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Author SHA1 Message Date
SalastilandClaude Opus 5 f888b1ddbc Fix Corsair K70 RGB PRO V2 direct lighting
The K70 RGB PRO V2 (1B1C:1BB3) was detected but never lit: it blanked
into software render mode and then fell back to its onboard effect.
Getting it working turned up five faults, three of which affect every
Corsair V2 device rather than just this keyboard.

Packet size is now read from the HID report descriptor before the first
write instead of being inferred from a reply. These devices come in a 64
byte and a 1024 byte flavour, and sending a short packet to a 1024 byte
endpoint stalls it until the device is power cycled, so the size has to
be known up front rather than after two short queries have gone out.

CORSAIR_V2_PACKET_SIZE was 1024 while pkt_sze reached 1025, so every
read using pkt_sze overran its stack buffer by a byte. The command
helpers now use pkt_sze against buffers of the corrected size.

The lighting resource probe ran before the device was placed in software
render mode, where the answer is meaningless, and treated any error as
"use resource 1". Devices that answer invalid or unsupported for
resource 1 want the alternate lighting resource, which takes RGB
triplets; this keyboard is one of them. The probe now runs after the
render mode switch and distinguishes a stale open handle from an
unsupported resource.

Direct lighting writes were sized from the keymap, which covers only the
keys that exist. The hardware expects its full slot count and ignores a
short write, so corsair_v2_device carries an optional hw_led_count and
the buffer map is padded to it. Set to 193 for this keyboard.

The keepalive thread wrote LEDs on its first pass, because
last_update_time was left at the clock epoch and so always read as older
than the update period. That raced detection on the same HID handle with
no locking, which both corrupted the transaction and could abort the
process. The clock is now started before the thread runs, device
transactions are serialised behind a mutex, and the thread is stopped
before Shutdown rather than after.

Also fixes an uninitialised stack buffer sent to the device during
setup, and widens the K70 RGB PRO matrix to 22 columns so the numpad
period key has a position in the layout instead of being dropped.

Verified on hardware: repeated colour changes apply and the device stays
responsive across runs.

Co-Authored-By: Claude Opus 5 <[email protected]>
2026-09-21 21:08:51 -04:00
Alzeroff-The-Allfather f03b3472ea Add Corsair K60 RGB PRO SE support 2026-09-21 12:01:20 -05:00
Kamil Rojewski 3e53302613 Apply active profile plugin data when the GUI loads its plugins 2026-09-21 07:20:47 -05:00
Kamil Rojewski 30043e3835 Do not clear the active profile when a profile cannot be read 2026-09-21 07:20:14 +02:00
André Schwarz ce3ee27d8e Renaming PAGE_SIZE in LogitechHIDPP20Controller.cpp 2026-09-20 23:20:08 -05:00
Dmitry Kychanov 0873907793 Fix potential race condition in log message 2026-09-21 03:26:28 +04:00
rom4ster 5303e29628 Remove Debug and Extra Line 2026-09-20 15:33:55 -05:00
rom4ster ffcf003c37 Add Support for Razer Naga V3 Pro 2026-09-20 15:33:54 -05:00
ubelhj f7e0e3d77b Add MSI PRO B850-S WIFI6E to supported devices 2026-09-20 12:45:15 -05:00
Adam Honse cb0052c761 Add a mutex to protect against concurrent saving of configuration file that could result in corruption of the file 2026-09-19 15:18:47 -05:00
Jan Dvořák e075870853 Improve Intel GPU I2C bus detection 2026-09-19 14:36:31 -05:00
Victor Ferreira 4cf5fe9346 Correct the swapped brightness and speed comments
Measured on an ASRock Intel Arc B580 Steel Legend, which uses this same
packet: holding everything else fixed and stepping data[5] through 0xFF,
0x40 and 0x00 dims the zone progressively and turns it off at zero, while
data[4] does not change brightness.  So data[4] is the effect speed and
data[5] is the brightness, the other way around from what the comments
said.  The bytes written are unchanged, this only fixes the labels.
2026-09-19 14:35:25 -05:00
Victor Ferreira eb5d88537d Call Shutdown() in the ASRock GPU controller destructor
Every other ASRock controller shuts the device thread down before deleting
the controller.  This one did not, so tearing it down logs

  Device thread still active in base class destructor, ensure Shutdown()
  was called from inherited destructor

on every exit.  Seen on an ASRock Intel Arc B580 Steel Legend, but the file
is shared with the Radeon Steel Legend and Taichi cards.
2026-09-19 14:35:25 -05:00
Adam Honse d5e0c94fdc Fix LED view hiding if a device supports per-zone modes and a zone is selected that is following device mode while the device mode is per-LED 2026-09-19 14:23:37 -05:00
Petre cd44e41d46 [New Device] Gigabyte GeForce RTX 4070 SUPER Eagle OC (non-ICE) 2026-09-18 14:02:43 -05:00
epicchillman 0129e58f53 Add support for MSI PRO B850M-A WIFI motherboard 2026-09-18 01:04:25 -07:00
Adam Honse 0adfde971b Update PalitGPUControllerDetect to filter for port ID 1 (the NVIDIA OEM bus) and re-add the PALIT string check in addition to the Gainward i2c_smbus_write_quick check for V1 controllers 2026-09-18 00:47:41 -05:00
Adam Honse 27a93edec5 Add second ID for PNY RTX 5070TI ARGB Epic-X OC 2026-09-18 00:38:50 -05:00
Adam Honse 65e04a5332 Fix crash in MSI 185 controller when board config is null, fixes #5869 2026-09-18 00:24:19 -05:00
Eder Sánchez ec5ff26eda Migrate pre-1.0 AutoStart and UserInterface settings 2026-09-18 00:08:10 -05:00
Prasad Patole 51398fd6c5 Added Support for ASRock RX 9070 XT Steel Legend Dark (0x5414) 2026-09-17 23:45:02 -05:00
Adam Honse 9a6cfaf021 Add visible field to schema for hiding entries from the UI. Use it to hide the no show dialog hashes 2026-09-17 20:39:33 -05:00
Adam Honse 0a201edbc1 Fix a null pointer dereference in SendReply_PluginList 2026-09-17 16:48:41 -05:00
Adam Honse 83ea112603 Update drivers settings defaults 2026-09-16 12:04:43 -05:00
DJMalachite 2c37d4eebb [Quadcast 2 S] Edit RGBController_HyperXMicrophoneV2.cpp to fix reversed matrix map 2026-09-16 07:43:17 -05:00
Matthew Uniack 08a9f83ff4 Add PID for Corsair Sabre RGB Optical mouse (0x1B32) 2026-09-15 12:07:28 -05:00
Nicolas Wendling 1cee73e125 Add alternate subsystem device ID for Sapphire Radeon RX 9070 XT Nitro+ 2026-09-15 12:02:24 -05:00
Yoann Laissus 6f027de52b Fix layout on Gigabyte RTX 5090 XTREME WATERFORCE non WB version 2026-09-15 11:59:50 -05:00
Daniel Clark 94e7b03a50 update the led10 and led 11 zone count routine to handle new cases. 2026-09-15 11:41:11 -05:00
Adam Honse ec13cda548 Correct rc names and mark as development in AppStream manifest 2026-09-15 11:33:31 -05:00
Adam Honse de580d736c Clean up unnecessary and broken Debian dependencies 2026-09-15 11:31:50 -05:00
Adam Honse d42ed48ae1 Always reply to plugin list even if plugin manager is null 2026-09-15 11:29:32 -05:00
Adam Honse 384e1faa56 Change suffix back to git after 1.0 release 2026-09-14 17:28:04 -05:00
Adam Honse 81bbe18a84 OpenRGB version 1.0 2026-09-11 18:06:58 -05:00
Adam Honse 8eb30ba840 Fix warnings in RGBController_PalitGPUv2 2026-09-11 18:02:20 -05:00
Adam Honse f01ab516df Filter out i2c entries that are non-numeric, my PC has a /sys/bus/i2c/devices/i2c-ITE8800:00 that was failing 2026-09-11 17:57:42 -05:00
Adam Honse 0440478acb Protect against out of bounds memory type, replaces !3598 2026-09-11 17:21:29 -05:00
Denilson Martins 6bb57b8822 MSI 7E76 (MSI B840M GAMING WIFI6E) 2026-09-11 15:02:29 -05:00
Adam Honse 954027f087 Update WIX configuration to ensure default INSTALLLEVEL is 2 (service installation) and fix cut off text 2026-09-11 11:50:57 -05:00
OfotViking 243889d818 Add support for Gainward GeForce RTX 4090 Phantom 2026-09-11 10:07:00 -05:00
Adam Honse f69213db02 Palit GPU Cleanup - Merge Palit, Gainward, and PNY - V1 and V2 2026-09-11 10:07:00 -05:00
Jonathan Arellano f4173ed72f Gigabyte RGB Fusion 2 USB: apply once per zone update, not per LED 2026-09-11 09:05:09 -05:00
Jonathan Arellano 69226884cb Device page: coalesce rapid colour-wheel updates instead of queueing 2026-09-11 09:04:17 -05:00
Adam Honse 728846f668 Update screenshot 2026-09-10 20:34:04 -05:00
Adam Honse f6cfac8eef Update Debian dependencies 2026-09-10 20:23:02 -05:00
Adam Honse 9a4857ac33 Update Debian and Fedora package dependencies 2026-09-10 19:09:47 -05:00
Adam Honse 45a6c93bb3 Use 1 second TCP connection timeout for local client autoconnect 2026-09-10 13:11:01 -05:00
RedBlackAka 77285e308a Update German and Norwegian translations for 1.0 final 2026-09-10 07:25:56 -05:00
Adam Honse 84fb7d18d0 Fix warning in RGBController_Alienware.cpp 2026-09-09 21:14:08 -05:00
brenmous e161314090 Add support for MSI B850MPOWER 2026-09-09 23:26:10 +10:00
Adam Honse 0ff7f0fcd6 Fix missing handling of new zone types and fall back to legacy types for older protocols 2026-09-09 01:04:52 -05:00
Adam Honse e6ea038ac8 Update prepare-artifacts.py 2026-09-09 00:25:48 -05:00
Adam Honse 6be0193788 Add an AutoStart implementation that uses the FreeDesktop Background portal for Flatpak builds 2026-09-09 00:02:22 -05:00
Adam Honse 8963586ead Fix removing settings tab plugin, fixes #5844 2026-09-08 21:51:13 -05:00
Adam Honse 9ac50bd646 Add firmware read timeout in Corsair Lighting Node controller to prevent lockup, fixes #5838 2026-09-08 21:22:38 -05:00
Adam Honse fde019d920 Skip DPMST i2c interfaces 2026-09-08 20:13:22 -05:00
Adam Honse 2b24d0a2e9 Add firmware version check to MSIMotherboard185Controller 2026-09-08 19:59:04 -05:00
Vangel Dior afb654aa55 Added support for Gainward GeForce RTX 5080 Phoenix 2026-09-08 16:44:07 -05:00
Aman Ali 82ae818712 Add PNY GeForce RTX 3060 XLR8 Revel EPIC-X LHR (196E:138F) 2026-09-08 04:01:52 -07:00
Adam Yearout 6ac47cc4f3 HID LampArray: fix keyboard usage mappings 2026-09-08 00:43:17 -05:00
vectorseven 1e1b26e062 macOS: initialize macUSPCIO in SMBus detectors
Ensure macOS SMBus detectors initialize the macUSPCIO connection before attempting detection instead of relying on the cached connection status.

InitMacUSPCIODriver() is idempotent, so this preserves the normal startup path while allowing the detectors to establish the required connection when needed.

Also update the failure messages to report initialization failure rather than incorrectly assuming macUSPCIO is not loaded.
2026-09-08 00:42:35 -05:00
Adam Honse aaa7cb0886 Clean up MSI flags handling and add comments 2026-09-08 00:41:38 -05:00
JAO1988 a42352c867 Added MSI MAG X870E GAMING MAX WIFI motherboard 2026-09-07 22:14:01 -05:00
Michael Updike 1da6a652fd Fix Clevo ITE8291 keyboard LED value/key positional mismatch 2026-09-06 15:45:52 -05:00
jpage77 4f63756e15 RazerController: Add support for Huntsman V3 HE Magnetic Mini 2026-09-06 13:25:31 -05:00
Vangel Dior f72e99225d Fixd hid_error dlsym typo in libusb HID wrapper 2026-09-06 13:23:21 -05:00
Venatrix “Joe” Ritz 93b374ad9f TurtleBeachKP7: name the LEDs and split into three zones 2026-09-06 02:00:50 -05:00
Noocktall Klown S. (NKlownS) 2319f5c20d AlienwareController: add support, zone mapping, direction and EEPROM save for Dell G15 5520/5530 (AW-ELC) 2026-09-06 01:59:31 -05:00
JAO1988 7523e11eb5 Added ASRock Radeon RX 9070 XT Taichi 16GB OC 2026-09-06 01:55:18 -05:00
Adam Honse 523bdb96f8 Fix a crash from Apply All Devices 2026-09-05 18:38:34 -05:00
J-Man 75302d7219 Add ASUS ROG STRIX XG27ACDNG RGB detection 2026-09-05 16:51:15 -05:00
Venatrix “Joe” Ritz 56256a8054 NetworkServer: fix reversed format arguments in invalid-size log calls 2026-09-05 13:48:55 -05:00
Adam Honse ed3d7894c8 Update Realtek ARGB controller to the new configuration system 2026-09-04 21:48:39 -05:00
Daniel Clark dc14dff646 Fix reset to default in device specific settings for gigabyte motherboard usb controllers. 2026-09-04 21:11:28 -05:00
Adam Honse 706e2ab30f Make device editor the same size as zone editor 2026-09-04 19:50:09 -05:00
Ken Sanislo 3e494c884a Keep saved device configuration when controllers are remote 2026-09-04 19:40:03 -05:00
Daniel Clark 31a09bc728 Move Gigabyte USB Controller settings to Device Specific Settings. 2026-09-04 19:29:47 -05:00
Adam Honse 87b0b904c5 Add ordering support to device-specific configuration user interface 2026-09-04 19:28:27 -05:00
Ken Sanislo 07e1f2bb2a Logitech HID++ 2.0: drop the per-frame wire logs 2026-09-04 15:21:36 -05:00
Daniel Clark fd1bc449ae Update Gigabyte Motherboard USB RGB Controller 2026-09-04 09:31:50 -05:00
Adam Honse 1103a567da Keep plugin data from existing profile when saving over an existing profile, fixes #5837 2026-09-04 00:15:32 -05:00
Delnegend b420af5c42 ASRock GPU: Add Radeon RX 9060 XT Steel Legend and fix Windows ADL detection 2026-09-03 23:44:02 -05:00
Adam Honse d092f3b159 Remove colors_min/max from per-LED mode in NVIDIA Illumination controller, fixes #5836 2026-09-03 20:30:53 -05:00
Adam Honse 87af7c8dc2 Fix issues in mode set validity check - correct duplicate HAS_PERE_LED_COLOR, fix with MODE_SPECIFIC_COLOR, only check colors_min/max if mode specific color, fixes #5836 2026-09-03 20:30:07 -05:00
John Sideserf 1335a9b06c Add Gigabyte AORUS RTX 5080 MASTER ICE (0x418C) at 0x71, reject echo-bus probe responses 2026-09-03 18:46:28 -05:00
Ken Sanislo bf2a0fb8f1 HID LampArray: stop on a failed report descriptor read
hid_get_report_descriptor returns -1 on failure and the length was
stored unsigned, so the descriptor walk ran past the end of the stack
buffer. Windows reconstructs the descriptor from preparsed data and can
fail where Linux returns the kernel's copy. A failed read now leaves the
device with no lamps, the same as a descriptor with missing reports.
2026-09-03 11:11:36 -05:00
Piotr Kochan 657cc0d05d MSI 761-byte: add PRO B850M-A WIFI PZ 2026-09-03 07:13:35 -05:00
Valtekken 47eba889c2 Minor fixes for the Italian translation 2026-09-03 08:02:10 +00:00
Adam Honse 7fed68ccf1 Try notifying all to prevent lockups 2026-09-02 19:29:50 -05:00
Adam Honse 3e290907d5 Implement fair_mutex in i2c_smbus so that i2c controllers are given access to the bus in a more fair manner, which should help with high frame rates on slow buses 2026-09-02 19:12:26 -05:00
Ken Sanislo 999cbd2578 Logitech HID++ 2.0: place the G915 X top strip and G-keys 2026-09-02 14:45:04 -05:00
danielminter cf048edb6c Narrow the 0b05:19af Aura motherboard detector to its real usage page 2026-09-02 09:28:07 -05:00
Ken Sanislo a44f525078 Logitech HID++ 2.0: key the detector to the Logitech VID and the bus 2026-09-02 09:25:21 -05:00
Dmitry Kychanov 88af06182a Fix russian translations 2026-09-01 22:59:44 -05:00
Adam Honse dd35cb8cbf Update Keychron QMK controller to pull keyboard's real firmware version when connected over wireless dongle, display both dongle and keyboard version 2026-09-01 22:58:22 -05:00
Adam Honse cfc6081f9d Update Keychron QMK controller to pull keyboard's real VID when connected over wireless dongle (at least for ZMK keyboards that support full control over the wireless link) 2026-09-01 22:56:23 -05:00
Dmitry Kychanov 8f701ee147 Fix hotplugging in Logitech HID++ by using a lambda callback to un-list used IDs 2026-09-01 22:30:23 -05:00
Gent Semaj eb535f43c8 Fix AW3423DWF E_PIPE on init for newer firmware 2026-09-01 21:58:40 -05:00
JAO1988 864ea220da Added Gigabyte GTX 1080 8G Rev 2 and RX9060XT GPUs 2026-09-01 20:12:56 -04:00
Adam Honse a152927ec6 Fix warning in OpenRGBDialog.cpp 2026-09-01 11:42:11 -05:00
Adam Honse bc9c04c00b Fix warning in OpenRGBZoneEditorDialog.cpp 2026-09-01 11:41:26 -05:00
Adam Honse 648f190e22 Fix warnings in OpenRGBProfileEditorDialog.cpp 2026-09-01 11:39:09 -05:00
Adam Honse 47044213fd Fix warnings in OpenRGBDevicePage.cpp 2026-09-01 11:38:13 -05:00
Adam Honse da3f396a25 Fix warnings in ValveSteamMachineController_Windows.cpp 2026-09-01 11:36:32 -05:00
Adam Honse 0dff37baa9 Fix warnings in RGBController_EVGAX12.cpp 2026-09-01 11:32:59 -05:00
Adam Honse 44c7b9fc07 Fix warnings in RGBController_HIDLampArray.cpp 2026-09-01 11:31:28 -05:00
Adam Honse bfba7e99d0 Fix warning in RGBController_GigabyteRGBFusion2USB.cpp 2026-09-01 11:29:37 -05:00
Adam Honse cd02ba5d39 Fix warning in ClevoKeyboardController.cpp 2026-09-01 11:28:43 -05:00
Adam Honse bf03f70950 Use Fusion theme on MacOS 2026-09-01 11:24:25 -05:00
Daniel Clark c789351977 Fixes Keychron Patch Layouts (hopefully) 2026-09-01 07:43:58 -05:00
Ken Sanislo bac9cffb27 Logitech HID++ 2.0: fix effect modes, brightness and phantom LEDs on per-key keyboards 2026-09-01 07:30:40 -05:00
Adam Honse 544fd47756 Add some sanity checking around the per-LED direct mode in MSIMotherboard185Controller. Ensure the enable per-LED 185-byte packet gets sent before the large per-LED packets, skip sending packets if there are no LEDs configured 2026-09-01 00:53:59 -05:00
Adam Honse 206f211ccc More MSI installer cleanups 2026-08-31 22:57:16 -05:00
Adam Honse de7a8df31d Add the ability to register detectors that are disabled by default 2026-08-31 22:53:07 -05:00
Adam Honse 054e979fcf Fix missing text 2026-08-31 22:34:18 -05:00
Adam Honse d3e06b9124 Update CM Small ARGB name 2026-08-31 22:30:15 -05:00
Adam Honse b0c517ab9f Update CMSmallARGBController to match the changes made to CMARGBController 2026-08-31 22:17:14 -05:00
Adam Honse 7325e83e8c Clean up formatting on warning installer page 2026-08-31 21:46:18 -05:00
Adam Honse c40967989a MSI controller renames 2026-08-31 21:13:13 -05:00
Adam Honse 382b3e4d72 More MSI installer fixes 2026-08-31 21:12:42 -05:00
Adam Honse a8d46b32c2 Add Warning to installer 2026-08-31 20:36:32 -05:00
Venatrix “Joe” Ritz 72b7e5cf5b Govee: refresh Direct/Razer mode in KeepaliveThread 2026-08-31 12:31:30 -05:00
Venatrix “Joe” Ritz 5903e7e7c5 Govee: add H6046 RGBIC Gaming Light Bars support 2026-08-31 11:47:20 -05:00
Mathias Grün-Drebes 1198d3ed3c Fix use-after-free in RGBController_HIDLampArray destructor 2026-08-31 11:14:25 -05:00
homelab black d623e76d25 Fix server-host help message to show correct default IP 2026-08-31 00:52:11 -05:00
Adam Honse a1ff9c8e35 Update naming of PawnIO SMBus interfaces and add index field so that multiple buses can be distinguished 2026-08-30 21:21:09 -05:00
Adam Honse c3102bc724 Ignore interface check on Keychron QMK controller's detector as the Ultra series wireless dongles use interface 2 2026-08-30 16:40:36 -05:00
Richard van Liessum a9dea96147 Add Asus ROG Aura Monitor Light Bar and PG32UCDP support 2026-08-30 14:59:15 -05:00
Adam Honse e5823a0e10 Update udev generation to generate udev rules for PID-only and VID-only USB HID detectors 2026-08-30 02:30:45 -05:00
Adam Honse e5d3b76263 Fix issues with SetCustomMode generic implementation, it was not updating mode after setting 2026-08-30 02:04:47 -05:00
Adam Honse a757c04cf9 Fix the Keychron Q2 knob layout 2026-08-30 01:46:40 -05:00
Adam Honse 01c65c1d17 Fix the Keychron Q6 Ultra 8K layout 2026-08-30 01:43:33 -05:00
Adam Honse cfdd06e1f4 Update NZXT device list read timeout as the initial implementation was much too short for Smart Device V2 to fully detect 2026-08-30 01:02:40 -05:00
Adam Honse e2d0bee51a Update PawnIO Modules to release 0.2.11. The existing LedsValve.bin was already from this release 2026-08-30 00:12:10 -05:00
QuickMythril 280df42267 Fix EVGA X12 physical zone mapping 2026-08-30 00:01:11 -05:00
Adam Honse 1538936758 Initial driver for PawnIO-based Windows controller for Valve Steam Machine 2026-08-29 23:36:39 -05:00
Adam Honse 255cfcf422 Initialize active profile tracking variables and don't try loading active profile if no profile is active 2026-08-29 17:42:33 -05:00
Adam Honse c029bb2b1d Clean up detector entries that no longer exist when running detection 2026-08-29 15:10:23 -05:00
Devin Christensen e958e0132e Fix udev rule generation for Glorious Model O/O-/D Wireless mice 2026-08-29 01:08:50 -05:00
Adam Honse 51daeed585 Clean up REGISTER_DUMMY_DETECTOR lines that are no longer relevant after udev rework 2026-08-29 01:07:33 -05:00
Luca Cesarano 60e4309eec Improve Govee LAN mode support 2026-08-29 00:56:04 -05:00
Adam Honse 31247bacd4 Cleaner fix for plugin null check 2026-08-29 00:39:17 -05:00
Adam Honse 2c23fd6ace Revert "Fix skip_generic_detectors scope and a headless-server plugin-list crash"
This reverts commit d9a726d97f.
