devices"][device_idx].contains("green_channel"))
{
dev.green_channel = dmx_settings["devices"][device_idx]["green_channel"];
}
if(dmx_settings["devices"][device_idx].contains("blue_channel"))
{
dev.blue_channel = dmx_settings["devices"][device_idx]["blue_channel"];
}
if(dmx_settings["devices"][device_idx].contains("brightness_channel"))
{
dev.brightness_channel = dmx_settings["devices"][device_idx]["brightness_channel"];
}
/*---------------------------------------------------------*\
| Determine whether to create a new list or add this device |
| to an existing list. A device is added to an existing |
| list if both devices share one or more universes for the |
| same output destination |
\*---------------------------------------------------------*/
bool device_added_to_existing_list = false;
/*---------------------------------------------------------*\
| Track grouping for all controllers. |
\*---------------------------------------------------------*/
for(unsigned int list_idx = 0; list_idx < device_lists.size(); list_idx++)
{
for(unsigned int device_idx = 0; device_idx < device_lists[list_idx].size(); device_idx++)
{
/*---------------------------------------------------------*\
| Check if the port used by this new device is the same as |
| in the existing device. If so, add the new device to the |
| existing list. |
\*---------------------------------------------------------*/
if(1)
{
device_lists[list_idx].push_back(dev);
device_added_to_existing_list = true;
break;
}
}
if(device_added_to_existing_list)
{
break;
}
}
/*---------------------------------------------------------*\
| If the device did not overlap with existing devices, |
| create a new list for it |
\*---------------------------------------------------------*/
if(!device_added_to_existing_list)
{
std::vector<DMXDevice> new_list;
new_list.push_back(dev);
device_lists.push_back(new_list);
}
}
for(unsigned int list_idx = 0; list_idx < device_lists.size(); list_idx++)
{
RGBController_DMX* rgb_controller;
rgb_controller = new RGBController_DMX(device_lists[list_idx]);
ResourceManager::get()->RegisterRGBController(rgb_controller);
}
}
} /* DetectDMXControllers() */
REGISTER_DETECTOR("DMX", DetectDMXControllers);
@@ -0,0 +1,231 @@
/*-----------------------------------------*\
| RGBController_DMX.cpp |
| |
| Generic RGB Interface for OpenAuraSDK |
| DMX interface |
| |
| Adam Honse (CalcProgrammer1) 4/30/2023 |
\*-----------------------------------------*/
#include "RGBController_DMX.h"
#include <math.h>
#include "LogManager.h"
using namespace std::chrono_literals;
/**------------------------------------------------------------------*\
@name DMX Devices
@category LEDStrip
@type Serial
@save :x:
@direct :white_check_mark:
@effects :x:
@detectors DetectDMXControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_DMX::RGBController_DMX(std::vector<DMXDevice> device_list)
{
devices = device_list;
name = "DMX Device Group";
type = DEVICE_TYPE_LEDSTRIP;
description = "DMX Device";
location = "DMX: " + devices[0].port;
/*-----------------------------------------*\
| If this controller only represents a |
| single device, use the device name for the|
| controller name |
\*-----------------------------------------*/
if(devices.size() == 1)
{
name = devices[0].name;
}
/*-----------------------------------------*\
| Open OpenDMX port |
\*-----------------------------------------*/
port = new serial_port(devices[0].port.c_str(), 250000, SERIAL_PORT_PARITY_NONE, SERIAL_PORT_SIZE_8, SERIAL_PORT_STOP_BITS_2, false);
/*-----------------------------------------*\
| Clear the RTS signal, which enables the |
| OpenDMX RS-485 drive enable |
\*-----------------------------------------*/
port->serial_set_rts(false);
/*-----------------------------------------*\
| Set up modes |
\*-----------------------------------------*/
mode Direct;
Direct.name = "Direct";
Direct.value = 0;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Direct.color_mode = MODE_COLORS_PER_LED;
Direct.brightness = 255;
Direct.brightness_min = 0;
Direct.brightness_max = 255;
modes.push_back(Direct);
keepalive_delay = 0ms;
SetupZones();
for (std::size_t device_idx = 0; device_idx < devices.size(); device_idx++)
{
/*-----------------------------------------*\
| Update keepalive delay |
\*-----------------------------------------*/
if(devices[device_idx].keepalive_time > 0)
{
if(keepalive_delay.count() == 0 || keepalive_delay.count() > devices[device_idx].keepalive_time)
{
keepalive_delay = std::chrono::milliseconds(devices[device_idx].keepalive_time);
}
}
}
if(keepalive_delay.count() > 0)
{
keepalive_thread_run = 1;
keepalive_thread = new std::thread(&RGBController_DMX::KeepaliveThreadFunction, this);
}
else
{
keepalive_thread_run = 0;
keepalive_thread = nullptr;
}
}
RGBController_DMX::~RGBController_DMX()
{
if(keepalive_thread != nullptr)
{
keepalive_thread_run = 0;
keepalive_thread->join();
delete keepalive_thread;
}
/*---------------------------------------------------------*\
| Delete the matrix map |
