Compare commits

...
Author SHA1 Message Date
Adam Honse ebaed20534 Clean up unused hidapi files 2020-03-01 15:43:18 -06:00
Adam Honse 85d91d2d63 Add refreshing thread for HyperX keyboard Direct mode 2020-03-01 11:52:44 -06:00
Adam Honse 8d2f188c0b Add timeouts to fix HyperX and Poseidon Z RGB in Linux 2020-03-01 11:52:05 -06:00
Adam Honse 4ba3beab63 Get hidapi over libusb working on linux 2020-02-29 16:03:52 -06:00
Adam Honse b92082b545 libusb-based hidapi on Windows 2020-02-29 16:03:11 -06:00
Adam Honse c7960c090a Add software version information to CLI 2020-02-29 14:01:06 -06:00
Adam Honse 85b2545409 Fill in software information and set version to 0.0 for now 2020-02-29 13:45:43 -06:00
Adam Honse e10881db3e Add empty software information tab to information UI 2020-02-28 12:31:32 -06:00
Adam Honse 977feabe6e Add profile selection to system tray icon menu 2020-02-27 13:16:10 -06:00
Adam Honse a6c9d1232a Don't apply colors unless per LED mode 2020-02-26 21:16:02 -06:00
Adam Honse 4024e6de85 Fix build on Linux 2020-02-26 19:40:25 -06:00
Adam Honse f3df584d3a Don't update devices if the profile could not be loaded 2020-02-26 19:36:00 -06:00
Adam Honse 60a0ab5c93 Populate profile list with .orp files and load profile selected in list 2020-02-26 19:36:00 -06:00
Adam Honse c908847577 Add dialog to name profile. Save all controllers to a single file. Add a file header with version number and use extension .orp for OpenRgb Profile 2020-02-26 19:36:00 -06:00
Adam Honse bd027e596e Set colors when updating mode 2020-02-26 19:36:00 -06:00
Adam Honse 51c3568f7a Profile save and load test 2020-02-26 19:36:00 -06:00
Adam Honse 4f8db7d63f Add cstring include to fix build on Linux 2020-02-25 21:07:06 -06:00
Adam Honse f844c2fb07 Add functions to get/set RGBController parameters to/from a binary data buffer. Add a dummy RGBController object to load data into. 2020-02-25 18:09:14 -06:00
Adam Honse f7041988e4 Fix off-by-one errors in Aura RAM address assignment 2020-02-25 14:20:59 -06:00
Stefan Reiter 71c650cd45 Add cli.cpp and make it build at least
Not confirmed working as of yet, but at least it builds and
--list-devices works.

Code originally taken from Sam Lewis (@sam-masaki on gitlab.com), see:
https://gitlab.com/CalcProgrammer1/OpenRGB/-/merge_requests/9
2020-02-24 00:03:07 -06:00
Stefan Reiter 3c6ac31eab Introduce device_type_to_str 2020-02-23 23:40:26 -06:00
Stefan Reiter 20a99ef7ef Append LED number to Aura devices' LEDs
Makes identifying them easier then just 'Unknown' 8 times in a row.
2020-02-23 23:40:11 -06:00
Stefan Reiter c69a98096b Remove debug print
Annoying when in CLI mode
2020-02-23 23:39:13 -06:00
Adam Honse 92afebe2c7 Fix Windows build 2020-02-23 19:09:03 -06:00
jackun 5b82eb39a8 RGB Fusion 2 (IT8297BX) support based on Gigabyte X570 Elite. 2020-02-23 18:26:48 -06:00
Adam Honse 7b120515d8 Fix include path for NvAPI 2020-02-23 15:54:23 -06:00
Adam Honse b480bbd666 Clean up NvAPI I2C code and allow multiple GPUs 2020-02-23 15:54:14 -06:00
Adam Honse 5e5ac81f53 Get detection working (tested on nouveau in Linux) 2020-02-23 15:54:06 -06:00
Adam Honse adcd59848a Add RGB Fusion GPU controller and NVAPI I1C interface 2020-02-23 15:53:54 -06:00
Adam Honse 937cbc656e Add Windows application icon 2020-02-20 00:37:31 -06:00
Jan Rettig aead384282 Aura GPU Support 2020-02-19 21:24:36 -06:00
Adam Honse b717600c37 Add name, description, and type information to MSI-RGB controller 2020-02-19 21:05:04 -06:00
Adam Honse f38be5119e MSI-RGB driver based on https://github.com/nagisa/msi-rgb 2020-02-19 20:19:12 -06:00
Adam Honse f8de686296 Add LED numbers to Linux OpenRazer controller 2020-02-19 19:42:49 -06:00
Adam Honse 0703fb8c68 Support 64-bit Windows builds 2020-02-19 10:24:56 -06:00
Adam Honse 8d0915de6e Add support for mode specific colors in HyperX keyboard breathing mode 2020-02-18 11:01:43 -06:00
Adam Honse ef33d7e2c4 Firmware 2.x seems to use ASR LED protocol, confirmed on 2.08 2020-02-16 13:43:57 -06:00
Adam Honse bba88eb1f2 Update mode color description to add mode-specific colors. 2020-02-16 12:09:11 -06:00
Adam Honse 7b35cf72f7 Add zone numbers to Chroma HDK and add LED numbers for all OpenRazer zones. 2020-02-13 12:36:57 -06:00
Adam Honse 9603489f4a Get rid of razerchromahdk driver as it was never merged and use razeraccessory instead 2020-02-13 12:36:57 -06:00
Adam Honse d4cd2a6853 Add direction control to OpenRazer Wave mode 2020-02-13 12:36:57 -06:00
Adam Honse c4d2f72df1 Clean up Linux OpenRazer code to match Windows and break out device list into a shared header file 2020-02-13 12:36:57 -06:00
Adam Honse 1a07aee7a6 Add OpenRazer-Win32 driver to support Razer devices on Windows without official software 2020-02-13 12:36:57 -06:00
Adam Honse 415d79a3ef Remove Razer Chroma SDK backend 2020-02-13 12:33:31 -06:00
Adam Honse fd59f83556 Update Crucial controller to new RGBController format 2020-02-12 14:51:07 -06:00
Adam Honse 7adcfa77fa Add function for setting Crucial Ballistix RGB colors in direct mode 2020-02-12 14:39:44 -06:00
Adam Honse b338fbca3c Initial driver for Crucial Ballistix RGB 2020-02-12 14:39:44 -06:00
Adam Honse aba3a3fd23 Add 0x39, 0x3B, 0x3C, and 0x3D to Aura DRAM search addresses list 2020-02-12 13:23:35 -06:00
Adam Honse cb680508a5 Add Polychrome firmware 2.08 to supported firmware list 2020-02-12 13:02:28 -06:00
Adam Honse 2104c975be Update RGB Fusion 2 to build with latest RGBController format 2020-02-12 12:27:15 -06:00
Adam Honse 339e1e14c2 Swap red and blue channels in RGB Fusion 2.0 packet after it was found that they were reversed 2020-02-12 12:20:50 -06:00
Adam Honse dca3b0d733 Forgot to send the apply packet 2020-02-12 12:20:30 -06:00
Adam Honse c52eb528ea RGB Fusion 2.0 driver based on summerblind's code 2020-02-12 12:20:30 -06:00
Adam Honse 3948e74711 Use /dev/port to make Super IO functions work on Linux 2020-02-11 20:25:28 -06:00
Adam Honse 4672d4a686 Move Super IO functionality to its own file to make it easier to write an MSI-RGB driver 2020-02-11 19:58:13 -06:00
Adam Honse befa9baf20 Update the ThermaltakeRiing driver to just set the active_mode variable instead of actually sending mode updates on SetCustomMode 2020-02-11 18:07:57 -06:00
Adam Honse 077cda545e Clean up the Corsair keyboard driver with some private packet sending functions 2020-02-11 18:01:31 -06:00
Adam Honse e934ce2c23 Add addresses 0x5E and 0x5F to Corsair DRAM detection 2020-02-11 16:18:39 -06:00
Adam Honse b10ff42df2 Add addresses 0x5E and 0x5F to Corsair Pro DRAM detection 2020-02-11 16:18:38 -06:00
Adam Honse afb6ff6a74 Update the rest of the RGBController drivers to just set the active_mode variable instead of actually sending mode updates on SetCustomMode 2020-02-10 00:26:18 -06:00
Adam Honse 6828335dc5 Just set active_mode rather than call SetMode for SetCustomModefunction. Implement for a few tested devices only for now. Fix some user interface issues with custom mode selection. 2020-02-10 00:17:02 -06:00
Adam Honse 966297710b Fix custom mode setting in UI 2020-02-09 19:55:26 -06:00
Adam Honse 443d558ac2 Remove compiler warning that is treated as error on some systems 2020-02-09 19:06:50 -06:00
Adam Honse 2cd0b64251 Add mode control to Thermaltake Riing controller 2020-02-09 15:26:20 -06:00
Adam Honse 7ad3c18e3f Remove unused declarations 2020-02-09 14:43:24 -06:00
Adam Honse fc11427019 Remove serial port include for USB controllers that were copied from the Hue+ driver 2020-02-09 14:37:50 -06:00
Adam Honse 2f00fb9186 Add initial driver for Thermaltake Riing controller. Fixed configuration has 9 LEDs for channels 1, 2, and 3 but will make this configurable in the future. Only direct mode supported so far 2020-02-09 14:34:26 -06:00
Adam Honse ea1f21106c Fix Linux build of CorsairKeyboardController (missing include for memset) 2020-02-06 16:37:21 -06:00
Adam Honse 47ca068628 Number the LEDs in E131 and LEDStrip controllers 2020-02-06 12:26:14 -06:00
Adam Honse f07cc134bb Add zones and LEDs to Corsair keyboard controller, but keys don't line up with zones yet 2020-02-05 21:05:55 -06:00
Adam Honse 1d98ce063c Add zones and LEDs to Poseidon Z RGB controller 2020-02-05 17:34:08 -06:00
Adam Honse 9ddb9f04ce Add zones and LEDs to HyperX Keyboard controller 2020-02-05 13:09:39 -06:00
Adam Honse 8aee3c427b Fix segfault 2020-02-04 20:22:01 -06:00
Adam Honse 6a6ad0dda6 Keyboard fixes for Linux 2020-02-04 20:20:45 -06:00
Adam Honse 12116c70ee Big Keyboard Update! HyperX Alloy Elite support, Poseidon Z RGB modes, and Corsair K70 RGB 2020-02-04 20:17:09 -06:00
Adam Honse 7d6699cf9c Use ASR LED mode for Polychrome 2.10 firmware 2020-02-02 00:34:11 -06:00
Adam Honse 48b9be3f76 Add Polychrome firmware 2.10 to list 2020-02-01 20:38:52 -06:00
Adam Honse 760c57c29c Only show LEDs for selected Zone, add an All Zones option to Zone box 2020-02-01 12:54:51 -06:00
Adam Honse c6cc88ba7b The color boxes got moved around during the UI rework. Move them back to their proper rainbow order 2020-01-31 18:32:22 -06:00
Adam Honse 779471e3e4 Detect NZXT Smart Device V2 and use the Hue 2 driver for it 2020-01-31 11:08:33 -06:00
Adam Honse adb9a6e59f Add support for Aer 2 140mm fan on Hue 2 2020-01-30 10:42:43 -06:00
Adam Honse d48bcec5ba Block write Polychrome mode value instead of byte write 2020-01-29 13:02:00 -06:00
Adam Honse 80d2282313 Add modes and additional set functions to Polychrome controller 2020-01-29 12:32:32 -06:00
147 changed files with 15242 additions and 4228 deletions
+3
View File
@@ -1,3 +1,6 @@
[submodule "dependencies/libe131"]
path = dependencies/libe131
url = https://github.com/CalcProgrammer1/libe131
[submodule "razer-drivers-win32"]
path = razer-drivers-win32
url = https://github.com/rsandoz/razer-drivers-win32
@@ -20,7 +20,7 @@ static void Sleep(unsigned int milliseconds)
/*----------------------------------------------------------------------*\
| This list contains the available SMBus addresses for mapping Aura RAM |
\*----------------------------------------------------------------------*/
#define AURA_RAM_ADDRESS_COUNT 17
#define AURA_RAM_ADDRESS_COUNT 21
static const unsigned char aura_ram_addresses[] =
{
@@ -40,7 +40,11 @@ static const unsigned char aura_ram_addresses[] =
0x7F,
0x4F,
0x66,
0x67
0x67,
0x39,
0x3B,
0x3C,
0x3D
};
/*---------------------------------------------------------------------------------*\
@@ -131,7 +135,7 @@ void DetectAuraControllers(std::vector<i2c_smbus_interface*> &busses, std::vecto
for (unsigned int bus = 0; bus < busses.size(); bus++)
{
int address_list_idx = 0;
int address_list_idx = -1;
// Remap Aura-enabled RAM modules on 0x77
for (unsigned int slot = 0; slot < 8; slot++)
@@ -147,8 +151,8 @@ void DetectAuraControllers(std::vector<i2c_smbus_interface*> &busses, std::vecto
{
if(address_list_idx < AURA_RAM_ADDRESS_COUNT)
{
res = busses[bus]->i2c_smbus_write_quick(aura_ram_addresses[address_list_idx], I2C_SMBUS_WRITE);
address_list_idx++;
res = busses[bus]->i2c_smbus_write_quick(aura_ram_addresses[address_list_idx], I2C_SMBUS_WRITE);
}
else
{
@@ -0,0 +1,84 @@
/*-----------------------------------------*\
| AuraGPUController.cpp |
| |
| Driver for ASUS Aura RGB on GPUs |
| |
| Jan Rettig (Klapstuhl) 14.02.2020 |
\*-----------------------------------------*/
#include "AuraGPUController.h"
#include <cstring>
AuraGPUController::AuraGPUController(i2c_smbus_interface* bus, aura_gpu_dev_id dev)
{
this->bus = bus;
this->dev = dev;
strcpy(device_name, "ASUS Aura GPU"); // Would be nice to get the actual GPU name. Using this as a placeholder.