2026-08-29 00:34:40 -05:00
Hanjjog-ui Gamyeong 61fcdd1a1c Add legacy probe for Gigabyte GAMING OC RTX 5080 2026-08-28 19:30:31 -05:00
Adam Honse dc0e9b2fd3 SDK6 PROTOCOL CHANGE: Update missing timestamp field to Log Message packet on server side, type is actually 32-bit so update documentation, fix issue where log console was enabled based on local settings rather than remote settings 2026-08-28 19:00:10 -05:00
Adam Honse c90eafbe72 Save default server settings to configuration file if they don't exist already 2026-08-28 12:03:56 -05:00
Daniel Clark b087a65f3c Update Keychron Controller 2026-08-28 00:01:06 -05:00
Venatrix “Joe” Ritz c31c6088ac NZXTHue2Controller: Add friendly zone/LED naming for Kraken coolers and add read retry safeguard 2026-08-27 23:59:56 -05:00
Zoin Zoin b14342d9ee Add proper HiDPI rendering for color controls 2026-08-27 23:58:02 -05:00
Gökhan Jantz 849e725b11 Initial commit for Corsair Ironclaw Wireless SE 2026-08-27 18:19:24 -05:00
Rickey Bartlett b23da372ad AlienwareController: fix stack buffer overflow with >25 zones 2026-08-27 18:18:36 -05:00
Venatrix “Joe” Ritz a96b5e0f1a Add support for Turtle Beach Command Series KP7 keypad 2026-08-27 18:17:26 -05:00
Zoin Zoin 6315c79afa Improve Skydimo SK0L32 serial device support 2026-08-27 18:15:00 -05:00
Adam Honse ee8d24bac6 Rename migrated legacy profile files with .bak extension to prevent them from being re-migrated on every startup 2026-08-27 11:31:51 -05:00
Mathias Grün-Drebes d9a726d97f Fix skip_generic_detectors scope and a headless-server plugin-list crash 2026-08-27 07:41:58 -05:00
Adam Honse 1a55da8ac4 Clean up dead code in OpenRGBDevicePage 2026-08-27 00:06:47 -05:00
Adam Honse 5c8baf47f8 Add missing condition in per-zone mode sanity check to handle active mode -1 (follow device mode) 2026-08-26 20:16:33 -05:00
Adam Honse 249c22082d Fix multi-line comment warning in RGBController_AcerNitroHidLed.cpp 2026-08-26 19:25:28 -05:00
Adam Honse 02237aeb4d Fix warning in main_FreeBSD_Linux_MacOS.cpp 2026-08-26 19:18:09 -05:00
Adam Honse 5d7090b5fd Fix warnings in DetectionManager.cpp 2026-08-26 19:17:26 -05:00
Adam Honse f70c3bf8d4 Fix warning in SteelSeriesRival5Controller.cpp 2026-08-26 19:16:18 -05:00
Adam Honse dc0d2e2d2f Fix warnings in HIDLampArrayController.cpp 2026-08-26 19:15:11 -05:00
Adam Honse fa91a11964 Fix multi-line comment warning in RGBController_AcerNitroHidKeyboard.cpp 2026-08-26 19:12:55 -05:00
Adam Honse ecf0bfc847 Update MacOS and Linux AutoStart implementations to properly escape special characters in paths 2026-08-26 18:48:46 -05:00
Adam Honse 41b7087e20 Update Windows AutoStart implementation to allow non-ASCII paths 2026-08-26 18:48:46 -05:00
Alexander Skakov 046a1bae65 Add MSI RTX 4090 Suprim X Classic support 2026-08-26 18:46:36 -05:00
Adam Honse a9a1856b9c Prevent asynchronous mode update issues when setting mode 2026-08-26 16:42:27 -05:00
Adam Honse d7f452e542 Fix UI issue related to REQUIRES_ENTIRE_DEVICE flag when building per-zone modes list 2026-08-26 12:04:10 -05:00
MX1D 799113942c Add full support for Lenovo Legion K500 2026-08-26 00:00:06 -05:00
Aidan Stewart 206ef9aca5 Add support for MSI Raider 18 HX AI A2XWIG laptop 2026-08-25 23:55:29 -05:00
Jason Greathouse 603714f749 Enable Corsair header on MSI 7D70 (MPG X670E Carbon WIFI) 2026-08-25 22:21:09 -05:00
Adam Honse 49e1687141 Adjust button position in MSI 2026-08-25 18:55:30 -05:00
Adam Honse 6d07573fff Update UdevRules.md 2026-08-25 18:24:18 -05:00
JAO1988 2a0222bde1 Added AORUS 2080TI 11G 2026-08-25 18:10:22 -05:00
Jefte Puente 725d0ec1f5 Corsair M75 Wireless: add device support 2026-08-25 18:09:58 -05:00
Adam Honse f14b6cb49d Adjust spacing on installer 2026-08-25 18:08:47 -05:00
Adam Honse 2b60e9ac37 Make system service the default install on Windows 2026-08-25 17:03:53 -05:00
Jefte Puente 693332ff50 Fix SaveProfile carrying forward the wrong controller 2026-08-25 12:07:56 -05:00
Adam Honse a678f3bb25 Ignore files that are not shared libraries when scanning for plugins 2026-08-25 11:11:45 -05:00
Guilherme Santiago b80ac45d99 Kingston Fury DDR5: accept modules with unreadable signature (#4981) 2026-08-25 08:59:59 -05:00
Devar 20a8bc611b Add ASUS ROG ASTRAL RTX 5090 BTF GPU variant (SPID 0x8A5A) 2026-08-24 23:49:08 -05:00
Soldier Alexander 77a474b993 Fix MSI 761 direct mode bounds check comparing a byte offset against an LED count 2026-08-24 20:39:40 -05:00
Adam Honse 853074d80c Update metadata with 1.0rc3 Hotfix 1 2026-08-24 20:32:34 -05:00
Adam Honse 5df989c7a0 Update udev dialog message and update translations 2026-08-24 20:27:45 -05:00
Adam Honse f3b9f1c3fd Add --print-udev-rules for printing rules to stdout 2026-08-24 18:51:10 -05:00
Adam Honse 061bae9546 Remove udev rules and readme from AppImage CI 2026-08-24 18:09:28 -05:00
Adam Honse 679635afd9 Remove udev references in AppImage and artifacts scripts 2026-08-24 11:15:34 -05:00
Adam Honse 7854c491f7 Remove udev rules from the build process now that the rules are generated dynamically from the executable 2026-08-24 11:01:35 -05:00
Adam Honse 9695f9d00b Update upstream CI rules to run pipelines for tagged commits 2026-08-23 15:42:34 -05:00
Merih Bulut b26df0f67e Add support for Corsair K70 RGB PRO Optomechanical (1B1C:1BC6) 2026-08-23 12:57:48 -05:00
Adam Honse 88fa92fd8d Update Fedora packaging to use openrgb binary's generated udev rules in place of the build udev rules from build-udev-rules.sh 2026-08-23 01:24:28 -05:00
Adam Honse 430501408b Update Debian packaging to use openrgb binary's generated udev rules in place of the built udev rules from build-udev-rules.sh 2026-08-23 01:19:02 -05:00
Adam Honse 19d3f8884e Don't detect devices before and exit immediately after generating udev rules 2026-08-23 00:40:39 -05:00
Thomas Xu 3b4a66096a Added Gigabyte GeForce RTX 4060 Ti AERO OC 16G GPU 2026-08-22 12:17:49 -05:00
Raman b93fe2a058 Add Colorful iGame RTX 3060 Ultra W OC 12G 2503:1501 detector 2026-08-21 14:01:35 -05:00
Diego Ortiz 7332c6a7ea Add Gigabyte Z390 DESIGNARE-CF Ambient LED support 2026-08-21 12:50:00 -05:00
Adam Honse d91dae8f15 Update to Qt6 dependency as removing it broke build 2026-08-20 23:00:09 -05:00
Junguo Song 02979dc209 Initial commit for ZOTAC GAMING GeForce RTX 5090 D SOLID OC 2026-08-20 22:37:03 -05:00
Adam Honse c1cbbfc207 Remove outdated Qt dependency in Fedora build 2026-08-20 22:33:52 -05:00
Wiktor Max 2631b5c0b2 Add Gigabyte RX 9070 GAMING OC detection (at 0x75) 2026-08-20 22:31:59 -05:00
Adam Honse 5795280b49 Use Trixie for AppImage and Supported Devices CI targets, update Fedora target to 44 and update naming convention to match Debian targets 2026-08-20 11:43:39 -05:00
Adam Honse 2b834c9ee4 Put OpenRGB version and git commit in udev rules header 2026-08-20 11:32:43 -05:00
Adam Honse 444a748411 More updates to match the behavior of the build-udev-rules.sh script 2026-08-20 10:38:57 -05:00
Adam Honse 58238c048b Add custom udev rules everywhere a dummy detector was used 2026-08-20 10:38:57 -05:00
Adam Honse c5befc354b Add framework for registering custom udev rules 2026-08-20 10:38:57 -05:00
Adam Honse 33854f8886 Build udev from DetectionManager 2026-08-20 10:37:46 -05:00
Adam Honse 8121ee29f4 Clean up the CLI code 2026-08-19 23:53:28 -05:00
Richard Harris 15b784f6c6 Fix startup crash and other issues in VialRGB controller 2026-08-19 22:42:22 -05:00
Ken Sanislo 2df162408e Logitech HID++ 2.0: detect and drive devices over Bluetooth 2026-08-19 22:38:14 -05:00
Ken Sanislo 10d06298ce Logitech HID++ 2.0: read the whole Centurion feature set 2026-08-19 22:35:19 -05:00
QuickMythril eebe4dd0dd Initial commit for EVGA X12 Gaming Mouse 2026-08-19 13:43:54 -05:00
Adam Honse 0459df64c1 Add missing display name fields in SDK protocol documentation 2026-08-19 12:21:28 -05:00
Adam Honse b635f0c2fd Block signals when updating the mode colors spin box in UpdateLEDList 2026-08-18 22:36:00 -05:00
Ryan Black 770e40596e Corsair Strafe MK.2: add PID 0x1B48 to K70 MK2 group (fixes 4-year unresponsive-keyboard bug) 2026-08-18 22:23:24 -05:00
Adrian Tworzydlo 2e990ba3ce Add PowerColor Red Devil RX 7900 XTX support (V2 driver) 2026-08-18 22:22:27 -05:00
Ken Sanislo ea5d7c6c4c Logitech HID++ 2.0: read the power source on the device's broadcast 2026-08-18 22:09:52 -05:00
Ken Sanislo 779514a6fc Fix Logitech HID++ 2.0: key both collections of one Windows interface together 2026-08-18 22:08:17 -05:00
smbd f027b7a312 Add Palit RTX 3090 Ti GameRock support 2026-08-18 19:10:51 -05:00
Ken Sanislo da31501087 Fix LogitechHIDPP20Controller probe negative cache 2026-08-18 19:10:18 -05:00
Ken Sanislo 140aa96aff Fix/macos hid open nonexclusive 2026-08-18 19:01:53 -05:00
Adam Honse 671f0a66f5 Exit after listing profiles 2026-08-18 18:46:00 -05:00
Adam Honse 5b1e782b9b Update CLI description to match about in UI 2026-08-18 18:35:30 -05:00
Adam Honse b222dfeceb Clean up help text some more 2026-08-18 18:30:22 -05:00
Adam Honse 5db5678c1d Add -lp/--list-profiles command line options, clean up help text, and clear active profile on CLI device changes 2026-08-18 18:22:43 -05:00
Adam Honse 433cbc1837 Rework -l/--list-devices to just print a simple list, add -ld/--list-detailed for the full detailed list 2026-08-18 17:37:47 -05:00
Adam Honse bf99c32e72 Remove warning that triggered during normal operation 2026-08-18 17:25:52 -05:00
Adam Honse c2ec44c0b7 Ignore empty matrix maps when getting zone/segment descriptions 2026-08-18 11:01:56 -05:00
Adam Honse 550fa1046e Fix logic around denying setting or modifying local settings from the server 2026-08-17 19:37:55 -05:00
Adam Honse cf910d2616 Implement profile loading on service shutdown 2026-08-17 19:36:05 -05:00
Adam Honse 2d32510008 Create Startup directory if it doesn't exist on Windows 2026-08-17 16:47:33 -05:00
RomanG1337 4d8fd55206 Add support for GameSir Nova 2 Lite controller 2026-08-17 11:38:57 -05:00
Ken Sanislo c852af2a2c Logitech HID++ 2.0: VID-generic detection, protocol fixes and device support 2026-08-16 23:27:46 -05:00
Daniel Clark ae22e1e8ea Add Asus PG32UCDMR 2026-08-16 23:20:45 -05:00
Adam Honse 02620313f6 Adjust DetectionManager to allow specific VID, any PID detectors but still separate generic detectors into their own category 2026-08-16 19:34:42 -05:00
Adam Honse bbccdc2de0 Fix typo in Windows startup file 2026-08-16 18:43:21 -05:00
Adam Honse bc54e18e48 Clean up Creative Sound Blaster controllers 2026-08-16 18:41:23 -05:00
Adam Honse 8e4859688d Make zones in DDP, E1.31, and Serial LED strip manually configurable except for size, as this is defined in the manual configuration 2026-08-16 18:36:41 -05:00
Adam Honse 967bb51313 More settings schema filter fixes, allow registering a schema key that ignores filtering as Detectors needs this 2026-08-16 18:05:08 -05:00
Adam Honse 51d46849fb Pass from_server flags down from JsonString functions into Set/ModifySettings 2026-08-16 17:36:34 -05:00
Adam Honse 74bb119a05 Add an option to automatically load a profile on background service startup 2026-08-16 17:33:55 -05:00
Daniel Clark ae038bc8e9 Update DetectionManger to handle generic wildcards in safe mode. 2026-08-16 16:33:11 -05:00
Adam Honse 433788cc49 Add PNY RTX 5070Ti Epic-X ARGB non-OC 2026-08-16 14:42:37 -05:00
Buu342 5e6d627f51 Fix for LEDs without an assigned key not being properly represented in QMK Firmware 2026-08-15 19:51:28 -05:00
Adam Honse f9897ef99a Implement settings schema filtering
* Filter settings that have a registered schema so that only keys matching the schema get saved
  * Allow settings that do not have a registered schema (manually added devices, device-specific, plugins, client)
  * Update schema registration to allow marking a settings group as local only, which means it modifies the local instance's settings, not the remote
  * Deny setting local only settings when the update comes from the network server
2026-08-15 17:41:29 -05:00
Adam Honse 5c1a2c4d13 Attempt to build against mbedtls3 path by default and fall back to mbedtls path if it doesn't exist, fixes build on distros that have moved mbedtls 3.x to the /usr/include/mbedtls3 path 2026-08-14 11:33:40 -05:00
John Monteiro f987bc3199 Add support for Gigabyte B360 AORUS GAMING 3 WIFI-CF 2026-08-14 01:02:04 -05:00
Irturijus 0c1a73accc Add ASUS ROG Strix G18 G814JIR support 2026-08-12 18:23:40 -05:00
Adam Honse 1fb75b66dd Limit maximum SDK packet size to 8MB 2026-08-12 18:17:51 -05:00
Adam Honse 790e1485f6 Remove minimum width check when determining compact tab mode as it doesn't handle scaling above 100% properly and the manual configuration exists now 2026-08-11 20:00:22 -05:00
Adam Honse 400faabb21 Improve scroll wheel behavior in Plugins settings page 2026-08-11 19:58:57 -05:00
Rogue Turtle 684b74ca9e Added support for 75% Sinowealth10c-based keyboards with indices bigger than the keyboard size 2026-08-10 12:31:02 -05:00
Tony McDowell 6069a3c0cb RazerController: update HID detection for Razer Blackwidow V4 standard. 2026-08-10 12:16:03 -05:00
Adam Honse 606f5f6c86 Updates Flapak plugin support and building Flatpak in GitLab CI 2026-08-09 16:13:10 -05:00
Adam Honse bfccc1a95d Check /run/host paths when looking for udev rules, as this is the only way to mount these host-side paths on Flatpak 2026-08-08 15:45:39 -05:00
Chalenged e33a56001a Fix TUF Gaming K3 GEN II Miku Edition layout 2026-08-07 15:17:07 -05:00
Titan 0afc4c752f Skyloong GK68HE Pro Support 2026-08-07 11:27:18 -05:00
Adam Honse 834fc6a8f7 Use device type to set zone name in HID LampArray controller 2026-08-07 11:17:36 -05:00
Adam Honse da824ccfa8 Update hidapi-hotplug Windows dependencies to hidapi-hotplug-0.15.0 tag 2026-08-06 23:17:43 -05:00
Adam Honse 2c397c5110 Call DeviceUpdateLEDs from Zone/Single functions 2026-08-06 22:00:22 -05:00
Jannik Vogel 4a4f04825c Fix crash due to bad lamp count in DeviceUpdateLEDs 2026-08-06 21:59:36 -05:00
Adam Honse 2ac41813fa Add autonomous mode as a selectable mode 2026-08-06 21:57:25 -05:00
saad-script 422414737b rework report id parsing to be more consistent 2026-08-06 21:57:25 -05:00
Adam Honse d45d9a31be Units are in micrometers not millimeters 2026-08-06 21:57:25 -05:00
Adam Honse 5f297a62ba Get vendor and device names from HID descriptors 2026-08-06 21:57:25 -05:00
Adam Honse 7605c14d89 Switch to PU ONLY detector 2026-08-06 21:57:25 -05:00
Adam Honse bad23f7574 Use HID serial number 2026-08-06 21:57:25 -05:00
Adam Honse ee4886512b Determine device type from LampArray kind 2026-08-06 21:57:25 -05:00
Werner Sembach 8a87befeda Dynamically parse report IDs 2026-08-06 21:57:25 -05:00
Werner Sembach 44b37c57c1 Prepare LampArray report IDs being parsed dynamically 2026-08-06 21:57:25 -05:00
Werner Sembach 0b59ccfb42 Properly setup key names 2026-08-06 21:57:25 -05:00
Werner Sembach 3c8f05982e Automatically create matrix 2026-08-06 21:57:25 -05:00
Werner Sembach a7a6b241e0 Add meta information for udev rule to be generated automatically 2026-08-06 21:57:25 -05:00
Adam Honse d6de563178 Rework to use only a single hid_device and DetectionManager API 2026-08-06 21:57:25 -05:00
Adam Honse ee62b14384 Multi update packet working for proof of concept direct mode 2026-08-06 21:57:25 -05:00
Adam Honse 712df22b95 Implement getting lamp attributes for each lamp and disabling autonomous mode, work on multi update 2026-08-06 21:57:25 -05:00
Adam Honse a0d063e78f Begin implementing the HID LampArray protocol for Arduino test device 2026-08-06 21:57:25 -05:00
Adam Honse 5a2712750b Initial commit for HID LampArray Controller 2026-08-06 21:57:25 -05:00
Adam Honse 320f755e5e Update super_io_pawnio.cpp to add logging and update ioctls 2026-08-06 20:47:05 -05:00
Adam Honse f1d4a7c045 Add logging to MSI-RGB motherboard detection 2026-08-06 19:38:48 -05:00
Adam Honse 710f97bb62 Fix LpcIO.bin name in superio_pawnio so that Super IO access initializes in Windows 2026-08-06 18:51:14 -05:00
Adam Honse 454344185c MSI Motherboard Cleanup - Rename Mystic Light to Motherboard, move MSI Mystic Light 64 to keyboard as it is a keyboard, do some code cleanup 2026-08-06 17:20:17 -05:00
Kyle Finter b25250db7b New Keyboard layout for Corsair K70 LUX RGB 2026-08-06 08:35:47 -05:00
Yousif Ragab 009156994e Add support for Gigabyte AORUS RX 6900 XT MASTER rev 2.0 2026-08-06 08:31:13 -05:00
Aiden Corbin 6f21dd884c Add GALAX GeForce RTX 3070 1-Click OC 2026-08-06 07:18:49 -05:00
Adam Honse 5dfa33320e Split detector file for Asus Aura Core 2026-08-06 00:05:10 -05:00
Adam Honse 2147291c52 Split detector file for Alienware monitors and organize into folders 2026-08-06 00:01:52 -05:00
Rui Guilherme e971c619b1 Add support for Redragon M711-FPS-1 Cobra FPS 2026-08-05 20:32:02 -03:00
LittleQuartZ 6e832b337f Add PowerColor Red Devil RX 6700 XT support 2026-08-05 20:02:48 +07:00
Raulkong898 6ec5a955df Add Keychron J2 HE 8K support to QMKKeychronController 2026-08-05 01:59:28 -05:00
Adam Honse 71cd411ffc Fix active profile initialization during initial local client connection as well as local client reconnections 2026-08-05 01:20:06 -05:00
Adam Honse 1be9097852 Do not reinitialize client flags upon disconnect, this prevented local client from being re-requested upon local server restart 2026-08-05 00:25:38 -05:00
Adam Honse a8a848a259 More local client cleanup in the UI - don't show the save or rescan buttons for local client 2026-08-05 00:02:27 -05:00
Ken Sanislo 15d008a169 OpenRGBClientInfoPage: disable the disconnect button for the local client
Commit amended to adjust comment and tooltip by Adam Honse <[email protected]>
2026-08-04 23:40:41 -05:00
Adam Honse 2e09228568 SDK6 PROTOCOL CHANGE: Add client and server hostname set packets 2026-08-04 11:52:54 -05:00
373 changed files with 38152 additions and 29104 deletions
+55 -19
View File
@@ -14,9 +14,9 @@
# run only if manually started to save CI minutes if #
# GitLab hosted runners #
# * For commits to the CalcProgrammer1/OpenRGB repository, #
# automatically run all jobs on the default branch, #
# otherwise run them if the source is part of a merge #
# request #
# automatically run all jobs on the default branch or #
# tag builds, otherwise run them if the source is part #
# of a merge request #
#-----------------------------------------------------------#
.downstream_rules:
rules:
@@ -26,7 +26,7 @@
.upstream_rules:
rules:
- if: '$CI_PROJECT_PATH == "CalcProgrammer1/OpenRGB" && ($CI_COMMIT_BRANCH == $CI_DEFAULT_BRANCH || $CI_PIPELINE_SOURCE == "merge_request_event")'
- if: '$CI_PROJECT_PATH == "CalcProgrammer1/OpenRGB" && ($CI_COMMIT_BRANCH == $CI_DEFAULT_BRANCH || $CI_COMMIT_TAG || $CI_PIPELINE_SOURCE == "merge_request_event")'
when: on_success
- !reference [.downstream_rules, rules]
@@ -51,7 +51,7 @@ before_script:
# Supported Devices Build Target #
#-----------------------------------------------------------#
"Supported Devices":
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:bookworm-amd64
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:trixie-amd64
tags:
- linux
- amd64
@@ -71,10 +71,10 @@ before_script:
- !reference [.upstream_rules, rules]
#-----------------------------------------------------------#
# OpenRGB Common Appimage Build Steps #
# OpenRGB Common AppImage Build Steps #
#-----------------------------------------------------------#
.hidden_appimage_script: &appimage_script_steps
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:bookworm-${TGT_ARCH}
image: registry.gitlab.com/openrgbdevelopers/openrgb-linux-ci-deb-builder:trixie-${TGT_ARCH}
tags:
- linux
- ${TGT_ARCH}
@@ -87,8 +87,6 @@ before_script:
name: "${CI_PROJECT_NAME}_Linux_${TGT_NAME}_${CI_COMMIT_SHORT_SHA}"
paths:
- OpenRGB-${TGT_PATH}.AppImage
- 60-openrgb.rules
- README.md
expire_in: 30 days
rules:
@@ -290,13 +288,13 @@ before_script:
<<: *debian_script_steps
#-----------------------------------------------------------#
# Linux (.rpm, F43) 64-bit Build Target #
# Linux (.rpm) Fedora 44 amd64 Build Target #
#-----------------------------------------------------------#
"Linux 64 F43 rpm":
image: fedora:43
"Linux amd64 .rpm (Fedora 44)":
image: fedora:44
stage: build
script:
- dnf install rpmdevtools dnf-plugins-core libcurl-devel qt5-qtbase-devel git wget -y
- dnf install rpmdevtools dnf-plugins-core libcurl-devel qt6-qtbase-devel git wget -y
- 'wget -O hidapi-hotplug.zip https://gitlab.com/OpenRGBDevelopers/hidapi-hotplug/-/jobs/artifacts/master/download?job=Linux+64+F43+rpm'
- unzip hidapi-hotplug.zip
- dnf install ./*.rpm -y
@@ -312,7 +310,7 @@ before_script:
- cd ${CI_PROJECT_DIR}
artifacts:
name: "${CI_PROJECT_NAME}_Linux_64_rpm_${CI_COMMIT_SHORT_SHA}"
name: "${CI_PROJECT_NAME}_Linux_amd64_rpm_${CI_COMMIT_SHORT_SHA}"
paths:
- openrgb*.rpm
expire_in: 30 days
@@ -320,6 +318,44 @@ before_script:
rules:
- !reference [.upstream_rules, rules]
#-----------------------------------------------------------#
# OpenRGB Common Flatpak Build Steps #
#-----------------------------------------------------------#
.hidden_flatpak_script: &flatpak_script_steps
image: ghcr.io/flathub-infra/flatpak-github-actions:kde-6.10
stage: build
tags:
- linux
- ${TGT_ARCH}
script:
- flatpak-builder --user --disable-rofiles-fuse --repo=build/repo build/flatpak-build flatpak/org.openrgb.OpenRGB.yaml
- flatpak build-bundle build/repo org.openrgb.OpenRGB.flatpak org.openrgb.OpenRGB
artifacts:
name: "${CI_PROJECT_NAME}_Linux_${TGT_ARCH}_Flatpak_${CI_COMMIT_SHORT_SHA}"
paths:
- org.openrgb.OpenRGB.flatpak
expire_in: 30 days
rules:
- !reference [.upstream_rules, rules]
#-----------------------------------------------------------#
# Linux Flatpak amd64 Build Target #
#-----------------------------------------------------------#
"Linux amd64 Flatpak":
variables:
TGT_ARCH: "amd64"
<<: *flatpak_script_steps
#-----------------------------------------------------------#
# Linux Flatpak arm64 Build Target #
#-----------------------------------------------------------#
"Linux arm64 Flatpak":
variables:
TGT_ARCH: "arm64"
<<: *flatpak_script_steps
#-----------------------------------------------------------#
# Debian i386 Bookworm test #
#-----------------------------------------------------------#
@@ -387,10 +423,10 @@ before_script:
- !reference [.upstream_rules, rules]
#-----------------------------------------------------------#
# Fedora 64 v43 test #
# Fedora amd64 44 test #
#-----------------------------------------------------------#
"Fedora 64 v43":
image: fedora:43
"Fedora 64 44":
image: fedora:44
stage: test
script:
- dnf install unzip wget -y
@@ -401,9 +437,9 @@ before_script:
- openrgb --version
- dnf5 -y remove openrgb
dependencies:
- "Linux 64 F43 rpm"
- "Linux amd64 .rpm (Fedora 44)"
needs:
- "Linux 64 F43 rpm"
- "Linux amd64 .rpm (Fedora 44)"
rules:
- !reference [.upstream_rules, rules]
+158
View File
@@ -0,0 +1,158 @@
/*---------------------------------------------------------*\
| AutoStart-Flatpak.cpp |
| |
| Autostart implementation for Linux via Flatpak Portal |
| |
| Adam Honse <[email protected]> 04 Sep 2026 |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "AutoStart-Flatpak.h"
#include <gio/gio.h>
AutoStart::AutoStart(std::string name)
{
InitAutoStart(name);
}
void AutoStart::InitAutoStart(std::string name)
{
app_name = name;
}
bool AutoStart::CallBackgroundPortal(bool enable, const AutoStartInfo& autostart_info)
{
GError* error = nullptr;
GDBusConnection* connection = g_bus_get_sync(G_BUS_TYPE_SESSION, nullptr, &error);
if(!connection)
{
if(error)
{
g_error_free(error);
}
return false;
}
/*-----------------------------------------------------*\
| FreeDesktop Background Portal parameters |
\*-----------------------------------------------------*/
const char* bus_name = "org.freedesktop.portal.Desktop";
const char* object_path = "/org/freedesktop/portal/desktop";
const char* interface_name = "org.freedesktop.portal.Background";
const char* method_name = "RequestBackground";
/*-----------------------------------------------------*\
| Build the options dictionary (vardict) required by |
| the Portal |
\*-----------------------------------------------------*/
GVariantBuilder options_builder;
g_variant_builder_init(&options_builder, G_VARIANT_TYPE_VARDICT);
/*-----------------------------------------------------*\
| Reason shown to the user in the system settings / |
| permission prompt |
\*-----------------------------------------------------*/
std::string reason_str = "Allow " + app_name + " to launch automatically at startup.";
g_variant_builder_add(&options_builder, "{sv}", "reason", g_variant_new_string(reason_str.c_str()));
/*-----------------------------------------------------*\
| Toggle the autostart feature state |
\*-----------------------------------------------------*/
g_variant_builder_add(&options_builder, "{sv}", "autostart", g_variant_new_boolean(enable));
if(enable)
{
/*-------------------------------------------------*\
| Pass command-line arguments to the background |
| request |
\*-------------------------------------------------*/
GVariantBuilder arg_builder;
g_variant_builder_init(&arg_builder, G_VARIANT_TYPE("as"));
/*-------------------------------------------------*\
| Add the primary executable path inside the |
| Flatpak sandbox |
\*-------------------------------------------------*/
g_variant_builder_add(&arg_builder, "s", GetExePath().c_str());
/*-------------------------------------------------*\
| Append any additional arguments provided by |
| OpenRGB's autostart config |
\*-------------------------------------------------*/
if(!autostart_info.args.empty())
{
g_variant_builder_add(&arg_builder, "s", autostart_info.args.c_str());
}
GVariant* commandline_args = g_variant_builder_end(&arg_builder);
g_variant_builder_add(&options_builder, "{sv}", "commandline", commandline_args);
}
/*-----------------------------------------------------*\
| An empty string window handle is used since this is a |
| background configuration request |
\*-----------------------------------------------------*/
const char* parent_window = "";
GVariant* options = g_variant_builder_end(&options_builder);
/*-----------------------------------------------------*\
| Bundle parameters: (s a{sv}) -> Parent window handle, |
| Options dictionary |
\*-----------------------------------------------------*/
GVariant* parameters = g_variant_new("(s@a{sv})", parent_window, options);
GVariant* reply;
reply = g_dbus_connection_call_sync(connection, bus_name, object_path, interface_name, method_name, parameters, G_VARIANT_TYPE("(o)"), G_DBUS_CALL_FLAGS_NONE, -1, nullptr, &error);
g_object_unref(connection);
if(error)
{
g_error_free(error);
return false;
}
if(reply)
{
g_variant_unref(reply);
return true;
}
return false;
}
bool AutoStart::EnableAutoStart(AutoStartInfo autostart_info)
{
return CallBackgroundPortal(true, autostart_info);
}
bool AutoStart::DisableAutoStart()
{
return CallBackgroundPortal(false);
}
bool AutoStart::IsAutoStartEnabled()
{
/*-----------------------------------------------------*\
| The FreeDesktop Background Portal does not provide a |
| stateless status getter. Sandbox permissions are |
| securely managed and persisted internally by the |
| host's portal service. To implement a true state |
| track here, OpenRGB will need to manage a local |
| boolean flag inside its own configuration files (e.g. |
| OpenRGB.json). |
\*-----------------------------------------------------*/
return false;
}
std::string AutoStart::GetExePath()
{
/*-----------------------------------------------------*\
| Flatpak applications always run from this specific |
| exported path hierarchy |
\*-----------------------------------------------------*/
return "/app/bin/openrgb";
}
+31
View File
@@ -0,0 +1,31 @@
/*---------------------------------------------------------*\
| AutoStart-Flatpak.h |
| |
| Autostart implementation for Linux via Flatpak Portal |
| |
| Adam Honse <[email protected]> 04 Sep 2026 |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#pragma once
#include <string>
#include "AutoStart.h"
class AutoStart : public AutoStartInterface
{
public:
AutoStart(std::string name);
bool DisableAutoStart();
bool EnableAutoStart(AutoStartInfo autostart_info);
bool IsAutoStartEnabled();
std::string GetExePath();
private:
void InitAutoStart(std::string name);
bool CallBackgroundPortal(bool enable, const AutoStartInfo& autostart_info = {});
std::string app_name;
};
+66 -2
View File
@@ -149,6 +149,64 @@ std::string AutoStart::GetExePath()
| Private Methods |
\*---------------------------------------------------------*/
/*---------------------------------------------------------*\
| Escape a single argument for use in a .desktop Exec= |
| field, per the Desktop Entry Specification. |
| |
| Reserved characters must be escaped by wrapping the whole |
| argument in double quotes and backslash-escaping the |
| quote/backquote/backslash/dollar characters, and any |
| literal '%' must be doubled to '%%'. |
\*---------------------------------------------------------*/
static std::string DesktopExecEscape(const std::string& arg)
{
static const std::string reserved = " \t\n\"'`\\><~|&;$*?#()%";
bool needs_quotes = false;
for(char c : arg)
{
if(reserved.find(c) != std::string::npos)
{
needs_quotes = true;
break;
}
}
std::string escaped;
if(needs_quotes)
{
escaped += '"';
}
for(char c : arg)
{
switch(c)
{
case '"':
case '`':
case '\\':
case '$':
escaped += '\\';
escaped += c;
break;
case '%':
escaped += "%%";
break;
default:
escaped += c;
break;
}
}
if(needs_quotes)
{
escaped += '"';
}
return(escaped);
}
std::string AutoStart::GenerateDesktopFile(AutoStartInfo autostart_info)
{
/*-----------------------------------------------------*\
@@ -169,11 +227,17 @@ std::string AutoStart::GenerateDesktopFile(AutoStartInfo autostart_info)
/*-----------------------------------------------------*\
| Add the executable path and arguments |
\*-----------------------------------------------------*/
fileContents << "Exec=" << autostart_info.path;
fileContents << "Exec=" << DesktopExecEscape(autostart_info.path);
if (autostart_info.args != "")
{
fileContents << " " << autostart_info.args;
std::istringstream arg_parser(autostart_info.args);
std::string arg;
while(arg_parser >> arg)
{
fileContents << " " << DesktopExecEscape(arg);
}
}
fileContents << std::endl;
+41 -2
View File
@@ -137,6 +137,43 @@ std::string AutoStart::GetExePath()
| Private Methods |
\*---------------------------------------------------------*/
/*---------------------------------------------------------*\
| Escape a string for embedding inside an XML element |
| (used by the .plist generator) to avoid producing |
| malformed property list files. |
\*---------------------------------------------------------*/
static std::string XmlEscape(const std::string& input)
{
std::string escaped;
for(char c : input)
{
switch(c)
{
case '&':
escaped += "&amp;";
break;
case '<':
escaped += "&lt;";
break;
case '>':
escaped += "&gt;";
break;
case '"':
escaped += "&quot;";
break;
case '\'':
escaped += "&apos;";
break;
default:
escaped += c;
break;
}
}
return(escaped);
}
std::string AutoStart::GenerateLaunchAgentFile(AutoStartInfo autostart_info)
{
/*-----------------------------------------------------*\
@@ -153,7 +190,8 @@ std::string AutoStart::GenerateLaunchAgentFile(AutoStartInfo autostart_info)
fileContents << " <string>org.openrgb</string>" << std::endl;
fileContents << " <key>ProgramArguments</key>" << std::endl;
fileContents << " <array>" << std::endl;
fileContents << " <string>" << autostart_info.path << "</string>" << std::endl;
fileContents << " <string>" << XmlEscape(autostart_info.path) << "</string>"
<< std::endl;
if(autostart_info.args != "")
{
@@ -162,7 +200,8 @@ std::string AutoStart::GenerateLaunchAgentFile(AutoStartInfo autostart_info)
while(arg_parser >> arg)
{
fileContents << " <string>" << arg << "</string>" << std::endl;
fileContents << " <string>" << XmlEscape(arg) << "</string>"
<< std::endl;
}
}
+34 -32
View File
@@ -12,6 +12,7 @@
#include <shlobj.h>
#include "AutoStart-Windows.h"
#include "LogManager.h"
#include "StringUtils.h"
#include "filesystem.h"
#include "windows.h"
@@ -71,11 +72,11 @@ bool AutoStart::EnableAutoStart(AutoStartInfo autostart_info)
HRESULT result;
IShellLinkW* shellLink = NULL;
std::wstring exepathw = utf8_decode(autostart_info.path);
std::wstring argumentsw = utf8_decode(autostart_info.args);
std::wstring startupfilepathw = utf8_decode(autostart_file);
std::wstring descriptionw = utf8_decode(autostart_info.desc);
std::wstring iconw = utf8_decode(autostart_info.path);
std::wstring exepathw = StringUtils::string_to_wstring(autostart_info.path);
std::wstring argumentsw = StringUtils::string_to_wstring(autostart_info.args);
std::wstring startupfilepathw = StringUtils::string_to_wstring(autostart_file);
std::wstring descriptionw = StringUtils::string_to_wstring(autostart_info.desc);
std::wstring iconw = StringUtils::string_to_wstring(autostart_info.path);
result = CoCreateInstance(CLSID_ShellLink, NULL, CLSCTX_ALL, IID_IShellLinkW, (void**)&shellLink);
@@ -150,11 +151,16 @@ std::string AutoStart::GetExePath()
/*-----------------------------------------------------*\
| Create the OpenRGB executable path |
\*-----------------------------------------------------*/
char exepath[MAX_PATH] = "";
wchar_t exepath[MAX_PATH] = L"";
DWORD count = GetModuleFileNameA(NULL, exepath, MAX_PATH);
DWORD count = GetModuleFileNameW(NULL, exepath, MAX_PATH);
return(std::string(exepath, (count > 0) ? count : 0));
if(count == 0)
{
return(std::string());
}
return(StringUtils::wstring_to_string(std::wstring(exepath, count)));
}
/*---------------------------------------------------------*\
@@ -164,43 +170,39 @@ std::string AutoStart::GetExePath()
void AutoStart::InitAutoStart(std::string name)
{
char startMenuPath[MAX_PATH];
wchar_t startMenuPath[MAX_PATH];
autostart_name = name;
/*-----------------------------------------------------*\
| Get startup applications path |
\*-----------------------------------------------------*/
HRESULT result = SHGetFolderPathA(NULL, CSIDL_PROGRAMS, NULL, 0, startMenuPath);
HRESULT result = SHGetFolderPathW(NULL, CSIDL_PROGRAMS, NULL, 0, startMenuPath);
if(SUCCEEDED(result))
{
autostart_file = std::string(startMenuPath);
std::string autostart_dir = StringUtils::wstring_to_string(startMenuPath);
autostart_dir += "\\Startup\\";
autostart_file += "\\Startup\\" + autostart_name + ".lnk";
/*-------------------------------------------------*\
| Create the directory if it doesn't exist |
\*-------------------------------------------------*/
std::error_code ec;
bool success = true;
if(!filesystem::exists(autostart_dir))
{
success = filesystem::create_directories(autostart_dir, ec);
}
if(success)
{
autostart_file = autostart_dir + autostart_name + ".lnk";
}
}
else
{
autostart_file.clear();
}
}
/*---------------------------------------------------------*\
| Convert an UTF8 string to a wide Unicode String |
| (from wmi.cpp) |
\*---------------------------------------------------------*/
std::wstring AutoStart::utf8_decode(const std::string& str)
{
if(str.empty())
{
return std::wstring();
}
int size_needed = MultiByteToWideChar(CP_UTF8, 0, &str[0], (int) str.size(), nullptr, 0);
std::wstring wstrTo(size_needed, 0);
MultiByteToWideChar(CP_UTF8, 0, &str[0], (int) str.size(), &wstrTo[0], size_needed);
return(wstrTo);
}
-1
View File
@@ -24,5 +24,4 @@ public:
private:
void InitAutoStart(std::string name);
std::wstring utf8_decode(const std::string& str);
};
+6
View File
@@ -40,9 +40,15 @@ protected:
#include "AutoStart-Windows.h"
#endif
#ifdef FLATPAK_BUILD
#include "AutoStart-Flatpak.h"
#endif
#ifdef __linux__
#ifndef FLATPAK_BUILD
#include "AutoStart-Linux.h"
#endif
#endif
#ifdef __APPLE__
#include "AutoStart-MacOS.h"
@@ -186,8 +186,8 @@ void ASRockGPUSMBusController::SetChannelColor(uint8_t channel_idx, uint8_t red,
red,
green,
blue,
0x80, // Brightness
0xFF, // Effect speed
0x80, // Effect speed
0xFF, // Brightness
0x00, // Effect direction
0x1A // Unknown constant
};
@@ -11,6 +11,7 @@
#include "ASRockGPUSMBusController.h"
#include "LogManager.h"
#include "RGBController_ASRockGPUSMBus.h"
#include "i2c_amd_gpu.h"
#include "i2c_smbus.h"
#include "pci_ids.h"
@@ -18,15 +19,12 @@ DetectedControllers DetectASRockGPUSMBusControllers(i2c_smbus_interface* bus, ui
{
DetectedControllers detected_controllers;
LOG_DEBUG("[ASRock GPU] Checking GPU I2C bus for RGB controller at 0x%02X", address);
if(bus->i2c_smbus_write_quick(address, I2C_SMBUS_WRITE) < 0)
if(bus->info.pci_vendor == AMD_GPU_VEN && !is_amd_gpu_i2c_bus(bus))
{
LOG_DEBUG("[ASRock GPU] No response at address 0x%02X", address);
return(detected_controllers);
}
LOG_DEBUG("[ASRock GPU] Device responded at 0x%02X, creating controller", address);
LOG_DEBUG("[ASRock GPU] Checking GPU I2C bus for RGB controller at 0x%02X", address);
ASRockGPUSMBusController* controller = new ASRockGPUSMBusController(bus, address, name);
@@ -43,4 +41,7 @@ DetectedControllers DetectASRockGPUSMBusControllers(i2c_smbus_interface* bus, ui
return(detected_controllers);
}
REGISTER_I2C_PCI_DETECTOR("ASRock Radeon RX 9070 XT Steel Legend", DetectASRockGPUSMBusControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, ASROCK_SUB_VEN, 0x5403, ASROCK_GPU_SMBUS_ADDRESS);
REGISTER_I2C_PCI_DETECTOR("ASRock Radeon RX 9070 XT Steel Legend", DetectASRockGPUSMBusControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, ASROCK_SUB_VEN, 0x5403, ASROCK_GPU_SMBUS_ADDRESS);
REGISTER_I2C_PCI_DETECTOR("ASRock Radeon RX 9070 XT Steel Legend Dark", DetectASRockGPUSMBusControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, ASROCK_SUB_VEN, 0x5414, ASROCK_GPU_SMBUS_ADDRESS);
REGISTER_I2C_PCI_DETECTOR("ASRock Radeon RX 9070 XT Taichi 16GB OC", DetectASRockGPUSMBusControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, ASROCK_SUB_VEN, 0x5401, ASROCK_GPU_SMBUS_ADDRESS);
REGISTER_I2C_PCI_DETECTOR("ASRock Radeon RX 9060 XT Steel Legend", DetectASRockGPUSMBusControllers, AMD_GPU_VEN, AMD_NAVI44_DEV, ASROCK_SUB_VEN, 0x5407, ASROCK_GPU_SMBUS_ADDRESS);
@@ -11,6 +11,17 @@
#include "RGBController_ASRockGPUSMBus.h"
/**------------------------------------------------------------------*\
@name ASRock GPU SMBus
@category GPU
@type I2C
@save :x:
@direct :white_check_mark:
@effects :x:
@detectors DetectASRockGPUSMBusControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_ASRockGPUSMBus::RGBController_ASRockGPUSMBus(ASRockGPUSMBusController* controller_ptr)
{
controller = controller_ptr;
@@ -33,6 +44,8 @@ RGBController_ASRockGPUSMBus::RGBController_ASRockGPUSMBus(ASRockGPUSMBusControl
RGBController_ASRockGPUSMBus::~RGBController_ASRockGPUSMBus()
{
Shutdown();
delete controller;
}
@@ -11,16 +11,16 @@
#include "RGBController_AcerNitroHidKeyboard.h"
// /**------------------------------------------------------------------*\
// @name Acer Nitro HID Keyboard
// @category Laptop
// @type HID
// @save :x:
// @direct :white_check_mark:
// @effects :white_check_mark:
// @detectors DetectAcerHIDControllers
// @comment
// \*-------------------------------------------------------------------*/
/**------------------------------------------------------------------*\
@name Acer Nitro HID Keyboard
@category Laptop
@type HID
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAcerHIDControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_AcerNitroHidKeyboard::RGBController_AcerNitroHidKeyboard(std::shared_ptr<AcerNitroHidKeyboardController> controller)
{
@@ -72,7 +72,7 @@ RGBController_AcerNitroHidKeyboard::RGBController_AcerNitroHidKeyboard(std::shar
Breathing.speed_min = 1;
Breathing.speed_max = 9;
Breathing.speed = 4;
Breathing.colors.resize(1);
Breathing.colors.resize(1);
modes.push_back(Breathing);
@@ -86,7 +86,7 @@ RGBController_AcerNitroHidKeyboard::RGBController_AcerNitroHidKeyboard(std::shar
Neon.brightness = 100;
Neon.speed_min = 1;
Neon.speed_max = 9;
Neon.speed = 4;
Neon.speed = 4;
modes.push_back(Neon);
@@ -104,7 +104,7 @@ RGBController_AcerNitroHidKeyboard::RGBController_AcerNitroHidKeyboard(std::shar
Wave.direction = 0;
modes.push_back(Wave);
mode Shifting;
Shifting.name = "Shifting";
Shifting.value = ACER_HID_MODE_SHIFTING;
@@ -199,15 +199,15 @@ void RGBController_AcerNitroHidKeyboard::SetupZones()
void RGBController_AcerNitroHidKeyboard::DeviceUpdateLEDs()
{
mode& current_mode = modes[active_mode];
if(current_mode.value == ACER_HID_MODE_DIRECT)
if(current_mode.value == ACER_HID_MODE_DIRECT)
{
controller->SetLEDs(colors, current_mode.brightness, device_id);
}
else
else
{
RGBColor color = current_mode.colors.size()==0? (RGBColor)0 : current_mode.colors[0];
unsigned char direction = 1;
if((modes[active_mode].flags & MODE_FLAG_HAS_DIRECTION_LR) && modes[active_mode].direction)
if((modes[active_mode].flags & MODE_FLAG_HAS_DIRECTION_LR) && modes[active_mode].direction)
{
direction = 2;
}
@@ -11,16 +11,16 @@
#include "RGBController_AcerNitroHidLed.h"
// /**------------------------------------------------------------------*\
// @name Acer Nitro HID Led
// @category Laptop
// @type HID
// @save :x:
// @direct :white_check_mark:
// @effects :white_check_mark:
// @detectors DetectAcerHIDControllers
// @comment
// \*-------------------------------------------------------------------*/
/**------------------------------------------------------------------*\
@name Acer Nitro HID Led
@category Laptop
@type HID
@save :x:
@direct :white_check_mark:
@effects :white_check_mark:
@detectors DetectAcerHIDControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_AcerNitroHidLed::RGBController_AcerNitroHidLed(std::shared_ptr<AcerNitroHidKeyboardController> controller)
{
@@ -108,27 +108,27 @@ void RGBController_AcerNitroHidLed::SetupZones()
new_zone->leds_max = 1;
new_zone->leds_count = 1;
zones.push_back(*new_zone);
led* new_led = new led();
new_led->name = "LED";
new_led->value = (unsigned int)leds.size();
leds.push_back(*new_led);
SetupColors();
}
void RGBController_AcerNitroHidLed::DeviceUpdateLEDs()
{
mode& current_mode = modes[active_mode];
if(current_mode.value == ACER_HID_MODE_DIRECT)
if(current_mode.value == ACER_HID_MODE_DIRECT)
{
controller->SetLEDs(colors, current_mode.brightness, device_id);
}
else
else
{
RGBColor color = current_mode.colors.size()==0? (RGBColor)0 : current_mode.colors[0];
unsigned char direction = 1;
if((modes[active_mode].flags & MODE_FLAG_HAS_DIRECTION_LR) && modes[active_mode].direction)
if((modes[active_mode].flags & MODE_FLAG_HAS_DIRECTION_LR) && modes[active_mode].direction)
{
direction = 2;
}
@@ -32,6 +32,7 @@ static const std::map<alienware_platform_id, uint8_t> zone_quirks_table =
{ 0x0C01, 4 }, // Dell G5 SE 5505
{ 0x0A01, 16 }, // Dell G7 15 7500
{ 0x0E03, 4 }, // Dell G15 5511
{ 0x0E07, 4 }, // Dell G15 5520
{ 0x0E0A, 4 } // Dell G15 5530
};
@@ -49,9 +50,21 @@ static const std::map<alienware_platform_id, std::vector<const char*>> zone_name
"Light Bar 7", "Light Bar 8", "Light Bar 9",
"Light Bar 10", "Light Bar 11", "Light Bar 12" } },
{ 0x0E03, { "Left", "Middle", "Right", "Numpad" } },
{ 0x0E07, { "Left", "Middle", "Right", "Numpad" } },
{ 0x0E0A, { "Left", "Middle", "Right", "Numpad" } }
};
/*---------------------------------------------------------*\
| Mapping the platform ID to the actual hardware zone IDs |
\*---------------------------------------------------------*/
static const std::map<alienware_platform_id, std::vector<uint8_t>> zone_ids_table =
{
{ 0x0C01, { 0x00, 0x01, 0x02, 0x03 } }, // Dell G5 SE 5505
{ 0x0E03, { 0x00, 0x01, 0x02, 0x03 } }, // Dell G15 5511
{ 0x0E07, { 0x10, 0x11, 0x12, 0x13 } }, // Dell G15 5520
{ 0x0E0A, { 0x10, 0x11, 0x12, 0x13 } } // Dell G15 5530
};
static void SendHIDReport(hid_device *dev, const unsigned char* usb_buf, size_t usb_buf_size)
{
using namespace std::chrono_literals;
@@ -138,6 +151,21 @@ AlienwareController::AlienwareController(hid_device* dev_handle, const hid_devic
}
}
/*-----------------------------------------------------*\
| Initialize hardware zone IDs |
\*-----------------------------------------------------*/
if(zone_ids_table.count(platform_id))
{
zone_ids = zone_ids_table.at(platform_id);
}
else
{
for(size_t i = 0; i < number_of_zones; i++)
{
zone_ids.push_back(static_cast<uint8_t>(i));
}
}
/*-----------------------------------------------------*\
| Set defaults for all zones |
| It doesn't seem possible to read the controller's |
@@ -155,6 +183,7 @@ AlienwareController::AlienwareController(hid_device* dev_handle, const hid_devic
zones[zone_idx].period = 2000;
zones[zone_idx].tempo = ALIENWARE_TEMPO_MAX;
zones[zone_idx].dim = 0;
zones[zone_idx].direction = 0;
}
/*-----------------------------------------------------*\
@@ -266,42 +295,53 @@ bool AlienwareController::Dim(std::vector<uint8_t> zones, double percent)
return(true);
}
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
bool result = true;
/*-----------------------------------------------------*\
| Zero out buffer |
| Split the zone list into packet-sized chunks so it |
| never overflows usb_buf |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-----------------------------------------------------*/
uint16_t num_zones = (uint16_t)zones.size();
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_DIM;
usb_buf[0x03] = static_cast<uint8_t>(percent);
usb_buf[0x04] = num_zones >> 8;
usb_buf[0x05] = num_zones & 0xFF;
for(size_t i = 0; i < num_zones; i++)
for(size_t offset = 0; offset < zones.size(); offset += ALIENWARE_MAX_ZONES_PER_PACKET)
{
usb_buf[0x06+i] = zones[i];
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
/*-------------------------------------------------*\
| Zero out buffer |
\*-------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-------------------------------------------------*/
uint16_t num_zones = (uint16_t)std::min<size_t>(ALIENWARE_MAX_ZONES_PER_PACKET, zones.size() - offset);
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_DIM;
usb_buf[0x03] = static_cast<uint8_t>(percent);
usb_buf[0x04] = num_zones >> 8;
usb_buf[0x05] = num_zones & 0xFF;
for(size_t i = 0; i < num_zones; i++)
{
usb_buf[0x06+i] = zones[offset + i];
}
/*-------------------------------------------------*\
| Send packet |
\*-------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
HidapiAlienwareReport response = GetResponse();
/*-------------------------------------------------*\
| For this command, error is if the output equals |
| the input |
\*-------------------------------------------------*/
result &= (response.data[1] == 0x03) && memcmp(usb_buf, response.data, HIDAPI_ALIENWARE_REPORT_SIZE);
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
HidapiAlienwareReport response = GetResponse();
/*-----------------------------------------------------*\
| For this command, error is if the output equals the |
| input |
\*-----------------------------------------------------*/
return((response.data[1] == 0x03) && memcmp(usb_buf, response.data, HIDAPI_ALIENWARE_REPORT_SIZE));
return(result);
}
bool AlienwareController::UserAnimation(uint16_t subcommand, uint16_t animation, uint16_t duration)
@@ -370,42 +410,53 @@ bool AlienwareController::SelectZones(const std::vector<uint8_t>& zones)
return(false);
}
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
bool result = true;
/*-----------------------------------------------------*\
| Zero out buffer |
| Split the zone list into packet-sized chunks so it |
| never overflows usb_buf |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-----------------------------------------------------*/
uint16_t num_zones = (uint16_t)zones.size();
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_SELECT_ZONES;
usb_buf[0x03] = 1; // loop?