\*---------------------------------------------------------*/
for(unsigned int zone_index = 0; zone_index < zones.size(); zone_index++)
{
if(zones[zone_index].matrix_map != NULL)
{
if(zones[zone_index].matrix_map->map != NULL)
{
delete zones[zone_index].matrix_map->map;
}
delete zones[zone_index].matrix_map;
}
}
}
void RGBController_DMX::SetupZones()
{
/*-----------------------------------------*\
| Add Zones |
\*-----------------------------------------*/
for(std::size_t zone_idx = 0; zone_idx < devices.size(); zone_idx++)
{
zone led_zone;
led_zone.name = devices[zone_idx].name;
led_zone.type = ZONE_TYPE_SINGLE;
led_zone.leds_min = 1;
led_zone.leds_max = 1;
led_zone.leds_count = 1;
led_zone.matrix_map = NULL;
zones.push_back(led_zone);
}
/*-----------------------------------------*\
| Add LEDs |
\*-----------------------------------------*/
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
for(std::size_t led_idx = 0; led_idx < zones[zone_idx].leds_count; led_idx++)
{
led new_led;
new_led.name = zones[zone_idx].name + " LED ";
new_led.name.append(std::to_string(led_idx));
leds.push_back(new_led);
}
}
SetupColors();
}
void RGBController_DMX::ResizeZone(int /*zone*/, int /*new_size*/)
{
/*---------------------------------------------------------*\
| This device does not support resizing zones |
\*---------------------------------------------------------*/
}
void RGBController_DMX::DeviceUpdateLEDs()
{
last_update_time = std::chrono::steady_clock::now();
unsigned char dmx_data[513];
memset(dmx_data, 0, sizeof(dmx_data));
for(unsigned int device_idx = 0; device_idx < devices.size(); device_idx++)
{
if(devices[device_idx].brightness_channel > 0)
{
dmx_data[devices[device_idx].brightness_channel] = modes[0].brightness;
}
if(devices[device_idx].red_channel > 0)
{
dmx_data[devices[device_idx].red_channel] = RGBGetRValue(colors[device_idx]);
}
if(devices[device_idx].green_channel > 0)
{
dmx_data[devices[device_idx].green_channel] = RGBGetGValue(colors[device_idx]);
}
if(devices[device_idx].blue_channel > 0)
{
dmx_data[devices[device_idx].blue_channel] = RGBGetBValue(colors[device_idx]);
}
}
port->serial_break();
port->serial_write((char*)&dmx_data, sizeof(dmx_data));
}
void RGBController_DMX::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_DMX::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_DMX::DeviceUpdateMode()
{
}
void RGBController_DMX::KeepaliveThreadFunction()
{
while(keepalive_thread_run.load())
{
if((std::chrono::steady_clock::now() - last_update_time) > ( keepalive_delay * 0.95f ) )
{
UpdateLEDs();
}
std::this_thread::sleep_for(keepalive_delay / 2);
}
}
@@ -0,0 +1,52 @@
/*-----------------------------------------*\
| RGBController_DMX.h |
| |
| Generic RGB Interface for OpenAuraSDK |
| DMX interface |
| |
| Adam Honse (CalcProgrammer1) 4/30/2023 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "serial_port.h"
#include <chrono>
#include <thread>
struct DMXDevice
{
std::string name;
std::string port;
unsigned int keepalive_time;
unsigned int red_channel;
unsigned int green_channel;
unsigned int blue_channel;
unsigned int brightness_channel;
};
class RGBController_DMX : public RGBController
{
public:
RGBController_DMX(std::vector<DMXDevice> device_list);
~RGBController_DMX();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode();
void KeepaliveThreadFunction();
private:
std::vector<DMXDevice> devices;
serial_port * port;
std::thread * keepalive_thread;
std::atomic<bool> keepalive_thread_run;
std::chrono::milliseconds keepalive_delay;
std::chrono::time_point<std::chrono::steady_clock> last_update_time;
};
@@ -14,6 +14,7 @@
\*-----------------------------------------------------*/
#define DAS_KEYBOARD_Q4_PID 0x2037
#define DAS_KEYBOARD_Q5_PID 0x2020
#define DAS_KEYBOARD_Q5S_PID 0x209A
/******************************************************************************************\
* *
@@ -32,7 +33,8 @@ void DetectDasKeyboardControllers(hid_device_info *info_in, const std::string &n
{
if(info->vendor_id == DAS_KEYBOARD_VID &&
(info->product_id == DAS_KEYBOARD_Q4_PID ||
info->product_id == DAS_KEYBOARD_Q5_PID) &&
info->product_id == DAS_KEYBOARD_Q5_PID ||
info->product_id == DAS_KEYBOARD_Q5S_PID) &&
info->interface_number == 1)
{
break;
@@ -89,5 +91,6 @@ void DetectDas4QKeyboard(hid_device_info *info, const std::string &name)
}
} /* DetectDas4QKeyboard() */
REGISTER_HID_DETECTOR_IPU("Das Keyboard Q4 RGB", DetectDas4QKeyboard, DAS_KEYBOARD_VID, DAS_KEYBOARD_Q4_PID, 1, 0x01, 0x80);
REGISTER_HID_DETECTOR_I ("Das Keyboard Q5 RGB", DetectDasKeyboardControllers, DAS_KEYBOARD_VID, DAS_KEYBOARD_Q5_PID, 1);
REGISTER_HID_DETECTOR_IPU("Das Keyboard Q4 RGB", DetectDas4QKeyboard, DAS_KEYBOARD_VID, DAS_KEYBOARD_Q4_PID, 1, 0x01, 0x80);
REGISTER_HID_DETECTOR_I ("Das Keyboard Q5 RGB", DetectDasKeyboardControllers, DAS_KEYBOARD_VID, DAS_KEYBOARD_Q5_PID, 1);
REGISTER_HID_DETECTOR_I ("Das Keyboard Q5S RGB", DetectDasKeyboardControllers, DAS_KEYBOARD_VID, DAS_KEYBOARD_Q5S_PID, 1);

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