}
AuraGPUController::~AuraGPUController()
{
}
std::string AuraGPUController::GetDeviceName()
{
return(device_name);
}
std::string AuraGPUController::GetDeviceLocation()
{
std::string return_string(bus->device_name);
char addr[5];
snprintf(addr, 5, "0x%02X", dev);
return_string.append(", address ");
return_string.append(addr);
return(return_string);
}
unsigned char AuraGPUController::GetLEDRed()
{
return(AuraGPURegisterRead(AURA_GPU_REG_RED));
}
unsigned char AuraGPUController::GetLEDGreen()
{
return(AuraGPURegisterRead(AURA_GPU_REG_GREEN));
}
unsigned char AuraGPUController::GetLEDBlue()
{
return(AuraGPURegisterRead(AURA_GPU_REG_BLUE));
}
void AuraGPUController::SetLEDColorsDirect(unsigned char red, unsigned char green, unsigned char blue) // Direct Mode is just Static Mode without applying color changes
{
AuraGPURegisterWrite(AURA_GPU_REG_RED, red);
AuraGPURegisterWrite(AURA_GPU_REG_GREEN, green);
AuraGPURegisterWrite(AURA_GPU_REG_BLUE, blue);
}
void AuraGPUController::SetLEDColorsEffect(unsigned char red, unsigned char green, unsigned char blue)
{
AuraGPURegisterWrite(AURA_GPU_REG_RED, red);
AuraGPURegisterWrite(AURA_GPU_REG_GREEN, green);
AuraGPURegisterWrite(AURA_GPU_REG_BLUE, blue);
AuraGPURegisterWrite(AURA_GPU_REG_APPLY, AURA_GPU_APPLY_VAL);
}
void AuraGPUController::SetMode(unsigned char mode)
{
AuraGPURegisterWrite(AURA_GPU_REG_MODE, mode);
AuraGPURegisterWrite(AURA_GPU_REG_APPLY, AURA_GPU_APPLY_VAL);
}
unsigned char AuraGPUController::AuraGPURegisterRead(unsigned char reg)
{
return(bus->i2c_smbus_read_byte_data(dev, reg));
}
void AuraGPUController::AuraGPURegisterWrite(unsigned char reg, unsigned char val)
{
bus->i2c_smbus_write_byte_data(dev, reg, val);
}
@@ -0,0 +1,64 @@
/*-----------------------------------------*\
| AuraGPUController.h |
| |
| Definitions for ASUS Aura RGB on GPUs |
| |
| Jan Rettig (Klapstuhl) 14.02.2020 |
\*-----------------------------------------*/
#include <string>
#include "i2c_smbus.h"
#pragma once
typedef unsigned char aura_gpu_dev_id;
#define AURA_GPU_MAGIC_VAL 0x1589 /* This magic value is present in all Aura GPU controllers */
#define AURA_GPU_APPLY_VAL 0x01 /* Value for Apply Changes Register */
enum
{
AURA_GPU_REG_RED = 0x04, /* AURA GPU RED Register */
AURA_GPU_REG_GREEN = 0x05, /* AURA GPU GREEN Register */
AURA_GPU_REG_BLUE = 0x06, /* AURA GPU BLUE Register */
AURA_GPU_REG_MODE = 0x07, /* AURA GPU Mode Selection Register */
AURA_GPU_REG_SYNC = 0x0C, /* AURA GPU "Sync" Register */
AURA_GPU_REG_APPLY = 0x0E, /* AURA GPU Apply Chnages Register */
};
enum
{
AURA_GPU_MODE_OFF = 0, /* OFF mode (not a real Mode! Doesn't do anything!) */
AURA_GPU_MODE_STATIC = 1, /* Static color mode */
AURA_GPU_MODE_BREATHING = 2, /* Breathing effect mode */
AURA_GPU_MODE_FLASHING = 3, /* Flashing effect mode */
AURA_GPU_MODE_SPECTRUM_CYCLE = 4, /* Spectrum Cycle mode */
AURA_GPU_MODE_DIRECT = 5, /* Direct mode (not a real Mode! Doesn't do anything!) */
AURA_GPU_NUMBER_MODES
};
class AuraGPUController
{
public:
AuraGPUController(i2c_smbus_interface* bus, aura_gpu_dev_id);
~AuraGPUController();
std::string GetDeviceName();
std::string GetDeviceLocation();
unsigned char GetLEDRed();
unsigned char GetLEDGreen();
unsigned char GetLEDBlue();
void SetLEDColorsDirect(unsigned char red, unsigned char green, unsigned char blue);
void SetLEDColorsEffect(unsigned char red, unsigned char green, unsigned char blue);
void SetMode(unsigned char mode);
unsigned char AuraGPURegisterRead(unsigned char reg);
void AuraGPURegisterWrite(unsigned char reg, unsigned char val);
bool direct = false; // Temporary solution to check if we are in "Direct" mode
private:
char device_name[16];
i2c_smbus_interface * bus;
aura_gpu_dev_id dev;
};
@@ -0,0 +1,94 @@
/*-----------------------------------------*\
| AuraGPUControllerDetect.cpp |
| |
| Driver for ASUS Aura RGB on GPUs |
| |
| Jan Rettig (Klapstuhl) 14.02.2020 |
\*-----------------------------------------*/
#include "AuraGPUController.h"
#include "RGBController.h"
#include "RGBController_AuraGPU.h"
#include "i2c_smbus.h"
#include <vector>
#include <stdio.h>
#include <stdlib.h>
#ifdef WIN32
#include <Windows.h>
#else
#include <unistd.h>
static void Sleep(unsigned int milliseconds)
{
usleep(1000 * milliseconds);
}
#endif
/*-------------------------------------------------------------*\
| This list contains the available I2C addresses for Aura GPUs |
\*-------------------------------------------------------------*/
#define AURA_GPU_ADDRESS_COUNT 3
static const unsigned char aura_gpu_addresses[] =
{
0x29,
0x2A,
0x60
};
/******************************************************************************************\
* *
* TestForAuraGPUController *
* *
* Tests the given address to see if an Aura GPU controller exists there. *
* *
\******************************************************************************************/
bool TestForAuraGPUController(i2c_smbus_interface* bus, unsigned char address)
{
bool pass = false;
unsigned char aura_gpu_magic_high = bus->i2c_smbus_read_byte_data(address, 0x20); // High Byte of magic (0x15)
unsigned char aura_gpu_magic_low = bus->i2c_smbus_read_byte_data(address, 0x21); // Low Byte of magic (0x89)
if((aura_gpu_magic_high << 8) + aura_gpu_magic_low == AURA_GPU_MAGIC_VAL)
{
pass = true;
}
return(pass);
} /* TestForAuraGPUController() */
/******************************************************************************************\
* *
* DetectAuraGPUControllers *
* *
* Detect Aura GPU controllers on the enumerated I2C busses. *
* *
\******************************************************************************************/
void DetectAuraGPUControllers(std::vector<i2c_smbus_interface*> &busses, std::vector<RGBController*> &rgb_controllers)
{
AuraGPUController* new_aura_gpu;
RGBController_AuraGPU* new_controller;
for (unsigned int bus = 0; bus < busses.size(); bus++)
{
// Add Aura-enabled GPU controllers
for (unsigned int address_list_idx = 0; address_list_idx < AURA_GPU_ADDRESS_COUNT; address_list_idx++)
{
if (TestForAuraGPUController(busses[bus], aura_gpu_addresses[address_list_idx]))
{
new_aura_gpu = new AuraGPUController(busses[bus], aura_gpu_addresses[address_list_idx]);
new_controller = new RGBController_AuraGPU(new_aura_gpu);
rgb_controllers.push_back(new_controller);
}
Sleep(1);
}
}
} /* DetectAuraGPUControllers() */
@@ -89,7 +89,10 @@ void CorsairCmdrProController::SetChannelEffect(unsigned char channel,
unsigned char blu1,
unsigned char red2,
unsigned char grn2,
unsigned char blu2
unsigned char blu2,
unsigned char red3,
unsigned char grn3,
unsigned char blu3
)
{
/*-----------------------------------------------------*\
@@ -125,9 +128,9 @@ void CorsairCmdrProController::SetChannelEffect(unsigned char channel,
red2,
grn2,
blu2,
0,
0,
0,
red3,
grn3,
blu3,
0,
0,
0
@@ -80,7 +80,6 @@ public:
CorsairCmdrProController(libusb_device_handle* dev_handle);
~CorsairCmdrProController();
char* GetLEDString();
unsigned int GetStripsOnChannel(unsigned int channel);
void SetChannelEffect(unsigned char channel,
@@ -93,7 +92,10 @@ public:
unsigned char blu1,
unsigned char red2,
unsigned char grn2,
unsigned char blu2
unsigned char blu2,
unsigned char red3,
unsigned char grn3,
unsigned char blu3
);
void SetChannelLEDs(unsigned char channel, std::vector<RGBColor> colors);
@@ -104,6 +104,22 @@ void DetectCorsairControllers(std::vector<i2c_smbus_interface*> &busses, std::ve
new_controller = new RGBController_Corsair(new_corsair);
rgb_controllers.push_back(new_controller);
}
// Check for Corsair controller at 0x5E
if (TestForCorsairController(busses[bus], 0x5E))
{
new_corsair = new CorsairController(busses[bus], 0x5E);
new_controller = new RGBController_Corsair(new_corsair);
rgb_controllers.push_back(new_controller);
}
// Check for Corsair controller at 0x5F
if (TestForCorsairController(busses[bus], 0x5F))
{
new_corsair = new CorsairController(busses[bus], 0x5F);
new_controller = new RGBController_Corsair(new_corsair);
rgb_controllers.push_back(new_controller);
}
}
} /* DetectCorsairControllers() */
@@ -0,0 +1,253 @@
/*-----------------------------------------*\
| CorsairKeyboardController.cpp |
| |
| Driver for Corsair RGB keyboard lighting |
| controller |
| |
| Adam Honse (CalcProgrammer1) 1/9/2020 |
\*-----------------------------------------*/
#include "CorsairKeyboardController.h"
#include <cstring>
static unsigned int keys[] = {0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08, 0x09, 0x0C, 0x0D, 0x0E, 0x0F, 0x11, 0x12,
0x14, 0x15, 0x18, 0x19, 0x1A, 0x1B, 0x1C, 0x1D, 0x1E, 0x1F, 0x20, 0x21, 0x24, 0x25, 0x26,
0x27, 0x28, 0x2A, 0x2B, 0x2C, 0x30, 0x31, 0x32, 0x33, 0x34, 0x35, 0x36, 0x37, 0x38, 0x39,
0x3C, 0x3D, 0x3E, 0x3F, 0x40, 0x42, 0x43, 0x44, 0x45, 0x48, 73, 74, 75, 76, 78,
79, 80, 81, 84, 85, 86, 87, 88, 89, 90, 91, 92, 93, 96, 97,
98, 99, 100, 101, 102, 103, 104, 105, 108, 109, 110, 111, 112, 113, 115,
116, 117, 120, 121, 122, 123, 124, 126, 127, 128, 129, 132, 133, 134, 135,
136, 137, 139, 140, 141};
static void send_usb_msg(hid_device* dev, char * data_pkt)
{
char usb_pkt[65];
usb_pkt[0] = 0x00;
for(int i = 1; i < 65; i++)
{
usb_pkt[i] = data_pkt[i-1];
}
int bytes = hid_send_feature_report(dev, (unsigned char *)usb_pkt, 65);
bytes++;
}
static void get_usb_msg(hid_device* dev, char* data_pkt)
{
char usb_pkt[65];
usb_pkt[0] = 0x00;
for(int i = 1; i < 65; i++)
{
usb_pkt[i] = data_pkt[i-1];
}
int bytes = hid_get_feature_report(dev, (unsigned char*)data_pkt, 64);
bytes++;
}
CorsairKeyboardController::CorsairKeyboardController(hid_device* dev_handle)
{
dev = dev_handle;
char data_pkt[64] = { 0 };
LightingControl();
}
CorsairKeyboardController::~CorsairKeyboardController()
{
}
void CorsairKeyboardController::SetLEDs(std::vector<RGBColor> colors)
{
unsigned char data_pkt[216];
unsigned char red_val[144];
unsigned char grn_val[144];
unsigned char blu_val[144];
/*-----------------------------------------------------*\
| Zero out buffers |
\*-----------------------------------------------------*/
memset(data_pkt, 0x00, sizeof( data_pkt ));
memset(red_val, 0x00, sizeof( red_val ));
memset(grn_val, 0x00, sizeof( grn_val ));
memset(blu_val, 0x00, sizeof( blu_val ));
/*-----------------------------------------------------*\
| Scale color values to 9-bit |
\*-----------------------------------------------------*/
for(int color_idx = 0; color_idx < colors.size(); color_idx++)
{
RGBColor color = colors[color_idx];
unsigned char red = RGBGetRValue(color);
unsigned char grn = RGBGetGValue(color);
unsigned char blu = RGBGetBValue(color);
if( red > 7 ) red = 7;
if( grn > 7 ) grn = 7;
if( blu > 7 ) blu = 7;
red = 7 - red;
grn = 7 - grn;
blu = 7 - blu;
red_val[keys[color_idx]] = red;
grn_val[keys[color_idx]] = grn;
blu_val[keys[color_idx]] = blu;
}
/*-----------------------------------------------------*\
| Pack the color values, 2 values per byte |
\*-----------------------------------------------------*/
for(int red_idx = 0; red_idx < 72; red_idx++)
{