usb_buf[0x04] = num_zones >> 8;
usb_buf[0x05] = num_zones & 0xFF;
for(size_t i = 0; i < num_zones; i++)
for(size_t offset = 0; offset < zones.size(); offset += ALIENWARE_MAX_ZONES_PER_PACKET)
{
usb_buf[0x06+i] = zones[i];
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
/*-------------------------------------------------*\
| Zero out buffer |
\*-------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-------------------------------------------------*/
uint16_t num_zones = (uint16_t)std::min<size_t>(ALIENWARE_MAX_ZONES_PER_PACKET, zones.size() - offset);
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_SELECT_ZONES;
usb_buf[0x03] = 1; // loop?
usb_buf[0x04] = num_zones >> 8;
usb_buf[0x05] = num_zones & 0xFF;
for(size_t i = 0; i < num_zones; i++)
{
usb_buf[0x06+i] = zones[offset + i];
}
/*-------------------------------------------------*\
| Send packet |
\*-------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
HidapiAlienwareReport response = GetResponse();
/*-------------------------------------------------*\
| For this command, error is if the output equals |
| the input |
\*-------------------------------------------------*/
result &= (response.data[1] == 0x03) && memcmp(usb_buf, response.data, HIDAPI_ALIENWARE_REPORT_SIZE);
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
HidapiAlienwareReport response = GetResponse();
/*-----------------------------------------------------*\
| For this command, error is if the output equals the |
| input |
\*-----------------------------------------------------*/
return((response.data[1] == 0x03) && memcmp(usb_buf, response.data, HIDAPI_ALIENWARE_REPORT_SIZE));
return(result);
}
bool AlienwareController::ModeAction(uint8_t mode, uint16_t duration, uint16_t tempo, RGBColor color)
@@ -509,44 +560,55 @@ bool AlienwareController::SetColorDirect(RGBColor color, std::vector<uint8_t> zo
return(true);
}
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
bool result = true;
/*-----------------------------------------------------*\
| Zero out buffer |
| Split the zone list into packet-sized chunks so it |
| never overflows usb_buf |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-----------------------------------------------------*/
uint16_t num_zones = (uint16_t)zones.size();
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_SET_COLOR;
usb_buf[0x03] = RGBGetRValue(color);
usb_buf[0x04] = RGBGetGValue(color);
usb_buf[0x05] = RGBGetBValue(color);
usb_buf[0x06] = num_zones >> 8;
usb_buf[0x07] = num_zones & 0xFF;
for(size_t i = 0; i < num_zones; i++)
for(size_t offset = 0; offset < zones.size(); offset += ALIENWARE_MAX_ZONES_PER_PACKET)
{
usb_buf[0x08 + i] = zones[i];
unsigned char usb_buf[HIDAPI_ALIENWARE_REPORT_SIZE];
/*-------------------------------------------------*\
| Zero out buffer |
\*-------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-------------------------------------------------*\
| Set up message packet with leading 00, per hidapi |
\*-------------------------------------------------*/
uint16_t num_zones = (uint16_t)std::min<size_t>(ALIENWARE_MAX_ZONES_PER_PACKET, zones.size() - offset);
usb_buf[0x00] = 0x00;
usb_buf[0x01] = 0x03;
usb_buf[0x02] = ALIENWARE_COMMAND_SET_COLOR;
usb_buf[0x03] = RGBGetRValue(color);
usb_buf[0x04] = RGBGetGValue(color);
usb_buf[0x05] = RGBGetBValue(color);
usb_buf[0x06] = num_zones >> 8;
usb_buf[0x07] = num_zones & 0xFF;
for(size_t i = 0; i < num_zones; i++)
{
usb_buf[0x08 + i] = zones[offset + i];
}
/*-------------------------------------------------*\
| Send packet |
\*-------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
HidapiAlienwareReport response = GetResponse();
/*-------------------------------------------------*\
| For this command, error is if the output equals |
| the input |
\*-------------------------------------------------*/
result &= (response.data[1] == 0x03) && memcmp(usb_buf, response.data, HIDAPI_ALIENWARE_REPORT_SIZE);
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
SendHIDReport(dev, usb_buf, sizeof(usb_buf));
HidapiAlienwareReport response = GetResponse();
/*-----------------------------------------------------*\
| For this command, error is if the output equals the |
| input |
\*-----------------------------------------------------*/
return((response.data[1] == 0x03) && memcmp(usb_buf, response.data, HIDAPI_ALIENWARE_REPORT_SIZE));
return(result);
}
bool AlienwareController::Reset()
@@ -640,6 +702,15 @@ void AlienwareController::SetDim(uint8_t zone, uint8_t dim)
}
}
void AlienwareController::SetDirection(uint8_t zone, uint8_t direction)
{
if(zone < zones.size())
{
zones[zone].direction = direction;
dirty = true;
}
}
void AlienwareController::UpdateDim()
{
if(!dirty_dim)
@@ -655,7 +726,8 @@ void AlienwareController::UpdateDim()
for(size_t i = 0; i < zones.size(); i++)
{
dim_zone_map[zones[i].dim].emplace_back((uint8_t)i);
uint8_t hw_zone = (i < zone_ids.size()) ? zone_ids[i] : static_cast<uint8_t>(i);
dim_zone_map[zones[i].dim].emplace_back(hw_zone);
}
for(std::pair<const uint8_t, std::vector<uint8_t>> &pair : dim_zone_map)
@@ -682,7 +754,8 @@ bool AlienwareController::UpdateDirect()
for(size_t i = 0; i < zones.size(); i++)
{
color_zone_map[zones[i].color[0]].emplace_back((uint8_t)i);
uint8_t hw_zone = (i < zone_ids.size()) ? zone_ids[i] : static_cast<uint8_t>(i);
color_zone_map[zones[i].color[0]].emplace_back(hw_zone);
}
for(std::pair<const RGBColor, std::vector<uint8_t>> &pair : color_zone_map)
@@ -726,8 +799,9 @@ void AlienwareController::UpdateMode()
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
alienware_zone zone = zones[zone_idx];
uint8_t hw_zone = (zone_idx < zone_ids.size()) ? zone_ids[zone_idx] : static_cast<uint8_t>(zone_idx);
result = SelectZones({static_cast<uint8_t>(zone_idx)});
result = SelectZones({hw_zone});
if(!result)
{
@@ -750,18 +824,18 @@ void AlienwareController::UpdateMode()
case ALIENWARE_MODE_MORPH:
{
uint8_t zones[2] = { zone.mode, zone.mode };
uint8_t modes[2] = { zone.mode, zone.mode };
uint16_t periods[2] = { zone.period, zone.period };
uint16_t tempos[2] = { zone.tempo, zone.tempo };
RGBColor colors[2] = { zone.color[0], zone.color[1] };
result = MultiModeAction(zones, periods, tempos, colors, 2);
result = MultiModeAction(modes, periods, tempos, colors, 2);
}
break;
case ALIENWARE_MODE_SPECTRUM:
{
uint8_t zones[7] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
uint8_t modes[7] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH };
@@ -774,13 +848,13 @@ void AlienwareController::UpdateMode()
zone.tempo, zone.tempo,
zone.tempo };
result = MultiModeAction(zones, periods, tempos, rainbow_colors[0], 7);
result = MultiModeAction(modes, periods, tempos, rainbow_colors[0], 7);
}
break;
case ALIENWARE_MODE_RAINBOW:
{
uint8_t zones[7] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
uint8_t modes[7] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH };
@@ -793,18 +867,19 @@ void AlienwareController::UpdateMode()
zone.tempo, zone.tempo,
zone.tempo };
result = MultiModeAction(zones, periods, tempos, rainbow_colors[zone_idx], 7);
unsigned int color_idx = (zone.direction == MODE_DIRECTION_LEFT) ? (4 - 1 - (zone_idx % 4)) : (zone_idx % 4);
result = MultiModeAction(modes, periods, tempos, rainbow_colors[color_idx], 7);
}
break;
case ALIENWARE_MODE_BREATHING:
{
uint8_t zones[2] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH };
uint8_t modes[2] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH };
uint16_t periods[2] = { zone.period, zone.period };
uint16_t tempos[2] = { zone.tempo, zone.tempo };
RGBColor colors[2] = { zone.color[0], 0x0 };
result = MultiModeAction(zones, periods, tempos, colors, 2);
result = MultiModeAction(modes, periods, tempos, colors, 2);
}
break;
@@ -831,6 +906,117 @@ void AlienwareController::UpdateMode()
dirty = false;
}
void AlienwareController::SaveController()
{
/*-----------------------------------------------------*\
| Save current mode configuration to EEPROM slot 0x0061 |
\*-----------------------------------------------------*/
UserAnimation(ALIENWARE_COMMAND_USER_ANIM_REMOVE, ALIENWARE_ANIM_DEFAULT, 0);
bool result = UserAnimation(ALIENWARE_COMMAND_USER_ANIM_NEW, ALIENWARE_ANIM_DEFAULT, 0);
if(!result)
{
return;
}
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
alienware_zone zone = zones[zone_idx];
uint8_t hw_zone = (zone_idx < zone_ids.size()) ? zone_ids[zone_idx] : static_cast<uint8_t>(zone_idx);
result = SelectZones({hw_zone});
if(!result)
{
return;
}
switch (zone.mode)
{
case ALIENWARE_MODE_COLOR:
result = ModeAction(zone.mode, 2000, ALIENWARE_TEMPO_MAX, zone.color[0]);
break;
case ALIENWARE_MODE_PULSE:
result = ModeAction(zone.mode, zone.period, zone.tempo, zone.color[0]);
break;
case ALIENWARE_MODE_MORPH:
{
uint8_t modes[2] = { zone.mode, zone.mode };
uint16_t periods[2] = { zone.period, zone.period };
uint16_t tempos[2] = { zone.tempo, zone.tempo };
RGBColor colors[2] = { zone.color[0], zone.color[1] };
result = MultiModeAction(modes, periods, tempos, colors, 2);
}
break;
case ALIENWARE_MODE_SPECTRUM:
{
uint8_t modes[7] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH };
uint16_t periods[7] = { zone.period, zone.period,
zone.period, zone.period,
zone.period, zone.period,
zone.period };
uint16_t tempos[7] = { zone.tempo, zone.tempo,
zone.tempo, zone.tempo,
zone.tempo, zone.tempo,
zone.tempo };
result = MultiModeAction(modes, periods, tempos, rainbow_colors[0], 7);
}
break;
case ALIENWARE_MODE_RAINBOW:
{
uint8_t modes[7] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH,
ALIENWARE_MODE_MORPH };
uint16_t periods[7] = { zone.period, zone.period,
zone.period, zone.period,
zone.period, zone.period,
zone.period };
uint16_t tempos[7] = { zone.tempo, zone.tempo,
zone.tempo, zone.tempo,
zone.tempo, zone.tempo,
zone.tempo };
unsigned int color_idx = (zone.direction == MODE_DIRECTION_LEFT) ? (4 - 1 - (zone_idx % 4)) : (zone_idx % 4);
result = MultiModeAction(modes, periods, tempos, rainbow_colors[color_idx], 7);
}
break;
case ALIENWARE_MODE_BREATHING:
{
uint8_t modes[2] = { ALIENWARE_MODE_MORPH, ALIENWARE_MODE_MORPH };
uint16_t periods[2] = { zone.period, zone.period };
uint16_t tempos[2] = { zone.tempo, zone.tempo };
RGBColor colors[2] = { zone.color[0], 0x0 };
result = MultiModeAction(modes, periods, tempos, colors, 2);
}
break;
default:
result = false;
}
if(!result)
{
return;
}
}
UserAnimation(ALIENWARE_COMMAND_USER_ANIM_FINISH_SAVE, ALIENWARE_ANIM_DEFAULT, 0);
UserAnimation(ALIENWARE_COMMAND_USER_ANIM_DEFAULT, ALIENWARE_ANIM_DEFAULT, 0);
UserAnimation(ALIENWARE_COMMAND_USER_ANIM_STARTUP, ALIENWARE_ANIM_DEFAULT, 0);
}
void AlienwareController::UpdateController()
{
UpdateMode();
@@ -22,6 +22,14 @@
#define ALIENWARE_REPORT_SIZE 33
#define HIDAPI_ALIENWARE_REPORT_SIZE (ALIENWARE_REPORT_SIZE + 1)
#define ALIENWARE_CONTROLLER_NAME "AlienWare Controller"
/*---------------------------------------------------------*\
| Max zone IDs that fit in one report after the command |
| header. Selections larger than this must be split across |
| multiple packets; writing them into a single report |
| overflows usb_buf (e.g. desktops with ~100 zones). |
\*---------------------------------------------------------*/
#define ALIENWARE_MAX_ZONES_PER_PACKET 25
enum
{
ALIENWARE_COMMAND_REPORT = 0x20, /* Set report type to get */
@@ -115,11 +123,13 @@ public:
void SetPeriod(uint8_t zone, uint16_t period);
void SetTempo(uint8_t zone, uint16_t tempo);
void SetDim(uint8_t zone, uint8_t dim);
void SetDirection(uint8_t zone, uint8_t direction);
AlienwareReport GetStatus(uint8_t subcommand);
void UpdateDim();
void UpdateMode();
void UpdateController();
void SaveController();
protected:
hid_device* dev;
@@ -132,6 +142,7 @@ private:
uint16_t period;
uint16_t tempo;
uint8_t dim;
uint8_t direction;
} alienware_zone;
typedef struct
@@ -145,6 +156,7 @@ private:
std::string serial_number;
std::string version;
std::vector<const char*> zone_names;
std::vector<uint8_t> zone_ids;
bool dirty;
bool dirty_dim;
@@ -39,7 +39,7 @@ RGBController_Alienware::RGBController_Alienware(AlienwareController* controller
mode Color;
Color.name = "Static";
Color.value = ALIENWARE_MODE_COLOR;
Color.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Color.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_MANUAL_SAVE;
Color.color_mode = MODE_COLORS_PER_LED;
Color.colors_min = 1;
Color.colors_max = 1;
@@ -51,13 +51,13 @@ RGBController_Alienware::RGBController_Alienware(AlienwareController* controller
mode Pulse;
Pulse.name = "Flashing";
Pulse.value = ALIENWARE_MODE_PULSE;
Pulse.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Pulse.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE;
Pulse.color_mode = MODE_COLORS_PER_LED;
Pulse.colors_min = 1;
Pulse.colors_max = 1;
Pulse.speed_min = ALIENWARE_TEMPO_MIN;
Pulse.speed_max = ALIENWARE_TEMPO_MAX;
Pulse.speed = ALIENWARE_TEMPO_MIN;
Pulse.speed_min = ALIENWARE_TEMPO_MAX;
Pulse.speed_max = 50;
Pulse.speed = 150;
Pulse.brightness_min = 100;
Pulse.brightness_max = 0;
Pulse.brightness = 0;
@@ -66,14 +66,16 @@ RGBController_Alienware::RGBController_Alienware(AlienwareController* controller
mode Morph;
Morph.name = "Morph";
Morph.value = ALIENWARE_MODE_MORPH;
Morph.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Morph.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE;
Morph.color_mode = MODE_COLORS_MODE_SPECIFIC;
Morph.colors_min = 2 * controller->GetZoneCount();
Morph.colors_max = Morph.colors_min;
Morph.colors.resize(Morph.colors_max);
Morph.speed_min = ALIENWARE_TEMPO_MIN;
Morph.speed_max = ALIENWARE_TEMPO_MAX;
Morph.speed = ALIENWARE_TEMPO_MIN;
Morph.colors_min = 2;
Morph.colors_max = 2 * controller->GetZoneCount();
Morph.colors.resize(2);
Morph.colors[0] = 0x0000FF;
Morph.colors[1] = 0xFF0000;
Morph.speed_min = ALIENWARE_TEMPO_MAX;
Morph.speed_max = 20;
Morph.speed = 100;
Morph.brightness_min = 100;
Morph.brightness_max = 0;
Morph.brightness = 0;
@@ -82,11 +84,11 @@ RGBController_Alienware::RGBController_Alienware(AlienwareController* controller
mode Spectrum;
Spectrum.name = "Spectrum Cycle";
Spectrum.value = ALIENWARE_MODE_SPECTRUM;
Spectrum.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Spectrum.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE;
Spectrum.color_mode = MODE_COLORS_NONE;
Spectrum.speed_min = ALIENWARE_TEMPO_SPECTRUM;
Spectrum.speed_max = ALIENWARE_TEMPO_MAX;
Spectrum.speed = ALIENWARE_TEMPO_SPECTRUM;
Spectrum.speed_min = ALIENWARE_TEMPO_MAX;
Spectrum.speed_max = ALIENWARE_TEMPO_SPECTRUM;
Spectrum.speed = 40;
Spectrum.brightness_min = 100;
Spectrum.brightness_max = 0;
Spectrum.brightness = 0;
@@ -95,11 +97,12 @@ RGBController_Alienware::RGBController_Alienware(AlienwareController* controller
mode Rainbow;
Rainbow.name = "Rainbow Wave";
Rainbow.value = ALIENWARE_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Rainbow.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_MANUAL_SAVE;
Rainbow.color_mode = MODE_COLORS_NONE;
Rainbow.speed_min = ALIENWARE_TEMPO_SPECTRUM;
Rainbow.speed_max = ALIENWARE_TEMPO_MAX;
Rainbow.speed = ALIENWARE_TEMPO_SPECTRUM;
Rainbow.speed_min = ALIENWARE_TEMPO_MAX;
Rainbow.speed_max = ALIENWARE_TEMPO_SPECTRUM;
Rainbow.speed = 40;
Rainbow.direction = MODE_DIRECTION_RIGHT;
Rainbow.brightness_min = 100;
Rainbow.brightness_max = 0;
Rainbow.brightness = 0;
@@ -108,13 +111,13 @@ RGBController_Alienware::RGBController_Alienware(AlienwareController* controller
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = ALIENWARE_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_MANUAL_SAVE;
Breathing.color_mode = MODE_COLORS_PER_LED;
Breathing.colors_min = 1;
Breathing.colors_max = 1;
Breathing.speed_min = ALIENWARE_TEMPO_MIN;
Breathing.speed_max = ALIENWARE_TEMPO_MAX;
Breathing.speed = ALIENWARE_TEMPO_MIN;
Breathing.speed_min = ALIENWARE_TEMPO_MAX;
Breathing.speed_max = 50;
Breathing.speed = 150;
Breathing.brightness_min = 100;
Breathing.brightness_max = 0;
Breathing.brightness = 0;
@@ -224,6 +227,7 @@ void RGBController_Alienware::DeviceUpdateMode()
uint16_t period = 0x07d0;
controller->SetMode(zone_idx, current_mode.value);
controller->SetDirection(zone_idx, current_mode.direction);
switch(current_mode_idx)
{
@@ -235,6 +239,7 @@ void RGBController_Alienware::DeviceUpdateMode()
break;
case ALIENWARE_MODE_PULSE:
period = std::max<uint16_t>(500, (uint16_t)(current_mode.speed * 10));
controller->SetPeriod(zone_idx, period);
controller->SetColor( zone_idx, colors[current_zone.start_idx]);
controller->SetTempo( zone_idx, current_mode.speed);
@@ -242,10 +247,22 @@ void RGBController_Alienware::DeviceUpdateMode()
break;
case ALIENWARE_MODE_MORPH:
controller->SetPeriod(zone_idx, period);
controller->SetColor( zone_idx, current_mode.colors[zone_idx * 2], current_mode.colors[(zone_idx * 2) + 1]);
controller->SetTempo( zone_idx, current_mode.speed);
controller->SetDim( zone_idx, modes[current_mode_idx].brightness);
{
RGBColor c1 = (current_mode.colors.size() >= 1) ? current_mode.colors[0] : 0x0000FF;
RGBColor c2 = (current_mode.colors.size() >= 2) ? current_mode.colors[1] : 0xFF0000;
if(current_mode.colors.size() >= (std::size_t)((zone_idx + 1) * 2))
{
c1 = current_mode.colors[zone_idx * 2];
c2 = current_mode.colors[(zone_idx * 2) + 1];
}
period = std::max<uint16_t>(400, (uint16_t)(current_mode.speed * 10));
controller->SetPeriod(zone_idx, period);
controller->SetColor( zone_idx, c1, c2);
controller->SetTempo( zone_idx, current_mode.speed);
controller->SetDim( zone_idx, modes[current_mode_idx].brightness);
}
break;
case ALIENWARE_MODE_SPECTRUM:
@@ -256,6 +273,7 @@ void RGBController_Alienware::DeviceUpdateMode()
break;
case ALIENWARE_MODE_BREATHING:
period = std::max<uint16_t>(500, (uint16_t)(current_mode.speed * 10));
controller->SetPeriod(zone_idx, period);
controller->SetColor( zone_idx, colors[current_zone.start_idx], 0x0);
controller->SetTempo( zone_idx, current_mode.speed);
@@ -282,3 +300,9 @@ void RGBController_Alienware::DeviceUpdateMode()
current_mode = new_current_mode;
}
}
void RGBController_Alienware::DeviceSaveMode()
{
controller->SaveController();
}
@@ -28,6 +28,7 @@ public:
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
void DeviceSaveMode();
private:
AlienwareController* controller;
@@ -40,11 +40,11 @@ std::vector<unsigned char> AlienwareAW3423DWFController::GetReportResponse()
void AlienwareAW3423DWFController::PerformLogin()
{
unsigned char init_packet[64] =
{
0x40, 0xE1, 0x01
};
SendControlPacket(init_packet, 4);
unsigned char init_packet[192] = {0x00};
init_packet[0] = 0x40;
init_packet[1] = 0xE1;
init_packet[2] = 0x01;
SendControlPacket(init_packet, 192);
std::vector<unsigned char> response = GetReportResponse();
@@ -0,0 +1,47 @@
/*---------------------------------------------------------*\
| AlienwareAW3423DWFControllerDetect.cpp |
| |
| Detector for Alienware AW3423DWF monitor |
| |
| Ferréol DUBOIS COLI (Fefe_du_973) 23 Jan 2025 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include <hidapi.h>
#include "AlienwareAW3423DWFController.h"
#include "DetectionManager.h"
#include "RGBController_AlienwareAW3423DWF.h"
/*---------------------------------------------------------*\
| Alienware Vendor ID |
\*---------------------------------------------------------*/
#define ALIENWARE_VID 0x187C
/*---------------------------------------------------------*\
| Alienware Vendor ID |
\*---------------------------------------------------------*/
#define ALIENWARE_AW3423DWF_PID 0x100E
#define ALIENWARE_USAGE_PAGE 0xFFDA
#define ALIENWARE_USAGE 0x00DA
DetectedControllers DetectAlienwareAW3423DWFControllers(hid_device_info* info, const std::string&)
{
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AlienwareAW3423DWFController* controller = new AlienwareAW3423DWFController(dev, info->path);
RGBController_AlienwareAW3423DWF* rgb_controller = new RGBController_AlienwareAW3423DWF(controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR("Alienware AW3423DWF", DetectAlienwareAW3423DWFControllers, ALIENWARE_VID, ALIENWARE_AW3423DWF_PID);
@@ -10,10 +10,8 @@
\*---------------------------------------------------------*/
#include <hidapi.h>
#include "AlienwareAW3423DWFController.h"
#include "AlienwareMonitorController.h"
#include "DetectionManager.h"
#include "RGBController_AlienwareAW3423DWF.h"
#include "RGBController_AlienwareMonitor.h"
/*---------------------------------------------------------*\
@@ -24,29 +22,10 @@
/*---------------------------------------------------------*\
| Alienware Vendor ID |
\*---------------------------------------------------------*/
#define ALIENWARE_AW3423DWF_PID 0x100E
#define ALIENWARE_AW3225QF_PID 0x1013
#define ALIENWARE_USAGE_PAGE 0xFFDA
#define ALIENWARE_USAGE 0x00DA
DetectedControllers DetectAlienwareAW3423DWFControllers(hid_device_info* info, const std::string&)
{
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AlienwareAW3423DWFController* controller = new AlienwareAW3423DWFController(dev, info->path);
RGBController_AlienwareAW3423DWF* rgb_controller = new RGBController_AlienwareAW3423DWF(controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
DetectedControllers DetectAlienwareMonitorControllers(hid_device_info* info, const std::string& name)
{
DetectedControllers detected_controllers;
@@ -65,5 +44,4 @@ DetectedControllers DetectAlienwareMonitorControllers(hid_device_info* info, con
return(detected_controllers);
}
REGISTER_HID_DETECTOR("Alienware AW3423DWF", DetectAlienwareAW3423DWFControllers, ALIENWARE_VID, ALIENWARE_AW3423DWF_PID);
REGISTER_HID_DETECTOR("Alienware AW3225QF", DetectAlienwareMonitorControllers, ALIENWARE_VID, ALIENWARE_AW3225QF_PID);
@@ -44,8 +44,4 @@ DetectedControllers DetectArcticControllers()
}
REGISTER_DETECTOR("Arctic RGB controller", DetectArcticControllers);
/*---------------------------------------------------------------------------------------------------------*\
| Entries for dynamic UDEV rules |
| |
| DUMMY_DEVICE_DETECTOR("Arctic RGB controller", DetectArcticControllers, 0x1A86, 0x7523 ) |
\*---------------------------------------------------------------------------------------------------------*/
REGISTER_CUSTOM_UDEV_RULE(arctic, "Arctic RGB controller", "SUBSYSTEMS==\"serial|hidraw\", ATTRS{idVendor}==\"1a86\", ATTRS{idProduct}==\"7523\", TAG+=\"uaccess\", TAG+=\"Arctic_RGB_controller\"");
@@ -4,18 +4,15 @@
| Detector for ASUS ROG Aura Core |
| |
| Adam Honse (CalcProgrammer1) 13 Apr 2020 |
| Chris M (Dr_No) 28 Jul 2022 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "DetectionManager.h"
#include "AsusAuraCoreController.h"
#include "RGBController.h"
#include "RGBController_AsusAuraCore.h"
#include "RGBController_AsusAuraCoreLaptop.h"
#include <hidapi.h>
#include "AsusAuraCoreController.h"
#include "DetectionManager.h"
#include "RGBController_AsusAuraCore.h"
#define AURA_CORE_VID 0x0B05
@@ -44,27 +41,6 @@ DetectedControllers DetectAsusAuraCoreControllers(hid_device_info* info, const s
return(detected_controllers);
}
DetectedControllers DetectAsusAuraCoreLaptopControllers(hid_device_info* info, const std::string& /*name*/)
{
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AsusAuraCoreLaptopController* controller = new AsusAuraCoreLaptopController(dev, info->path);
RGBController_AsusAuraCoreLaptop* rgb_controller = new RGBController_AsusAuraCoreLaptop(controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR ("ASUS Aura Core", DetectAsusAuraCoreControllers, AURA_CORE_VID, 0x1854);
REGISTER_HID_DETECTOR ("ASUS Aura Core", DetectAsusAuraCoreControllers, AURA_CORE_VID, 0x1866);
REGISTER_HID_DETECTOR ("ASUS Aura Core", DetectAsusAuraCoreControllers, AURA_CORE_VID, 0x1869);
REGISTER_HID_DETECTOR_PU("ASUS ROG Strix SCAR 15", DetectAsusAuraCoreLaptopControllers, AURA_CORE_VID, AURA_STRIX_SCAR_15_PID, 0xFF31, 0x79);
REGISTER_HID_DETECTOR_PU("ASUS ROG Strix SCAR 17", DetectAsusAuraCoreLaptopControllers, AURA_CORE_VID, 0x1866, 0xFF31, 0x79);
@@ -0,0 +1,38 @@
/*---------------------------------------------------------*\
| AsusAuraCoreLaptopControllerDetect.cpp |
| |
| Detector for ASUS ROG Aura Core Laptop |
| |
| Chris M (Dr_No) 28 Jul 2022 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include <hidapi.h>
#include "AsusAuraCoreLaptopController.h"
#include "DetectionManager.h"
#include "RGBController_AsusAuraCoreLaptop.h"
#define AURA_CORE_VID 0x0B05
DetectedControllers DetectAsusAuraCoreLaptopControllers(hid_device_info* info, const std::string& /*name*/)
{
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
AsusAuraCoreLaptopController* controller = new AsusAuraCoreLaptopController(dev, info->path);
RGBController_AsusAuraCoreLaptop* rgb_controller = new RGBController_AsusAuraCoreLaptop(controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR_PU("ASUS ROG Strix SCAR 15", DetectAsusAuraCoreLaptopControllers, AURA_CORE_VID, AURA_STRIX_SCAR_15_PID, 0xFF31, 0x79);
REGISTER_HID_DETECTOR_PU("ASUS ROG Strix SCAR 17", DetectAsusAuraCoreLaptopControllers, AURA_CORE_VID, 0x1866, 0xFF31, 0x79);
@@ -940,6 +940,25 @@ static const aura_core_laptop_device g814jv_device =
}
};
/*-------------------------------------------------------------*\
| ASUS ROG Strix G18 (G814JIR) |
| |
| G814JIR uses the same Aura Core keyboard and lightbar |
| layout as the G814JV G18 profile. |
\*-------------------------------------------------------------*/
static const aura_core_laptop_device g814jir_device =
{
"G814JIR",
{
&g814rw_keyboard_zone,
&g814jv_lightbar_zone,
nullptr,
nullptr,
nullptr,
nullptr
}
};
/*-------------------------------------------------------------------------*\
| DEVICE MASTER LIST |
\*-------------------------------------------------------------------------*/
@@ -954,6 +973,7 @@ const aura_core_laptop_device* aura_core_laptop_device_list_data[] =
&g713rw_device,
&g733qr_device,
&g814jv_device,
&g814jir_device,
};
const unsigned int AURA_CORE_LAPTOP_DEVICE_COUNT = (sizeof(aura_core_laptop_device_list_data) / sizeof(aura_core_laptop_device_list_data[ 0 ]));
@@ -428,7 +428,6 @@ void RGBController_AuraTUFKeyboard::SetupZones()
break;
case AURA_TUF_K3_GAMING_PID:
case AURA_TUF_K7_GAMING_PID:
case AURA_TUF_K3_GENII_MIKU_EDITION_PID:
keyboard_ptr = &AsusTUFK7Layouts;
break;
case AURA_ROG_STRIX_SCOPE_PID:
@@ -485,6 +484,7 @@ void RGBController_AuraTUFKeyboard::SetupZones()
keyboard_ptr = &AsusTufK1Layouts;
break;
case AURA_TUF_K3_GAMING_GEN_II_PID:
case AURA_TUF_K3_GENII_MIKU_EDITION_PID:
keyboard_ptr = &AsusTUFK3GamingGen2Layouts;
break;
default:
@@ -417,7 +417,7 @@ REGISTER_HID_DETECTOR ("ASUS Aura Addressable", DetectAs
REGISTER_HID_DETECTOR ("ASUS Aura Addressable", DetectAsusAuraUSBAddressable, AURA_USB_VID, AURA_ADDRESSABLE_4_PID);
REGISTER_HID_DETECTOR ("ASUS Aura Motherboard", DetectAsusAuraUSBMotherboards, AURA_USB_VID, AURA_MOTHERBOARD_1_PID);
REGISTER_HID_DETECTOR ("ASUS Aura Motherboard", DetectAsusAuraUSBMotherboards, AURA_USB_VID, AURA_MOTHERBOARD_2_PID);
REGISTER_HID_DETECTOR ("ASUS Aura Motherboard", DetectAsusAuraUSBMotherboards, AURA_USB_VID, AURA_MOTHERBOARD_3_PID);
REGISTER_HID_DETECTOR_PU("ASUS Aura Motherboard", DetectAsusAuraUSBMotherboards, AURA_USB_VID, AURA_MOTHERBOARD_3_PID, 0xFF72, 0x00A1);
REGISTER_HID_DETECTOR ("ASUS Aura Motherboard", DetectAsusAuraUSBMotherboards, AURA_USB_VID, AURA_MOTHERBOARD_4_PID);
REGISTER_HID_DETECTOR ("ASUS Aura Motherboard", DetectAsusAuraUSBMotherboards, AURA_USB_VID, AURA_MOTHERBOARD_5_PID);
@@ -22,8 +22,12 @@
| Product ID |
\*---------------------------------------------------------*/
#define ASUS_ROG_STRIX_XG27AQDMG_PID 0x1BA3
#define ASUS_ROG_SWIFT_XG27UCG_PID 0x1BB4
#define ASUS_ROG_STRIX_XG27ACDNG_PID 0x1BC9
#define ASUS_ROG_STRIX_XG27UCG_PID 0x1BB4
#define ASUS_ROG_SWIFT_PG32UCDM_PID 0x1B2B
#define ASUS_ROG_SWIFT_PG32UCDMR_PID 0x1C9B
#define ASUS_ROG_SWIFT_PG32UCDP_PID 0x1BCA
#define ASUS_ROG_AURA_MONITOR_LIGHT_BAR_PID 0x1AC8
DetectedControllers DetectAsusMonitorControllers(hid_device_info* info, const std::string& name)
{
@@ -44,5 +48,13 @@ DetectedControllers DetectAsusMonitorControllers(hid_device_info* info, const st
}
REGISTER_HID_DETECTOR_IPU("Asus ROG STRIX XG27AQDMG", DetectAsusMonitorControllers, ASUS_VID, ASUS_ROG_STRIX_XG27AQDMG_PID, 1, 0xFF72, 0x00A1);
REGISTER_HID_DETECTOR_IPU("Asus ROG STRIX XG27UCG", DetectAsusMonitorControllers, ASUS_VID, ASUS_ROG_SWIFT_XG27UCG_PID, 1, 0xFF72, 0x00A1);
REGISTER_HID_DETECTOR_IPU("Asus ROG STRIX PG32UCDM", DetectAsusMonitorControllers, ASUS_VID, ASUS_ROG_SWIFT_PG32UCDM_PID, 1, 0xFF72, 0x00A1);
REGISTER_HID_DETECTOR_IPU("Asus ROG STRIX XG27ACDNG", DetectAsusMonitorControllers, ASUS_VID, ASUS_ROG_STRIX_XG27ACDNG_PID, 1, 0xFF72, 0x00A1);
REGISTER_HID_DETECTOR_IPU("Asus ROG STRIX XG27UCG", DetectAsusMonitorControllers, ASUS_VID, ASUS_ROG_STRIX_XG27UCG_PID, 1, 0xFF72, 0x00A1);
REGISTER_HID_DETECTOR_IPU("Asus ROG SWIFT PG32UCDM", DetectAsusMonitorControllers, ASUS_VID, ASUS_ROG_SWIFT_PG32UCDM_PID, 1, 0xFF72, 0x00A1);
REGISTER_HID_DETECTOR_IPU("Asus ROG SWIFT PG32UCDMR", DetectAsusMonitorControllers, ASUS_VID, ASUS_ROG_SWIFT_PG32UCDMR_PID, 1, 0xFF72, 0x00A1);
REGISTER_HID_DETECTOR_IPU("Asus ROG SWIFT PG32UCDP", DetectAsusMonitorControllers, ASUS_VID, ASUS_ROG_SWIFT_PG32UCDP_PID, 1, 0xFF72, 0x00A1);
/*---------------------------------------------------------*\
| ALB01 exposes the Aura HID collection on interface 2. |
\*---------------------------------------------------------*/
REGISTER_HID_DETECTOR_IPU("Asus ROG Aura Monitor Light Bar", DetectAsusMonitorControllers, ASUS_VID, ASUS_ROG_AURA_MONITOR_LIGHT_BAR_PID, 2, 0xFF72, 0x00A1);
@@ -36,3 +36,5 @@ DetectedControllers DetectAsusTUFLaptopLinuxControllers()
}
REGISTER_DETECTOR("ASUS TUF Laptop", DetectAsusTUFLaptopLinuxControllers);
REGISTER_CUSTOM_UDEV_RULE(asus_wmi, "ASUS TUF Laptops (asus-wmi)", "ACTION==\"add\", SUBSYSTEM==\"leds\", KERNEL==\"asus::kbd_backlight\", RUN+=\"/usr/bin/env chmod a+w /sys%p/kbd_rgb_mode\"\nACTION==\"add\", SUBSYSTEM==\"leds\", KERNEL==\"asus::kbd_backlight\", RUN+=\"/usr/bin/env chmod a+w /sys%p/brightness\"");
@@ -40,8 +40,4 @@ DetectedControllers DetectBlinkyTapeControllers()
}
REGISTER_DETECTOR("BlinkyTape", DetectBlinkyTapeControllers);
/*---------------------------------------------------------------------------------------------------------*\
| Entries for dynamic UDEV rules |
| |
| DUMMY_DEVICE_DETECTOR("BlinkyTape", DetectBlinkyTapeControllers, 0x1D50, 0x605E ) |
\*---------------------------------------------------------------------------------------------------------*/
REGISTER_CUSTOM_UDEV_RULE(blinky_tape, "BlinkyTape", "SUBSYSTEMS==\"serial|hidraw\", ATTRS{idVendor}==\"1d50\", ATTRS{idProduct}==\"605e\", TAG+=\"uaccess\", TAG+=\"BlinkyTape\"");
@@ -335,7 +335,7 @@ void ClevoKeyboardController::SetEffect829x(unsigned char mode_value, const std:
{
for(size_t i = 0; i < colors.size() && i < 2; i++)
{
SendColorSlot829x(CLEVO_829X_CMD_SCAN_COLOR, CLEVO_829X_COLOR_SLOT_BASE + i, colors[i]);
SendColorSlot829x(CLEVO_829X_CMD_SCAN_COLOR, CLEVO_829X_COLOR_SLOT_BASE + (unsigned char)i, colors[i]);
}
}
@@ -18,71 +18,79 @@
| |
| Based on KEYBOARD_SIZE_TKL with numpad added and |
| navigation cluster adjusted to match Clevo's layout. |
| |
| Hardware LED indices (value field): |
| - Row 5 (F-keys): 105-124 |
| - Row 4 (numbers): 84-102 |
| - Row 3 (QWERTY): 63-81 |
| - Row 2 (home): 42-59 |
| - Row 1 (Z row): 22-39 |
| - Row 0 (modifiers): 0-18 |
\*---------------------------------------------------------*/
/*---------------------------------------------------------*\
| LED values in TKL order (fn_row + main + extras) |
| LED values, in physical (row, then column) order. |
| |
| This must match the order KeyboardLayoutManager assigns |
| default_values against: the structural keymap sorted by |
| (row, col) across main+fn_row+extras combined, NOT the |
| fn_row-then-main-then-extras order the zone tables below |
| are declared in. Getting this wrong silently misassigns |
| almost every key from Print Screen onward, not just a few.|
| |
| Values follow the key order in KeyboardLayoutManager.cpp. |
| For ANSI-only keys (not present on this ISO keyboard), |
| use 0 as a placeholder - they won't be displayed. |
| Numpad values are added via edit_keys. |
\*---------------------------------------------------------*/
static const std::vector<unsigned int> clevo_tkl_values =
{
/*---------------------------------------------------------*\
| Function row (keyboard_zone_fn_row) |
\*---------------------------------------------------------*/
/*-----------------------------------------------------*\
| Row 0: fn_row + Print Screen/Scroll Lock/Pause |
\*-----------------------------------------------------*/
105, // Escape
106, 107, 108, 109, // F1-F4
110, 111, 112, 113, // F5-F8
114, 115, 116, 117, // F9-F12
118, // Print Screen
0, // Scroll Lock (removed via edit_keys)
0, // Pause (removed via edit_keys)
/*---------------------------------------------------------*\
| Main block - Row 1 (keyboard_zone_main) |
\*---------------------------------------------------------*/
/*-----------------------------------------------------*\
| Row 1: numbers row + Insert/Home/Page Up |
\*-----------------------------------------------------*/
84, // Back tick
85, 86, 87, 88, 89, 90, 91, 92, 93, 94, // 1-0
95, 96, // Minus, Equals
98, // Backspace
119, // Insert
121, // Home
122, // Page Up
/*---------------------------------------------------------*\
| Main block - Row 2 |
\*---------------------------------------------------------*/
/*-----------------------------------------------------*\
| Row 2: Tab/QWERTY row + Delete/End/PageDown |
\*-----------------------------------------------------*/
63, // Tab
65, 66, 67, 68, 69, 70, 71, 72, 73, 74, // Q-P
75, 76, // [ ]
0, // ANSI backslash (not on ISO)
120, // Delete
124, // End
123, // Page Down
/*---------------------------------------------------------*\
| Main block - Row 3 |
\*---------------------------------------------------------*/
/*-----------------------------------------------------*\
| Row 3: Caps Lock/home row/Enter |
\*-----------------------------------------------------*/
42, // Caps Lock
44, 45, 46, 47, 48, 49, 50, 51, 52, // A-L
53, 54, // ; '
55, // ISO # (POUND)
77, // Enter (ANSI/ISO share same LED)
56, // Enter
/*---------------------------------------------------------*\
| Main block - Row 4 |
\*---------------------------------------------------------*/
22, // Left Shift
23, // ISO backslash
/*-----------------------------------------------------*\
| Row 4: Left Shift/ISO backslash/Z row + Up |
\*-----------------------------------------------------*/
21, // Left Shift
77, // ISO backslash
24, 25, 26, 27, 28, 29, 30, 31, 32, // Z-. (9 keys)
33, // /
35, // Right Shift
14, // Up
/*---------------------------------------------------------*\
| Main block - Row 5 |
\*---------------------------------------------------------*/
/*-----------------------------------------------------*\
| Row 5: bottom modifier row + Left/Down/Right |
\*-----------------------------------------------------*/
0, // Left Ctrl
3, // Left Win
4, // Left Alt
@@ -91,24 +99,6 @@ static const std::vector<unsigned int> clevo_tkl_values =
0, // Right Fn (removed via edit_keys)
0, // Menu (removed via edit_keys)
12, // Right Ctrl
/*---------------------------------------------------------*\
| Extras - Navigation cluster (keyboard_zone_extras) |
\*---------------------------------------------------------*/
118, // Print Screen
0, // Scroll Lock (removed via edit_keys)
0, // Pause (removed via edit_keys)
119, // Insert
121, // Home
123, // Page Up
120, // Delete
122, // End
124, // Page Down
/*---------------------------------------------------------*\
| Extras - Arrow keys |
\*---------------------------------------------------------*/
14, // Up
13, // Left
18, // Down
15, // Right
@@ -1,4 +1,4 @@
/*---------------------------------------------------------*\
/*---------------------------------------------------------*\
| ColorfulGPUControllerDetect.cpp |
| |
| Detector for Colorful GPU |
@@ -51,6 +51,7 @@ DetectedControllers DetectColorfulGPUControllers(i2c_smbus_interface* bus, uint8
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_GA106_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_GA106_DEV, COLORFUL_SUB_VEN, COLORFUL_IGAME_RTX_3060_ULTRAW_OC_12G_2, 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, 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);
@@ -13,11 +13,6 @@
#include "CMSmallARGBController.h"
#include "StringUtils.h"
cm_small_argb_headers cm_small_argb_header_data[1] =
{
{ "CM Small ARGB", 0x01, true, 12 }
};
CMSmallARGBController::CMSmallARGBController(hid_device* dev_handle, char *_path)
{
dev = dev_handle;
@@ -92,6 +87,24 @@ std::string CMSmallARGBController::GetSerial()
return(StringUtils::wstring_to_string(serial_string));
}
std::string CMSmallARGBController::GetVersion()
{
/*-----------------------------------------------------*\
| This device uses the serial value to determine the |
| version. It does not report a proper unique serial. |
\*-----------------------------------------------------*/
std::string serial_string = GetSerial();
if(serial_string == CM_SMALL_ARGB_FW0012)
{
return("0012");
}
else
{
return("Unsupported");
}
}
std::string CMSmallARGBController::GetLocation()
{
return("HID: " + location);
@@ -122,6 +135,11 @@ unsigned char CMSmallARGBController::GetLedSpeed()
return(current_speed);
}
unsigned char CMSmallARGBController::GetBrightness()
{
return(current_brightness);
}
bool CMSmallARGBController::GetRandomColours()
{
return(bool_random);
@@ -217,9 +235,9 @@ void CMSmallARGBController::SendUpdate()
hid_write(dev, buffer, buffer_size);
buffer[CM_SMALL_ARGB_COMMAND_BYTE] = 0x0b;
buffer[CM_SMALL_ARGB_FUNCTION_BYTE] = (false) ? 0x01 : 0x02; //This controls custom mode TODO
buffer[CM_SMALL_ARGB_ZONE_BYTE] = cm_small_argb_header_data[0].header;
buffer[CM_SMALL_ARGB_COMMAND_BYTE] = 0x0B;
buffer[CM_SMALL_ARGB_FUNCTION_BYTE] = 0x02;
buffer[CM_SMALL_ARGB_ZONE_BYTE] = 0x01;
buffer[CM_SMALL_ARGB_MODE_BYTE] = current_mode;
buffer[CM_SMALL_ARGB_SPEED_BYTE] = current_speed;
buffer[CM_SMALL_ARGB_COLOUR_INDEX_BYTE] = (bool_random) ? 0x00 : 0x10; //This looks to still be the colour index and controls random colours
@@ -39,16 +39,6 @@ enum
CM_SMALL_ARGB_BLUE_BYTE = 11,
};
struct cm_small_argb_headers
{
const char* name;
unsigned char header;
bool digital;
unsigned int count;
};
extern cm_small_argb_headers cm_small_argb_header_data[1];
enum
{
CM_SMALL_ARGB_MODE_SPECTRUM = 0x01, //Spectrum Mode
@@ -71,6 +61,8 @@ enum
CM_SMALL_ARGB_SPEED_FASTEST = 0x04, // Fastest speed
};
#define CM_SMALL_ARGB_FW0012 std::string("A202104052336")
class CMSmallARGBController
{
public:
@@ -80,12 +72,14 @@ public:
std::string GetDeviceName();
std::string GetSerial();
std::string GetLocation();
std::string GetVersion();
unsigned char GetMode();
unsigned char GetLedRed();
unsigned char GetLedGreen();
unsigned char GetLedBlue();
unsigned char GetLedSpeed();
unsigned char GetBrightness();
bool GetRandomColours();
void SetLedCount(int zone, int led_count);
@@ -27,22 +27,68 @@
RGBController_CMSmallARGBController::RGBController_CMSmallARGBController(CMSmallARGBController* controller_ptr)
{
controller = controller_ptr;
unsigned char speed = controller->GetLedSpeed();
name = cm_small_argb_header_data[0].name;
name = controller->GetDeviceName();
vendor = "Cooler Master";
type = DEVICE_TYPE_LEDSTRIP;
description = controller->GetDeviceName();
version = "2.0 for FW0012";
description = "Cooler Master Small ARGB Controller Device";
version = controller->GetVersion();
serial = controller->GetSerial();
location = controller->GetLocation();
if(serial >= CM_SMALL_ARGB_FW0012)
SetupModes();
SetupZones();
/*-----------------------------------------------------*\
| Initialize the active mode to the device's current |
| mode |
\*-----------------------------------------------------*/
int device_mode = controller->GetMode();
for(std::size_t mode_idx = 0; mode_idx < modes.size(); mode_idx++)
{
if(modes[mode_idx].value == device_mode)
{
active_mode = (int)mode_idx;
if((modes[mode_idx].flags & MODE_FLAG_HAS_MODE_SPECIFIC_COLOR) && (modes[mode_idx].colors.size() > 0))
{
modes[mode_idx].colors[0] = ToRGBColor(controller->GetLedRed(), controller->GetLedGreen(), controller->GetLedBlue());
}
if(modes[mode_idx].flags & MODE_FLAG_HAS_SPEED)
{
modes[mode_idx].speed = controller->GetLedSpeed();
}
if(modes[mode_idx].flags & MODE_FLAG_HAS_BRIGHTNESS)
{
modes[mode_idx].brightness = controller->GetBrightness();
}
if(modes[mode_idx].flags & MODE_FLAG_HAS_RANDOM_COLOR)
{
modes[mode_idx].color_mode = controller->GetRandomColours() ? MODE_COLORS_RANDOM : MODE_COLORS_MODE_SPECIFIC;
}
break;
}
}
}
void RGBController_CMSmallARGBController::SetupModes()
{
/*-----------------------------------------------------*\
| The Small ARGB only supports Direct mode from FW0012 |
| onwards, older firmware does not accept direct mode |
| packets |
\*-----------------------------------------------------*/
//if(serial >= CM_SMALL_ARGB_FW0012)
{
mode Direct;
Direct.name = "Direct";
Direct.value = CM_SMALL_ARGB_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_REQUIRES_ENTIRE_DEVICE;
Direct.brightness_min = 0;
Direct.brightness_max = CM_SMALL_ARGB_BRIGHTNESS_MAX;
Direct.brightness = CM_SMALL_ARGB_BRIGHTNESS_MAX;
@@ -69,7 +115,7 @@ RGBController_CMSmallARGBController::RGBController_CMSmallARGBController(CMSmall
Reload.speed_min = CM_SMALL_ARGB_SPEED_SLOWEST;
Reload.speed_max = CM_SMALL_ARGB_SPEED_FASTEST;
Reload.color_mode = MODE_COLORS_RANDOM;
Reload.speed = speed;
Reload.speed = CM_SMALL_ARGB_SPEED_NORMAL;
modes.push_back(Reload);
mode Recoil;
@@ -85,7 +131,7 @@ RGBController_CMSmallARGBController::RGBController_CMSmallARGBController(CMSmall
Recoil.speed_min = CM_SMALL_ARGB_SPEED_SLOWEST;
Recoil.speed_max = CM_SMALL_ARGB_SPEED_FASTEST;
Recoil.color_mode = MODE_COLORS_RANDOM;
Recoil.speed = speed;
Recoil.speed = CM_SMALL_ARGB_SPEED_NORMAL;
modes.push_back(Recoil);
mode Breathing;
@@ -101,7 +147,7 @@ RGBController_CMSmallARGBController::RGBController_CMSmallARGBController(CMSmall
Breathing.speed_min = CM_SMALL_ARGB_SPEED_SLOWEST;
Breathing.speed_max = CM_SMALL_ARGB_SPEED_FASTEST;
Breathing.color_mode = MODE_COLORS_RANDOM;
Breathing.speed = speed;
Breathing.speed = CM_SMALL_ARGB_SPEED_NORMAL;
modes.push_back(Breathing);
mode Refill;
@@ -117,7 +163,7 @@ RGBController_CMSmallARGBController::RGBController_CMSmallARGBController(CMSmall
Refill.speed_min = CM_SMALL_ARGB_SPEED_SLOWEST;
Refill.speed_max = CM_SMALL_ARGB_SPEED_FASTEST;
Refill.color_mode = MODE_COLORS_RANDOM;
Refill.speed = speed;
Refill.speed = CM_SMALL_ARGB_SPEED_NORMAL;
modes.push_back(Refill);
mode Demo;
@@ -130,7 +176,7 @@ RGBController_CMSmallARGBController::RGBController_CMSmallARGBController(CMSmall
Demo.speed_min = CM_SMALL_ARGB_SPEED_SLOWEST;
Demo.speed_max = CM_SMALL_ARGB_SPEED_FASTEST;
Demo.color_mode = MODE_COLORS_NONE;
Demo.speed = speed;
Demo.speed = CM_SMALL_ARGB_SPEED_NORMAL;
modes.push_back(Demo);
mode Spectrum;
@@ -143,39 +189,19 @@ RGBController_CMSmallARGBController::RGBController_CMSmallARGBController(CMSmall
Spectrum.speed_min = CM_SMALL_ARGB_SPEED_SLOWEST;
Spectrum.speed_max = CM_SMALL_ARGB_SPEED_FASTEST;
Spectrum.color_mode = MODE_COLORS_NONE;
Spectrum.speed = speed;
Spectrum.speed = CM_SMALL_ARGB_SPEED_NORMAL;
modes.push_back(Spectrum);
/*-----------------------------------------------------*\
| Define Passthrough mode as requiring the entire |
| device, it hands control over to the motherboard |
\*-----------------------------------------------------*/
mode PassThru;
PassThru.name = "Pass Thru";
PassThru.value = CM_SMALL_ARGB_MODE_PASSTHRU;
PassThru.flags = MODE_FLAG_REQUIRES_ENTIRE_DEVICE;
PassThru.color_mode = MODE_COLORS_NONE;
modes.push_back(PassThru);
SetupZones();
int temp_mode = controller->GetMode();
for(int mode_idx = 0; mode_idx < (int)modes.size() ; mode_idx++)
{
if(temp_mode == modes[mode_idx].value)
{
active_mode = mode_idx;
break;
}
}
if (modes[active_mode].flags & MODE_FLAG_HAS_MODE_SPECIFIC_COLOR)
{
modes[active_mode].colors[0] = ToRGBColor(controller->GetLedRed(), controller->GetLedGreen(), controller->GetLedBlue());
}
modes[active_mode].color_mode = (controller->GetRandomColours()) ? MODE_COLORS_RANDOM : MODE_COLORS_MODE_SPECIFIC;
if (modes[active_mode].flags & MODE_FLAG_HAS_SPEED)
{
modes[active_mode].speed = controller->GetLedSpeed();
}
}
RGBController_CMSmallARGBController::~RGBController_CMSmallARGBController()
@@ -248,7 +274,9 @@ void RGBController_CMSmallARGBController::SetupZones()
{
led new_led;
new_led.name = zones[zone_idx].name;
new_led.name.append(", LED " + std::to_string(lp_idx));
new_led.name.append(", LED ");
new_led.name.append(std::to_string(lp_idx + 1));
new_led.value = (unsigned int)zone_idx;
leds.push_back(new_led);
}
@@ -261,7 +289,7 @@ void RGBController_CMSmallARGBController::DeviceConfigureZone(int zone_idx)
{
if((size_t)zone_idx < zones.size())
{
controller->SetLedCount(cm_small_argb_header_data[zone_idx].header, zones[zone_idx].leds_count);
controller->SetLedCount(1, zones[zone_idx].leds_count);
SetupZones();
}
@@ -277,37 +305,79 @@ void RGBController_CMSmallARGBController::DeviceUpdateLEDs()
void RGBController_CMSmallARGBController::DeviceUpdateZoneLEDs(int zone)
{
if(serial >= CM_SMALL_ARGB_FW0012)
/*-----------------------------------------------------*\
| Only send direct packets while Direct mode is active. |
| Direct mode is only offered on FW0012 and newer, so |
| older firmware will never send direct packets here |
\*-----------------------------------------------------*/
if(modes[active_mode].value != CM_SMALL_ARGB_MODE_DIRECT)
{
controller->SetLedsDirect( zones[zone].colors, zones[zone].leds_count );
return;
}
controller->SetLedsDirect(zones[zone].colors, zones[zone].leds_count);
}
void RGBController_CMSmallARGBController::DeviceUpdateSingleLED(int led)
{
DeviceUpdateZoneLEDs(led);
/*-----------------------------------------------------*\
| Map the LED back to its zone and update that zone |
\*-----------------------------------------------------*/
unsigned int zone_idx = leds[led].value;
UpdateZoneLEDs(zone_idx);
}
void RGBController_CMSmallARGBController::SetCustomMode()
{
/*-------------------------------------------------*\
| The small ARGB may not support "Direct" mode |
| in which case this will select "Pass Thru" |
\*-------------------------------------------------*/
/*-----------------------------------------------------*\
| Direct mode is only supported on FW0012 and newer |
\*-----------------------------------------------------*/
if(serial >= CM_SMALL_ARGB_FW0012)
{
active_mode = 0;
/*-------------------------------------------------*\
| Search the mode list for Direct mode |
\*-------------------------------------------------*/
for(std::size_t mode_idx = 0; mode_idx < modes.size(); mode_idx++)
{
if(modes[mode_idx].name == "Direct")
{
SetActiveMode((int)mode_idx);
break;
}
}
}
else
{
active_mode = 7;
/*-------------------------------------------------*\
| Direct mode is unsupported by the firmware, |
| fall back to Pass Thru |
\*-------------------------------------------------*/
for(std::size_t mode_idx = 0; mode_idx < modes.size(); mode_idx++)
{
if(modes[mode_idx].value == CM_SMALL_ARGB_MODE_PASSTHRU)
{
SetActiveMode((int)mode_idx);
break;
}
}
}
}
void RGBController_CMSmallARGBController::DeviceUpdateMode()
{
bool random_colours = (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
RGBColor colour = (modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC) ? modes[active_mode].colors[0] : 0;
/*-----------------------------------------------------*\
| Set up mode parameters |
\*-----------------------------------------------------*/
bool random_colours = (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
RGBColor colour = 0;
unsigned int speed = modes[active_mode].speed;
unsigned int brightness = modes[active_mode].brightness;
controller->SetMode( modes[active_mode].value, modes[active_mode].speed, modes[active_mode].brightness, colour, random_colours);
if(modes[active_mode].colors.size() > 0)
{
colour = modes[active_mode].colors[0];
}
controller->SetMode(modes[active_mode].value, speed, brightness, colour, random_colours);
}
@@ -18,7 +18,6 @@
#define CM_SMALL_ARGB_MIN_LEDS 4
#define CM_SMALL_ARGB_MAX_LEDS 48
#define CM_SMALL_ARGB_BRIGHTNESS_MAX 0xFF
#define CM_SMALL_ARGB_FW0012 "A202104052336"
class RGBController_CMSmallARGBController : public RGBController
{
@@ -26,7 +25,9 @@ public:
RGBController_CMSmallARGBController(CMSmallARGBController* controller_ptr);
~RGBController_CMSmallARGBController();
void SetupModes();
void SetupZones();
void DeviceConfigureZone(int zone_idx);
void DeviceUpdateLEDs();
@@ -35,9 +36,7 @@ public:
void SetCustomMode();
void DeviceUpdateMode();
private:
void Init_Controller();
int GetDeviceMode();
private:
CMSmallARGBController* controller;
};
@@ -327,9 +327,18 @@ DetectedControllers DetectCoolerMasterSmallARGB(hid_device_info* info, const std
if(dev)
{
CMSmallARGBController* controller = new CMSmallARGBController(dev, info->path);
RGBController_CMSmallARGBController* rgb_controller = new RGBController_CMSmallARGBController(controller);
detected_controllers.push_back(rgb_controller);
if(controller->GetVersion() != "Unsupported")
{
RGBController_CMSmallARGBController* rgb_controller = new RGBController_CMSmallARGBController(controller);
detected_controllers.push_back(rgb_controller);
}
else
{
LOG_ERROR("[CMSmallARGBController] Unsupported firmware version");
delete controller;
}
}
return(detected_controllers);
@@ -44,8 +44,4 @@ DetectedControllers DetectCorsairHydro2Controllers()
}
REGISTER_DETECTOR("Corsair H100i v2", DetectCorsairHydro2Controllers);
/*---------------------------------------------------------------------------------------------------------*\
| Entries for dynamic UDEV rules |
| |
| DUMMY_DEVICE_DETECTOR("Corsair H100i v2", DetectCorsairHydro2Controllers, 0x1B1C, 0x0C09 ) |
\*---------------------------------------------------------------------------------------------------------*/
REGISTER_CUSTOM_UDEV_RULE(corsair_h100i_v2, "Corsair H100i v2", "SUBSYSTEMS==\"usb|hidraw\", ATTRS{idVendor}==\"1b1c\", ATTRS{idProduct}==\"0c09\", TAG+=\"uaccess\", TAG+=\"Corsair_H100i_v2\"");
@@ -77,10 +77,6 @@ DetectedControllers DetectCorsairHydroControllers()
}
REGISTER_DETECTOR("Corsair Hydro Series", DetectCorsairHydroControllers);
/*---------------------------------------------------------------------------------------------------------*\
| Entries for dynamic UDEV rules |
| |
| DUMMY_DEVICE_DETECTOR("Corsair Hydro Series", DetectCorsairHydroControllers, 0x1B1C, 0x0C12 ) |
| DUMMY_DEVICE_DETECTOR("Corsair Hydro Series", DetectCorsairHydroControllers, 0x1B1C, 0x0C13 ) |
| DUMMY_DEVICE_DETECTOR("Corsair Hydro Series", DetectCorsairHydroControllers, 0x1B1C, 0x0C15 ) |
\*---------------------------------------------------------------------------------------------------------*/
REGISTER_CUSTOM_UDEV_RULE(corsair_hydro_1, "Corsair Hydro Series", "SUBSYSTEMS==\"usb|hidraw\", ATTRS{idVendor}==\"1b1c\", ATTRS{idProduct}==\"0c12\", TAG+=\"uaccess\", TAG+=\"Corsair_Hydro_Series\"");
REGISTER_CUSTOM_UDEV_RULE(corsair_hydro_2, "Corsair Hydro Series", "SUBSYSTEMS==\"usb|hidraw\", ATTRS{idVendor}==\"1b1c\", ATTRS{idProduct}==\"0c13\", TAG+=\"uaccess\", TAG+=\"Corsair_Hydro_Series\"");
REGISTER_CUSTOM_UDEV_RULE(corsair_hydro_3, "Corsair Hydro Series", "SUBSYSTEMS==\"usb|hidraw\", ATTRS{idVendor}==\"1b1c\", ATTRS{idProduct}==\"0c15\", TAG+=\"uaccess\", TAG+=\"Corsair_Hydro_Series\"");
@@ -232,7 +232,7 @@ void CorsairLightingNodeController::SendFirmwareRequest()
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
actual = WriteAndRead(usb_buf);
actual = WriteAndRead(usb_buf, CORSAIR_LIGHTING_NODE_READ_TIMEOUT);
if(actual > 0)
{
@@ -217,7 +217,7 @@ void CorsairPeripheralController::SetLEDsKeyboardFull(std::vector<RGBColor> colo
blu_val[keys_k95[color_idx]] = RGBGetBValue(color);
data_sz = 48; //untested
}
else if (logical_layout == CORSAIR_TYPE_K70_MK2)
else if (logical_layout == CORSAIR_TYPE_K70_MK2 || logical_layout == CORSAIR_TYPE_K70_LUX_RGB)
{
red_val[keys_k70_mk2[color_idx]] = RGBGetRValue(color);
grn_val[keys_k70_mk2[color_idx]] = RGBGetGValue(color);
@@ -447,7 +447,7 @@ void CorsairPeripheralController::SetupK55AndK95LightingControl()
if (physical_layout == CORSAIR_LAYOUT_ISO)
{
if(logical_layout == CORSAIR_TYPE_K70_MK2)
if(logical_layout == CORSAIR_TYPE_K70_MK2 || logical_layout == CORSAIR_TYPE_K70_LUX_RGB)
{
skipped_identifiers = key_mapping_k70_mk2_plat_iso;
skipped_identifiers_count = sizeof(key_mapping_k70_mk2_plat_iso) / sizeof(key_mapping_k70_mk2_plat_iso[0]);
@@ -632,10 +632,15 @@ void CorsairPeripheralController::ReadFirmwareInfo()
logical_layout = CORSAIR_TYPE_K55;
break;
case 0x1B33:
logical_layout = CORSAIR_TYPE_K70_LUX_RGB;
break;
case 0x1B38:
case 0x1B49:
case 0x1B6B:
case 0x1B55:
case 0x1B48:
logical_layout = CORSAIR_TYPE_K70_MK2;
break;
@@ -67,7 +67,8 @@ enum
CORSAIR_TYPE_K95 = 2,
CORSAIR_TYPE_K55 = 3,
CORSAIR_TYPE_K70_MK2 = 4,
CORSAIR_TYPE_K68 = 5
CORSAIR_TYPE_K68 = 5,
CORSAIR_TYPE_K70_LUX_RGB = 6
};
enum
@@ -48,7 +48,7 @@
#define CORSAIR_K70_RGB_MK2_PID 0x1B49
#define CORSAIR_K70_RGB_MK2_SE_PID 0x1B6B
#define CORSAIR_K70_RGB_MK2_LP_PID 0x1B55
#define CORSAIR_K70_RGB_PRO_OPTO_PID 0x1BC6
#define CORSAIR_K95_RGB_PID 0x1B11
#define CORSAIR_K95_PLATINUM_PID 0x1B2D
#define CORSAIR_K95_PLATINUM_SE_PID 0x1B82
@@ -81,6 +81,7 @@
#define CORSAIR_SCIMITAR_PRO_RGB_PID 0x1B3E
#define CORSAIR_SCIMITAR_ELITE_RGB_PID 0x1B8B
#define CORSAIR_SABRE_RGB_PID 0x1B2F
#define CORSAIR_SABRE_RGB_OPTICAL_PID 0x1B32
/*---------------------------------------------------------*\
| Mousepad product IDs |
@@ -192,6 +193,7 @@ REGISTER_HID_DETECTOR_IP("Corsair K70 RGB RAPIDFIRE", DetectCorsairPeriphe
REGISTER_HID_DETECTOR_IP("Corsair K70 RGB MK.2", DetectCorsairPeripheralControllers, CORSAIR_VID, CORSAIR_K70_RGB_MK2_PID, 1, 0xFFC2);
REGISTER_HID_DETECTOR_IP("Corsair K70 RGB MK.2 SE", DetectCorsairPeripheralControllers, CORSAIR_VID, CORSAIR_K70_RGB_MK2_SE_PID, 1, 0xFFC2);
REGISTER_HID_DETECTOR_IP("Corsair K70 RGB MK.2 Low Profile",DetectCorsairPeripheralControllers, CORSAIR_VID, CORSAIR_K70_RGB_MK2_LP_PID, 1, 0xFFC2);
REGISTER_HID_DETECTOR_IP("Corsair K70 RGB PRO Optomechanical", DetectCorsairPeripheralControllers, CORSAIR_VID, CORSAIR_K70_RGB_PRO_OPTO_PID, 1, 0xFFC2);
REGISTER_HID_DETECTOR_IP("Corsair K95 RGB", DetectCorsairPeripheralControllers, CORSAIR_VID, CORSAIR_K95_RGB_PID, 1, 0xFFC2);
REGISTER_HID_DETECTOR_IP("Corsair K95 RGB PLATINUM", DetectCorsairPeripheralControllers, CORSAIR_VID, CORSAIR_K95_PLATINUM_PID, 1, 0xFFC2);
REGISTER_HID_DETECTOR_IP("Corsair K95 RGB PLATINUM SE", DetectCorsairPeripheralControllers, CORSAIR_VID, CORSAIR_K95_PLATINUM_SE_PID, 1, 0xFFC2);
@@ -214,6 +216,7 @@ REGISTER_HID_DETECTOR_IP("Corsair Scimitar RGB", DetectCorsairPeriphe
REGISTER_HID_DETECTOR_IP("Corsair Scimitar PRO RGB", DetectCorsairPeripheralControllers, CORSAIR_VID, CORSAIR_SCIMITAR_PRO_RGB_PID, 1, 0xFFC2);
REGISTER_HID_DETECTOR_IP("Corsair Scimitar Elite RGB", DetectCorsairPeripheralControllers, CORSAIR_VID, CORSAIR_SCIMITAR_ELITE_RGB_PID, 1, 0xFFC2);