data_pkt[red_idx] = red_val[(red_idx * 2) + 1] << 4 | red_val[red_idx * 2];
}
for(int grn_idx = 0; grn_idx < 72; grn_idx++)
{
data_pkt[grn_idx + 72] = grn_val[(grn_idx * 2) + 1] << 4 | grn_val[grn_idx * 2];
}
for(int blu_idx = 0; blu_idx < 72; blu_idx++)
{
data_pkt[blu_idx + 144] = blu_val[(blu_idx * 2) + 1] << 4 | blu_val[blu_idx * 2];
}
/*-----------------------------------------------------*\
| Send the packets |
\*-----------------------------------------------------*/
StreamPacket(1, 60, &data_pkt[0]);
StreamPacket(2, 60, &data_pkt[60]);
StreamPacket(3, 60, &data_pkt[120]);
StreamPacket(4, 36, &data_pkt[180]);
SubmitLimitedColors(216);
}
/*-------------------------------------------------------------------------------------------------*\
| Private packet sending functions. |
\*-------------------------------------------------------------------------------------------------*/
void CorsairKeyboardController::LightingControl()
{
char usb_buf[64];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Lighting Control packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = CORSAIR_COMMAND_WRITE;
usb_buf[0x01] = CORSAIR_PROPERTY_LIGHTING_CONTROL;
usb_buf[0x02] = CORSAIR_LIGHTING_CONTROL_SOFTWARE;
usb_buf[0x04] = 0x03;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
send_usb_msg(dev, usb_buf);
}
void CorsairKeyboardController::ReadFirmwareInfo()
{
char usb_buf[64];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Read Firmware Info packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = CORSAIR_COMMAND_READ;
usb_buf[0x01] = CORSAIR_PROPERTY_FIRMWARE_INFO;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
send_usb_msg(dev, usb_buf);
get_usb_msg(dev, usb_buf);
}
void CorsairKeyboardController::StreamPacket
(
unsigned char packet_id,
unsigned char data_sz,
unsigned char* data_ptr
)
{
char usb_buf[64];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Stream packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = CORSAIR_COMMAND_STREAM;
usb_buf[0x01] = packet_id;
usb_buf[0x02] = data_sz;
/*-----------------------------------------------------*\
| Copy in data bytes |
\*-----------------------------------------------------*/
memcpy(&usb_buf[0x04], data_ptr, data_sz);
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
send_usb_msg(dev, usb_buf);
}
void CorsairKeyboardController::SubmitColors()
{
char usb_buf[64];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Submit Keyboard 24-Bit Colors packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = CORSAIR_COMMAND_WRITE;
usb_buf[0x01] = CORSAIR_PROPERTY_SUBMIT_KEYBOARD_COLOR_24;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
send_usb_msg(dev, usb_buf);
}
void CorsairKeyboardController::SubmitLimitedColors
(
unsigned char byte_count
)
{
char usb_buf[64];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Submit Keyboard 9-Bit Colors packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = CORSAIR_COMMAND_WRITE;
usb_buf[0x01] = CORSAIR_PROPERTY_SUBMIT_KEYBOARD_COLOR_9;
usb_buf[0x04] = byte_count;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
send_usb_msg(dev, usb_buf);
}
@@ -0,0 +1,78 @@
/*-----------------------------------------*\
| CorsairKeyboardController.h |
| |
| Definitions and types for Corsair RGB |
| keyboard lighting controller |
| |
| Adam Honse (CalcProgrammer1) 1/9/2020 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <string>
#include <hidapi/hidapi.h>
#pragma once
enum
{
CORSAIR_COMMAND_WRITE = 0x07,
CORSAIR_COMMAND_READ = 0x0E,
CORSAIR_COMMAND_STREAM = 0x7F
};
enum
{
CORSAIR_PROPERTY_FIRMWARE_INFO = 0x01,
CORSAIR_PROPERTY_RESET = 0x02,
CORSAIR_PROPERTY_SPECIAL_FUNCTION = 0x04,
CORSAIR_PROPERTY_LIGHTING_CONTROL = 0x05,
CORSAIR_PROPERTY_HARDWARE_PROFILE = 0x13,
CORSAIR_PROPERTY_SUBMIT_MOUSE_COLOR = 0x22,
CORSAIR_PROPERTY_SUBMIT_KEYBOARD_COLOR_9 = 0x27,
CORSAIR_PROPERTY_SUBMIT_KEYBOARD_COLOR_24 = 0x28,
};
enum
{
CORSAIR_LIGHTING_CONTROL_HARDWARE = 0x01,
CORSAIR_LIGHTING_CONTROL_SOFTWARE = 0x02
};
enum
{
CORSAIR_COLOR_CHANNEL_RED = 0x01,
CORSAIR_COLOR_CHANNEL_GREEN = 0x02,
CORSAIR_COLOR_CHANNEL_BLUE = 0x03
};
class CorsairKeyboardController
{
public:
CorsairKeyboardController(hid_device* dev_handle);
~CorsairKeyboardController();
void SetLEDsDirect(std::vector<RGBColor> colors);
void SetLEDs(std::vector<RGBColor> colors);
private:
hid_device* dev;
void LightingControl();
void ReadFirmwareInfo();
void StreamPacket
(
unsigned char packet_id,
unsigned char data_sz,
unsigned char* data_ptr
);
void SubmitColors();
void SubmitLimitedColors
(
unsigned char byte_count
);
};
@@ -0,0 +1,52 @@
#include "CorsairKeyboardController.h"
#include "RGBController.h"
#include "RGBController_CorsairKeyboard.h"
#include <vector>
#include <hidapi/hidapi.h>
#define CORSAIR_RGB_KEYBOARD_VID 0x1B1C
#define CORSAIR_RGB_KEYBOARD_K70_PID 0x1B13
#define CORSAIR_RGB_KEYBOARD_K95_PID 0x1B11
/******************************************************************************************\
* *
* DetectCorsairKeyboardControllers *
* *
* Tests the USB address to see if a Corsair RGB Keyboard controller exists there. *
* *
\******************************************************************************************/
void DetectCorsairKeyboardControllers(std::vector<RGBController*>& rgb_controllers)
{
hid_device_info* info;
hid_device* dev = NULL;
hid_init();
info = hid_enumerate(CORSAIR_RGB_KEYBOARD_VID, CORSAIR_RGB_KEYBOARD_K70_PID);
//Look for Corsair RGB Keyboard, interface 1
while(info)
{
if((info->vendor_id == CORSAIR_RGB_KEYBOARD_VID)
&&(info->product_id == CORSAIR_RGB_KEYBOARD_K70_PID)
&&(info->interface_number == 1))
{
dev = hid_open_path(info->path);
break;
}
else
{
info = info->next;
}
}
if( dev )
{
CorsairKeyboardController* controller = new CorsairKeyboardController(dev);
RGBController_CorsairKeyboard* rgb_controller = new RGBController_CorsairKeyboard(controller);
rgb_controllers.push_back(rgb_controller);
}
}
@@ -89,7 +89,10 @@ void CorsairNodeProController::SetChannelEffect(unsigned char channel,
unsigned char blu1,
unsigned char red2,
unsigned char grn2,
unsigned char blu2
unsigned char blu2,
unsigned char red3,
unsigned char grn3,
unsigned char blu3
)
{
/*-----------------------------------------------------*\
@@ -125,9 +128,9 @@ void CorsairNodeProController::SetChannelEffect(unsigned char channel,
red2,
grn2,
blu2,
0,
0,
0,
red3,
grn3,
blu3,
0,
0,
0
@@ -87,7 +87,6 @@ public:
CorsairNodeProController(libusb_device_handle* dev_handle);
~CorsairNodeProController();
char* GetLEDString();
unsigned int GetStripsOnChannel(unsigned int channel);
void SetChannelEffect(unsigned char channel,
@@ -100,7 +99,10 @@ public:
unsigned char blu1,
unsigned char red2,
unsigned char grn2,
unsigned char blu2
unsigned char blu2,
unsigned char red3,
unsigned char grn3,
unsigned char blu3
);
void SetChannelLEDs(unsigned char channel, std::vector<RGBColor> colors);
@@ -121,6 +121,22 @@ void DetectCorsairProControllers(std::vector<i2c_smbus_interface*> &busses, std:
new_controller = new RGBController_CorsairPro(new_corsair_pro);
rgb_controllers.push_back(new_controller);
}
// Check for Corsair controller at 0x5E
if (TestForCorsairProController(busses[bus], 0x5E))
{
new_corsair_pro = new CorsairProController(busses[bus], 0x5E);
new_controller = new RGBController_CorsairPro(new_corsair_pro);
rgb_controllers.push_back(new_controller);
}
// Check for Corsair controller at 0x5F
if (TestForCorsairProController(busses[bus], 0x5F))
{
new_corsair_pro = new CorsairProController(busses[bus], 0x5F);
new_controller = new RGBController_CorsairPro(new_corsair_pro);
rgb_controllers.push_back(new_controller);
}
}
} /* DetectCorsairProControllers() */
@@ -0,0 +1,133 @@
/*-----------------------------------------*\
| CrucialController.cpp |
| |
| Driver for Crucial Ballistix RGB lighting|
| controller |
| |
| Adam Honse (CalcProgrammer1) 1/19/2020 |
\*-----------------------------------------*/
#include "RGBController.h"
#include "CrucialController.h"
#include <cstring>
CrucialController::CrucialController(i2c_smbus_interface* bus, crucial_dev_id dev)
{
this->bus = bus;
this->dev = dev;
}
CrucialController::~CrucialController()
{
}
std::string CrucialController::GetDeviceName()
{
return(device_name);
}
std::string CrucialController::GetDeviceLocation()
{
std::string return_string(bus->device_name);
char addr[5];
snprintf(addr, 5, "0x%02X", dev);
return_string.append(", address ");
return_string.append(addr);
return(return_string);
}
unsigned int CrucialController::GetLEDCount()
{
return(led_count);
}
void CrucialController::SetMode(unsigned char mode)
{
SendEffectMode(mode, 0x10);
}
void CrucialController::SetAllColorsDirect(RGBColor* colors)
{
SendDirectColors(colors);
}
void CrucialController::SendEffectColors(unsigned char red, unsigned char green, unsigned char blue)
{
CrucialRegisterWrite(0x82E9, 0xFF);
CrucialRegisterWrite(0x82EA, 0x00);
CrucialRegisterWrite(0x82EB, 0x00);
CrucialRegisterWrite(0x82EC, 0x00);
CrucialRegisterWrite(0x82ED, red);
CrucialRegisterWrite(0x82EE, green);
CrucialRegisterWrite(0x82EF, blue);
CrucialRegisterWrite(0x82F0, 0x01);
}
void CrucialController::SendBrightness(unsigned char brightness)
{
CrucialRegisterWrite(0x82EE, 0xFF);
CrucialRegisterWrite(0x82EF, brightness);
CrucialRegisterWrite(0x82F0, 0x83);
}
void CrucialController::SendEffectMode(unsigned char mode, unsigned char speed)
{
CrucialRegisterWrite(0x820F, mode);
CrucialRegisterWrite(0x82EE, 0x00);
CrucialRegisterWrite(0x82EF, speed);
CrucialRegisterWrite(0x82F0, 0x84);
}
void CrucialController::SendDirectColors(RGBColor* color_buf)
{
//Red Channels
CrucialRegisterWrite(0x8300, RGBGetRValue(color_buf[0]));
CrucialRegisterWrite(0x8301, RGBGetRValue(color_buf[1]));
CrucialRegisterWrite(0x8302, RGBGetRValue(color_buf[2]));
CrucialRegisterWrite(0x8303, RGBGetRValue(color_buf[3]));
CrucialRegisterWrite(0x8304, RGBGetRValue(color_buf[4]));
CrucialRegisterWrite(0x8305, RGBGetRValue(color_buf[5]));
CrucialRegisterWrite(0x8306, RGBGetRValue(color_buf[6]));
CrucialRegisterWrite(0x8307, RGBGetRValue(color_buf[7]));
//Green Channels
CrucialRegisterWrite(0x8340, RGBGetGValue(color_buf[0]));
CrucialRegisterWrite(0x8341, RGBGetGValue(color_buf[1]));
CrucialRegisterWrite(0x8342, RGBGetGValue(color_buf[2]));
CrucialRegisterWrite(0x8343, RGBGetGValue(color_buf[3]));
CrucialRegisterWrite(0x8344, RGBGetGValue(color_buf[4]));
CrucialRegisterWrite(0x8345, RGBGetGValue(color_buf[5]));
CrucialRegisterWrite(0x8346, RGBGetGValue(color_buf[6]));
CrucialRegisterWrite(0x8347, RGBGetGValue(color_buf[7]));
//Blue Channels
CrucialRegisterWrite(0x8380, RGBGetBValue(color_buf[0]));
CrucialRegisterWrite(0x8381, RGBGetBValue(color_buf[1]));
CrucialRegisterWrite(0x8382, RGBGetBValue(color_buf[2]));
CrucialRegisterWrite(0x8383, RGBGetBValue(color_buf[3]));
CrucialRegisterWrite(0x8384, RGBGetBValue(color_buf[4]));
CrucialRegisterWrite(0x8385, RGBGetBValue(color_buf[5]));
CrucialRegisterWrite(0x8386, RGBGetBValue(color_buf[6]));