REGISTER_HID_DETECTOR_IP("Corsair Sabre RGB", DetectCorsairPeripheralControllers, CORSAIR_VID, CORSAIR_SABRE_RGB_PID, 1, 0xFFC2);
REGISTER_HID_DETECTOR_IP("Corsair Sabre RGB Optical", DetectCorsairPeripheralControllers, CORSAIR_VID, CORSAIR_SABRE_RGB_OPTICAL_PID, 1, 0xFFC2);
/*---------------------------------------------------------*\
| Mousemats |
@@ -23,6 +23,15 @@ static unsigned int matrix_map[6][23] =
{ 4, 111, 22, 32, 40, 50, NA, 59, NA, 68, 78, 88, 97, 106, 61, NA, NA, 81, NA, 73, 83, 92, 109 },
{ 5, 14, 23, NA, NA, NA, NA, 41, NA, NA, NA, NA, 69, 79, 89, 71, 90, 99, 108, 101, NA, 110, NA } };
static unsigned int matrix_map_k70_lux_rgb[7][23] =
{ { NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, NA, 107, 8, NA, NA, 16, NA, NA,},
{ 0, NA, 10, 18, 28, 36, NA, 46, 55, 64, 74, NA, 84, 93, 102, 6, 15, 24, 33, 26, 35, 44, 53 },
{ 1, 11, 19, 29, 37, 47, NA, 56, 65, 75, 85, 94, 103, 7, 25, NA, 42, 51, 60, 62, 72, 82, 91 },
{ 2, NA, 12, 20, 30, 38, 48, 57, 66, 76, 86, NA, 95, 104, 70, 80, 34, 43, 52, 9, 17, 27, 100 },
{ 3, NA, 13, 21, 31, 39, 49, 58, 67, 77, 87, NA, 96, 105, 98, 112, NA, NA, NA, 45, 54, 63, NA },
{ 4, 111, NA, 22, 32, 40, 50, 59, 68, 78, 88, 97, NA, 106, 61, NA, NA, 81, NA, 73, 83, 92, 109 },
{ 5, NA, 14, 23, NA, NA, NA, 41, NA, NA, NA, 69, NA, 79, 89, 71, 90, 99, 108, 101, NA, 110, NA } };
static unsigned int matrix_map_k70_mk2[7][23] =
{ { NA, NA, NA, 115, 107, 8, NA, NA, NA, NA, NA, 113, 114, NA, NA, NA, NA, NA, NA, 16, NA, NA, NA,},
{ 0, NA, 10, 18, 28, 36, NA, 46, 55, 64, 74, NA, 84, 93, 102, 6, 15, 24, 33, 26, 35, 44, 53 },
@@ -68,6 +77,24 @@ static const zone_type zone_types[] =
ZONE_TYPE_MATRIX,
};
/*---------------------------------------------------------*\
| K70 LUX RGB Corsair Layout |
\*---------------------------------------------------------*/
static const char* zone_names_k70_lux_rgb[] =
{
ZONE_EN_KEYBOARD,
};
static const unsigned int zone_sizes_k70_lux_rgb[] =
{
116
};
static const zone_type zone_types_k70_lux_rgb[] =
{
ZONE_TYPE_MATRIX,
};
/*---------------------------------------------------------*\
| K70 MK2 Corsair Layout |
\*---------------------------------------------------------*/
@@ -159,7 +186,7 @@ static const char* led_names[] =
KEY_EN_LEFT_CONTROL, //5
KEY_EN_F12, //6
KEY_EN_EQUALS, //7
"Key: Lock", //8
KEY_EN_WINDOWS_LOCK, //8
KEY_EN_NUMPAD_7, //9
KEY_EN_F1, //12
KEY_EN_1, //13
@@ -258,7 +285,7 @@ static const char* led_names[] =
KEY_EN_LEFT_BRACKET, //134
KEY_EN_QUOTE, //135
KEY_EN_FORWARD_SLASH, //136
"Key: Brightness", //137
KEY_EN_BRIGHTNESS, //137
KEY_EN_RIGHT_ARROW, //139
KEY_EN_NUMPAD_ENTER, //140
KEY_EN_NUMPAD_PERIOD, //141
@@ -266,7 +293,7 @@ static const char* led_names[] =
KEY_EN_ISO_BACK_SLASH,
};
static const char* led_names_k70_mk2[] =
static const char* led_names_k70_lux_rgb[] =
{
KEY_EN_ESCAPE, //0
KEY_EN_BACK_TICK, //1
@@ -276,7 +303,7 @@ static const char* led_names_k70_mk2[] =
KEY_EN_LEFT_CONTROL, //5
KEY_EN_F12, //6
KEY_EN_EQUALS, //7
"Key: Lock", //8
KEY_EN_WINDOWS_LOCK, //8
KEY_EN_NUMPAD_7, //9
KEY_EN_F1, //12
KEY_EN_1, //13
@@ -380,7 +407,132 @@ static const char* led_names_k70_mk2[] =
KEY_EN_LEFT_BRACKET, //134
KEY_EN_QUOTE, //135
KEY_EN_FORWARD_SLASH, //136
"Key: Brightness", //137
KEY_EN_BRIGHTNESS, //137
KEY_EN_RIGHT_ARROW, //139
KEY_EN_NUMPAD_ENTER, //140
KEY_EN_NUMPAD_PERIOD, //141
"Key: / (ISO)", //16
KEY_EN_ISO_BACK_SLASH, //114
"Key: Logo Left", //047
"Key: Logo Right", //059
"Key: Profile", //125
};
static const char* led_names_k70_mk2[] =
{
KEY_EN_ESCAPE, //0
KEY_EN_BACK_TICK, //1
KEY_EN_TAB, //2
KEY_EN_CAPS_LOCK, //3
KEY_EN_LEFT_SHIFT, //4
KEY_EN_LEFT_CONTROL, //5
KEY_EN_F12, //6
KEY_EN_EQUALS, //7
KEY_EN_WINDOWS_LOCK, //8
KEY_EN_NUMPAD_7, //9
KEY_EN_F1, //12
KEY_EN_1, //13
KEY_EN_Q, //14
KEY_EN_A, //15
//"Key: / (ISO)", //16
KEY_EN_LEFT_WINDOWS, //17
KEY_EN_PRINT_SCREEN, //18
KEY_EN_MEDIA_MUTE, //20
KEY_EN_NUMPAD_8, //21
KEY_EN_F2, //24
KEY_EN_2, //25
KEY_EN_W, //26
KEY_EN_S, //27
KEY_EN_Z, //28
KEY_EN_LEFT_ALT, //29
KEY_EN_SCROLL_LOCK, //30
KEY_EN_BACKSPACE, //31
KEY_EN_MEDIA_STOP, //32
KEY_EN_NUMPAD_9, //33
KEY_EN_F3, //36
KEY_EN_3, //37
KEY_EN_E, //38
KEY_EN_D, //39
KEY_EN_X, //40
KEY_EN_PAUSE_BREAK, //42
KEY_EN_DELETE, //43
KEY_EN_MEDIA_PREVIOUS, //44
//"Key: Logo Left", //047
KEY_EN_F4, //48
KEY_EN_4, //49
KEY_EN_R, //50
KEY_EN_F, //51
KEY_EN_C, //52
KEY_EN_SPACE, //53
KEY_EN_INSERT, //54
KEY_EN_END, //55
KEY_EN_MEDIA_PLAY_PAUSE, //56
KEY_EN_NUMPAD_4, //57
//"Key: Logo Right", //059
KEY_EN_F5, //60
KEY_EN_5, //61
KEY_EN_T, //62
KEY_EN_G, //63
KEY_EN_V, //64
KEY_EN_HOME, //66
KEY_EN_PAGE_DOWN, //67
KEY_EN_MEDIA_NEXT, //68
KEY_EN_NUMPAD_5, //69
KEY_EN_F6, //72
KEY_EN_6, //73
KEY_EN_Y, //74
KEY_EN_H, //75
KEY_EN_B, //76
KEY_EN_PAGE_UP, //78
KEY_EN_RIGHT_SHIFT, //79
KEY_EN_NUMPAD_LOCK, //80
KEY_EN_NUMPAD_6, //81
KEY_EN_F7, //84
KEY_EN_7, //85
KEY_EN_U, //86
KEY_EN_J, //87
KEY_EN_N, //88
KEY_EN_RIGHT_ALT, //89
KEY_EN_RIGHT_BRACKET, //90
KEY_EN_RIGHT_CONTROL, //91
KEY_EN_NUMPAD_DIVIDE, //92
KEY_EN_NUMPAD_1, //93
KEY_EN_F8, //96
KEY_EN_8, //97
KEY_EN_I, //98
KEY_EN_K, //99
KEY_EN_M, //100
KEY_EN_RIGHT_WINDOWS, //101
KEY_EN_ANSI_BACK_SLASH, //102
KEY_EN_UP_ARROW, //103
KEY_EN_NUMPAD_TIMES, //104
KEY_EN_NUMPAD_2, //105
KEY_EN_F9, //108
KEY_EN_9, //109
KEY_EN_O, //110
KEY_EN_L, //111
KEY_EN_COMMA, //112
KEY_EN_MENU, //113
//KEY_EN_ISO_BACK_SLASH, //114
KEY_EN_LEFT_ARROW, //115
KEY_EN_NUMPAD_MINUS, //116
KEY_EN_NUMPAD_3, //117
KEY_EN_F10, //120
KEY_EN_0, //121
KEY_EN_P, //122
KEY_EN_SEMICOLON, //123
//"Key: Profile", //125
KEY_EN_PERIOD, //124
KEY_EN_ANSI_ENTER, //126
KEY_EN_DOWN_ARROW, //127
KEY_EN_NUMPAD_PLUS, //128
KEY_EN_NUMPAD_0, //129
KEY_EN_F11, //132
KEY_EN_MINUS, //133
KEY_EN_LEFT_BRACKET, //134
KEY_EN_QUOTE, //135
KEY_EN_FORWARD_SLASH, //136
KEY_EN_BRIGHTNESS, //137
KEY_EN_RIGHT_ARROW, //139
KEY_EN_NUMPAD_ENTER, //140
KEY_EN_NUMPAD_PERIOD, //141
@@ -401,7 +553,7 @@ static const char* led_names_k95_plat[] =
KEY_EN_LEFT_CONTROL, //5
KEY_EN_F12, //6
KEY_EN_EQUALS, //7
"Key: Lock", //8
KEY_EN_WINDOWS_LOCK, //8
KEY_EN_NUMPAD_7, //9
KEY_EN_F1, //12
KEY_EN_1, //13
@@ -500,7 +652,7 @@ static const char* led_names_k95_plat[] =
KEY_EN_LEFT_BRACKET, //134
KEY_EN_QUOTE, //135
KEY_EN_FORWARD_SLASH, //136
"Key: Brightness", //137
KEY_EN_BRIGHTNESS, //137
KEY_EN_RIGHT_ARROW, //139
KEY_EN_NUMPAD_ENTER, //140
KEY_EN_NUMPAD_PERIOD, //141
@@ -544,7 +696,7 @@ static const char* led_names_k95[] =
KEY_EN_LEFT_CONTROL, //5
KEY_EN_F12, //6
KEY_EN_EQUALS, //7
"Key: Lock", //8
KEY_EN_WINDOWS_LOCK, //8
KEY_EN_NUMPAD_7, //9
KEY_EN_F1, //12
KEY_EN_1, //13
@@ -643,7 +795,7 @@ static const char* led_names_k95[] =
KEY_EN_LEFT_BRACKET, //134
KEY_EN_QUOTE, //135
KEY_EN_FORWARD_SLASH, //136
"Key: Brightness", //137
KEY_EN_BRIGHTNESS, //137
KEY_EN_RIGHT_ARROW, //139
KEY_EN_NUMPAD_ENTER, //140
KEY_EN_NUMPAD_PERIOD, //141
@@ -1012,6 +1164,19 @@ void RGBController_CorsairPeripheral::SetupZones()
new_zone.leds_max = zone_sizes_k55[zone_idx];
new_zone.leds_count = zone_sizes_k55[zone_idx];
}
else if (logical_layout == CORSAIR_TYPE_K70_LUX_RGB)
{
new_zone.name = zone_names_k70_lux_rgb[zone_idx];
new_zone.type = zone_types_k70_lux_rgb[zone_idx];
new_zone.leds_min = zone_sizes_k70_lux_rgb[zone_idx];
new_zone.leds_max = zone_sizes_k70_lux_rgb[zone_idx];
new_zone.leds_count = zone_sizes_k70_lux_rgb[zone_idx];
if(zone_types[zone_idx] == ZONE_TYPE_MATRIX)
{
new_zone.matrix_map.Set(7, 23, (unsigned int *)&matrix_map_k70_lux_rgb);
}
}
else if (logical_layout == CORSAIR_TYPE_K70_MK2)
{
new_zone.name = zone_names_k70_mk2[zone_idx];
@@ -1101,6 +1266,10 @@ void RGBController_CorsairPeripheral::SetupZones()
{
new_led.name = led_names_k55[led_idx];
}
else if(logical_layout == CORSAIR_TYPE_K70_LUX_RGB)
{
new_led.name = led_names_k70_lux_rgb[led_idx];
}
else if(logical_layout == CORSAIR_TYPE_K70_MK2)
{
new_led.name = led_names_k70_mk2[led_idx];
@@ -9,6 +9,9 @@
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include <chrono>
#include <thread>
#include "CorsairPeripheralV2Controller.h"
#include "StringUtils.h"
@@ -19,21 +22,36 @@ CorsairPeripheralV2Controller::CorsairPeripheralV2Controller(hid_device* dev_han
dev = dev_handle;
location = path;
device_name = name;
device_index = CORSAIR_V2_DEVICE_NOT_FOUND;
/*---------------------------------------------------------*\
| Get PID |
| If the PID is in the know wireless receivers list |
| switch the write_cmd to talk to the device and retry |
\*---------------------------------------------------------*/
unsigned int pid = GetAddress(0x12);
/*---------------------------------------------------------*\
| Establish the packet size before talking to the device. |
\*---------------------------------------------------------*/
uint16_t report_size = GetOutputReportSize();
if(report_size >= CORSAIR_V2_WRITE_SIZE && report_size <= CORSAIR_V2_PACKET_SIZE)
{
pkt_sze = report_size;
}
LOG_DEBUG("[%s] Packet length set to %d", device_name.c_str(), pkt_sze);
unsigned int pid = GetAddressRetry(0x12);
switch(pid)
{
case CORSAIR_SLIPSTREAM_WIRELESS_PID1:
case CORSAIR_SLIPSTREAM_WIRELESS_V2_PID1:
case CORSAIR_SLIPSTREAM_WIRELESS_PID2:
case CORSAIR_SLIPSTREAM_M75_PID:
case CORSAIR_SLIPSTREAM_IRONCLAW_SE_PID:
write_cmd = CORSAIR_V2_WRITE_WIRELESS_ID;
pid = GetAddress(0x12);
pid = GetAddressRetry(0x12);
break;
case CORSAIR_K57_RGB_WIRED_PID:
@@ -58,14 +76,12 @@ CorsairPeripheralV2Controller::CorsairPeripheralV2Controller(hid_device* dev_han
| the device being set up. |
\*---------------------------------------------------------*/
uint8_t buffer[CORSAIR_V2_PACKET_SIZE];
memset(buffer, 0, pkt_sze);
buffer[1] = write_cmd;
buffer[2] = CORSAIR_V2_CMD_GET;
buffer[3] = 0x11;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
uint16_t result = hid_read_timeout(dev, buffer, CORSAIR_V2_PACKET_SIZE, CORSAIR_V2_TIMEOUT);
result++;
pkt_sze = std::max(result, (uint16_t)CORSAIR_V2_WRITE_SIZE);
LOG_DEBUG("[%s] Packet length set to %d", device_name.c_str(), pkt_sze);
hid_write(dev, buffer, pkt_sze);
hid_read_timeout(dev, buffer, pkt_sze, CORSAIR_V2_TIMEOUT);
/*---------------------------------------------------------*\
| NB: If the device is not found in the device list |
@@ -88,28 +104,129 @@ CorsairPeripheralV2Controller::CorsairPeripheralV2Controller(hid_device* dev_han
}
}
/*---------------------------------------------------------*\
| Unknown PID |
| Leave device_index at CORSAIR_V2_DEVICE_NOT_FOUND so |
| GetDeviceData() returns nullptr and the detector drops |
| the device, rather than building an RGBController on |
| top of an out of range index. |
\*---------------------------------------------------------*/
if(not_found)
{
LOG_ERROR("[%s] device capabilities not found. Please creata a new device request.",
device_name.c_str());
return;
}
}
/*---------------------------------------------------------*\
| Check lighting control endpoints |
| If lighting control endpoint 2 is unavailable |
| then use endpoint 1. |
\*---------------------------------------------------------*/
uint16_t CorsairPeripheralV2Controller::GetOutputReportSize()
{
unsigned char descriptor[HID_API_MAX_REPORT_DESCRIPTOR_SIZE];
int length = hid_get_report_descriptor(dev, descriptor, sizeof(descriptor));
if(length <= 0)
{
return 0;
}
unsigned int report_size = 0;
unsigned int report_count = 0;
int index = 0;
while(index < length)
{
unsigned char item = descriptor[index];
unsigned char tag = item & 0xFC;
unsigned char item_size = item & 0x03;
/*---------------------------------------------------------*\
| A size field of 3 means four data bytes follow. |
\*---------------------------------------------------------*/
if(item_size == 3)
{
item_size = 4;
}
if(index + 1 + item_size > length)
{
break;
}
unsigned int value = 0;
for(unsigned char byte = 0; byte < item_size; byte++)
{
value |= (unsigned int)descriptor[index + 1 + byte] << (8 * byte);
}
switch(tag)
{
case 0x74: /* Report Size */
report_size = value;
break;
case 0x94: /* Report Count */
report_count = value;
break;
case 0x90: /* Output */
if(report_size > 0 && report_count > 0)
{
return (uint16_t)(((report_size * report_count) / 8) + 1);
}
break;
}
index += 1 + item_size;
}
return 0;
}
void CorsairPeripheralV2Controller::DetectLightingEndpoint()
{
/*---------------------------------------------------------*\
| A device that cannot be read from cannot be probed; those |
| carry the endpoint they need already set. |
\*---------------------------------------------------------*/
if(skip_reads)
{
return;
}
/*---------------------------------------------------------*\
| Check lighting control endpoints |
| If lighting control endpoint 2 is unavailable |
| then use endpoint 1. |
| Lighting control 1 is the plain lighting resource and |
| takes colour block data. A device that answers |
| invalid or unsupported for it wants the alternate |
| lighting resource, which takes RGB triplets. |
\*---------------------------------------------------------*/
if(light_ctrl == CORSAIR_V2_LIGHT_CTRL2)
light_ctrl = CORSAIR_V2_LIGHT_CTRL1;
unsigned char result = StartTransaction(0);
/*---------------------------------------------------------*\
| A handle left open by an earlier session answers failed; |
| close it and open it again. |
\*---------------------------------------------------------*/
if(result == CORSAIR_V2_ERR_FAILED)
{
result = StartTransaction(0);
if(result > 0)
{
light_ctrl = CORSAIR_V2_LIGHT_CTRL1;
StartTransaction(0);
}
StopTransaction(0);
LOG_DEBUG("[%s] Lighting Endpoint set to %02X", device_name.c_str(), light_ctrl);
result = StartTransaction(0);
}
if(result == CORSAIR_V2_ERR_INVALID || result == CORSAIR_V2_ERR_NOT_SUPPORTED)
{
light_ctrl = CORSAIR_V2_LIGHT_CTRL2;
StartTransaction(0);
}
StopTransaction(0);
LOG_DEBUG("[%s] Lighting Endpoint set to %02X", device_name.c_str(), light_ctrl);
}
CorsairPeripheralV2Controller::~CorsairPeripheralV2Controller()
@@ -119,9 +236,19 @@ CorsairPeripheralV2Controller::~CorsairPeripheralV2Controller()
const corsair_v2_device* CorsairPeripheralV2Controller::GetDeviceData()
{
if(!IsDeviceSupported())
{
return nullptr;
}
return corsair_v2_device_list[device_index];
}
bool CorsairPeripheralV2Controller::IsDeviceSupported()
{
return device_index < CORSAIR_V2_DEVICE_COUNT;
}
std::string CorsairPeripheralV2Controller::GetDeviceLocation()
{
return("HID: " + location);
@@ -167,9 +294,9 @@ std::string CorsairPeripheralV2Controller::GetSerialString()
void CorsairPeripheralV2Controller::SetRenderMode(corsair_v2_device_mode mode)
{
uint8_t buffer[CORSAIR_V2_WRITE_SIZE];
uint8_t buffer[CORSAIR_V2_PACKET_SIZE];
memset(buffer, 0, CORSAIR_V2_WRITE_SIZE);
memset(buffer, 0, pkt_sze);
/*---------------------------------------------------------*\
| Set Mode |
@@ -179,19 +306,19 @@ void CorsairPeripheralV2Controller::SetRenderMode(corsair_v2_device_mode mode)
buffer[3] = CORSAIR_V2_VALUE_MODE;
buffer[5] = mode;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_write(dev, buffer, pkt_sze);
if(!skip_reads)
{
hid_read_timeout(dev, buffer, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT);
hid_read_timeout(dev, buffer, pkt_sze, CORSAIR_V2_TIMEOUT);
}
}
void CorsairPeripheralV2Controller::LightingControl(uint8_t opt1)
{
uint8_t buffer[CORSAIR_V2_WRITE_SIZE];
uint8_t buffer[CORSAIR_V2_PACKET_SIZE];
memset(buffer, 0, CORSAIR_V2_WRITE_SIZE);
memset(buffer, 0, pkt_sze);
/*---------------------------------------------------------*\
| The Corsair command is the same for each initialisation |
@@ -203,11 +330,11 @@ void CorsairPeripheralV2Controller::LightingControl(uint8_t opt1)
buffer[3] = opt1;
buffer[5] = 0x00;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_write(dev, buffer, pkt_sze);
if(!skip_reads)
{
hid_read_timeout(dev, buffer, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT);
hid_read_timeout(dev, buffer, pkt_sze, CORSAIR_V2_TIMEOUT);
}
}
@@ -216,20 +343,48 @@ unsigned int CorsairPeripheralV2Controller::GetKeyboardLayout()
return GetAddress(0x41);
}
/*---------------------------------------------------------*\
| GetAddress returns NA when the device answers with a |
| protocol error, and a receiver whose device has not |
| woken answers zero. Straight after enumeration both |
| are normal, so poll before treating either as final. |
\*---------------------------------------------------------*/
unsigned int CorsairPeripheralV2Controller::GetAddressRetry(uint8_t address)
{
unsigned int value = NA;
for(unsigned int attempt = 0; attempt < CORSAIR_V2_PID_RETRIES; attempt++)
{
value = GetAddress(address);
if(value != NA && value != 0)
{
return value;
}
if(attempt + 1 < CORSAIR_V2_PID_RETRIES)
{
std::this_thread::sleep_for(std::chrono::milliseconds(CORSAIR_V2_PID_RETRY_DELAY));
}
}
return value;
}
unsigned int CorsairPeripheralV2Controller::GetAddress(uint8_t address)
{
uint8_t buffer[CORSAIR_V2_WRITE_SIZE];
uint8_t read[CORSAIR_V2_WRITE_SIZE];
uint8_t buffer[CORSAIR_V2_PACKET_SIZE];
uint8_t read[CORSAIR_V2_PACKET_SIZE];
memset(buffer, 0, CORSAIR_V2_WRITE_SIZE);
memset(read, 0, CORSAIR_V2_WRITE_SIZE);
memset(buffer, 0, pkt_sze);
memset(read, 0, pkt_sze);
buffer[1] = write_cmd;
buffer[2] = CORSAIR_V2_CMD_GET;
buffer[3] = address;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_read_timeout(dev, read, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT);
hid_write(dev, buffer, pkt_sze);
hid_read_timeout(dev, read, pkt_sze, 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(),
@@ -247,20 +402,20 @@ unsigned int CorsairPeripheralV2Controller::GetAddress(uint8_t address)
unsigned char CorsairPeripheralV2Controller::StartTransaction(uint8_t opt1)
{
uint8_t buffer[CORSAIR_V2_WRITE_SIZE];
uint8_t buffer[CORSAIR_V2_PACKET_SIZE];
memset(buffer, 0, CORSAIR_V2_WRITE_SIZE);
memset(buffer, 0, pkt_sze);
buffer[1] = write_cmd;
buffer[2] = CORSAIR_V2_CMD_START_TX;
buffer[3] = opt1;
buffer[4] = light_ctrl;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_write(dev, buffer, pkt_sze);
if(!skip_reads)
{
hid_read_timeout(dev, buffer, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT);
hid_read_timeout(dev, buffer, pkt_sze, CORSAIR_V2_TIMEOUT);
}
return buffer[2];
@@ -268,20 +423,20 @@ unsigned char CorsairPeripheralV2Controller::StartTransaction(uint8_t opt1)
void CorsairPeripheralV2Controller::StopTransaction(uint8_t opt1)
{
uint8_t buffer[CORSAIR_V2_WRITE_SIZE];
uint8_t buffer[CORSAIR_V2_PACKET_SIZE];
memset(buffer, 0, CORSAIR_V2_WRITE_SIZE);
memset(buffer, 0, pkt_sze);
buffer[1] = write_cmd;
buffer[2] = CORSAIR_V2_CMD_STOP_TX;
buffer[3] = 0x01;
buffer[4] = opt1;
hid_write(dev, buffer, CORSAIR_V2_WRITE_SIZE);
hid_write(dev, buffer, pkt_sze);
if(!skip_reads)
{
hid_read_timeout(dev, buffer, CORSAIR_V2_WRITE_SIZE, CORSAIR_V2_TIMEOUT);
hid_read_timeout(dev, buffer, pkt_sze, CORSAIR_V2_TIMEOUT);
}
}
@@ -295,6 +450,11 @@ void CorsairPeripheralV2Controller::ClearPacketBuffer()
uint8_t result = 0;
uint8_t buffer[CORSAIR_V2_PACKET_SIZE];
/*---------------------------------------------------------*\
| Draining expects to find nothing, so the last read here |
| always waits out the timeout. Keep it short: this runs |
| before every LED update. |
\*---------------------------------------------------------*/
do
{
result = hid_read_timeout(dev, buffer, pkt_sze, CORSAIR_V2_TIMEOUT_SHORT);
@@ -304,6 +464,8 @@ void CorsairPeripheralV2Controller::ClearPacketBuffer()
void CorsairPeripheralV2Controller::SetLEDs(uint8_t *data, uint16_t data_size)
{
std::lock_guard<std::mutex> lock(device_mutex);
const uint8_t offset1 = 8;
const uint8_t offset2 = 4;
uint16_t remaining = data_size;
@@ -337,7 +499,7 @@ void CorsairPeripheralV2Controller::SetLEDs(uint8_t *data, uint16_t data_size)
if(!skip_reads)
{
hid_read_timeout(dev, buffer, pkt_sze, CORSAIR_V2_TIMEOUT_SHORT);
hid_read_timeout(dev, buffer, pkt_sze, CORSAIR_V2_TIMEOUT);
}
remaining -= copy_bytes;
@@ -362,7 +524,7 @@ void CorsairPeripheralV2Controller::SetLEDs(uint8_t *data, uint16_t data_size)
if(!skip_reads)
{
hid_read_timeout(dev, buffer, pkt_sze, CORSAIR_V2_TIMEOUT_SHORT);
hid_read_timeout(dev, buffer, pkt_sze, CORSAIR_V2_TIMEOUT);
}
remaining -= copy_bytes;
@@ -374,6 +536,8 @@ void CorsairPeripheralV2Controller::SetLEDs(uint8_t *data, uint16_t data_size)
void CorsairPeripheralV2Controller::UpdateHWMode(uint16_t mode, corsair_v2_color /*color_mode*/, uint8_t /*speed*/,
uint8_t /*direction*/, uint8_t /*brightness*/, std::vector<RGBColor> /*colors*/)
{
std::lock_guard<std::mutex> lock(device_mutex);
/*---------------------------------------------------------*\
| If we are switching to `Direct` mode |
| set device in software mode |
@@ -12,6 +12,7 @@
#pragma once
#include <string>
#include <mutex>
#include <vector>
#include <hidapi.h>
#include "LogManager.h"
@@ -21,13 +22,33 @@
#define NA 0xFFFFFFFF
#define HID_MAX_STR 255
#define CORSAIR_V2_TIMEOUT 50
/*---------------------------------------------------------*\
| A jumbo packet device answers a 1KB command in well over |
| 50ms. Missing the reply leaves it queued and the next |
| write to the device then fails outright, so this has to |
| be generous. A reply that does arrive is returned as |
| soon as it lands, so this only costs time on failure. |
\*---------------------------------------------------------*/
#define CORSAIR_V2_TIMEOUT 500
#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_PACKET_SIZE 1024
/*---------------------------------------------------------*\
| Largest packet the protocol uses: 1024 payload bytes |
| plus the leading report ID. pkt_sze is measured |
| against this, and every stack buffer handed to hidapi |
| with pkt_sze is this size, so the two must agree. |
\*---------------------------------------------------------*/
#define CORSAIR_V2_PACKET_SIZE 1025
/*---------------------------------------------------------*\
| Error codes the device returns in byte 2 of a reply. |
\*---------------------------------------------------------*/
#define CORSAIR_V2_ERR_INVALID 0x01
#define CORSAIR_V2_ERR_FAILED 0x03
#define CORSAIR_V2_ERR_NOT_SUPPORTED 0x06
#define CORSAIR_V2_LIGHT_CTRL1 1
#define CORSAIR_V2_LIGHT_CTRL2 34 /* 0x22 */
@@ -37,6 +58,19 @@
#define CORSAIR_V2_BRIGHTNESS_MIN 0
#define CORSAIR_V2_BRIGHTNESS_MAX 0xFF
/*---------------------------------------------------------*\
| A device that has just enumerated does not answer the PID |
| query straight away, so retry before giving up on it. |
\*---------------------------------------------------------*/
#define CORSAIR_V2_PID_RETRIES 8
#define CORSAIR_V2_PID_RETRY_DELAY 120
/*---------------------------------------------------------*\
| device_index when the PID is not in the device list. |
| Never index the device list with it. |
\*---------------------------------------------------------*/
#define CORSAIR_V2_DEVICE_NOT_FOUND 0xFFFF
enum corsair_v2_cmd
{
CORSAIR_V2_CMD_SET = 0x01, /* Command for setting values */
@@ -84,6 +118,7 @@ public:
std::string GetName();
std::string GetSerialString();
const corsair_v2_device* GetDeviceData();
bool IsDeviceSupported();
unsigned int GetKeyboardLayout();
void SetRenderMode(corsair_v2_device_mode mode);
@@ -99,14 +134,46 @@ protected:
std::string device_name;
uint8_t light_ctrl = CORSAIR_V2_LIGHT_CTRL2;
/*---------------------------------------------------------*\
| Works out which lighting control endpoint the device |
| accepts. Must be called only once the device has been |
| put into software render mode: endpoint 2 rejects the |
| transaction while the device is still driving its own |
| lighting, which would pick endpoint 1 for a device that |
| does not support it. |
\*---------------------------------------------------------*/
void DetectLightingEndpoint();
/*---------------------------------------------------------*\
| Size of one output report, plus the leading report ID. |
| Read from the HID report descriptor before anything is |
| sent: these devices come in a 64 byte and a 1024 byte |
| flavour, and sending a short packet to a 1024 byte |
| endpoint wedges it until the device is reset, so the |
| size has to be known before the first write rather than |
| inferred from a reply. Returns 0 if it cannot be read. |
\*---------------------------------------------------------*/
uint16_t GetOutputReportSize();
private:
void ClearPacketBuffer();
unsigned int GetAddress(uint8_t address);
unsigned int GetAddressRetry(uint8_t address);
unsigned char StartTransaction(uint8_t opt1);
void StopTransaction(uint8_t opt1);
hid_device* dev;
/*---------------------------------------------------------*\
| Serialises device transactions. |
| The RGB controllers run a keepalive thread that writes |
| LEDs independently of the caller, and a Corsair block |
| write spans several packets. Letting two of those |
| interleave on one HID handle corrupts the transaction |
| and leaves the device unresponsive until it is reset. |
\*---------------------------------------------------------*/
std::mutex device_mutex;
uint8_t write_cmd = CORSAIR_V2_WRITE_WIRED_ID;
uint16_t pkt_sze = CORSAIR_V2_WRITE_SIZE;
bool skip_reads = false;
@@ -12,6 +12,7 @@
\*---------------------------------------------------------*/
#include <hidapi.h>
#include "DetectionManager.h"
#include "LogManager.h"
/*---------------------------------------------------------*\
| Corsair Peripheral specific includes |
@@ -37,6 +38,20 @@ DetectedControllers DetectCorsairV2HardwareControllers(hid_device_info* info, co
if(dev)
{
CorsairPeripheralV2HWController* controller = new CorsairPeripheralV2HWController(dev, info->path, name);
/*---------------------------------------------------------*\
| A device whose PID is not in the device list has no |
| zone or LED data to build an RGBController from. |
| Drop it here: building one anyway indexes the device |
| list with an index that was never set. |
\*---------------------------------------------------------*/
if(!controller->IsDeviceSupported())
{
LOG_WARNING("[%s] not registering device, capabilities unknown.", name.c_str());
delete controller;
return(detected_controllers);
}
RGBController_CorsairV2HW* rgb_controller = new RGBController_CorsairV2HW(controller);
detected_controllers.push_back(rgb_controller);
@@ -55,6 +70,14 @@ DetectedControllers DetectCorsairV2SoftwareControllers(hid_device_info* info, co
if(dev)
{
CorsairPeripheralV2SWController* controller = new CorsairPeripheralV2SWController(dev, info->path, name);
if(!controller->IsDeviceSupported())
{
LOG_WARNING("[%s] not registering device, capabilities unknown.", name.c_str());
delete controller;
return(detected_controllers);
}
RGBController_CorsairV2SW* rgb_controller = new RGBController_CorsairV2SW(controller);
detected_controllers.push_back(rgb_controller);
@@ -69,6 +92,7 @@ DetectedControllers DetectCorsairV2SoftwareControllers(hid_device_info* info, co
REGISTER_HID_DETECTOR_IP("Corsair K55 RGB PRO", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_K55_RGB_PRO_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair K57 RGB (Wired)", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_K57_RGB_WIRED_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 SE", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_K60_RGB_PRO_SE_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 K60 RGB PRO TKL Black", DetectCorsairV2HardwareControllers, CORSAIR_VID, CORSAIR_K60_RGB_PRO_TKL_B_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair K60 RGB PRO TKL White", DetectCorsairV2HardwareControllers, CORSAIR_VID, CORSAIR_K60_RGB_PRO_TKL_W_PID, 1, 0xFF42);
@@ -91,6 +115,8 @@ REGISTER_HID_DETECTOR_IP("Corsair Dark Core RGB SE (Wired)", DetectCorsai