CrucialRegisterWrite(0x8387, RGBGetBValue(color_buf[7]));
}
unsigned char CrucialController::CrucialRegisterRead(crucial_register reg)
{
//Write Crucial register
bus->i2c_smbus_write_word_data(dev, 0x00, ((reg << 8) & 0xFF00) | ((reg >> 8) & 0x00FF));
//Read Crucial value
return(bus->i2c_smbus_read_byte_data(dev, 0x81));
}
void CrucialController::CrucialRegisterWrite(crucial_register reg, unsigned char val)
{
//Write Crucial register
bus->i2c_smbus_write_word_data(dev, 0x00, ((reg << 8) & 0xFF00) | ((reg >> 8) & 0x00FF));
//Write Crucial value
bus->i2c_smbus_write_byte_data(dev, 0x01, val);
}
@@ -0,0 +1,62 @@
/*-----------------------------------------*\
| CrucialController.h |
| |
| Definitions and types for Crucial |
| Ballistix RGB lighting controller |
| |
| Adam Honse (CalcProgrammer1) 1/19/2020 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <string>
#include "i2c_smbus.h"
#pragma once
typedef unsigned char crucial_dev_id;
typedef unsigned short crucial_register;
enum
{
CRUCIAL_MODE_SHIFT = 0x1F, /* Shift effect mode */
CRUCIAL_MODE_GRADIENT_SHIFT = 0x2F, /* Gradient shift mode */
CRUCIAL_MODE_FILL = 0x3F, /* Fill effect mode */
CRUCIAL_MODE_STACK = 0x4F, /* Stack effect mode */
CRUCIAL_MODE_DOUBLE_STACK = 0x5F, /* Double stack effect mode */
CRUCIAL_MODE_BREATHING = 0x6F, /* Breathing effect mode */
CRUCIAL_MODE_MOTION_POINT = 0x7F, /* Motion point effect mode */
CRUCIAL_MODE_INSIDE_OUT = 0x8F, /* Inside out effect mode */
CRUCIAL_MODE_COLOR_STEP = 0x9F, /* Color step effect mode */
CRUCIAL_MODE_WATER_WAVE = 0xAF, /* Water wave effect mode */
CRUCIAL_MODE_FLASHING = 0xBF, /* Flashing effect mode */
CRUCIAL_MODE_STATIC = 0xCF, /* Static effect mode */
};
class CrucialController
{
public:
CrucialController(i2c_smbus_interface* bus, crucial_dev_id dev);
~CrucialController();
std::string GetDeviceName();
std::string GetDeviceLocation();
unsigned int GetLEDCount();
void SetAllColorsDirect(RGBColor* colors);
void SetMode(unsigned char mode);
unsigned char CrucialRegisterRead(crucial_register reg);
void CrucialRegisterWrite(crucial_register reg, unsigned char val);
private:
char device_name[16];
unsigned char config_table[64];
unsigned int led_count;
unsigned char channel_cfg;
i2c_smbus_interface * bus;
crucial_dev_id dev;
void SendDirectColors(RGBColor* color_buf);
void SendEffectColors(unsigned char red, unsigned char green, unsigned char blue);
void SendBrightness(unsigned char brightness);
void SendEffectMode(unsigned char mode, unsigned char speed);
};
@@ -0,0 +1,88 @@
#include "CrucialController.h"
#include "RGBController.h"
#include "RGBController_Crucial.h"
#include "i2c_smbus.h"
#include <vector>
#include <stdio.h>
#include <stdlib.h>
/*----------------------------------------------------------------------*\
| This list contains the available SMBus addresses for Crucial RAM |
\*----------------------------------------------------------------------*/
#define CRUCIAL_ADDRESS_COUNT 4
static const unsigned char crucial_addresses[] =
{
0x20,
0x21,
0x22,
0x23
};
/******************************************************************************************\
* *
* TestForCrucialController *
* *
* Tests the given address to see if an Crucial controller exists there. First does a*
* quick write to test for a response, and if so does a simple read at 0xA0 to test *
* for incrementing values 0...F which was observed at this location during data dump *
* *
\******************************************************************************************/
bool TestForCrucialController(i2c_smbus_interface* bus, unsigned char address)
{
bool pass = false;
int res = bus->i2c_smbus_write_quick(address, I2C_SMBUS_WRITE);
if (res >= 0)
{
pass = true;
for (int i = 0xA0; i < 0xB0; i++)
{
res = bus->i2c_smbus_read_byte_data(address, i);
if (res != (i - 0xA0))
{
pass = false;
}
}
}
return(pass);
} /* TestForCrucialController() */
/******************************************************************************************\
* *
* DetectCrucialControllers *
* *
* Detect Crucial controllers on the enumerated I2C busses. *
* *
* bus - pointer to i2c_smbus_interface where Aura device is connected *
* dev - I2C address of Aura device *
* *
\******************************************************************************************/
void DetectCrucialControllers(std::vector<i2c_smbus_interface*> &busses, std::vector<RGBController*> &rgb_controllers)
{
CrucialController* new_crucial;
RGBController_Crucial* new_controller;
for (unsigned int bus = 0; bus < busses.size(); bus++)
{
// Add Crucial controllers
for (unsigned int address_list_idx = 0; address_list_idx < CRUCIAL_ADDRESS_COUNT; address_list_idx++)
{
if (TestForCrucialController(busses[bus], crucial_addresses[address_list_idx]))
{
new_crucial = new CrucialController(busses[bus], crucial_addresses[address_list_idx]);
new_controller = new RGBController_Crucial(new_crucial);
rgb_controllers.push_back(new_controller);
}
}
}
} /* DetectCrucialControllers() */
@@ -72,7 +72,11 @@ unsigned int Hue2Controller::GetStripsOnChannel(unsigned int /*channel*/)
num_leds_on_channel += 10;
break;
case 0x0B: //Aer 2 fan
case 0x0B: //Aer 2 fan (120mm)
num_leds_on_channel += 8;
break;
case 0x0C: //Aer 2 fan (140mm)
num_leds_on_channel += 8;
break;
+1 -2
View File
@@ -55,8 +55,7 @@ class Hue2Controller
public:
Hue2Controller(libusb_device_handle* dev_handle);
~Hue2Controller();
char* GetLEDString();
unsigned int GetStripsOnChannel(unsigned int channel);
void SetChannelLEDs(unsigned char channel, std::vector<RGBColor> colors);
void SetMode(unsigned char mode, unsigned char speed, bool direction);
@@ -6,6 +6,7 @@
#define NZXT_HUE_2_VID 0x1E71
#define NZXT_HUE_2_PID 0x2001
#define NZXT_SMART_DEVICE_V2_PID 0x2006
/******************************************************************************************\
* *
@@ -21,14 +22,29 @@ void DetectHue2Controllers(std::vector<RGBController*> &rgb_controllers)
libusb_init(&ctx);
//Look for NZXT Hue 2
libusb_device_handle * dev = libusb_open_device_with_vid_pid(ctx, NZXT_HUE_2_VID, NZXT_HUE_2_PID);
libusb_device_handle * hue_2_dev = libusb_open_device_with_vid_pid(ctx, NZXT_HUE_2_VID, NZXT_HUE_2_PID);
if( dev )
if( hue_2_dev )
{
libusb_detach_kernel_driver(dev, 0);
libusb_claim_interface(dev, 0);
libusb_detach_kernel_driver(hue_2_dev, 0);
libusb_claim_interface(hue_2_dev, 0);
Hue2Controller* controller = new Hue2Controller(dev);
Hue2Controller* controller = new Hue2Controller(hue_2_dev);
RGBController_Hue2* rgb_controller = new RGBController_Hue2(controller);
rgb_controllers.push_back(rgb_controller);
}
//Look for NZXT Smart Device V2
libusb_device_handle * smart_dev_2_dev = libusb_open_device_with_vid_pid(ctx, NZXT_HUE_2_VID, NZXT_SMART_DEVICE_V2_PID);
if( smart_dev_2_dev )
{
libusb_detach_kernel_driver(smart_dev_2_dev, 0);
libusb_claim_interface(smart_dev_2_dev, 0);
Hue2Controller* controller = new Hue2Controller(smart_dev_2_dev);
RGBController_Hue2* rgb_controller = new RGBController_Hue2(controller);
@@ -9,7 +9,7 @@
#include <fstream>
#include <iostream>
#include <string>
#include <cstring>
#ifdef WIN32
#include <Windows.h>
@@ -92,43 +92,75 @@ void HuePlusController::SetMode(unsigned char mode, unsigned char speed, bool di
current_direction = direction;
}
void HuePlusController::SetModeColors(unsigned char channel, std::vector<RGBColor> colors)
{
unsigned char serial_buf[125];
for(int color_idx = 0; color_idx < colors.size(); color_idx++)
{
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(serial_buf, 0x00, sizeof(serial_buf));
/*-----------------------------------------------------*\
| Set up main packet |
\*-----------------------------------------------------*/
serial_buf[0x00] = 0x4B;
/*-----------------------------------------------------*\
| Set channel in serial packet |
\*-----------------------------------------------------*/
serial_buf[0x01] = channel;
/*-----------------------------------------------------*\
| Set mode in serial packet |
\*-----------------------------------------------------*/
serial_buf[0x02] = current_mode;
/*-----------------------------------------------------*\
| Set options bitfield in serial packet |
\*-----------------------------------------------------*/
serial_buf[0x03] = 0;
serial_buf[0x03] |= current_direction ? ( 1 << 4 ) : 0;
/*-----------------------------------------------------*\
| Set color index and speed in serial packet |
\*-----------------------------------------------------*/
serial_buf[0x04] = ( color_idx << 5 ) | current_speed;
/*-----------------------------------------------------*\
| Fill in color data |
\*-----------------------------------------------------*/
for (std::size_t idx = 0; idx < 40; idx++)
{
int pixel_idx = idx * 3;
RGBColor color = colors[color_idx];
serial_buf[pixel_idx + 0x05] = RGBGetGValue(color);
serial_buf[pixel_idx + 0x06] = RGBGetRValue(color);
serial_buf[pixel_idx + 0x07] = RGBGetBValue(color);
}
serialport->serial_write((char *)serial_buf, HUE_PLUS_PACKET_SIZE);
serialport->serial_flush_tx();
Sleep(10);
}
}
void HuePlusController::SetChannelLEDs(unsigned char channel, std::vector<RGBColor> colors)
{
unsigned char serial_buf[] =
{
0x4B, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00
};
unsigned char serial_buf[125];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(serial_buf, 0x00, sizeof(serial_buf));
/*-----------------------------------------------------*\
| Set up main packet |
\*-----------------------------------------------------*/
serial_buf[0x00] = 0x4B;
/*-----------------------------------------------------*\
| Set channel in serial packet |
@@ -167,4 +199,4 @@ void HuePlusController::SetChannelLEDs(unsigned char channel, std::vector<RGBCol
serialport->serial_flush_tx();
Sleep(10);
}
}
@@ -75,6 +75,7 @@ public:
unsigned int GetLEDsOnChannel(unsigned int channel);
void SetChannelLEDs(unsigned char channel, std::vector<RGBColor> colors);
void SetMode(unsigned char mode, unsigned char speed, bool direction);
void SetModeColors(unsigned char channel, std::vector<RGBColor> colors);
unsigned int channel_leds[HUE_PLUS_NUM_CHANNELS];
@@ -0,0 +1,489 @@
/*-----------------------------------------*\
| HyperXKeyboardController.cpp |
| |
| Driver for HyperX RGB Keyboard lighting |
| controller |
| |
| Adam Honse (CalcProgrammer1) 1/30/2020 |
\*-----------------------------------------*/
#include "HyperXKeyboardController.h"
#include <cstring>
#ifdef WIN32
#include <Windows.h>
#else
#include <unistd.h>
static void Sleep(unsigned int milliseconds)
{
usleep(1000 * milliseconds);
}
#endif
static unsigned int keys[] = {0x08, 0x09, 0x0A, 0x0B, 0x0C, 0x0D, 0x0E, 0x0F, 0x10, 0x11, 0x12, 0x13, 0x14,
0x15, 0x17, 0x18, 0x19, 0x1A, 0x1B, 0x1D, 0x1E, 0x20, 0x21, 0x22, 0x23, 0x24,
0x26, 0x27, 0x28, 0x29, 0x2A, 0x2B, 0x2C, 0x2D, 0x2E, 0x2F, 0x30, 0x31, 0x32,
0x33, 0x34, 0x37, 0x38, 0x39, 0x3A, 0x3B, 0x3C, 0x3E, 0x3F, 0x41, 0x44, 0x45,
0x48, 0x49, 0x4A, 0x4B, 0x4C, 0x4D, 0x4E, 0x4F, 0x51, 0x54, 0x55, 0x58, 0x59,
0x5A, 0x5B, 0x5C, 0x5E, 0x5F, 0x61, 0x64, 0x65, 0x68, 0x69, 0x6A, 0x6B, 0x6C,
0x6E, 0x6F, 0x74, 0x75, 0x78, 0x79, 0x7A, 0x7B, 0x7C, 0x7D, 0x7E, 0x7F, 0x81,
0x84, 0x85, 0x88, 0x89, 0x8A, 0x8B, 0x8C, 0x8D, 0x8E, 0x8F, 0x91, 0x94, 0x95 };
static unsigned int extended_red[] = {0x08, 0x48, 0x88, 0x09, 0x89, 0x0A, 0x8A, 0x0B, 0x8B, 0x0C, 0x8C, 0x0D, 0x8D, 0x0E, 0x8F, 0x8E, 0x0F, 0x4F, 0x92, 0x13, 0x93, 0x12 };
static unsigned int extended_grn[] = {0x29, 0x28, 0x78, 0x19, 0x79, 0x1A, 0x7A, 0x1B, 0x7B, 0x1C, 0x7C, 0x1D, 0x7D, 0x1E, 0x6E, 0x7E, 0x1F, 0x6F, 0x82, 0x23, 0x83, 0x22 };
static unsigned int extended_blu[] = {0x39, 0x38, 0x68, 0x3A, 0x69, 0x2A, 0x6A, 0x2B, 0x6B, 0x2C, 0x6C, 0x2D, 0x6D, 0x2E, 0x5E, 0x5D, 0x2F, 0x5F, 0x72, 0x33, 0x73, 0x32 };
HyperXKeyboardController::HyperXKeyboardController(hid_device* dev_handle)
{
dev = dev_handle;
}
HyperXKeyboardController::~HyperXKeyboardController()
{
}
void HyperXKeyboardController::SetMode
(
unsigned char mode,
unsigned char direction,
unsigned char speed,
std::vector<RGBColor> colors
)
{
unsigned char color_mode;
unsigned char mode_colors[9];
active_mode = mode;
active_direction = direction;
active_speed = speed;
memset(mode_colors, 0x00, sizeof(mode_colors));
switch(colors.size())
{
default:
case 0:
color_mode = HYPERX_COLOR_MODE_SPECTRUM;
break;
case 1:
color_mode = HYPERX_COLOR_MODE_SINGLE;
mode_colors[0] = RGBGetRValue(colors[0]);
mode_colors[1] = RGBGetGValue(colors[0]);
mode_colors[2] = RGBGetBValue(colors[0]);
break;
case 2:
color_mode = HYPERX_COLOR_MODE_DUAL;
mode_colors[3] = RGBGetRValue(colors[0]);
mode_colors[4] = RGBGetGValue(colors[0]);
mode_colors[5] = RGBGetBValue(colors[0]);
mode_colors[6] = RGBGetRValue(colors[1]);
mode_colors[7] = RGBGetGValue(colors[1]);
mode_colors[8] = RGBGetBValue(colors[1]);
break;
}
SendEffect
(
0x01,
active_mode,
active_direction,
HYPERX_REACTIVE_MODE_NONE,
active_speed,
color_mode,
mode_colors[0],
mode_colors[1],
mode_colors[2],
mode_colors[3],
mode_colors[4],
mode_colors[5],
mode_colors[6],
mode_colors[7],
mode_colors[8]
);
Sleep(100);
}
void HyperXKeyboardController::SetLEDsDirect(std::vector<RGBColor> colors)
{
unsigned char red_color_data[104];
unsigned char grn_color_data[104];
unsigned char blu_color_data[104];
unsigned char ext_color_data[150];
for(std::size_t i = 0; i < 104; i++)
{
red_color_data[i] = RGBGetRValue(colors[i]);
grn_color_data[i] = RGBGetGValue(colors[i]);
blu_color_data[i] = RGBGetBValue(colors[i]);
}
for(std::size_t i = 0; i < 22; i++)
{
ext_color_data[extended_red[i]] = RGBGetRValue(colors[i + 104]);
ext_color_data[extended_grn[i]] = RGBGetGValue(colors[i + 104]);
ext_color_data[extended_blu[i]] = RGBGetBValue(colors[i + 104]);
}
SendDirect
(
HYPERX_COLOR_CHANNEL_RED,
red_color_data
);
Sleep(5);
SendDirect
(
HYPERX_COLOR_CHANNEL_GREEN,
grn_color_data
);
Sleep(5);
SendDirect
(
HYPERX_COLOR_CHANNEL_BLUE,
blu_color_data
);
Sleep(5);
SendDirectExtended
(
ext_color_data
);
}
void HyperXKeyboardController::SetLEDs(std::vector<RGBColor> colors)
{
unsigned char red_color_data[104];
unsigned char grn_color_data[104];
unsigned char blu_color_data[104];
unsigned char ext_color_data[150];
for(std::size_t i = 0; i < 104; i++)
{
red_color_data[i] = RGBGetRValue(colors[i]);
grn_color_data[i] = RGBGetGValue(colors[i]);
blu_color_data[i] = RGBGetBValue(colors[i]);
}
for(std::size_t i = 0; i < 22; i++)
{
ext_color_data[extended_red[i]] = RGBGetRValue(colors[i + 104]);
ext_color_data[extended_grn[i]] = RGBGetGValue(colors[i + 104]);
ext_color_data[extended_blu[i]] = RGBGetBValue(colors[i + 104]);
}
SendColor
(
0x01,
HYPERX_COLOR_CHANNEL_RED,
red_color_data
);
Sleep(5);
SendColor
(
0x01,
HYPERX_COLOR_CHANNEL_GREEN,
grn_color_data
);
Sleep(5);
SendColor
(
0x01,
HYPERX_COLOR_CHANNEL_BLUE,
blu_color_data
);
Sleep(5);
SendExtendedColor
(
0x01,
ext_color_data
);
}
/*-------------------------------------------------------------------------------------------------*\
| Private packet sending functions. |
\*-------------------------------------------------------------------------------------------------*/
void HyperXKeyboardController::SelectProfile
(
unsigned char profile
)
{
unsigned char buf[264];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up Select Profile packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x07;
buf[0x01] = 0x01;
buf[0x02] = profile;
buf[0x06] = 0x03;
buf[0x07] = 0x01;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, 264);
}
void HyperXKeyboardController::SendEffect
(
unsigned char profile,
unsigned char mode,
unsigned char direction,
unsigned char reactive_mode,
unsigned char speed,
unsigned char color_mode,
unsigned char red_single,
unsigned char grn_single,
unsigned char blu_single,
unsigned char red_dual_1,
unsigned char grn_dual_1,
unsigned char blu_dual_1,
unsigned char red_dual_2,
unsigned char grn_dual_2,
unsigned char blu_dual_2
)
{
unsigned char buf[264];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up Effect packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x07;
buf[0x01] = HYPERX_PACKET_ID_SET_EFFECT;
buf[0x02] = profile;
/*-----------------------------------------------------*\
| Set mode |
\*-----------------------------------------------------*/
buf[0x09] = 0x01;
buf[0x0A] = mode;
/*-----------------------------------------------------*\
| Set direction |
\*-----------------------------------------------------*/
buf[0x0D] = direction;
buf[0x0E] = direction;
/*-----------------------------------------------------*\
| Set reactive mode |
\*-----------------------------------------------------*/
buf[0x1B] = reactive_mode;
buf[0x1C] = reactive_mode;
buf[0x1D] = reactive_mode;
buf[0x1E] = reactive_mode;
buf[0x1F] = reactive_mode;
buf[0x20] = reactive_mode;
buf[0x21] = reactive_mode;
buf[0x22] = reactive_mode;
/*-----------------------------------------------------*\
| Set mode-specific colors |
\*-----------------------------------------------------*/
buf[0x29] = red_single;
buf[0x41] = grn_single;
buf[0x59] = blu_single;
buf[0x2A] = red_dual_1;
buf[0x42] = grn_dual_1;
buf[0x5A] = blu_dual_1;
buf[0x2B] = red_dual_2;
buf[0x43] = grn_dual_2;
buf[0x5B] = blu_dual_2;
buf[0x6B] = 0x09;
buf[0x6C] = 0x09;
buf[0x6D] = 0x05;
buf[0x6E] = 0x05;
buf[0x6F] = 0x06;
buf[0x70] = 0x05;
/*-----------------------------------------------------*\
| Set speed |
\*-----------------------------------------------------*/
buf[0x71] = speed;
buf[0x72] = 0x09;
/*-----------------------------------------------------*\
| Set color mode |
\*-----------------------------------------------------*/
buf[0x73] = color_mode;
buf[0x74] = color_mode;
buf[0x75] = color_mode;
buf[0x76] = color_mode;
buf[0x77] = color_mode;
buf[0x78] = color_mode;
buf[0x79] = color_mode;
buf[0x7A] = color_mode;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, 264);
}
void HyperXKeyboardController::SendColor
(
unsigned char profile,
unsigned char color_channel,
unsigned char* color_data
)
{
unsigned char buf[264];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up Color packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x07;
buf[0x01] = HYPERX_PACKET_ID_SET_COLOR;
buf[0x02] = profile;
buf[0x03] = color_channel;
/*-----------------------------------------------------*\
| Fill in color data |
\*-----------------------------------------------------*/
for(int i = 0; i < 104; i++)
{
buf[keys[i]] = color_data[i];
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, 264);
}
void HyperXKeyboardController::SendExtendedColor
(
unsigned char profile,
unsigned char* color_data
)
{
unsigned char buf[264];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up Color packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x07;
buf[0x01] = HYPERX_PACKET_ID_SET_COLOR;
buf[0x02] = profile;
buf[0x03] = HYPERX_COLOR_CHANNEL_EXTENDED;
/*-----------------------------------------------------*\
| Fill in color data |
\*-----------------------------------------------------*/
for(int i = 0x08; i <= 0x93; i++)
{
buf[i] = color_data[i];
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, 264);
}
void HyperXKeyboardController::SendDirect
(
unsigned char color_channel,
unsigned char* color_data
)
{
unsigned char buf[264];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up Direct packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x07;
buf[0x01] = HYPERX_PACKET_ID_DIRECT;
buf[0x02] = color_channel;
/*-----------------------------------------------------*\
| Fill in color data |
\*-----------------------------------------------------*/
for(int i = 0; i < 104; i++)
{
buf[keys[i]] = color_data[i];
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, 264);
}
void HyperXKeyboardController::SendDirectExtended
(
unsigned char* color_data
)
{
unsigned char buf[264];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up Direct packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x07;
buf[0x01] = HYPERX_PACKET_ID_DIRECT;
buf[0x02] = HYPERX_COLOR_CHANNEL_EXTENDED;
/*-----------------------------------------------------*\
| Fill in color data |
\*-----------------------------------------------------*/
for(int i = 0x08; i <= 0x93; i++)
{
buf[i] = color_data[i];
}
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, 264);
}
@@ -0,0 +1,135 @@
/*-----------------------------------------*\
| HyperXKeyboardController.h |
| |
| Definitions and types for HyperX RGB |
| Keyboard lighting controller |
| |
| Adam Honse (CalcProgrammer1) 1/30/2020 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <string>
#include <hidapi/hidapi.h>
#pragma once
enum
{
HYPERX_PACKET_ID_SET_EFFECT = 0x02, /* Set profile effect packet */
HYPERX_PACKET_ID_SET_COLOR = 0x06, /* Set profile color packet */
HYPERX_PACKET_ID_DIRECT = 0x16, /* Direct control packet */
};
enum
{
HYPERX_DIRECTION_RIGHT = 0x00,
HYPERX_DIRECTION_LEFT = 0x01,
HYPERX_DIRECTION_UP = 0x02,
HYPERX_DIRECTION_DOWN = 0x03,
HYPERX_DIRECTION_IN = 0x04,
HYPERX_DIRECTION_OUT = 0x05
};
enum
{
HYPERX_MODE_WAVE = 0x00,
HYPERX_MODE_STATIC = 0x01,
HYPERX_MODE_BREATHING = 0x02,
};
enum
{
HYPERX_REACTIVE_MODE_TRIGGER = 0x03,
HYPERX_REACTIVE_MODE_EXPLOSION = 0x04,
HYPERX_REACTIVE_MODE_HYPERX_FLAME = 0x05,
HYPERX_REACTIVE_MODE_NONE = 0xFF
};
enum
{
HYPERX_COLOR_MODE_SINGLE = 0x00,
HYPERX_COLOR_MODE_DUAL = 0x01,
HYPERX_COLOR_MODE_SPECTRUM = 0x02
};
enum
{
HYPERX_COLOR_CHANNEL_RED = 0x01,
HYPERX_COLOR_CHANNEL_GREEN = 0x02,
HYPERX_COLOR_CHANNEL_BLUE = 0x03,
HYPERX_COLOR_CHANNEL_EXTENDED = 0x04
};
class HyperXKeyboardController
{
public:
HyperXKeyboardController(hid_device* dev_handle);
~HyperXKeyboardController();
void SetMode
(
unsigned char mode,
unsigned char direction,
unsigned char speed,
std::vector<RGBColor> colors
);
void SetLEDsDirect(std::vector<RGBColor> colors);
void SetLEDs(std::vector<RGBColor> colors);
private:
hid_device* dev;
unsigned char active_mode;
unsigned char active_direction;
unsigned char active_speed;
void SelectProfile
(
unsigned char profile
);
void SendEffect
(
unsigned char profile,