REGISTER_HID_DETECTOR_IP("Corsair Dark Core RGB Pro SE (Wired)", DetectCorsairV2HardwareControllers, CORSAIR_VID, CORSAIR_DARK_CORE_RGB_PRO_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair Harpoon Wireless (Wired)", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_HARPOON_WIRELESS_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair Ironclaw Wireless (Wired)", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_IRONCLAW_WIRELESS_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair Ironclaw Wireless SE (Wired)", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_IRONCLAW_WIRELESS_SE_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair Ironclaw Wireless SE", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_SLIPSTREAM_IRONCLAW_SE_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair Katar Pro", DetectCorsairV2HardwareControllers, CORSAIR_VID, CORSAIR_KATAR_PRO_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair Katar Pro V2", DetectCorsairV2HardwareControllers, CORSAIR_VID, CORSAIR_KATAR_PRO_V2_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair Katar Pro XT", DetectCorsairV2HardwareControllers, CORSAIR_VID, CORSAIR_KATAR_PRO_XT_PID, 1, 0xFF42);
@@ -98,6 +124,8 @@ REGISTER_HID_DETECTOR_IP("Corsair M55 RGB PRO", DetectCorsai
REGISTER_HID_DETECTOR_IP("Corsair M65 RGB Ultra Wired", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_M65_RGB_ULTRA_WIRED_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair M65 RGB Ultra Wireless (Wired)", DetectCorsairV2HardwareControllers, CORSAIR_VID, CORSAIR_M65_RGB_ULTRA_WIRELESS_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair M75 Gaming Mouse", DetectCorsairV2HardwareControllers, CORSAIR_VID, CORSAIR_M75_GAMING_MOUSE_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair M75 Wireless", DetectCorsairV2HardwareControllers, CORSAIR_VID, CORSAIR_SLIPSTREAM_M75_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair M75 Wireless (Wired)", DetectCorsairV2HardwareControllers, CORSAIR_VID, CORSAIR_M75_WIRELESS_PID, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair Slipstream Wireless Receiver HW", DetectCorsairV2HardwareControllers, CORSAIR_VID, CORSAIR_SLIPSTREAM_WIRELESS_PID1, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair Slipstream Wireless Receiver SW", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_SLIPSTREAM_WIRELESS_PID2, 1, 0xFF42);
REGISTER_HID_DETECTOR_IP("Corsair Slipstream Wireless Receiver HW", DetectCorsairV2SoftwareControllers, CORSAIR_VID, CORSAIR_SLIPSTREAM_WIRELESS_V2_PID1, 1, 0xFF42);
@@ -638,6 +638,71 @@ static const corsair_v2_device ironclaw_wireless_device =
nullptr
};
/*-------------------------------------------------------------*\
| Corsair Ironclaw Wireless SE 1B1C:2B32 |
| |
| Zone "Logo" |
| Single |
| |
| Zone "Scroll Wheel" |
| Single |
| |
| Zone "Buttons" |
| Single |
| |
| Zone "Side" |
| Linear |
| 1 Row, 3 Columns |
\*-------------------------------------------------------------*/
static const corsair_v2_zone ironclaw_se_logo_zone =
{
"Logo",
ZONE_TYPE_SINGLE,
1,
1
};
static const corsair_v2_zone ironclaw_se_scroll_zone =
{
"Scroll Wheel",
ZONE_TYPE_SINGLE,
1,
1
};
static const corsair_v2_zone ironclaw_se_button_zone =
{
"Buttons",
ZONE_TYPE_SINGLE,
1,
1
};
static const corsair_v2_zone ironclaw_se_side_zone =
{
"Side Zone",
ZONE_TYPE_LINEAR,
1,
3
};
static const corsair_v2_device ironclaw_wireless_se_device =
{
CORSAIR_IRONCLAW_WIRELESS_SE_PID,
DEVICE_TYPE_MOUSE,
1,
6,
{
&ironclaw_se_logo_zone,
&ironclaw_se_scroll_zone,
&ironclaw_se_button_zone,
&ironclaw_se_side_zone,
nullptr,
nullptr
},
nullptr
};
/*-------------------------------------------------------------*\
| Corsair Katar Pro 1B1C:1B93 |
| |
@@ -836,7 +901,7 @@ static const corsair_v2_device k57_rgb_wired_device =
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 21 Columns |
| 7 Rows, 22 Columns |
\*-------------------------------------------------------------*/
static const corsair_v2_zone k60_rgb_pro_zone =
{
@@ -863,12 +928,34 @@ static const corsair_v2_device k60_rgb_pro_device =
&corsair_K60_layout
};
/*-------------------------------------------------------------*\
| Corsair K60 RGB Pro SE 1B1C:1B8D |
| |
| Initial implementation reuses K60 RGB Pro zone/layout |
\*-------------------------------------------------------------*/
static const corsair_v2_device k60_rgb_pro_se_device =
{
CORSAIR_K60_RGB_PRO_SE_PID,
DEVICE_TYPE_KEYBOARD,
6,
21,
{
&k60_rgb_pro_zone,
nullptr,
nullptr,
nullptr,
nullptr,
nullptr
},
&corsair_K60_layout
};
/*-------------------------------------------------------------*\
| Corsair K60 RGB Pro Low Profile 1B1C:1BAD |
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 21 Columns |
| 7 Rows, 22 Columns |
\*-------------------------------------------------------------*/
static const corsair_v2_zone k60_rgb_pro_lp_zone =
{
@@ -901,7 +988,7 @@ static const corsair_v2_device k60_rgb_pro_lp_device =
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 21 Columns |
| 7 Rows, 22 Columns |
\*-------------------------------------------------------------*/
static const corsair_v2_zone k60_rgb_pro_tkl_zone =
{
@@ -951,7 +1038,7 @@ static const corsair_v2_device k60_rgb_pro_tkl_device_w =
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 21 Columns |
| 7 Rows, 22 Columns |
\*-------------------------------------------------------------*/
static const corsair_v2_zone k70_core_rgb_zone =
{
@@ -1080,14 +1167,14 @@ static const corsair_v2_device k70_rgb_tkl_cs_device =
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 21 Columns |
| 7 Rows, 22 Columns |
\*-------------------------------------------------------------*/
static const corsair_v2_zone k70_rgb_pro_zone =
{
ZONE_EN_KEYBOARD,
ZONE_TYPE_MATRIX,
7,
21
22
};
static const corsair_v2_device k70_rgb_pro_device =
@@ -1095,7 +1182,7 @@ static const corsair_v2_device k70_rgb_pro_device =
CORSAIR_K70_RGB_PRO_PID,
DEVICE_TYPE_KEYBOARD,
7,
21,
22,
{
&k70_rgb_pro_zone,
nullptr,
@@ -1112,14 +1199,14 @@ static const corsair_v2_device k70_rgb_pro_device =
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 21 Columns |
| 7 Rows, 22 Columns |
\*-------------------------------------------------------------*/
static const corsair_v2_device k70_rgb_pro_v2_device =
{
CORSAIR_K70_RGB_PRO_V2_PID,
DEVICE_TYPE_KEYBOARD,
7,
21,
22,
{
&k70_rgb_pro_zone,
nullptr,
@@ -1128,7 +1215,8 @@ static const corsair_v2_device k70_rgb_pro_v2_device =
nullptr,
nullptr
},
&corsair_k70_pro_layout
&corsair_k70_pro_layout,
193
};
/*-------------------------------------------------------------*\
@@ -1443,6 +1531,44 @@ static const corsair_v2_device m75_device =
nullptr
};
/*-------------------------------------------------------------*\
| Corsair M75 Wireless 1B1C:1BF1 |
| |
| Reached through the Slipstream receiver 1B1C:1BDC, which |
| reports the mouse PID 0x1BF1 once the write command is |
| switched to the wireless ID. |
| |
| Zone "Logo" |
| Single |
| |
| Zone "Bottom" |
| Single |
\*-------------------------------------------------------------*/
static const corsair_v2_zone m75_wireless_bottom_zone =
{
"Bottom",
ZONE_TYPE_SINGLE,
1,
1
};
static const corsair_v2_device m75_wireless_device =
{
CORSAIR_M75_WIRELESS_PID,
DEVICE_TYPE_MOUSE,
1,
2,
{
&m75_logo_zone,
&m75_wireless_bottom_zone,
nullptr,
nullptr,
nullptr,
nullptr
},
nullptr
};
/*-------------------------------------------------------------*\
| Corsair MM700 1B1C:1B9B |
| |
@@ -1522,6 +1648,7 @@ const corsair_v2_device* corsair_v2_device_list_data[] =
&k55_rgb_pro_device,
&k57_rgb_wired_device,
&k60_rgb_pro_device,
&k60_rgb_pro_se_device,
&k60_rgb_pro_lp_device,
&k60_rgb_pro_tkl_device_b,
&k60_rgb_pro_tkl_device_w,
@@ -1543,6 +1670,7 @@ const corsair_v2_device* corsair_v2_device_list_data[] =
&dark_core_pro_se_device,
&harpoon_wireless_device,
&ironclaw_wireless_device,
&ironclaw_wireless_se_device,
&katar_pro_device,
&katar_pro_v2_device,
&katar_pro_xt_device,
@@ -1550,6 +1678,7 @@ const corsair_v2_device* corsair_v2_device_list_data[] =
&m65_rgb_ultra_wired_device,
&m65_ultra_rgb_device,
&m75_device,
&m75_wireless_device,
/*-----------------------------------------------------------------*\
| MOUSEMATS |
@@ -63,6 +63,15 @@ typedef struct
uint8_t cols;
const corsair_v2_zone* zones[CORSAIR_ZONES_MAX];
keyboard_keymap_overlay_values* layout_new;
/*-------------------------------------------------------*\
| Number of LED slots the device expects in a direct |
| lighting write. The keymap only covers the keys that |
| exist, but the device wants its full slot count and |
| ignores a short write, so the buffer map is padded up |
| to this. Left 0 where the count is not known, which |
| keeps the keymap derived size. |
\*-------------------------------------------------------*/
uint16_t hw_led_count;
} corsair_v2_device;
/*-----------------------------------------------------*\
@@ -72,6 +81,7 @@ typedef struct
#define CORSAIR_K57_RGB_WIRED_PID 0x1B6E
#define CORSAIR_K57_RGB_WIRELESS_PID 0x1B62
#define CORSAIR_K60_RGB_PRO_PID 0x1BA0
#define CORSAIR_K60_RGB_PRO_SE_PID 0x1B8D
#define CORSAIR_K60_RGB_PRO_LP_PID 0x1BAD
#define CORSAIR_K60_RGB_PRO_TKL_B_PID 0x1BC7
#define CORSAIR_K60_RGB_PRO_TKL_W_PID 0x1BED
@@ -93,6 +103,8 @@ typedef struct
#define CORSAIR_DARK_CORE_RGB_PRO_PID 0x1B7E
#define CORSAIR_HARPOON_WIRELESS_PID 0x1B5E
#define CORSAIR_IRONCLAW_WIRELESS_PID 0x1B4C
#define CORSAIR_IRONCLAW_WIRELESS_SE_PID 0x2B32
#define CORSAIR_SLIPSTREAM_IRONCLAW_SE_PID 0x2B00
#define CORSAIR_KATAR_PRO_PID 0x1B93
#define CORSAIR_KATAR_PRO_V2_PID 0x1BBA
#define CORSAIR_KATAR_PRO_XT_PID 0x1BAC
@@ -100,6 +112,8 @@ typedef struct
#define CORSAIR_M65_RGB_ULTRA_WIRED_PID 0x1B9E
#define CORSAIR_M65_RGB_ULTRA_WIRELESS_PID 0x1BB5
#define CORSAIR_M75_GAMING_MOUSE_PID 0x1BF0
#define CORSAIR_M75_WIRELESS_PID 0x1BF1
#define CORSAIR_SLIPSTREAM_M75_PID 0x1BDC
#define CORSAIR_SLIPSTREAM_WIRELESS_PID1 0x1BA6
#define CORSAIR_SLIPSTREAM_WIRELESS_V2_PID1 0x1B66
#define CORSAIR_SLIPSTREAM_WIRELESS_PID2 0x1B65
@@ -16,6 +16,12 @@ CorsairPeripheralV2HWController::CorsairPeripheralV2HWController(hid_device* dev
{
SetRenderMode(CORSAIR_V2_MODE_SW);
LightingControl(0x5F);
/*---------------------------------------------------------*\
| Only now that the device is in software render mode can |
| its lighting control endpoint be probed reliably. |
\*---------------------------------------------------------*/
DetectLightingEndpoint();
}
CorsairPeripheralV2HWController::~CorsairPeripheralV2HWController()
@@ -16,6 +16,12 @@ CorsairPeripheralV2SWController::CorsairPeripheralV2SWController(hid_device* dev
{
SetRenderMode(CORSAIR_V2_MODE_SW);
LightingControl(0x5F);
/*---------------------------------------------------------*\
| Only now that the device is in software render mode can |
| its lighting control endpoint be probed reliably. |
\*---------------------------------------------------------*/
DetectLightingEndpoint();
}
CorsairPeripheralV2SWController::~CorsairPeripheralV2SWController()
@@ -66,21 +66,32 @@ RGBController_CorsairV2HW::RGBController_CorsairV2HW(CorsairPeripheralV2Controll
| to not revert back into rainbow mode. Start a thread |
| to continuously send a keepalive packet every 50 sec |
\*-----------------------------------------------------*/
/*-----------------------------------------------------*\
| Start the keepalive clock before the thread runs. |
| A default constructed time_point sits at the clock |
| epoch, which is always older than the update |
| period, so the thread would otherwise fire a write |
| on its first pass - during detection, racing |
| whatever the caller is doing. |
\*-----------------------------------------------------*/
last_update_time = std::chrono::steady_clock::now();
keepalive_thread_run = true;
keepalive_thread = new std::thread(&RGBController_CorsairV2HW::KeepaliveThread, this);
}
RGBController_CorsairV2HW::~RGBController_CorsairV2HW()
{
Shutdown();
/*-----------------------------------------------------*\
| Close keepalive thread |
| Close keepalive thread first, so that it cannot issue |
| a write while the device is being shut down. |
\*-----------------------------------------------------*/
keepalive_thread_run = false;
keepalive_thread->join();
delete keepalive_thread;
Shutdown();
delete controller;
}
@@ -198,6 +209,15 @@ void RGBController_CorsairV2HW::SetupZones()
SetupColors();
/*---------------------------------------------------------*\
| Pad out to the slot count the device expects. A write |
| that is short of it is ignored by the hardware. |
\*---------------------------------------------------------*/
if(corsair->hw_led_count > max_led_value)
{
max_led_value = corsair->hw_led_count;
}
/*---------------------------------------------------------*\
| Create a buffer map of pointers which contains the |
| layout order of colors the device expects. |
@@ -53,21 +53,32 @@ RGBController_CorsairV2SW::RGBController_CorsairV2SW(CorsairPeripheralV2Controll
| to not revert back into rainbow mode. Start a thread |
| to continuously send a keepalive packet every 50 sec |
\*-----------------------------------------------------*/
/*-----------------------------------------------------*\
| Start the keepalive clock before the thread runs. |
| A default constructed time_point sits at the clock |
| epoch, which is always older than the update |
| period, so the thread would otherwise fire a write |
| on its first pass - during detection, racing |
| whatever the caller is doing. |
\*-----------------------------------------------------*/
last_update_time = std::chrono::steady_clock::now();
keepalive_thread_run = true;
keepalive_thread = new std::thread(&RGBController_CorsairV2SW::KeepaliveThread, this);
}
RGBController_CorsairV2SW::~RGBController_CorsairV2SW()
{
Shutdown();
/*-----------------------------------------------------*\
| Close keepalive thread |
| Close keepalive thread first, so that it cannot issue |
| a write while the device is being shut down. |
\*-----------------------------------------------------*/
keepalive_thread_run = false;
keepalive_thread->join();
delete keepalive_thread;
Shutdown();
delete controller;
}
@@ -185,6 +196,15 @@ void RGBController_CorsairV2SW::SetupZones()
SetupColors();
/*---------------------------------------------------------*\
| Pad out to the slot count the device expects. A write |
| that is short of it is ignored by the hardware. |
\*---------------------------------------------------------*/
if(corsair->hw_led_count > max_led_value)
{
max_led_value = corsair->hw_led_count;
}
/*---------------------------------------------------------*\
| Create a buffer map of pointers which contains the |
| layout order of colors the device expects. |
@@ -16,13 +16,10 @@ DetectedControllers DetectCreativeAE5Device()
{
DetectedControllers detected_controllers;
LOG_INFO("[Creative SoundBlaster AE-5] Windows detection function called");
CreativeSoundBlasterAE5Controller_Windows* controller = new CreativeSoundBlasterAE5Controller_Windows();
if(controller->Initialize())
{
LOG_INFO("[Creative SoundBlaster AE-5] Device initialized successfully, registering controller");
RGBController_CreativeSoundBlasterAE5* rgb_controller = new RGBController_CreativeSoundBlasterAE5(controller);
detected_controllers.push_back(rgb_controller);
@@ -1,7 +1,7 @@
/*---------------------------------------------------------*\
| CreativeControllerDetect.cpp |
| CreativeSoundBlasterXG6ControllerDetect.cpp |
| |
| Detector for Creative devices |
| Detector for Creative Sound Blaster XG6 devices |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
@@ -15,14 +15,14 @@
/*---------------------------------------------------------*\
| Creative vendor ID |
\*---------------------------------------------------------*/
#define CREATIVE_VID 0x041E
#define CREATIVE_VID 0x041E
/*---------------------------------------------------------*\
| SoundCards |
| Creative Sound Blaster XG6 product ID |
\*---------------------------------------------------------*/
#define CREATIVE_SOUNDBLASTERX_G6_PID 0x3256
#define CREATIVE_SOUNDBLASTERX_G6_PID 0x3256
DetectedControllers DetectCreativeDevice(hid_device_info* info, const std::string& name)
DetectedControllers DetectCreativeSoundBlasterXG6Device(hid_device_info* info, const std::string& name)
{
DetectedControllers detected_controllers;
hid_device* dev;
@@ -40,7 +40,7 @@ DetectedControllers DetectCreativeDevice(hid_device_info* info, const std::strin
return(detected_controllers);
}
/*-------------------------------------------------------------------------------------------------------------------------------------------------*\
| Sound Cards |
\*-------------------------------------------------------------------------------------------------------------------------------------------------*/
REGISTER_HID_DETECTOR_I("Creative SoundBlasterX G6", DetectCreativeDevice, CREATIVE_VID, CREATIVE_SOUNDBLASTERX_G6_PID, 4);
/*---------------------------------------------------------*\
| Sound Cards |
\*---------------------------------------------------------*/
REGISTER_HID_DETECTOR_I("Creative SoundBlasterX G6", DetectCreativeSoundBlasterXG6Device, CREATIVE_VID, CREATIVE_SOUNDBLASTERX_G6_PID, 4);
+60 -10
View File
@@ -59,15 +59,57 @@ RGBController_DDP::~RGBController_DDP()
void RGBController_DDP::SetupZones()
{
for(unsigned int zone_idx = 0; zone_idx < devices.size(); zone_idx++)
/*-----------------------------------------------------*\
| Only set LED count on the first run |
\------------------------------------------------------*/
bool first_run = false;
if(zones.size() == 0)
{
zone led_zone;
led_zone.name = devices[zone_idx].name;
led_zone.type = ZONE_TYPE_LINEAR;
led_zone.leds_min = devices[zone_idx].num_leds;
led_zone.leds_max = devices[zone_idx].num_leds;
led_zone.leds_count = devices[zone_idx].num_leds;
zones.push_back(led_zone);
first_run = true;
}
/*-----------------------------------------------------*\
| Clear any existing color/LED configuration |
\------------------------------------------------------*/
leds.clear();
colors.clear();
zones.resize(devices.size());
/*-----------------------------------------------------*\
| Set zones and leds |
\------------------------------------------------------*/
for(unsigned int zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
zones[zone_idx].leds_min = devices[zone_idx].num_leds;
zones[zone_idx].leds_max = devices[zone_idx].num_leds;
if(first_run)
{
zones[zone_idx].flags = ZONE_FLAG_MANUALLY_CONFIGURABLE_NAME
| ZONE_FLAG_MANUALLY_CONFIGURABLE_TYPE
| ZONE_FLAG_MANUALLY_CONFIGURABLE_MATRIX_MAP
| ZONE_FLAG_MANUALLY_CONFIGURABLE_SEGMENTS;
}
if(!(zones[zone_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_NAME))
{
zones[zone_idx].name = devices[zone_idx].name;
}
zones[zone_idx].leds_count = devices[zone_idx].num_leds;
if(!(zones[zone_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_TYPE))
{
zones[zone_idx].type = ZONE_TYPE_LINEAR;
}
if(!(zones[zone_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_MATRIX_MAP))
{
zones[zone_idx].matrix_map.width = 0;
zones[zone_idx].matrix_map.height = 0;
zones[zone_idx].matrix_map.map.resize(0);
}
}
for(unsigned int zone_idx = 0; zone_idx < zones.size(); zone_idx++)
@@ -75,14 +117,22 @@ void RGBController_DDP::SetupZones()
for(unsigned int led_idx = 0; led_idx < zones[zone_idx].leds_count; led_idx++)
{
led new_led;
new_led.name = zones[zone_idx].name + " LED " + std::to_string(led_idx + 1);
new_led.value = 0;
new_led.name = zones[zone_idx].name + " LED " + std::to_string(led_idx + 1);
leds.push_back(new_led);
}
}
SetupColors();
}
void RGBController_DDP::DeviceConfigureZone(int zone_idx)
{
if((size_t)zone_idx < zones.size())
{
SetupZones();
}
}
void RGBController_DDP::DeviceUpdateLEDs()
{
std::vector<unsigned int> brightness_adjusted_colors;
@@ -21,6 +21,8 @@ public:
void SetupZones();
void DeviceConfigureZone(int zone_idx);
void DeviceUpdateLEDs();
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
@@ -40,8 +40,4 @@ DetectedControllers DetectDygmaRaiseControllers()
}
REGISTER_DETECTOR("Dygma Raise", DetectDygmaRaiseControllers);
/*---------------------------------------------------------------------------------------------------------*\
| Entries for dynamic UDEV rules |
| |
| DUMMY_DEVICE_DETECTOR("Dygma Raise", DetectDygmaRaiseControllers, 0x1209, 0x2201 ) |
\*---------------------------------------------------------------------------------------------------------*/
REGISTER_CUSTOM_UDEV_RULE(dygma_raise, "Dygma Raise", "SUBSYSTEMS==\"serial|hidraw\", ATTRS{idVendor}==\"1209\", ATTRS{idProduct}==\"2201\", TAG+=\"uaccess\", TAG+=\"Dygma_Raise\"");
@@ -223,33 +223,68 @@ RGBController_E131::~RGBController_E131()
void RGBController_E131::SetupZones()
{
/*-----------------------------------------------------*\
| Add Zones |
| Only set LED count on the first run |
\*-----------------------------------------------------*/
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_LINEAR;
led_zone.leds_min = devices[zone_idx].num_leds;
led_zone.leds_max = devices[zone_idx].num_leds;
led_zone.leds_count = devices[zone_idx].num_leds;
led_zone.flags = ZONE_FLAG_MANUALLY_CONFIGURABLE_TYPE
| ZONE_FLAG_MANUALLY_CONFIGURABLE_MATRIX_MAP
| ZONE_FLAG_MANUALLY_CONFIGURABLE_SEGMENTS;
bool first_run = false;
zones.push_back(led_zone);
if(zones.size() == 0)
{
first_run = true;
}
/*-----------------------------------------------------*\
| Add LEDs |
| Clear any existing color/LED configuration |
\*-----------------------------------------------------*/
leds.clear();
colors.clear();
zones.resize(devices.size());
/*-----------------------------------------------------*\
| Set zones and leds |
\*-----------------------------------------------------*/
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
zones[zone_idx].leds_min = devices[zone_idx].num_leds;
zones[zone_idx].leds_max = devices[zone_idx].num_leds;
if(first_run)
{
zones[zone_idx].flags = ZONE_FLAG_MANUALLY_CONFIGURABLE_NAME
| ZONE_FLAG_MANUALLY_CONFIGURABLE_TYPE
| ZONE_FLAG_MANUALLY_CONFIGURABLE_MATRIX_MAP
| ZONE_FLAG_MANUALLY_CONFIGURABLE_SEGMENTS;
}
if(!(zones[zone_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_NAME))
{
zones[zone_idx].name = devices[zone_idx].name;
}
zones[zone_idx].leds_count = devices[zone_idx].num_leds;
if(!(zones[zone_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_TYPE))
{
zones[zone_idx].type = ZONE_TYPE_LINEAR;
}
if(!(zones[zone_idx].flags & ZONE_FLAG_MANUALLY_CONFIGURED_MATRIX_MAP))
{
zones[zone_idx].matrix_map.width = 0;
zones[zone_idx].matrix_map.height = 0;
zones[zone_idx].matrix_map.map.resize(0);
}
}
/*-----------------------------------------------------*\
| 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 = zones[zone_idx].name + " LED ";
new_led.name.append(std::to_string(led_idx));
leds.push_back(new_led);
@@ -259,6 +294,14 @@ void RGBController_E131::SetupZones()
SetupColors();
}
void RGBController_E131::DeviceConfigureZone(int zone_idx)
{
if((size_t)zone_idx < zones.size())
{
SetupZones();
}
}
void RGBController_E131::DeviceUpdateLEDs()
{
int color_idx = 0;
@@ -35,6 +35,8 @@ public:
void SetupZones();
void DeviceConfigureZone(int zone_idx);
void DeviceUpdateLEDs();
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
@@ -427,6 +427,7 @@ REGISTER_I2C_PCI_DETECTOR("ASUS ROG ASTRAL GeForce RTX 5080 WHITE",
REGISTER_I2C_PCI_DETECTOR("ASUS ROG ASTRAL GeForce RTX 5090 OC", DetectENESMBusGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, ASUS_SUB_VEN, ASUS_ROG_ASTRAL_RTX_5090_O32G_GAMING, 0x67);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG ASTRAL GeForce RTX 5090", DetectENESMBusGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, ASUS_SUB_VEN, ASUS_ROG_ASTRAL_RTX_5090_O32G_GAMING_2, 0x67);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG ASTRAL GeForce RTX 5090 OC BTF", DetectENESMBusGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, ASUS_SUB_VEN, ASUS_ROG_ASTRAL_RTX_5090_O32G_GAMING_BTF, 0x67);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG ASTRAL GeForce RTX 5090 OC BTF", DetectENESMBusGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, ASUS_SUB_VEN, ASUS_ROG_ASTRAL_RTX_5090_O32G_GAMING_BTF_2, 0x67);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG ASTRAL GeForce RTX 5090 OC WHITE", DetectENESMBusGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, ASUS_SUB_VEN, ASUS_ROG_ASTRAL_RTX_5090_O32G_GAMING_WHITE, 0x67);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG ASTRAL LC GeForce RTX 5090 OC", DetectENESMBusGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, ASUS_SUB_VEN, ASUS_ROG_ASTRAL_LC_RTX_5090_O32G_GAMING, 0x67);
REGISTER_I2C_PCI_DETECTOR("ASUS ROG ASTRAL LC OC GeForce RTX 5090 OC", DetectENESMBusGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, ASUS_SUB_VEN, ASUS_ROG_ASTRAL_LC_OC_RTX_5090_O32G_GAMING, 0x67);
@@ -0,0 +1,268 @@
/*---------------------------------------------------------*\
| EVGAX12Controller.cpp |
| |
| Driver for the EVGA X12 gaming mouse |
| |
| QuickMythril 08 Aug 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include <chrono>
#include <cstring>
#include <thread>
#include "EVGAX12Controller.h"
#include "LogManager.h"
#include "StringUtils.h"
#define EVGA_X12_HEADER 0xEA
#define EVGA_X12_DIRECTION_GET 0x01
#define EVGA_X12_DIRECTION_SET 0x02
#define EVGA_X12_COMMAND_MODE 0x01
#define EVGA_X12_COMMAND_STATIC 0x02
#define EVGA_X12_START_WITH_PROFILE 0x01
#define EVGA_X12_READ_ATTEMPTS 5
#define EVGA_X12_READ_DELAY_MS 5
#define EVGA_X12_WRITE_ATTEMPTS 3
static const unsigned int EVGA_X12_LED_TO_FIRMWARE_SLOT[EVGA_X12_LED_COUNT] =
{
EVGA_X12_FIRMWARE_SLOT_HEAD_LEFT,
EVGA_X12_FIRMWARE_SLOT_WHEEL,
EVGA_X12_FIRMWARE_SLOT_LOGO,
};
EVGAX12Controller::EVGAX12Controller(hid_device* dev_handle, const hid_device_info& info, const std::string& dev_name)
{
dev = dev_handle;
location = info.path;
name = dev_name;
}
EVGAX12Controller::~EVGAX12Controller()
{
hid_close(dev);
}
std::string EVGAX12Controller::GetDeviceLocation()
{
return("HID: " + location);
}
std::string EVGAX12Controller::GetNameString()
{
return(name);
}
std::string EVGAX12Controller::GetSerialString()
{
wchar_t serial_string[128];
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
return(StringUtils::wstring_to_string(serial_string));
}
EVGAX12LightingState EVGAX12Controller::GetLightingState()
{
std::lock_guard<std::mutex> lock(device_mutex);
EVGAX12LightingState state = {};
unsigned char packet[EVGA_X12_REPORT_SIZE];
state.modes_valid = GetReport(EVGA_X12_COMMAND_MODE, packet);
if(state.modes_valid)
{
for(unsigned int led_idx = 0; led_idx < EVGA_X12_LED_COUNT; led_idx++)
{
unsigned int firmware_slot = EVGA_X12_LED_TO_FIRMWARE_SLOT[led_idx];
state.modes[led_idx] = packet[4 + firmware_slot];
}
}
state.static_valid = GetReport(EVGA_X12_COMMAND_STATIC, packet);
if(state.static_valid)
{
for(unsigned int led_idx = 0; led_idx < EVGA_X12_LED_COUNT; led_idx++)
{
unsigned int firmware_slot = EVGA_X12_LED_TO_FIRMWARE_SLOT[led_idx];
unsigned int offset = 4 + (firmware_slot * 4);
state.brightness[led_idx] = packet[offset];
state.colors[led_idx] = ToRGBColor(packet[offset + 1], packet[offset + 2], packet[offset + 3]);
}
}
return(state);
}
bool EVGAX12Controller::SetMode(unsigned char mode)
{
std::lock_guard<std::mutex> lock(device_mutex);
return(SetModeReport(mode));
}
bool EVGAX12Controller::SetModeReport(unsigned char mode)
{
unsigned char packet[EVGA_X12_REPORT_SIZE] = {};
packet[0] = EVGA_X12_REPORT_ID;
packet[1] = EVGA_X12_HEADER;
packet[2] = EVGA_X12_DIRECTION_SET;
packet[3] = EVGA_X12_COMMAND_MODE;
for(unsigned int led_idx = 0; led_idx < EVGA_X12_LED_COUNT; led_idx++)
{
unsigned int firmware_slot = EVGA_X12_LED_TO_FIRMWARE_SLOT[led_idx];
packet[4 + firmware_slot] = mode;
}