unsigned char mode,
unsigned char direction,
unsigned char reactive_mode,
unsigned char speed,
unsigned char color_mode,
unsigned char red_single,
unsigned char grn_single,
unsigned char blu_single,
unsigned char red_dual_1,
unsigned char grn_dual_1,
unsigned char blu_dual_1,
unsigned char red_dual_2,
unsigned char grn_dual_2,
unsigned char blu_dual_2
);
void SendColor
(
unsigned char profile,
unsigned char color_channel,
unsigned char* color_data
);
void SendExtendedColor
(
unsigned char profile,
unsigned char* color_data
);
void SendDirect
(
unsigned char color_channel,
unsigned char* color_data
);
void SendDirectExtended
(
unsigned char* color_data
);
};
@@ -0,0 +1,51 @@
#include "HyperXKeyboardController.h"
#include "RGBController.h"
#include "RGBController_HyperXKeyboard.h"
#include <vector>
#include <hidapi/hidapi.h>
#define HYPERX_KEYBOARD_VID 0x0951
#define HYPERX_ALLOY_ELITE_PID 0x16BE
/******************************************************************************************\
* *
* DetectHyperXKeyboardControllers *
* *
* Tests the USB address to see if a HyperX Keyboard controller exists there. *
* *
\******************************************************************************************/
void DetectHyperXKeyboardControllers(std::vector<RGBController*>& rgb_controllers)
{
hid_device_info* info;
hid_device* dev = NULL;
hid_init();
info = hid_enumerate(HYPERX_KEYBOARD_VID, HYPERX_ALLOY_ELITE_PID);
//Look for HyperX Keyboard, Interface 2
while(info)
{
if((info->vendor_id == HYPERX_KEYBOARD_VID)
&&(info->product_id == HYPERX_ALLOY_ELITE_PID)
&&(info->interface_number == 2))
{
dev = hid_open_path(info->path);
break;
}
else
{
info = info->next;
}
}
if( dev )
{
HyperXKeyboardController* controller = new HyperXKeyboardController(dev);
RGBController_HyperXKeyboard* rgb_controller = new RGBController_HyperXKeyboard(controller);
rgb_controllers.push_back(rgb_controller);
}
}
@@ -0,0 +1,99 @@
/*-----------------------------------------*\
| MSIRGBController.cpp |
| |
| Driver for MSI-RGB lighting controller |
| |
| Logic adapted from: |
| https://github.com/nagisa/msi-rgb |
| |
| Adam Honse (CalcProgrammer1) 2/11/2020 |
\*-----------------------------------------*/
#include "MSIRGBController.h"
#include "super_io.h"
MSIRGBController::MSIRGBController(int sioaddr)
{
msi_sioaddr = sioaddr;
/*-----------------------------------------------------*\
| This setup step isn't well documented |
| Without this, pulsing does not work |
\*-----------------------------------------------------*/
superio_outb(msi_sioaddr, SIO_REG_LOGDEV, 0x09);
int val_at_2c = superio_inb(msi_sioaddr, 0x2C);
val_at_2c &= 0b11110111;
val_at_2c |= 0b00010000;
superio_outb(msi_sioaddr, 0x2C, val_at_2c);
/*-----------------------------------------------------*\
| Set logical device register to RGB controller |
\*-----------------------------------------------------*/
superio_outb(msi_sioaddr, SIO_REG_LOGDEV, MSI_SIO_LOGDEV_RGB);
/*-----------------------------------------------------*\
| Test if RGB is enabled. If it is not, enable it. |
\*-----------------------------------------------------*/
int enable = superio_inb(msi_sioaddr, MSI_SIO_RGB_REG_ENABLE);
if((enable & MSI_SIO_RGB_ENABLE_MASK) != MSI_SIO_RGB_ENABLE_MASK)
{
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_ENABLE, MSI_SIO_RGB_ENABLE_MASK & (enable & !MSI_SIO_RGB_ENABLE_MASK));
}
/*-----------------------------------------------------*\
| Lighting enabled, no pulsing or blinking |
\*-----------------------------------------------------*/
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_CFG_1, 0x00);
/*-----------------------------------------------------*\
| Lighting enabled, RGB non-inverted, header on |
\*-----------------------------------------------------*/
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_CFG_3, 0xE2);
}
MSIRGBController::~MSIRGBController()
{
}
void MSIRGBController::SetColor(unsigned char red, unsigned char green, unsigned char blue)
{
/*-----------------------------------------------------*\
| The MSI RGB controller uses 4 bits per color rather |
| than 8. Shift the values by 4 so that the 4 most |
| significant bits of each color are the new color value|
\*-----------------------------------------------------*/
red = red >> 4;
green = green >> 4;
blue = blue >> 4;
/*-----------------------------------------------------*\
| Set logical device register to RGB controller |
\*-----------------------------------------------------*/
superio_outb(msi_sioaddr, SIO_REG_LOGDEV, MSI_SIO_LOGDEV_RGB);
/*-----------------------------------------------------*\
| Write the colors to the color sequence registers |
| Only static mode is supported right now - all colors |
| are the same. |
\*-----------------------------------------------------*/
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_RED_1_0, (red | (red << 4)));
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_RED_3_2, (red | (red << 4)));
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_RED_5_4, (red | (red << 4)));
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_RED_7_6, (red | (red << 4)));
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_GREEN_1_0, (green | (green << 4)));
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_GREEN_3_2, (green | (green << 4)));
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_GREEN_5_4, (green | (green << 4)));
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_GREEN_7_6, (green | (green << 4)));
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_BLUE_1_0, (blue | (blue << 4)));
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_BLUE_3_2, (blue | (blue << 4)));
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_BLUE_5_4, (blue | (blue << 4)));
superio_outb(msi_sioaddr, MSI_SIO_RGB_REG_BLUE_7_6, (blue | (blue << 4)));
}
@@ -0,0 +1,56 @@
/*-----------------------------------------*\
| MSIRGBController.h |
| |
| Definitions and types for MSI-RGB |
| lighting controller |
| |
| Logic adapted from: |
| https://github.com/nagisa/msi-rgb |
| |
| Adam Honse (CalcProgrammer1) 2/11/2020 |
\*-----------------------------------------*/
#include <string>
#pragma once
#define MSI_SIO_LOGDEV_RGB 0x12
enum
{
MSI_SIO_RGB_REG_ENABLE = 0xE0,
MSI_SIO_RGB_REG_CFG_1 = 0xE4,
MSI_SIO_RGB_REG_RED_1_0 = 0xF0,
MSI_SIO_RGB_REG_RED_3_2 = 0xF1,
MSI_SIO_RGB_REG_RED_5_4 = 0xF2,
MSI_SIO_RGB_REG_RED_7_6 = 0xF3,
MSI_SIO_RGB_REG_GREEN_1_0 = 0xF4,
MSI_SIO_RGB_REG_GREEN_3_2 = 0xF5,
MSI_SIO_RGB_REG_GREEN_5_4 = 0xF6,
MSI_SIO_RGB_REG_GREEN_7_6 = 0xF7,
MSI_SIO_RGB_REG_BLUE_1_0 = 0xF8,
MSI_SIO_RGB_REG_BLUE_3_2 = 0xF9,
MSI_SIO_RGB_REG_BLUE_5_4 = 0xFA,
MSI_SIO_RGB_REG_BLUE_7_6 = 0xFB,
MSI_SIO_RGB_REG_CFG_2 = 0xFE,
MSI_SIO_RGB_REG_CFG_3 = 0xFF,
};
#define MSI_SIO_RGB_ENABLE_MASK 0xE0
class MSIRGBController
{
public:
MSIRGBController(int sioaddr);
~MSIRGBController();
std::string GetDeviceName();
std::string GetDeviceLocation();
unsigned int GetMode();
void SetMode(unsigned char new_mode, unsigned char new_speed);
void SetColor(unsigned char red, unsigned char green, unsigned char blue);
private:
int msi_sioaddr;
};
@@ -0,0 +1,40 @@
#include "MSIRGBController.h"
#include "RGBController.h"
#include "RGBController_MSIRGB.h"
#include "super_io.h"
#include <vector>
#include <stdio.h>
#include <stdlib.h>
/******************************************************************************************\
* *
* DetectMSIRGBControllers *
* *
* Detect MSI-RGB compatible Super-IO chips. *
* *
\******************************************************************************************/
void DetectMSIRGBControllers(std::vector<RGBController*> &rgb_controllers)
{
int sio_addrs[2] = {0x2E, 0x4E};
for(int sioaddr_idx = 0; sioaddr_idx < 2; sioaddr_idx++)
{
int sioaddr = sio_addrs[sioaddr_idx];
superio_enter(sioaddr);
int val = (superio_inb(sioaddr, SIO_REG_DEVID) << 8) | superio_inb(sioaddr, SIO_REG_DEVID + 1);
switch (val & SIO_ID_MASK)
{
case SIO_NCT6795_ID:
case SIO_NCT6797_ID:
MSIRGBController* new_msi = new MSIRGBController(sioaddr);
RGBController_MSIRGB* new_rgb = new RGBController_MSIRGB(new_msi);
rgb_controllers.push_back(new_rgb);
break;
}
}
} /* DetectMSIRGBControllers() */
@@ -25,8 +25,20 @@ PolychromeController::PolychromeController(i2c_smbus_interface* bus, polychrome_
case FIRMWARE_VER_2_PT_00:
led_count = 1;
asr_led = false;
strcpy(device_name, "ASRock Polychrome FW 2.00");
asr_led = true;
strcpy(device_name, "ASRock ASR LED FW 2.00");
break;
case FIRMWARE_VER_2_PT_08:
led_count = 1;
asr_led = true;
strcpy(device_name, "ASRock ASR LED FW 2.08");
break;
case FIRMWARE_VER_2_PT_10:
led_count = 1;
asr_led = true;
strcpy(device_name, "ASRock ASR LED FW 2.10");
break;
case FIRMWARE_VER_3_PT_00:
@@ -76,45 +88,38 @@ unsigned int PolychromeController::GetLEDCount()
unsigned int PolychromeController::GetMode()
{
return(0);
return(active_mode);
}
void PolychromeController::SetAllColors(unsigned char red, unsigned char green, unsigned char blue)
bool PolychromeController::IsAsrLed()
{
return(asr_led);
}
void PolychromeController::SetColor(unsigned char red, unsigned char green, unsigned char blue)
{
unsigned char colors[3] = { red, green, blue };
if (asr_led)
{
bus->i2c_smbus_write_block_data(dev, active_mode, 3, colors);
}
else
{
unsigned char colors[3] = { red, green, blue };
bus->i2c_smbus_write_block_data(dev, POLYCHROME_REG_COLOR, 3, colors);
}
}
void PolychromeController::SetLEDColor(unsigned int /*led*/, unsigned char red, unsigned char green, unsigned char blue)
{
if (asr_led)
{
}
else
{
unsigned char colors[3] = { red, green, blue };
bus->i2c_smbus_write_block_data(dev, POLYCHROME_REG_COLOR, 3, colors);
}
}
void PolychromeController::SetMode(unsigned char mode)
{
active_mode = mode;
if (asr_led)
{
bus->i2c_smbus_write_block_data(dev, ASRLED_REG_MODE, 1, &active_mode);
}
else
{
bus->i2c_smbus_write_byte_data(dev, POLYCHROME_REG_MODE, mode);
bus->i2c_smbus_write_block_data(dev, POLYCHROME_REG_MODE, 1, &active_mode);
}
}
@@ -18,6 +18,8 @@ enum
{
FIRMWARE_VER_1_PT_10 = 0x010A, /* Firmware nu51_1.10 */
FIRMWARE_VER_2_PT_00 = 0x0200, /* Firmware nu51_2.00 */
FIRMWARE_VER_2_PT_08 = 0x0208, /* Firmware nu51_2.08 */
FIRMWARE_VER_2_PT_10 = 0x020A, /* Firmware nu51_2.10 */
FIRMWARE_VER_3_PT_00 = 0x0300, /* Firmware nu51_3.00 */
};
@@ -77,8 +79,8 @@ public:
char* GetDeviceName();
unsigned int GetLEDCount();
unsigned int GetMode();
void SetAllColors(unsigned char red, unsigned char green, unsigned char blue);
void SetLEDColor(unsigned int led, unsigned char red, unsigned char green, unsigned char blue);
bool IsAsrLed();
void SetColor(unsigned char red, unsigned char green, unsigned char blue);
void SetMode(unsigned char mode);
unsigned short GetFirmwareVersion();
@@ -86,7 +88,8 @@ private:
bool asr_led;
char device_name[32];
unsigned int led_count;
unsigned char active_mode;
i2c_smbus_interface* bus;
polychrome_dev_id dev;
};
};
@@ -9,6 +9,8 @@
#include "PoseidonZRGBController.h"
#include <cstring>
#ifdef WIN32
#include <Windows.h>
#else
@@ -20,15 +22,14 @@ static void Sleep(unsigned int milliseconds)
}
#endif
static unsigned int keys[] = {8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 21,
22, 23, 24, 25, 26, 27, 29, 30, 31, 32, 33, 34, 35,
36, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49,
50, 51, 52, 54, 55, 56, 57, 58, 59, 60, 62, 63, 64,
65, 66, 67, 68, 70, 71, 72, 73, 74, 75, 76, 78, 79,
80, 81, 82, 83, 84, 85, 86, 87, 88, 89, 90, 91, 92,
93, 94, 95, 96, 97, 98, 99, 100, 102, 103, 104, 105,
106, 108, 109, 111, 112, 114, 115, 117, 118, 119, 120,
124, 128, 129 };
static unsigned int keys[] = {0x08, 0x09, 0x0A, 0x0B, 0x0C, 0x0D, 0x0E, 0x0F, 0x10, 0x11, 0x12, 0x13, 0x15,
0x16, 0x17, 0x18, 0x19, 0x1A, 0x1B, 0x1D, 0x1E, 0x1F, 0x20, 0x21, 0x22, 0x23,
0x24, 0x26, 0x27, 0x28, 0x29, 0x2A, 0x2B, 0x2C, 0x2D, 0x2E, 0x2F, 0x30, 0x31,
0x32, 0x33, 0x34, 0x36, 0x37, 0x38, 0x39, 0x3A, 0x3B, 0x3C, 0x3E, 0x3F, 0x40,
0x41, 0x42, 0x43, 0x44, 0x46, 0x47, 0x48, 0x49, 0x4A, 0x4B, 0x4C, 0x4E, 0x4F,
0x50, 0x51, 0x52, 0x53, 0x54, 0x55, 0x56, 0x57, 0x58, 0x59, 0x5A, 0x5B, 0x5C,
0x5D, 0x5E, 0x5F, 0x60, 0x61, 0x62, 0x63, 0x64, 0x66, 0x67, 0x68, 0x69, 0x6A,
0x6C, 0x6D, 0x6F, 0x70, 0x72, 0x73, 0x75, 0x76, 0x77, 0x78, 0x7C, 0x80, 0x81 };
PoseidonZRGBController::PoseidonZRGBController(hid_device* dev_handle)
{
@@ -40,9 +41,21 @@ PoseidonZRGBController::~PoseidonZRGBController()
}
char* PoseidonZRGBController::GetDeviceName()
void PoseidonZRGBController::SetMode(unsigned char mode, unsigned char direction, unsigned char speed)
{
return device_name;
active_mode = mode;
active_direction = direction;
active_speed = speed;
SendControl
(
POSEIDONZ_PROFILE_P1,
POSEIDONZ_PROFILE_P1,
active_direction,
active_mode,
POSEIDONZ_BRIGHTNESS_MAX,
active_speed
);
}
void PoseidonZRGBController::SetLEDsDirect(std::vector<RGBColor> colors)
@@ -50,124 +63,177 @@ void PoseidonZRGBController::SetLEDsDirect(std::vector<RGBColor> colors)
unsigned char red_grn_buf[264];
unsigned char blu_buf[264];
for(int i = 0; i < 264; i++)
{
red_grn_buf[i] = 0x00;
blu_buf[i] = 0x00;
}
/*-----------------------------------------------------*\
| Zero out buffers |
\*-----------------------------------------------------*/
memset(red_grn_buf, 0x00, sizeof(red_grn_buf));
memset(blu_buf, 0x00, sizeof(blu_buf));
red_grn_buf[0] = POSEIDONZ_START;
red_grn_buf[1] = POSEIDONZ_LED_CMD;
red_grn_buf[2] = POSEIDONZ_PROFILE;
red_grn_buf[3] = POSEIDONZ_RED_GRN_CH;
/*-----------------------------------------------------*\
| Set up Direct packets |
\*-----------------------------------------------------*/
red_grn_buf[0] = 0x07;
red_grn_buf[1] = POSEIDONZ_PACKET_ID_SET_DIRECT;
red_grn_buf[2] = POSEIDONZ_PROFILE_P1;
red_grn_buf[3] = POSEIDONZ_DIRECT_RED_GREEN;
red_grn_buf[4] = 0x00;
red_grn_buf[5] = 0x00;
red_grn_buf[6] = 0x00;
red_grn_buf[7] = 0x00;
blu_buf[0] = POSEIDONZ_START;
blu_buf[1] = POSEIDONZ_LED_CMD;
blu_buf[2] = POSEIDONZ_PROFILE;
blu_buf[3] = POSEIDONZ_BLU_CH;
blu_buf[0] = 0x07;
blu_buf[1] = POSEIDONZ_PACKET_ID_SET_DIRECT;
blu_buf[2] = POSEIDONZ_PROFILE_P1;
blu_buf[3] = POSEIDONZ_DIRECT_BLUE;
blu_buf[4] = 0x00;
blu_buf[5] = 0x00;
blu_buf[6] = 0x00;
blu_buf[7] = 0x00;
for(int i = 0; i < 104; i++)
/*-----------------------------------------------------*\
| Fill in color data |
\*-----------------------------------------------------*/
for(std::size_t i = 0; i < 104; i++)
{
red_grn_buf[keys[i] ] = RGBGetRValue(colors[i]);
red_grn_buf[keys[i] + 128] = RGBGetGValue(colors[i]);
blu_buf[ keys[i] ] = RGBGetBValue(colors[i]);
}
/*-----------------------------------------------------*\
| Send packets |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, red_grn_buf, 264);
Sleep(1);
Sleep(5);
hid_send_feature_report(dev, blu_buf, 264);
}
void PoseidonZRGBController::SetLEDs(std::vector<RGBColor> colors)
{
unsigned char buf[264] = {0};
unsigned char red_color_data[104];
unsigned char grn_color_data[104];
unsigned char blu_color_data[104];
//Send Red Packet
for(int i = 0; i < 264; i++)
for(std::size_t i = 0; i < 104; i++)
{
buf[i] = 0xFF;
red_color_data[i] = RGBGetRValue(colors[i]);
grn_color_data[i] = RGBGetGValue(colors[i]);
blu_color_data[i] = RGBGetBValue(colors[i]);
}
buf[0] = 0x07;
buf[1] = 0x09;
buf[2] = 0x01;
buf[3] = 0x01;
for(int i = 0; i < 104; i++)
{
buf[keys[i]] = RGBGetRValue(colors[i]);
}
hid_send_feature_report(dev, buf, 264);
SendColor
(
POSEIDONZ_PROFILE_P1,
POSEIDONZ_COLOR_RED,
red_color_data
);
Sleep(10);
//Send Green Packet
for(int i = 0; i < 264; i++)
{
buf[i] = 0x00;
}
buf[0] = 0x07;
buf[1] = 0x09;
buf[2] = 0x01;
buf[3] = 0x02;
buf[8] = 0xFF;
for(int i = 0; i < 104; i++)
{
buf[keys[i]] = RGBGetGValue(colors[i]);
}
hid_send_feature_report(dev, buf, 264);
SendColor
(
POSEIDONZ_PROFILE_P1,
POSEIDONZ_COLOR_GREEN,
grn_color_data
);
Sleep(10);
//Send Blue Packet
for(int i = 0; i < 264; i++)
{
buf[i] = 0x11;
}
buf[0] = 0x07;
buf[1] = 0x09;
buf[2] = 0x01;
buf[3] = 0x03;
for(int i = 0; i < 104; i++)
{
buf[keys[i]] = RGBGetBValue(colors[i]);
}
hid_send_feature_report(dev, buf, 264);
SendColor
(
POSEIDONZ_PROFILE_P1,
POSEIDONZ_COLOR_BLUE,
blu_color_data
);
Sleep(10);
//Send Update Packet
for(int i = 0; i < 264; i++)
SendControl
(
POSEIDONZ_PROFILE_P1,
POSEIDONZ_PROFILE_P1,
active_direction,
active_mode,
POSEIDONZ_BRIGHTNESS_MAX,
active_speed
);
}
/*-------------------------------------------------------------------------------------------------*\
| Private packet sending functions. |
\*-------------------------------------------------------------------------------------------------*/
void PoseidonZRGBController::SendColor
(
unsigned char profile_to_edit,
unsigned char color_channel,
unsigned char* color_data
)
{
unsigned char buf[264];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up Color packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x07;
buf[0x01] = POSEIDONZ_PACKET_ID_SET_COLOR;
buf[0x02] = profile_to_edit;
buf[0x03] = color_channel;
/*-----------------------------------------------------*\
| Fill in color data |
\*-----------------------------------------------------*/
for(int i = 0; i < 104; i++)
{
buf[i] = 0x00;
buf[keys[i]] = color_data[i];
}
buf[0] = 0x07;
buf[1] = 0x02;
buf[2] = 0x01;
buf[8] = 0x01; //Preset to save
buf[13] = 0x04; //Brightness?
buf[16] = 0x08;
buf[22] = 0x03;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, 264);
}
void PoseidonZRGBController::SendControl
(
unsigned char profile_to_activate,
unsigned char profile_to_edit,
unsigned char direction,
unsigned char mode,
unsigned char brightness,
unsigned char speed
)
{
unsigned char buf[264];
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(buf, 0x00, sizeof(buf));
/*-----------------------------------------------------*\
| Set up Effect packet |
\*-----------------------------------------------------*/
buf[0x00] = 0x07;
buf[0x01] = POSEIDONZ_PACKET_ID_SET_EFFECT;
buf[0x02] = profile_to_activate;
buf[0x08] = profile_to_edit;
buf[0x0A] = direction;
buf[0x0C] = mode;
buf[0x0D] = brightness;
buf[0x10] = 0x08;
buf[0x12] = speed;
buf[0x13] = 0x50;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
hid_send_feature_report(dev, buf, 264);
}
@@ -21,18 +21,86 @@
#define POSEIDONZ_RED_GRN_CH 0x01
#define POSEIDONZ_BLU_CH 0x02
enum
{
POSEIDONZ_PACKET_ID_SET_EFFECT = 0x02, /* Set profile effect packet */
POSEIDONZ_PACKET_ID_SET_COLOR = 0x09, /* Set profile color packet */
POSEIDONZ_PACKET_ID_SET_DIRECT = 0x0E, /* Set direct color packet */
};
enum
{
POSEIDONZ_MODE_STATIC = 0x00,
POSEIDONZ_MODE_REACTIVE = 0x01,
POSEIDONZ_MODE_ARROW_FLOW = 0x02,
POSEIDONZ_MODE_WAVE = 0x03,
POSEIDONZ_MODE_RIPPLE = 0x04
};
enum
{
POSEIDONZ_PROFILE_P1 = 0x01,
POSEIDONZ_PROFILE_P2 = 0x02,
POSEIDONZ_PROFILE_P3 = 0x03,
POSEIDONZ_PROFILE_P4 = 0x04,
POSEIDONZ_PROFILE_P5 = 0x05
};
enum
{
POSEIDONZ_BRIGHTNESS_MIN = 0x00,
POSEIDONZ_BRIGHTNESS_MAX = 0x04
};
enum
{
POSEIDONZ_COLOR_RED = 0x01,
POSEIDONZ_COLOR_GREEN = 0x02,
POSEIDONZ_COLOR_BLUE = 0x03
};
enum
{
POSEIDONZ_DIRECT_RED_GREEN = 0x01,
POSEIDONZ_DIRECT_BLUE = 0x02
};
enum
{
POSEIDONZ_SPEED_SLOW = 0x10,
POSEIDONZ_SPEED_FAST = 0x05
};
class PoseidonZRGBController
{
public:
PoseidonZRGBController(hid_device* dev_handle);
~PoseidonZRGBController();
char* GetDeviceName();
void SetMode(unsigned char mode, unsigned char direction, unsigned char speed);
void SetLEDsDirect(std::vector<RGBColor> colors);
void SetLEDs(std::vector<RGBColor> colors);
private:
char device_name[32];
hid_device* dev;
unsigned char active_mode;
unsigned char active_direction;
unsigned char active_speed;
void SendControl
(
unsigned char profile_to_activate,
unsigned char profile_to_edit,
unsigned char direction,
unsigned char mode,
unsigned char brightness,
unsigned char speed
);
void SendColor
(
unsigned char profile_to_edit,
unsigned char color_channel,
unsigned char* color_data
);
};
@@ -18,12 +18,28 @@
void DetectPoseidonZRGBControllers(std::vector<RGBController*>& rgb_controllers)
{
hid_device* dev;
hid_device_info* info;
hid_device* dev = NULL;
//Look for Thermaltake Poseidon Z RGB Keyboard
hid_init();
dev = hid_open(TT_POSEIDON_Z_RGB_VID, TT_POSEIDON_Z_RGB_PID, 0);
info = hid_enumerate(TT_POSEIDON_Z_RGB_VID, TT_POSEIDON_Z_RGB_PID);
//Look for Thermaltake Poseidon Z RGB, Interface 2
while(info)
{
if((info->vendor_id == TT_POSEIDON_Z_RGB_VID)
&&(info->product_id == TT_POSEIDON_Z_RGB_PID)
&&(info->interface_number == 2))
{
dev = hid_open_path(info->path);
break;
}
else
{
info = info->next;
}
}
if( dev )
{
@@ -0,0 +1,285 @@
/*-----------------------------------------*\
| RGBFusion2Controller.cpp |
| |
| Driver for Gigabyte Aorus RGB Fusion 2.0 |
| lighting controller |
| |
| jackun 1/8/2020 |
\*-----------------------------------------*/
#include "RGBFusion2Controller.h"
#include <algorithm>
#include <array>
#include <thread>
#include <chrono>
static LEDCount LedCountToEnum(unsigned int c)
{
if (c <= 32)
return(LEDS_32);
if (c <= 64)
return(LEDS_64);
if (c <= 256)
return(LEDS_256);
if (c <= 512)
return(LEDS_512);
return(LEDS_1024);
}
RGBFusion2Controller::RGBFusion2Controller(hid_device* handle, const char *path) : dev(handle)
{
int res = 0;
char text[64] {};
unsigned char buffer[64] {};
if( dev ) {
SetCalibration();
// hid report read needs 0x60 packet or it gives IO error
SendPacket(0x60, 0x00);
buffer[0] = report_id;
res = hid_get_feature_report(dev, buffer, 64);
if( res > 0 )
{
report = *reinterpret_cast<IT8297Report*>(buffer);
name = std::string(report.str_product, 32);
name.erase(std::find(name.begin(), name.end(), '\0'), name.end());
snprintf(text, 11, "0x%08X", report.fw_ver);
version = text;
snprintf(text, 11, "0x%08X", report.chip_id);
chip_id = text;
}
loc = path;
EnableBeat(false);
}
}
RGBFusion2Controller::~RGBFusion2Controller()
{
if( dev ) {
hid_close(dev);
}
}
void RGBFusion2Controller::SetMode(int m)
{
mode = m;
}
// Sets RGB color mapping to LED pins.
// "Custom" RGB packets don't seem to get remapped so use report.byteorderN and do it manually.