return(SendReport(packet));
}
bool EVGAX12Controller::SetStatic(const std::vector<RGBColor>& colors, unsigned char brightness)
{
if(colors.size() < EVGA_X12_LED_COUNT)
{
LOG_ERROR("[%s] Cannot set static lighting with only %u colors", name.c_str(), (unsigned int)colors.size());
return(false);
}
std::lock_guard<std::mutex> lock(device_mutex);
return(SetStaticReport(colors, brightness));
}
bool EVGAX12Controller::SetStaticAndActivate(const std::vector<RGBColor>& colors, unsigned char brightness)
{
if(colors.size() < EVGA_X12_LED_COUNT)
{
LOG_ERROR("[%s] Cannot set static lighting with only %u colors", name.c_str(), (unsigned int)colors.size());
return(false);
}
std::lock_guard<std::mutex> lock(device_mutex);
if(!SetStaticReport(colors, brightness))
{
return(false);
}
std::this_thread::sleep_for(std::chrono::milliseconds(EVGA_X12_READ_DELAY_MS));
return(SetModeReport(EVGA_X12_MODE_STATIC));
}
bool EVGAX12Controller::SetStaticReport(const std::vector<RGBColor>& colors, unsigned char brightness)
{
unsigned char packet[EVGA_X12_REPORT_SIZE] = {};
packet[0] = EVGA_X12_REPORT_ID;
packet[1] = EVGA_X12_HEADER;
packet[2] = EVGA_X12_DIRECTION_SET;
packet[3] = EVGA_X12_COMMAND_STATIC;
for(unsigned int firmware_slot = 0; firmware_slot < EVGA_X12_FIRMWARE_SLOT_COUNT; firmware_slot++)
{
packet[20 + firmware_slot] = EVGA_X12_START_WITH_PROFILE;
}
for(unsigned int led_idx = 0; led_idx < EVGA_X12_LED_COUNT; led_idx++)
{
unsigned int firmware_slot = EVGA_X12_LED_TO_FIRMWARE_SLOT[led_idx];
unsigned int offset = 4 + (firmware_slot * 4);
packet[offset] = brightness;
packet[offset + 1] = RGBGetRValue(colors[led_idx]);
packet[offset + 2] = RGBGetGValue(colors[led_idx]);
packet[offset + 3] = RGBGetBValue(colors[led_idx]);
}
for(unsigned int attempt = 0; attempt < EVGA_X12_WRITE_ATTEMPTS; attempt++)
{
if(!SendReport(packet))
{
return(false);
}
std::this_thread::sleep_for(std::chrono::milliseconds(EVGA_X12_READ_DELAY_MS));
unsigned char reply[EVGA_X12_REPORT_SIZE];
if(GetReport(EVGA_X12_COMMAND_STATIC, reply))
{
bool matches = true;
for(unsigned int firmware_slot = 0; firmware_slot < EVGA_X12_FIRMWARE_SLOT_COUNT; firmware_slot++)
{
unsigned int offset = 4 + (firmware_slot * 4);
if(std::memcmp(&packet[offset], &reply[offset], 4) != 0)
{
matches = false;
break;
}
}
if(matches)
{
return(true);
}
}
}
LOG_VERBOSE("[%s] Retries exhausted setting static lighting", name.c_str());
return(false);
}
bool EVGAX12Controller::GetReport(unsigned char command, unsigned char* packet)
{
std::memset(packet, 0, EVGA_X12_REPORT_SIZE);
packet[0] = EVGA_X12_REPORT_ID;
packet[1] = EVGA_X12_HEADER;
packet[2] = EVGA_X12_DIRECTION_GET;
packet[3] = command;
if(!SendReport(packet))
{
return(false);
}
for(unsigned int attempt = 0; attempt < EVGA_X12_READ_ATTEMPTS; attempt++)
{
std::this_thread::sleep_for(std::chrono::milliseconds(EVGA_X12_READ_DELAY_MS));
std::memset(packet, 0, EVGA_X12_REPORT_SIZE);
packet[0] = EVGA_X12_REPORT_ID;
int bytes_read = hid_get_feature_report(dev, packet, EVGA_X12_REPORT_SIZE);
if(bytes_read == EVGA_X12_REPORT_SIZE && packet[1] == EVGA_X12_HEADER && packet[3] == command)
{
return(true);
}
if(bytes_read < 0)
{
LOG_DEBUG("[%s] Error reading feature report: %ls", name.c_str(), hid_error(dev));
return(false);
}
}
LOG_VERBOSE("[%s] Retries exhausted reading command 0x%02X", name.c_str(), command);
return(false);
}
bool EVGAX12Controller::SendReport(const unsigned char* packet)
{
int bytes_written = hid_send_feature_report(dev, packet, EVGA_X12_REPORT_SIZE);
if(bytes_written != EVGA_X12_REPORT_SIZE)
{
LOG_DEBUG("[%s] Error writing feature report: %ls", name.c_str(), hid_error(dev));
return(false);
}
return(true);
}
@@ -0,0 +1,80 @@
/*---------------------------------------------------------*\
| EVGAX12Controller.h |
| |
| Driver for the EVGA X12 gaming mouse |
| |
| QuickMythril 08 Aug 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#pragma once
#include <array>
#include <mutex>
#include <string>
#include <vector>
#include <hidapi.h>
#include "RGBController.h"
#define EVGA_X12_REPORT_ID 0x07
#define EVGA_X12_REPORT_SIZE 40
#define EVGA_X12_LED_COUNT 3
#define EVGA_X12_FIRMWARE_SLOT_COUNT 4
#define EVGA_X12_BRIGHTNESS_MIN 0
#define EVGA_X12_BRIGHTNESS_MAX 255
enum
{
EVGA_X12_MODE_OFF = 0,
EVGA_X12_MODE_STATIC = 1,
};
/*---------------------------------------------------------*\
| HEAD_LEFT drives both physical side lights. HEAD_RIGHT |
| is writable and readable, but has no physical emitter. |
\*---------------------------------------------------------*/
enum
{
EVGA_X12_FIRMWARE_SLOT_HEAD_LEFT = 0,
EVGA_X12_FIRMWARE_SLOT_HEAD_RIGHT = 1,
EVGA_X12_FIRMWARE_SLOT_WHEEL = 2,
EVGA_X12_FIRMWARE_SLOT_LOGO = 3,
};
struct EVGAX12LightingState
{
std::array<unsigned char, EVGA_X12_LED_COUNT> modes;
std::array<unsigned char, EVGA_X12_LED_COUNT> brightness;
std::array<RGBColor, EVGA_X12_LED_COUNT> colors;
bool modes_valid;
bool static_valid;
};
class EVGAX12Controller
{
public:
EVGAX12Controller(hid_device* dev_handle, const hid_device_info& info, const std::string& dev_name);
~EVGAX12Controller();
std::string GetDeviceLocation();
std::string GetNameString();
std::string GetSerialString();
EVGAX12LightingState GetLightingState();
bool SetMode(unsigned char mode);
bool SetStatic(const std::vector<RGBColor>& colors, unsigned char brightness);
bool SetStaticAndActivate(const std::vector<RGBColor>& colors, unsigned char brightness);
private:
bool GetReport(unsigned char command, unsigned char* packet);
bool SetModeReport(unsigned char mode);
bool SetStaticReport(const std::vector<RGBColor>& colors, unsigned char brightness);
bool SendReport(const unsigned char* packet);
hid_device* dev;
std::string location;
std::string name;
std::mutex device_mutex;
};
@@ -0,0 +1,40 @@
/*---------------------------------------------------------*\
| EVGAX12ControllerDetect.cpp |
| |
| Detector for the EVGA X12 gaming mouse |
| |
| QuickMythril 08 Aug 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "DetectionManager.h"
#include "EVGAX12Controller.h"
#include "RGBController_EVGAX12.h"
#define EVGA_USB_VID 0x3842
#define EVGA_X12_PID 0x2422
#define EVGA_X12_INTERFACE 1
#define EVGA_X12_USAGE_PAGE 0x0008
#define EVGA_X12_USAGE 0x004B
DetectedControllers DetectEVGAX12(hid_device_info* info, const std::string& name)
{
DetectedControllers detected_controllers;
hid_device* dev;
dev = hid_open_path(info->path);
if(dev)
{
EVGAX12Controller* controller = new EVGAX12Controller(dev, *info, name);
RGBController_EVGAX12* rgb_controller = new RGBController_EVGAX12(controller);
detected_controllers.push_back(rgb_controller);
}
return(detected_controllers);
}
REGISTER_HID_DETECTOR_IPU("EVGA X12 Gaming Mouse", DetectEVGAX12, EVGA_USB_VID, EVGA_X12_PID, EVGA_X12_INTERFACE, EVGA_X12_USAGE_PAGE, EVGA_X12_USAGE);
@@ -0,0 +1,150 @@
/*---------------------------------------------------------*\
| RGBController_EVGAX12.cpp |
| |
| RGBController for the EVGA X12 gaming mouse |
| |
| QuickMythril 08 Aug 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "RGBController_EVGAX12.h"
/**------------------------------------------------------------------*\
@name EVGA X12 Gaming Mouse
@category Mouse
@type USB
@save :x:
@direct :white_check_mark:
@effects :x:
@detectors DetectEVGAX12
@comment Lighting changes are volatile and revert to the onboard
profile when the mouse is reconnected.
\*-------------------------------------------------------------------*/
RGBController_EVGAX12::RGBController_EVGAX12(EVGAX12Controller* controller_ptr)
{
controller = controller_ptr;
name = controller->GetNameString();
vendor = "EVGA";
type = DEVICE_TYPE_MOUSE;
description = "EVGA X12 Gaming Mouse";
serial = controller->GetSerialString();
location = controller->GetDeviceLocation();
mode Direct;
Direct.name = "Direct";
Direct.value = EVGA_X12_MODE_STATIC;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_BRIGHTNESS;
Direct.brightness_min = EVGA_X12_BRIGHTNESS_MIN;
Direct.brightness_max = EVGA_X12_BRIGHTNESS_MAX;
Direct.brightness = EVGA_X12_BRIGHTNESS_MAX;
Direct.color_mode = MODE_COLORS_PER_LED;
direct_mode_index = (unsigned int)modes.size();
modes.push_back(Direct);
mode Off;
Off.name = "Off";
Off.value = EVGA_X12_MODE_OFF;
Off.color_mode = MODE_COLORS_NONE;
off_mode_index = (unsigned int)modes.size();
modes.push_back(Off);
active_mode = direct_mode_index;
SetupZones();
EVGAX12LightingState current_state = controller->GetLightingState();
if(current_state.static_valid)
{
modes[direct_mode_index].brightness = current_state.brightness[0];
for(unsigned int led_idx = 0; led_idx < EVGA_X12_LED_COUNT; led_idx++)
{
colors[led_idx] = current_state.colors[led_idx];
}
}
if(current_state.modes_valid)
{
bool all_off = true;
for(unsigned int led_idx = 0; led_idx < EVGA_X12_LED_COUNT; led_idx++)
{
if(current_state.modes[led_idx] != EVGA_X12_MODE_OFF)
{
all_off = false;
break;
}
}
if(all_off)
{
active_mode = off_mode_index;
}
}
}
RGBController_EVGAX12::~RGBController_EVGAX12()
{
Shutdown();
delete controller;
}
void RGBController_EVGAX12::SetupZones()
{
const char* zone_names[EVGA_X12_LED_COUNT] =
{
"Side",
"Scroll Wheel",
"Logo",
};
for(unsigned int led_idx = 0; led_idx < EVGA_X12_LED_COUNT; led_idx++)
{
zone new_zone;
new_zone.name = zone_names[led_idx];
new_zone.type = ZONE_TYPE_SINGLE;
new_zone.leds_min = 1;
new_zone.leds_max = 1;
new_zone.leds_count = 1;
zones.push_back(new_zone);
led new_led;
new_led.name = std::string(zone_names[led_idx]) + " LED";
new_led.value = led_idx;
leds.push_back(new_led);
}
SetupColors();
}
void RGBController_EVGAX12::DeviceUpdateLEDs()
{
controller->SetStatic(colors, modes[direct_mode_index].brightness);
}
void RGBController_EVGAX12::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_EVGAX12::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_EVGAX12::DeviceUpdateMode()
{
if(modes[active_mode].value == EVGA_X12_MODE_OFF)
{
controller->SetMode(EVGA_X12_MODE_OFF);
}
else
{
controller->SetStaticAndActivate(colors, modes[direct_mode_index].brightness);
}
}
@@ -0,0 +1,34 @@
/*---------------------------------------------------------*\
| RGBController_EVGAX12.h |
| |
| RGBController for the EVGA X12 gaming mouse |
| |
| QuickMythril 08 Aug 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#pragma once
#include "EVGAX12Controller.h"
#include "RGBController.h"
class RGBController_EVGAX12 : public RGBController
{
public:
RGBController_EVGAX12(EVGAX12Controller* controller_ptr);
~RGBController_EVGAX12();
void DeviceUpdateLEDs();
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
private:
void SetupZones();
EVGAX12Controller* controller;
unsigned int direct_mode_index;
unsigned int off_mode_index;
};
@@ -197,3 +197,5 @@ DetectedControllers DetectFaustusControllers()
}
REGISTER_DETECTOR("Faustus", DetectFaustusControllers);
REGISTER_CUSTOM_UDEV_RULE(faustus, "ASUS TUF Laptops (faustus)", "ACTION==\"add\", SUBSYSTEM==\"platform\", KERNEL==\"faustus\", RUN+=\"/usr/bin/env chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_blue\"\nACTION==\"add\", SUBSYSTEM==\"platform\", KERNEL==\"faustus\", RUN+=\"/usr/bin/env chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_flags\"\nACTION==\"add\", SUBSYSTEM==\"platform\", KERNEL==\"faustus\", RUN+=\"/usr/bin/env chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_green\"\nACTION==\"add\", SUBSYSTEM==\"platform\", KERNEL==\"faustus\", RUN+=\"/usr/bin/env chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_mode\"\nACTION==\"add\", SUBSYSTEM==\"platform\", KERNEL==\"faustus\", RUN+=\"/usr/bin/env chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_red\"\nACTION==\"add\", SUBSYSTEM==\"platform\", KERNEL==\"faustus\", RUN+=\"/usr/bin/env chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_set\"\nACTION==\"add\", SUBSYSTEM==\"platform\", KERNEL==\"faustus\", RUN+=\"/usr/bin/env chmod a+w /sys/bus/platform/devices/%k/kbbl/kbbl_speed\"");
@@ -1,102 +0,0 @@
/*---------------------------------------------------------*\
| GainwardGPUControllerDetect.cpp |
| |
| Detector for Gainward GPU |
| |
| TheRogueZeta 05 Nov 2020 |
| KundaPanda 04 Jan 2021 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "DetectionManager.h"
#include "GainwardGPUv1Controller.h"
#include "GainwardGPUv2Controller.h"
#include "i2c_smbus.h"
#include "pci_ids.h"
#include "RGBController_GainwardGPUv1.h"
#include "RGBController_GainwardGPUv2.h"
bool TestForGainwardGPUController(i2c_smbus_interface* bus, uint8_t i2c_addr)
{
bool pass = false;
switch(i2c_addr)
{
/*-------------------------------------------------*\
| V1 Controller |
\*-------------------------------------------------*/
case 0x08:
pass = bus->i2c_smbus_write_quick(i2c_addr, I2C_SMBUS_WRITE);
break;
/*-------------------------------------------------*\
| V2 Controller |
\*-------------------------------------------------*/
case 0x49:
/*---------------------------------------------*\
| This detection might need some modifications |
| Reading 0x6F*0x73 and comparing to 0x64 might |
| be a possibility |
\*---------------------------------------------*/
s32 data = bus->i2c_smbus_read_byte_data(i2c_addr, 0x0);
s32 mode_data = bus->i2c_smbus_read_byte_data(i2c_addr, 0xe0);
pass = (data == 0x0) && (mode_data < 0x5);
break;
}
return(pass);
}
DetectedControllers DetectGainwardGPUControllers(i2c_smbus_interface* bus, uint8_t i2c_addr, const std::string& name)
{
DetectedControllers detected_controllers;
if(TestForGainwardGPUController(bus, i2c_addr))
{
switch(i2c_addr)
{
/*---------------------------------------------*\
| V1 Controller |
\*---------------------------------------------*/
case 0x08:
{
GainwardGPUv1Controller* controller = new GainwardGPUv1Controller(bus, i2c_addr, name);
RGBController_GainwardGPUv1* rgb_controller = new RGBController_GainwardGPUv1(controller);
detected_controllers.push_back(rgb_controller);
}
break;
/*---------------------------------------------*\
| V2 Controller |
\*---------------------------------------------*/
case 0x49:
{
GainwardGPUv2Controller* controller = new GainwardGPUv2Controller(bus, i2c_addr, name);
RGBController_GainwardGPUv2* rgb_controller = new RGBController_GainwardGPUv2(controller);
detected_controllers.push_back(rgb_controller);
}
break;
}
}
return(detected_controllers);
}
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce GTX 1080 Phoenix", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_GTX1080_DEV, GAINWARD_SUB_VEN, GAINWARD_GTX_1080_PHOENIX, 0x08);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce GTX 1080 Ti Phoenix", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_GTX1080TI_DEV, GAINWARD_SUB_VEN, GAINWARD_GTX_1080TI_PHOENIX, 0x08);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce GTX 1660 SUPER Ghost", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_GTX1660S_DEV, NVIDIA_SUB_VEN, NVIDIA_GTX1660S_DEV, 0x49);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce RTX 2070 SUPER Phantom", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_RTX2070S_OC_DEV, GAINWARD_SUB_VEN, NVIDIA_RTX2070S_OC_DEV, 0x49);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce RTX 2080 Phoenix GS", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_RTX2080_DEV, GAINWARD_SUB_VEN, NVIDIA_RTX2080_A_DEV, 0x49);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce RTX 3060 Pegasus 12G", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_RTX3060_DEV, NVIDIA_SUB_VEN, NVIDIA_RTX3060_DEV, 0x49);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce RTX 3070 Phantom", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070_DEV, GAINWARD_SUB_VEN, GAINWARD_RTX_3070_PHANTOM, 0x49);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce RTX 3070 Phoenix", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070_DEV, GAINWARD_SUB_VEN, NVIDIA_RTX3070_DEV, 0x49);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce RTX 3070 Ti Phoenix", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070TI_DEV, GAINWARD_SUB_VEN, NVIDIA_RTX3070TI_DEV, 0x49);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce RTX 3080 Phoenix", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_RTX3080_DEV, GAINWARD_SUB_VEN, NVIDIA_RTX3080_DEV, 0x49);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce RTX 3080 Ti Phoenix", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_RTX3080TI_DEV, GAINWARD_SUB_VEN, NVIDIA_RTX3080TI_DEV, 0x49);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce RTX 3090 Phoenix", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_RTX3090_DEV, GAINWARD_SUB_VEN, NVIDIA_RTX3090_DEV, 0x49);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce RTX 3090 Ti Phantom", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_RTX3090TI_DEV, GAINWARD_SUB_VEN, GAINWARD_RTX_3090TI_PHANTOM, 0x49);
REGISTER_I2C_PCI_DETECTOR("Gainward GeForce RTX 4080 Phantom GS", DetectGainwardGPUControllers, NVIDIA_VEN, NVIDIA_RTX4080_DEV, GAINWARD_SUB_VEN, GAINWARD_RTX_4080_PHANTOM_GS_SUB_DEV, 0x49);
@@ -1,78 +0,0 @@
/*---------------------------------------------------------*\
| GainwardGPUv1Controller.cpp |
| |
| Driver for Gainward v1 GPU |
| |
| TheRogueZeta 05 Nov 2020 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include <cstring>
#include "GainwardGPUv1Controller.h"
GainwardGPUv1Controller::GainwardGPUv1Controller(i2c_smbus_interface* bus, gainward_gpu_dev_id dev, std::string dev_name)
{
this->bus = bus;
this->dev = dev;
this->name = dev_name;
}
GainwardGPUv1Controller::~GainwardGPUv1Controller()
{
}
std::string GainwardGPUv1Controller::GetDeviceLocation()
{
std::string return_string(bus->info.device_name);
char addr[5];
snprintf(addr, 5, "0x%02X", dev);
return_string.append(", address ");
return_string.append(addr);
return("I2C: " + return_string);
}
std::string GainwardGPUv1Controller::GetDeviceName()
{
return(name);
}
unsigned char GainwardGPUv1Controller::GetLEDRed()
{
return(GainwardGPURegisterRead(GAINWARD_RED_REGISTER));
}
unsigned char GainwardGPUv1Controller::GetLEDGreen()
{
return(GainwardGPURegisterRead(GAINWARD_GREEN_REGISTER));
}
unsigned char GainwardGPUv1Controller::GetLEDBlue()
{
return(GainwardGPURegisterRead(GAINWARD_BLUE_REGISTER));
}
void GainwardGPUv1Controller::SetLEDColors(unsigned char red, unsigned char green, unsigned char blue)
{
GainwardGPURegisterWrite(GAINWARD_RED_REGISTER, red);
GainwardGPURegisterWrite(GAINWARD_GREEN_REGISTER, green);
GainwardGPURegisterWrite(GAINWARD_BLUE_REGISTER, blue);
GainwardGPURegisterWrite(GAINWARD_06_REGISTER, 0xFF);
}
void GainwardGPUv1Controller::SetMode()
{
}
unsigned char GainwardGPUv1Controller::GainwardGPURegisterRead(unsigned char reg)
{
return(bus->i2c_smbus_read_byte_data(dev, reg));
}
void GainwardGPUv1Controller::GainwardGPURegisterWrite(unsigned char reg, unsigned char val)
{
bus->i2c_smbus_write_byte_data(dev, reg, val);
}
@@ -1,115 +0,0 @@
/*---------------------------------------------------------*\
| RGBController_GainwardGPUv1.cpp |
| |
| RGBController for Gainward v1 GPU |
| |
| TheRogueZeta 05 Nov 2020 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "RGBController_GainwardGPUv1.h"
int RGBController_GainwardGPUv1::GetDeviceMode()
{
active_mode = 1;
return(active_mode);
}
/**------------------------------------------------------------------*\
@name Gainward GPU v1
@category GPU
@type I2C
@save :x:
@direct :white_check_mark:
@effects :x:
@detectors DetectGainwardGPUControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_GainwardGPUv1::RGBController_GainwardGPUv1(GainwardGPUv1Controller* controller_ptr)
{
controller = controller_ptr;
name = controller->GetDeviceName();
vendor = "Gainward";
type = DEVICE_TYPE_GPU;
description = "Gainward GPU V1 Device";
location = controller->GetDeviceLocation();
mode Direct;
Direct.name = "Direct";
Direct.value = 1;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
SetupZones();
}
RGBController_GainwardGPUv1::~RGBController_GainwardGPUv1()
{
Shutdown();
delete controller;
}
void RGBController_GainwardGPUv1::SetupZones()
{
/*---------------------------------------------------------*\
| Set up zone |
\*---------------------------------------------------------*/
zone gainward_gpu_zone;
gainward_gpu_zone.name = "GPU";
gainward_gpu_zone.type = ZONE_TYPE_SINGLE;
gainward_gpu_zone.leds_min = 1;
gainward_gpu_zone.leds_max = 1;
gainward_gpu_zone.leds_count = 1;
zones.push_back(gainward_gpu_zone);
/*---------------------------------------------------------*\
| Set up LED |
\*---------------------------------------------------------*/
led gainward_gpu_led;
gainward_gpu_led.name = "GPU";
leds.push_back(gainward_gpu_led);
SetupColors();
/*---------------------------------------------------------*\
| Initialize color |
\*---------------------------------------------------------*/
unsigned char red = controller->GetLEDRed();
unsigned char grn = controller->GetLEDGreen();
unsigned char blu = controller->GetLEDBlue();
colors[0] = ToRGBColor(red, grn, blu);
}
void RGBController_GainwardGPUv1::DeviceUpdateLEDs()
{
for(std::size_t led = 0; led < colors.size(); led++)
{
unsigned char red = RGBGetRValue(colors[led]);
unsigned char grn = RGBGetGValue(colors[led]);
unsigned char blu = RGBGetBValue(colors[led]);
controller->SetLEDColors(red, grn, blu);
}
}
void RGBController_GainwardGPUv1::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_GainwardGPUv1::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_GainwardGPUv1::DeviceUpdateMode()
{
}
@@ -1,97 +0,0 @@
/*---------------------------------------------------------*\
| GainwardGPUv2Controller.cpp |
| |
| Driver for Gainward v2 GPU |
| |
| KundaPanda 04 Jan 2021 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include <cstring>
#include "GainwardGPUv2Controller.h"
GainwardGPUv2Controller::GainwardGPUv2Controller(i2c_smbus_interface* bus, gainward_gpu_dev_id dev, std::string dev_name)
{
this->bus = bus;
this->dev = dev;
this->name = dev_name;
}
GainwardGPUv2Controller::~GainwardGPUv2Controller() = default;
std::string GainwardGPUv2Controller::GetDeviceLocation()
{
std::string return_string(bus->info.device_name);
char addr[5];
snprintf(addr, 5, "0x%02X", dev);
return_string.append(", address ");
return_string.append(addr);
return("I2C: " + return_string);
}
std::string GainwardGPUv2Controller::GetDeviceName()
{
return(name);
}
unsigned char GainwardGPUv2Controller::GetLEDRed()
{
return(bus->i2c_smbus_read_byte_data(dev, GAINWARD_V2_RED_REGISTER));
}
unsigned char GainwardGPUv2Controller::GetLEDGreen()
{
return(bus->i2c_smbus_read_byte_data(dev, GAINWARD_V2_GREEN_REGISTER));
}
unsigned char GainwardGPUv2Controller::GetLEDBlue()
{
return(bus->i2c_smbus_read_byte_data(dev, GAINWARD_V2_BLUE_REGISTER));
}
void GainwardGPUv2Controller::SetLEDColors(unsigned char red, unsigned char green, unsigned char blue, unsigned char color_register)
{
switch (color_register)
{
default:
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_RED_REGISTER, red);
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_GREEN_REGISTER, green);
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_BLUE_REGISTER, blue);
break;
case GAINWARD_V2_COLOR_REGISTER_SECONDARY:
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_RED_SECONDARY_REGISTER, red);
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_GREEN_SECONDARY_REGISTER, green);
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_BLUE_SECONDARY_REGISTER, blue);
break;
case GAINWARD_V2_COLOR_REGISTER_TERTIARY:
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_RED_TERTIARY_REGISTER, red);
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_GREEN_TERTIARY_REGISTER, green);
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_BLUE_TERTIARY_REGISTER, blue);
break;
}
}
void GainwardGPUv2Controller::SetMode(unsigned char mode, unsigned char speed, unsigned char static_mode)
{
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_MODE_REGISTER, mode);
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_STATIC_CONTROL_REGISTER, static_mode);
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_SPEED_REGISTER, speed);
}
void GainwardGPUv2Controller::SetDirection(unsigned char direction)
{
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_MODE_DIRECTION_REGISTER, direction);
}
void GainwardGPUv2Controller::SetBreathingSpeed(unsigned int speed)
{
unsigned char lower = speed & 0xFF;
unsigned char upper = (speed >> 2 * 4) & 0xFF;
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_BREATHE_SPEED_REGISTER_A, lower);
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_BREATHE_SPEED_SECONDARY_REGISTER_A, lower);
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_BREATHE_SPEED_REGISTER_B, upper);
bus->i2c_smbus_write_byte_data(dev, GAINWARD_V2_BREATHE_SPEED_SECONDARY_REGISTER_B, upper);
}
@@ -1,101 +0,0 @@
/*---------------------------------------------------------*\
| GainwardGPUv2Controller.h |
| |
| Driver for Gainward v2 GPU |
| |
| KundaPanda 04 Jan 2021 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#pragma once
#include <string>
#include "i2c_smbus.h"
typedef unsigned char gainward_gpu_dev_id;
/*---------------------------------------------------------------------------------*\
| Newer Gainward models seem to use addresses very similar to those used by EVGA |
\*-------------------------------------------------------------------------------**/
enum
{
/* RGB Registers */
GAINWARD_V2_RED_REGISTER = 0x6C, /* Red Register */
GAINWARD_V2_GREEN_REGISTER = 0x6D, /* Green Register */
GAINWARD_V2_BLUE_REGISTER = 0x6E, /* Blue Register */
GAINWARD_V2_RED_SECONDARY_REGISTER = 0x70, /* Red Register 2 */
GAINWARD_V2_GREEN_SECONDARY_REGISTER = 0x71, /* Green Register 2 */
GAINWARD_V2_BLUE_SECONDARY_REGISTER = 0x72, /* Blue Register 2 */
GAINWARD_V2_RED_TERTIARY_REGISTER = 0xE4, /* Red Register 3 */
GAINWARD_V2_GREEN_TERTIARY_REGISTER = 0xE5, /* Green Register 3 */
GAINWARD_V2_BLUE_TERTIARY_REGISTER = 0xE6, /* Blue Register 3 */
GAINWARD_V2_MODE_REGISTER = 0xE0, /* Mode Register */
/* Direct mode switch register
* 0x1 Software control
* 0x22 Breathing */
GAINWARD_V2_STATIC_CONTROL_REGISTER = 0x60,
GAINWARD_V2_BREATHE_SPEED_REGISTER_A = 0x62, /* Lower part of speed control for breathe effect */
GAINWARD_V2_BREATHE_SPEED_REGISTER_B = 0x63, /* Upper part of speed control for breathe effect */
GAINWARD_V2_BREATHE_SPEED_SECONDARY_REGISTER_A = 0x64, /* Lower part of speed control for breathe effect - prob. secondary color */
GAINWARD_V2_BREATHE_SPEED_SECONDARY_REGISTER_B = 0x65, /* Upper part of speed control for breathe effect - prob. secondary color */
/* Mode direction Register
* 0x0
* 0x1 */
GAINWARD_V2_MODE_DIRECTION_REGISTER = 0xE1,
/* Mode speed Register
* 0x0 MAX
* 0xF MIN */
GAINWARD_V2_SPEED_REGISTER = 0xE2,
};
enum
{
/* Manual color selection using primary registers */
GAINWARD_V2_MODE_STATIC = 0x00,
/* Rainbow cycling with direction and speed controls */
GAINWARD_V2_MODE_CYCLE = 0x01,
/* One strobing color running around the fan
* Color using primary registers, direction and speed control */
GAINWARD_V2_MODE_STROBE = 0x02,
};
enum
{
GAINWARD_V2_COLOR_REGISTER_PRIMARY,
GAINWARD_V2_COLOR_REGISTER_SECONDARY,
GAINWARD_V2_COLOR_REGISTER_TERTIARY,
};
enum
{
/* Software controlled direct mode */
GAINWARD_V2_STATIC_SOFTWARE = 0x01,
/* GPU controlled direct mode with breathing effect */
GAINWARD_V2_STATIC_BREATHING = 0x22,
};
class GainwardGPUv2Controller
{
public:
GainwardGPUv2Controller(i2c_smbus_interface* bus, gainward_gpu_dev_id, std::string dev_name);
~GainwardGPUv2Controller();
std::string GetDeviceLocation();
std::string GetDeviceName();
unsigned char GetLEDRed();
unsigned char GetLEDGreen();
unsigned char GetLEDBlue();
void SetLEDColors(unsigned char red, unsigned char green, unsigned char blue, unsigned char color_register = GAINWARD_V2_COLOR_REGISTER_PRIMARY);
void SetMode(unsigned char mode, unsigned char speed, unsigned char direct_mode = GAINWARD_V2_STATIC_SOFTWARE);
void SetBreathingSpeed(unsigned int speed);
void SetDirection(unsigned char direction);
private:
i2c_smbus_interface * bus;
gainward_gpu_dev_id dev;
std::string name;
};
@@ -1,187 +0,0 @@
/*---------------------------------------------------------*\
| RGBController_GainwardGPUv2.cpp |
| |
| RGBController for Gainward v2 GPU |
| |
| KundaPanda 04 Jan 2021 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "RGBController_GainwardGPUv2.h"
/**------------------------------------------------------------------*\
@name Gainward GPU v2
@category GPU
@type I2C
@save :x:
@direct :x:
@effects :white_check_mark:
@detectors DetectGainwardGPUControllers
@comment
\*-------------------------------------------------------------------*/
RGBController_GainwardGPUv2::RGBController_GainwardGPUv2(GainwardGPUv2Controller* controller_ptr)
{
controller = controller_ptr;
name = controller->GetDeviceName();
vendor = "Gainward";
type = DEVICE_TYPE_GPU;
description = "Gainward GPU V2 Device";
location = controller->GetDeviceLocation();
mode Static;
Static.name = "Static";
Static.value = GAINWARD_V2_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathe;
Breathe.name = "Breathing";
Breathe.value = GAINWARD_V2_MODE_STATIC;
Breathe.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_SPEED;
Breathe.speed_max = 0x000a;
Breathe.speed_min = 0x1324;
Breathe.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathe.colors_min = 2;
Breathe.colors_max = 2;
Breathe.colors.resize(2);
modes.push_back(Breathe);
mode RainbowWave;
RainbowWave.name = "Rainbow Wave";
RainbowWave.value = GAINWARD_V2_MODE_CYCLE;
RainbowWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
RainbowWave.speed_max = 0x0;
RainbowWave.speed_min = 0xF;
RainbowWave.color_mode = MODE_COLORS_NONE;
modes.push_back(RainbowWave);
mode Strobe;
Strobe.name = "Strobe";
Strobe.value = GAINWARD_V2_MODE_STROBE;
Strobe.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Strobe.color_mode = MODE_COLORS_MODE_SPECIFIC;
Strobe.colors_min = 1;
Strobe.colors_max = 1;
Strobe.colors.resize(1);
Strobe.speed_max = 0x0;
Strobe.speed_min = 0xF;
modes.push_back(Strobe);
SetupZones();
/*-------------------------*\
| Initialize active mode |
\*-------------------------*/
active_mode = 0;
}
RGBController_GainwardGPUv2::~RGBController_GainwardGPUv2()
{
Shutdown();
delete controller;
}
void RGBController_GainwardGPUv2::SetupZones()
{
/*---------------------------------------------------------*\
| Set up zone |
\*---------------------------------------------------------*/
zone gainward_gpu_zone;
gainward_gpu_zone.name = "GPU";
gainward_gpu_zone.type = ZONE_TYPE_SINGLE;
gainward_gpu_zone.leds_min = 1;
gainward_gpu_zone.leds_max = 1;
gainward_gpu_zone.leds_count = 1;
zones.push_back(gainward_gpu_zone);
/*---------------------------------------------------------*\
| Set up LED |
\*---------------------------------------------------------*/
led gainward_gpu_led;
gainward_gpu_led.name = "GPU";
leds.push_back(gainward_gpu_led);
SetupColors();
/*---------------------------------------------------------*\
| Initialize color |
\*---------------------------------------------------------*/
unsigned char red = controller->GetLEDRed();
unsigned char grn = controller->GetLEDGreen();
unsigned char blu = controller->GetLEDBlue();
colors[0] = ToRGBColor(red, grn, blu);
}
void RGBController_GainwardGPUv2::DeviceUpdateLEDs()
{
for(unsigned int color : colors)
{
unsigned char red = RGBGetRValue(color);
unsigned char grn = RGBGetGValue(color);
unsigned char blu = RGBGetBValue(color);
controller->SetLEDColors(red, grn, blu);
controller->SetMode(GAINWARD_V2_MODE_STATIC, 0x2);
}
}
void RGBController_GainwardGPUv2::DeviceUpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_GainwardGPUv2::DeviceUpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_GainwardGPUv2::DeviceUpdateMode()
{
mode current_mode = modes[(unsigned int)active_mode];
switch (active_mode)
{
case 1:
{
controller->SetBreathingSpeed(current_mode.speed);
unsigned char r1 = RGBGetRValue(current_mode.colors[0]);
unsigned char g1 = RGBGetGValue(current_mode.colors[0]);
unsigned char b1 = RGBGetBValue(current_mode.colors[0]);
controller->SetLEDColors(r1, g1, b1);
unsigned char r2 = RGBGetRValue(current_mode.colors[1]);
unsigned char g2 = RGBGetGValue(current_mode.colors[1]);
unsigned char b2 = RGBGetBValue(current_mode.colors[1]);
controller->SetLEDColors(r2, g2, b2, GAINWARD_V2_COLOR_REGISTER_SECONDARY);
controller->SetMode(GAINWARD_V2_MODE_STATIC, 0x2, GAINWARD_V2_STATIC_BREATHING);
}
break;
/*---------------------------------------------*\
| Case 3 intentionally falls through to case 2 |
\*---------------------------------------------*/
case 3:
{
unsigned char r = RGBGetRValue(current_mode.colors[0]);
unsigned char g = RGBGetGValue(current_mode.colors[0]);
unsigned char b = RGBGetBValue(current_mode.colors[0]);
controller->SetLEDColors(r, g, b, GAINWARD_V2_COLOR_REGISTER_TERTIARY);
}
case 2:
controller->SetMode((unsigned char)(current_mode.value), (unsigned char)(current_mode.speed));
controller->SetDirection(current_mode.direction);
break;
default:
controller->SetMode((unsigned char)(current_mode.value), (unsigned char)(current_mode.speed));
break;
}
}
@@ -109,5 +109,6 @@ REGISTER_I2C_PCI_DETECTOR("GALAX GeForce RTX 2070 SUPER EX Gamer Black", Dete
REGISTER_I2C_PCI_DETECTOR("KFA2 GeForce RTX 2080 EX OC", DetectGalaxGPUControllers, NVIDIA_VEN, NVIDIA_RTX2080_DEV, NVIDIA_SUB_VEN, KFA2_RTX_2080_EX_OC_SUB_DEV, 0x23);
REGISTER_I2C_PCI_DETECTOR("KFA2 GeForce RTX 2080 SUPER EX OC", DetectGalaxGPUControllers, NVIDIA_VEN, NVIDIA_RTX2080S_DEV, NVIDIA_SUB_VEN, KFA2_RTX_2080_SUPER_EX_OC_SUB_DEV, 0x23);
REGISTER_I2C_PCI_DETECTOR("KFA2 GeForce RTX 2080 Ti EX OC", DetectGalaxGPUControllers, NVIDIA_VEN, NVIDIA_RTX2080TI_DEV, NVIDIA_SUB_VEN, KFA2_RTX_2080TI_EX_OC_SUB_DEV, 0x23);
REGISTER_I2C_PCI_DETECTOR("GALAX GeForce RTX 3070 1-Click OC", DetectGalaxGPUControllers, NVIDIA_VEN, NVIDIA_RTX3070_DEV, NVIDIA_SUB_VEN, GALAX_RTX_3070_1_CLICK_OC_SUB_DEV, 0x23);
REGISTER_I2C_PCI_DETECTOR("GALAX GeForce RTX 3080 SG", DetectGalaxGPUControllers, NVIDIA_VEN, NVIDIA_RTX3080_DEV, NVIDIA_SUB_VEN, GALAX_RTX_3080_SG_SUB_DEV, 0x23);
REGISTER_I2C_PCI_DETECTOR("GALAX GeForce RTX 5070 Ti EX Gamer 1-Click OC", DetectGalaxGPUControllers, NVIDIA_VEN, NVIDIA_RTX5070TI_DEV, NVIDIA_SUB_VEN, GALAX_RTX_5070TI_EX_OC_SUB_DEV, 0x51);
@@ -0,0 +1,70 @@
/*---------------------------------------------------------*\
| GameSirController.cpp |
| |
| GameSir RGB Device |
| |
| Added by OpenRGB Community 08 Aug 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "GameSirController.h"
#include <cstring>
#include "StringUtils.h"
GameSirController::GameSirController(hid_device* dev_handle, const char* path)
{
dev = dev_handle;
location = path;
}
GameSirController::~GameSirController()
{
hid_close(dev);
}
std::string GameSirController::GetLocation()
{
return("HID: " + location);
}
std::string GameSirController::GetSerialString()
{
wchar_t serial_string[128];
memset(serial_string, 0x00, sizeof(serial_string));
int ret = hid_get_serial_number_string(dev, serial_string, 128);
if(ret != 0)
{
return("");
}
return(StringUtils::wstring_to_string(serial_string));
}
void GameSirController::SetColor(unsigned char red, unsigned char green, unsigned char blue)
{
unsigned char buf[64];
memset(buf, 0x00, sizeof(buf));
buf[0] = 0x05;
buf[1] = 0x08;
buf[2] = 0x0A;
buf[3] = 0x01;
buf[4] = 0x03;
buf[5] = red;
buf[6] = green;
buf[7] = blue;
buf[8] = 0x00;
unsigned int checksum = 0;
for(int i = 0; i < 9; i++)
{
checksum += buf[i];
}
buf[9] = checksum & 0xFF;
hid_write(dev, buf, sizeof(buf));
}
@@ -0,0 +1,31 @@
/*---------------------------------------------------------*\
| GameSirController.h |
| |
| GameSir RGB Device |
| |
| Added by OpenRGB Community 08 Aug 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#pragma once
#include <string>
#include <hidapi.h>
class GameSirController
{
public:
GameSirController(hid_device* dev_handle, const char* path);
~GameSirController();
std::string GetLocation();
std::string GetSerialString();
void SetColor(unsigned char red, unsigned char green, unsigned char blue);
private:
hid_device* dev;
std::string location;
};
@@ -0,0 +1,34 @@
/*---------------------------------------------------------*\
| GameSirControllerDetect.cpp |
| |
| GameSir RGB Device |
| |
| Added by OpenRGB Community 08 Aug 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "DetectionManager.h"
#include "RGBController_GameSir.h"
#define GAMESIR_VID 0x3537
#define GAMESIR_NOVA_LITE_2_PID 0x100F
DetectedControllers DetectGameSirControllers(hid_device_info* info, const std::string& /*name*/)
{
DetectedControllers detected_controllers;
hid_device* dev = hid_open_path(info->path);
if(dev)
{
GameSirController* controller = new GameSirController(dev, info->path);
RGBController_GameSir* rgb_controller = new RGBController_GameSir(controller);
detected_controllers.push_back(rgb_controller);
}
return detected_controllers;
}
REGISTER_HID_DETECTOR_IPU("GameSir Nova 2 Lite", DetectGameSirControllers, GAMESIR_VID, GAMESIR_NOVA_LITE_2_PID, 2, 0xFF7A, 0x0001);
@@ -0,0 +1,75 @@
/*---------------------------------------------------------*\
| RGBController_GameSir.cpp |
| |
| GameSir RGB Device |
| |
| Added by OpenRGB Community 08 Aug 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "RGBController_GameSir.h"
RGBController_GameSir::RGBController_GameSir(GameSirController* controller_ptr)
{
controller = controller_ptr;
name = "GameSir Nova 2 Lite";
vendor = "GameSir";
type = DEVICE_TYPE_GAMEPAD;
description = "GameSir RGB Device";
location = controller->GetLocation();
serial = controller->GetSerialString();
mode Static;
Static.name = "Static";
Static.value = 0xFFFF;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
SetupZones();
}
RGBController_GameSir::~RGBController_GameSir()
{
delete controller;
}
void RGBController_GameSir::SetupZones()
{
zone new_zone;
new_zone.name = "Controller";
new_zone.type = ZONE_TYPE_SINGLE;
new_zone.leds_min = 1;
new_zone.leds_max = 1;
new_zone.leds_count = 1;
zones.push_back(new_zone);
led new_led;
new_led.name = "Main LED";
leds.push_back(new_led);
SetupColors();
}
void RGBController_GameSir::DeviceUpdateLEDs()
{
controller->SetColor(RGBGetRValue(colors[0]), RGBGetGValue(colors[0]), RGBGetBValue(colors[0]));
}
void RGBController_GameSir::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_GameSir::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_GameSir::DeviceUpdateMode()
{
DeviceUpdateLEDs();
}
@@ -1,33 +1,32 @@
/*---------------------------------------------------------*\
| RGBController_LogitechG810.h |
| |
| RGBController for Logitech G810 Orion Spectrum |
| |
| Adam Honse (CalcProgrammer1) 12 Jun 2020 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#pragma once
#include "RGBController.h"
#include "LogitechG810Controller.h"
class RGBController_LogitechG810 : public RGBController
{
public:
RGBController_LogitechG810(LogitechG810Controller* controller_ptr);
~RGBController_LogitechG810();
void SetupZones();
void DeviceUpdateLEDs();
void DeviceUpdateZoneLEDs(int zone);
void DeviceUpdateSingleLED(int led);
void DeviceUpdateMode();
private:
LogitechG810Controller* controller;
};
/*---------------------------------------------------------*\
| RGBController_GameSir.h |
| |
| GameSir RGB Device |
| |
| Added by OpenRGB Community 08 Aug 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#pragma once
#include "RGBController.h"
#include "GameSirController.h"
class RGBController_GameSir : public RGBController
{
public:
RGBController_GameSir(GameSirController* controller_ptr);
~RGBController_GameSir();
void SetupZones();
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode();
private:
GameSirController* controller;
};
@@ -1,4 +1,4 @@
/*---------------------------------------------------------*\
/*---------------------------------------------------------*\
| GigabyteRGBFusion2BlackwellGPUControllerDetect.cpp |
| |
| Detector for Gigabyte RGB Fusion 2 Blackwell GPU |
@@ -130,8 +130,8 @@ REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 5080 XTREME WATERFORCE",
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 5080 XTREME WATERFORCE", DetectGigabyteRGBFusion2BlackwellWaterforceLayoutGPUControllers, NVIDIA_VEN, NVIDIA_RTX5080_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX5080_XTREME_WATERFORCE_16G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 5080 MASTER ICE", DetectGigabyteRGBFusion2BlackwellAorusMaster5080LayoutGPUControllers, NVIDIA_VEN, NVIDIA_RTX5080_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX5080_MASTER_ICE_16G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 5090 Gaming OC", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX5090_GAMING_OC_32G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 5090 XTREME WATERFORCE", DetectGigabyteRGBFusion2BlackwellWaterforceLayoutGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX5090_XTREME_WATERFORCE_32G_SUB_DEV1, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 5090 XTREME WATERFORCE", DetectGigabyteRGBFusion2BlackwellWaterforceLayoutGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX5090_XTREME_WATERFORCE_32G_SUB_DEV2, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 5090 XTREME WATERFORCE", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX5090_XTREME_WATERFORCE_32G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 5090 XTREME WATERFORCE WB", DetectGigabyteRGBFusion2BlackwellWaterforceLayoutGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX5090_XTREME_WATERFORCE_WB_32G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 5090 MASTER", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX5090_MASTER_32G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 5090 MASTER ICE", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX5090_MASTER_ICE_32G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 5090 D V2 MASTER ICE", DetectGigabyteRGBFusion2BlackwellAorusMaster5090DV2IceLayoutGPUControllers, NVIDIA_VEN, NVIDIA_RTX5090D_V2_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX5090D_V2_MASTER_ICE_24G_SUB_DEV, 0x75);
@@ -139,9 +139,11 @@ REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 5090 D V2 MASTER ICE",
/*---------------------------------------------------------*\
| AMD GPUs |
\*---------------------------------------------------------*/
REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 9060 GAMING OC 8G", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, AMD_GPU_VEN, AMD_NAVI44_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RX9060XT_GAMING_OC_8G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 9060 XT GAMING", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, AMD_GPU_VEN, AMD_NAVI44_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RX9060XT_GAMING_16G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 9060 XT GAMING OC", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, AMD_GPU_VEN, AMD_NAVI44_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RX9060XT_GAMING_OC_16G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS Radeon RX 9070 XT Elite", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RX9070XT_ELITE_16G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 9070 XT GAMING OC", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RX9070XT_GAMING_OC_16G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 9070 XT GAMING OC ICE", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RX9070XT_GAMING_OC_ICE_16G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 9070 XT GAMING", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RX9070XT_GAMING_16G_SUB_DEV, 0x75);
REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 9070 GAMING OC", DetectGigabyteRGBFusion2BlackwellGamingLayoutGPUControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RX9070_GAMING_OC_16G_SUB_DEV, 0x75);
@@ -52,8 +52,12 @@ bool TestForGigabyteRGBFusion2GPUController(i2c_smbus_interface* bus, unsigned c
//Note that GeForce RTX 4080 Gigabyte AORUS MASTER 16G exposes two i2c bus with writable address 0x71 but one respond
//0x00 0x00 0x00 0x00 so it should be the one controlling the LCD screen. So we skip this bus
//All seen responses start with 0xAB, so we check for this.
if(res < 0 || data_readpkt[0] != 0xAB)
//All seen responses start with 0xAB, so we check for this. A DDC/EDID
//style bus can echo the written command byte back for every read, so an
//all-0xAB response is a mirror, not a controller; every real controller
//seen so far follows 0xAB with version bytes (see table above).
if(res < 0 || data_readpkt[0] != 0xAB ||
(data_readpkt[1] == 0xAB && data_readpkt[2] == 0xAB && data_readpkt[3] == 0xAB))
{
// Assemble C-string with respons for debugging
std::string text = "";
@@ -108,6 +112,7 @@ REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 2080 SUPER Waterforce WB",
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 2080 SUPER Waterforce WB", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX2080S_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX2080S_WATERFORCE_WB_SUB_DEV_P,0x51);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 2080 SUPER Waterforce", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX2080S_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX2080S_WATERFORCE_SUB_DEV_H, 0x08);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 2080 SUPER Waterforce", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX2080S_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX2080S_WATERFORCE_SUB_DEV_P, 0x08);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 2080 Ti 11G", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX2080TI_A_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX2080TI_11G_SUB_DEV_H, 0x50);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 2080 Ti XTREME", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX2080TI_A_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX2080TI_EXTREME_SUB_DEV_H, 0x50);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 2080 Ti XTREME", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX2080TI_A_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX2080TI_EXTREME_SUB_DEV_P, 0x50);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 3060 ELITE", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX3060_GA104_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX3060_ELITE_12GB_SUB_DEV, 0x70);
@@ -139,7 +144,8 @@ REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 4070 GAMING OC",
REGISTER_I2C_PCI_DETECTOR("Gigabyte Geforce RTX 4070 Aero OC", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX4070_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX4070_AERO_OC_12G_SUB_DEV, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 4070 SUPER GAMING OC", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX4070S_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX4070S_GAMING_OC_12G, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 4070 SUPER Aero OC", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX4070S_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX4070S_AERO_OC_12G, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 4070 SUPER Eagle OC", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX4070S_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX4070S_EAGLE_OC_ICE_12G, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 4070 SUPER Eagle OC", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX4070S_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX4070S_EAGLE_OC_12G, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 4070 SUPER Eagle OC ICE", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX4070S_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX4070S_EAGLE_OC_ICE_12G, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 4070 Ti GAMING", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX4070TI_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX4070TI_GAMING_12G, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 4070 Ti GAMING OC", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX4070TI_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX4070TI_GAMING_OC_12G, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 4070 Ti GAMING OC", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX4070TI_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX4070TI_GAMING_OC_12G_SUB_DEV2, 0x71);
@@ -160,6 +166,8 @@ REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 4090 AERO OC",
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 4090 GAMING OC", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX4090_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX4090_GAMING_OC_24G_SUB_DEV, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 4090 MASTER", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX4090_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX4090_MASTER_24G_SUB_DEV, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 5090 D MASTER", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX5090D_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX5090D_MASTER_32G_SUB_DEV, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 5080 GAMING OC", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX5080_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX5080_GAMING_OC_16G_SUB_DEV, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 5080 MASTER ICE", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX5080_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX5080_MASTER_ICE_16G_SUB_DEV, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte GeForce RTX 5090 GAMING OC", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX5090D_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RTX5090_GAMING_OC_32G_SUB_DEV, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 5090 MASTER", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX5090_MASTER_32G_SUB_DEV, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS GeForce RTX 5090 MASTER ICE", DetectGigabyteRGBFusion2GPUControllers, NVIDIA_VEN, NVIDIA_RTX5090_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RTX5090_MASTER_ICE_32G_SUB_DEV, 0x71);
@@ -181,7 +189,9 @@ REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 7900 XT GAMING OC",
REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 7900 XTX GAMING OC", DetectGigabyteRGBFusion2GPUControllers, AMD_GPU_VEN, AMD_NAVI31_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RX7900XTX_GAMING_OC_24G_SUB_DEV, 0x62);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS Radeon RX 7900 XTX ELITE 24G", DetectGigabyteRGBFusion2GPUControllers, AMD_GPU_VEN, AMD_NAVI31_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RX7900XTX_ELITE_24G_SUB_DEV, 0x71);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS RX 6750 XT ELITE 12G", DetectGigabyteRGBFusion2GPUControllers, AMD_GPU_VEN, AMD_NAVI22_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RX_6750_XT_ELITE_12G_SUB_DEV, 0x70);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS RX 6900 XT MASTER rev 2.0", DetectGigabyteRGBFusion2GPUControllers, AMD_GPU_VEN, AMD_NAVI21_DEV2, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RX6900XT_MASTER_SUB_DEV, 0x70);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS RX 6900 XT EXTREME WATERFORCE WB", DetectGigabyteRGBFusion2GPUControllers, AMD_GPU_VEN, AMD_NAVI21_DEV2, GIGABYTE_SUB_VEN, GIGABYTE_RX6900XT_XTREME_WATERFORCE_WB_SUB_DEV, 0x70);
REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 9060 XT GAMING OC 8G", DetectGigabyteRGBFusion2GPUControllers, AMD_GPU_VEN, AMD_NAVI44_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RX9060XT_GAMING_OC_8G_SUB_DEV, 0x73);
REGISTER_I2C_PCI_DETECTOR("Gigabyte AORUS Radeon RX 9070 XT Elite", DetectGigabyteRGBFusion2GPUControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, GIGABYTE_SUB_VEN, GIGABYTE_AORUS_RX9070XT_ELITE_16G_SUB_DEV, 0x73);
REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 9070 XT GAMING OC", DetectGigabyteRGBFusion2GPUControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RX9070XT_GAMING_OC_16G_SUB_DEV, 0x73);
REGISTER_I2C_PCI_DETECTOR("Gigabyte Radeon RX 9070 XT GAMING OC ICE", DetectGigabyteRGBFusion2GPUControllers, AMD_GPU_VEN, AMD_NAVI48_DEV, GIGABYTE_SUB_VEN, GIGABYTE_RX9070XT_GAMING_OC_ICE_16G_SUB_DEV, 0x73);
@@ -56,6 +56,7 @@ json rgb_fusion_2_smbus_motherboards[] =
"X470 AORUS ULTRA GAMING",
"X470 AORUS ULTRA GAMING-CF",
"B360M AORUS Gaming 3-CF",
"B360 AORUS GAMING 3 WIFI-CF",
"Z370 AORUS Gaming 5-CF",
"Z370 AORUS Ultra Gaming-CF"
};
@@ -4,8 +4,8 @@
| Gigabyte Fusion 2 USB Device layouts and |
| and mapping to the device IDs stored on chip |
| |
| megadjc 31 Jul 2025 |
| chrism 29 Aug 2025 |
| megadjc 03 Sep 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-only |
@@ -19,16 +19,16 @@
static const gb_fusion2_zone common_d_led_zone =
{
HDR_D_LED1,
0,
1024,
RGBFUSION2_DLED_LEDS_MIN,
RGBFUSION2_DLED_LEDS_MAX,
"D_LED"
};
static const gb_fusion2_zone common_gc_usb_d_led_zone =
{
LED1,
0,
1024,
RGBFUSION2_DLED_LEDS_MIN,
RGBFUSION2_DLED_LEDS_MAX,
"D_LED"
};
@@ -36,48 +36,48 @@ static const gb_fusion2_zone common_gc_usb_d_led_zone =
static const gb_fusion2_zone common_d_led1_zone =
{
HDR_D_LED1,
0,
1024,
RGBFUSION2_DLED_LEDS_MIN,
RGBFUSION2_DLED_LEDS_MAX,
"D_LED1"
};
static const gb_fusion2_zone common_dled1_dled2_zone =
{
HDR_D_LED1,
0,
1024,
RGBFUSION2_DLED_LEDS_MIN,
RGBFUSION2_DLED_LEDS_MAX,
"D_LED1/D_LED2"
};
static const gb_fusion2_zone common_argb_v2_1_zone =
{
HDR_D_LED1,
0,
1024,
RGBFUSION2_57XX_LEDS_MIN,
RGBFUSION2_57XX_LEDS_MAX,
"ARGB_V2_1"
};
static const gb_fusion2_zone alt_argb_v2_1_zone =
{
LED3,
0,
1024,
RGBFUSION2_57XX_LEDS_MIN,
RGBFUSION2_57XX_LEDS_MAX,
"ARGB_V2_1"
};
static const gb_fusion2_zone common_argb_v2_1_3_zone =
{
HDR_D_LED1,
0,
1024,
RGBFUSION2_57XX_LEDS_MIN,
RGBFUSION2_57XX_LEDS_MAX,
"ARGB_V2_1/ARGB_V2_3"
};
static const gb_fusion2_zone common_d_led2_zone =
{
HDR_D_LED2,
0,
1024,
RGBFUSION2_DLED_LEDS_MIN,
RGBFUSION2_DLED_LEDS_MAX,
"D_LED2"
};
@@ -85,47 +85,47 @@ static const gb_fusion2_zone common_d_led2_aux_zone =
{
HDR_D_LED2,
2,
1024,
RGBFUSION2_DLED_LEDS_MAX,
"D_LED2 + Aux"
};
static const gb_fusion2_zone common_argb_v2_2_zone =
{
HDR_D_LED2,
0,
1024,
RGBFUSION2_57XX_LEDS_MIN,
RGBFUSION2_57XX_LEDS_MAX,
"ARGB_V2_2"
};
static const gb_fusion2_zone alt_argb_v2_2_zone =
{
LED4,
0,
1024,
RGBFUSION2_57XX_LEDS_MIN,
RGBFUSION2_57XX_LEDS_MAX,
"ARGB_V2_2"
};
static const gb_fusion2_zone common_argb_v2_3_1_zone =
{
HDR_D_LED1,
0,
1024,
RGBFUSION2_57XX_LEDS_MIN,
RGBFUSION2_57XX_LEDS_MAX,
"ARGB_V2_3"
};
static const gb_fusion2_zone common_argb_v2_3_zone =
{
HDR_D_LED3,
0,
1024,
RGBFUSION2_57XX_LEDS_MIN,
RGBFUSION2_57XX_LEDS_MAX,
"ARGB_V2_3"
};
static const gb_fusion2_zone common_argb_v2_4_zone =
{
HDR_D_LED4,
0,
1024,
RGBFUSION2_57XX_LEDS_MIN,
RGBFUSION2_57XX_LEDS_MAX,
"ARGB_V2_4"
};
@@ -4,8 +4,8 @@
| Gigabyte Fusion 2 USB Device layouts and |
| and mapping to the device IDs stored on chip |
| |
| megadjc 31 Jul 2025 |
| chrism 29 Aug 2025 |
| megadjc 03 Sep 2026 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-only |
@@ -54,6 +54,8 @@ enum GB_FUSION2_LED_IDX
HDR_D_LED4 = 8,
HDR_D_LED3_ARGB = 0x62,
HDR_D_LED4_ARGB = 0x63,
ONBOARD1_ARGB = 0x64,
ONBOARD2_ARGB = 0x65,
};
/*-------------------------------------------------*\

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