// Of course it all depends how we send data to the controller, but bios/rgb fusion 2 itself
// set it up like this.
void RGBFusion2Controller::SetCalibration()
{
uint8_t buffer[64] {};
buffer[0] = report_id;
buffer[1] = 0x33;
// D_LED1 WS2812 GRB, 0x00RRGGBB to 0x00GGRRBB
buffer[2] = 0x02; // B
buffer[3] = 0x00; // G
buffer[4] = 0x01; // R
buffer[5] = 0x00;
// D_LED2 WS2812 GRB
buffer[6] = 0x02;
buffer[7] = 0x00;
buffer[8] = 0x01;
buffer[9] = 0x00;
// LED C1/C2 12vGRB, seems pins already connect to LEDs correctly
buffer[10] = 0x00;
buffer[11] = 0x01;
buffer[12] = 0x02;
buffer[13] = 0x00;
SendPacket(buffer);
}
void RGBFusion2Controller::SetLedCount(unsigned int count)
{
led_count = count;
LEDCount s0 = LedCountToEnum(count);
SendPacket(0x34, s0 | (s0 << 4)); // D_LED1 | D_LED2
}
bool RGBFusion2Controller::DisableBuiltinEffect(int enable_bit, int mask)
{
if(effect_disabled & enable_bit)
return(true);
effect_disabled &= ~mask;
effect_disabled |= enable_bit;
int res = SendPacket(0x32, effect_disabled);
// Sometimes effect doesn't apply at first, delay a little and let MCU to react, if this packet is the cause
std::this_thread::sleep_for(std::chrono::milliseconds(50));
return res;
}
bool RGBFusion2Controller::EnableBeat(bool e)
{
return SendPacket(0x31, e ? 1 : 0);
}
std::string RGBFusion2Controller::GetDeviceName()
{
return(name);
}
std::string RGBFusion2Controller::GetFWVersion()
{
return(version);
}
std::string RGBFusion2Controller::GetDeviceLocation()
{
return(loc);
}
std::string RGBFusion2Controller::GetSerial()
{
return(chip_id);
}
void RGBFusion2Controller::SetStripColors(unsigned int hdr, int start, int end, std::vector<RGBColor>& colors, int single_led)
{
PktRGB pkt;
pkt.Init(hdr, report_id);
// FIXME assuming that LED strips ports are 0x58/0x59 for all boards
uint32_t byteorder = hdr == HDR_D_LED1_RGB ? report.byteorder0 : report.byteorder1;
unsigned char bo_r = byteorder >> 16;
unsigned char bo_g = byteorder >> 8;
unsigned char bo_b = byteorder & 0xFF;
int res;
int leds_left = end - start;
int sent_data = 0;
int k = 0;
int leds_in_pkt = sizeof(pkt.s.leds) / sizeof(*pkt.s.leds); /* 19 */
// other leds stay at whatever the builtin effect was doing at that moment
// if breathing/pulse effect faded out then they stay dark
if(single_led > -1)
{
leds_left = 1;
k = single_led - start;
sent_data = k * 3;
leds_in_pkt = 1;
}
while(leds_left > 0)
{
leds_in_pkt = (std::min)(leds_in_pkt, leds_left);
leds_left -= leds_in_pkt;
pkt.s.bcount = leds_in_pkt * 3;
pkt.s.boffset = sent_data;
sent_data += pkt.s.bcount;
for(int i = 0; i < leds_in_pkt; i++)
{
RGBColor color = colors[start + k];
unsigned char red = RGBGetRValue(color);
unsigned char grn = RGBGetGValue(color);
unsigned char blu = RGBGetBValue(color);
pkt.buffer[5 + i * 3 + bo_r] = red;
pkt.buffer[5 + i * 3 + bo_g] = grn;
pkt.buffer[5 + i * 3 + bo_b] = blu;
k++;
}
res = SendPacket(pkt.buffer);
if(res < 0)
return;
}
if (hdr == HDR_D_LED1_RGB)
DisableBuiltinEffect(0x01, 0x01);
else
DisableBuiltinEffect(0x02, 0x02);
}
static const std::array< std::array<int, 3>, 5> speeds = {
{
{1600, 1600, 200},
{1200, 1200, 200},
{800, 800, 200},
{400, 400, 200},
{200, 200, 200},
},
};
void RGBFusion2Controller::SetLEDEffect(unsigned int led, int mode, unsigned int speed, bool random, unsigned char r, unsigned char g, unsigned char b)
{
PktEffect pkt;
pkt.Init(led, report_id);
pkt.e.effect_type = mode;
pkt.e.color0 = r << 16 | g << 8 | b;
if (speed < speeds.size()) {
const auto& s = speeds[speed];
pkt.e.period0 = s[0];
pkt.e.period1 = s[1];
pkt.e.period2 = s[2];
}
switch(mode)
{
case 0: break;
case 1: break; // static
case 2: // breathing
case 3: // blink
if (random)
pkt.e.effect_param0 = 7; // cycle through up to 7 (max?) colors
break;
case 4: // color cycle
pkt.e.effect_param0 = 7; // cycle through up to 7 (max?) colors
break;
// "fake" effects
case 10: // flashing, flashing color cycle
pkt.e.period0 = 200;
pkt.e.period1 = 200;
pkt.e.period2 = 5000 - 1000 * speed; // time between flashing, doesn't seem to be affected by period0/period1
pkt.e.effect_type = 3;
pkt.e.effect_param2 = 2; // flash twice
if (random)
pkt.e.effect_param0 = 7;
break;
}
SendPacket(pkt.buffer);
}
bool RGBFusion2Controller::ApplyEffect()
{
return SendPacket(0x28, 0xFF);
}
bool RGBFusion2Controller::SendPacket(uint8_t a, uint8_t b, uint8_t c)
{
unsigned char buffer[64] {};
buffer[0] = report_id;
buffer[1] = a;
buffer[2] = b;
buffer[3] = c;
return (SendPacket(buffer) == 64);
}
int RGBFusion2Controller::SendPacket(unsigned char* packet)
{
return hid_send_feature_report(dev, packet, 64);
}
@@ -0,0 +1,190 @@
/*-----------------------------------------*\
| RGBFusion2Controller.h |
| |
| Definitions and types for Gigabyte Aorus |
| RGB Fusion 2.0 lighting controller |
| |
| jackun 1/8/2020 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <cstring>
#include <hidapi/hidapi.h>
#pragma once
// LED "headers" 0x20..0x27, As seen on Gigabyte X570 Elite board
const uint8_t HDR_BACK_IO = 0x20;
const uint8_t HDR_CPU = 0x21;
const uint8_t HDR_LED_2 = 0x22;
const uint8_t HDR_PCIE = 0x23;
const uint8_t HDR_LED_C1C2 = 0x24;
const uint8_t HDR_D_LED1 = 0x25;
const uint8_t HDR_D_LED2 = 0x26;
const uint8_t HDR_LED_7 = 0x27;
const uint8_t HDR_D_LED1_RGB = 0x58; // FIXME assuming that it is 0x58 for all boards
const uint8_t HDR_D_LED2_RGB = 0x59;
enum EffectType
{
EFFECT_NONE = 0,
EFFECT_STATIC = 1,
EFFECT_PULSE = 2,
EFFECT_BLINKING = 3,
EFFECT_COLORCYCLE = 4,
// to be continued...
};
enum LEDCount
{
LEDS_32 = 0,
LEDS_64,
LEDS_256,
LEDS_512,
LEDS_1024,
};
struct LEDs
{
uint8_t r;
uint8_t g;
uint8_t b;
};
#pragma pack(push, 1)
union PktRGB
{
unsigned char buffer[64];
struct RGBData
{
uint8_t report_id;
uint8_t header;
uint16_t boffset; // in bytes, absolute
uint8_t bcount;
LEDs leds[19];
uint16_t padding0;
} s;
PktRGB() : s {}
{
}
void Init(uint8_t header, uint8_t report_id)
{
s.report_id = report_id;
s.header = header;
s.boffset = 0;
s.bcount = 0;
memset(s.leds, 0, sizeof(s.leds));
}
};
union PktEffect
{
unsigned char buffer[64];
struct Effect
{
uint8_t report_id;
uint8_t header;
uint32_t zone0; // rgb fusion seems to set it to pow(2, header - 0x20)
uint32_t zone1;
uint8_t reserved0;
uint8_t effect_type;
uint8_t max_brightness;
uint8_t min_brightness;
uint32_t color0;
uint32_t color1;
uint16_t period0; // fade in
uint16_t period1; // fade out
uint16_t period2; // hold
uint16_t period3;
uint8_t effect_param0;
uint8_t effect_param1;
uint8_t effect_param2;
uint8_t effect_param3;
uint8_t padding0[30];
} e;
PktEffect() : e {}
{
}
void Init(int header, uint8_t report_id)
{
memset(buffer, 0, sizeof(buffer));
e.report_id = report_id;
if (header < 8)
e.header = 32 + header; // set as default
else
e.header = header;
e.zone0 = (uint32_t)(1 << (e.header - 32));
e.effect_type = EFFECT_STATIC;
e.max_brightness = 100;
e.min_brightness = 0;
e.color0 = 0x00FF2100; //orange
e.period0 = 1200;
e.period1 = 1200;
e.period2 = 200;
e.period3 = 200;
e.effect_param0 = 0; // ex color count to cycle through (max seems to be 7)
e.effect_param1 = 0;
e.effect_param2 = 1; // ex flash repeat count
e.effect_param3 = 0;
}
};
struct IT8297Report
{
uint8_t report_id;
uint8_t product;
uint8_t device_num;
uint8_t total_leds;
uint32_t fw_ver;
uint16_t curr_led_count;
uint16_t reserved0;
char str_product[32]; // might be 28 and an extra byteorder3
uint32_t byteorder0; // is little-endian 0x00RRGGBB ?
uint32_t byteorder1;
uint32_t byteorder2;
uint32_t chip_id;
uint32_t reserved1;
};
#pragma pack(pop)
class RGBFusion2Controller
{
public:
RGBFusion2Controller(hid_device* handle, const char *path);
~RGBFusion2Controller();
void SetStripColors(unsigned int hdr, int start, int end, std::vector<RGBColor>& colors, int single_led = -1);
void SetLEDEffect(unsigned int led, int mode, unsigned int speed, bool random, unsigned char red, unsigned char green, unsigned char blue);
void SetLedCount(unsigned int count);
void SetMode(int mode);
bool ApplyEffect();
bool DisableBuiltinEffect(int enable_bit, int mask);
void SetCalibration();
std::string GetDeviceName();
std::string GetDeviceLocation();
std::string GetFWVersion();
std::string GetSerial();
private:
bool EnableBeat(bool enable);
bool SendPacket(uint8_t a, uint8_t b, uint8_t c = 0);
int SendPacket(unsigned char* packet);
hid_device* dev;
int mode;
unsigned int led_count;
IT8297Report report;
std::string name;
std::string loc;
std::string version;
std::string chip_id;
int effect_disabled = 0;
int report_id = 0xCC;
};
@@ -0,0 +1,37 @@
#include "RGBFusion2Controller.h"
#include "RGBController_RGBFusion2.h"
#define IT8297_VID 0x048D
#define IT8297_PID 0x8297
/******************************************************************************************\
* *
* DetectRGBFusion2Controllers *
* *
* Detect RGB Fusion 2 devices that use IT8297 RGB controller *
* *
\******************************************************************************************/
void DetectRGBFusion2Controllers(std::vector<RGBController*> &rgb_controllers)
{
if (hid_init() < 0)
return;
hid_device_info * device_list = hid_enumerate(IT8297_VID, IT8297_PID);
if (!device_list)
return;
hid_device_info * device = device_list;
while (device)
{
hid_device * dev = hid_open_path(device->path);
if (dev) {
RGBFusion2Controller * controller = new RGBFusion2Controller(dev, device_list->path);
RGBController_RGBFusion2 * rgb_controller = new RGBController_RGBFusion2(controller);
rgb_controllers.push_back(rgb_controller);
}
device = device->next;
}
hid_free_enumeration(device_list);
}
@@ -0,0 +1,47 @@
/*-----------------------------------------*\
| RGBFusionGPUController.cpp |
| |
| Driver for Gigabyte Aorus RGB Fusion GPU |
| lighting controller |
| |
| Adam Honse (CalcProgrammer1) 2/20/2020 |
\*-----------------------------------------*/
#include "RGBFusionGPUController.h"
RGBFusionGPUController::RGBFusionGPUController(i2c_smbus_interface* bus, rgb_fusion_dev_id dev)
{
this->bus = bus;
this->dev = dev;
}
RGBFusionGPUController::~RGBFusionGPUController()
{
}
std::string RGBFusionGPUController::GetDeviceLocation()
{
std::string return_string(bus->device_name);
char addr[5];
snprintf(addr, 5, "0x%02X", dev);
return_string.append(", address ");
return_string.append(addr);
return(return_string);
}
void RGBFusionGPUController::SetColor(unsigned char red, unsigned char green, unsigned char blue)
{
bus->i2c_smbus_write_byte(dev, RGB_FUSION_GPU_REG_COLOR);
bus->i2c_smbus_write_byte(dev, red);
bus->i2c_smbus_write_byte(dev, green);
bus->i2c_smbus_write_byte(dev, blue);
}
void RGBFusionGPUController::SetMode(unsigned char mode, unsigned char speed)
{
bus->i2c_smbus_write_byte(dev, RGB_FUSION_GPU_REG_MODE);
bus->i2c_smbus_write_byte(dev, mode);
bus->i2c_smbus_write_byte(dev, speed);
bus->i2c_smbus_write_byte(dev, 0x63);
}
@@ -0,0 +1,54 @@
/*-----------------------------------------*\
| RGBFusionGPUController.h |
| |
| Definitions and types for Gigabyte Aorus |
| RGB Fusion GPU lighting controller |
| |
| Adam Honse (CalcProgrammer1) 2/20/2020 |
\*-----------------------------------------*/
#include <string>
#include "i2c_smbus.h"
#pragma once
typedef unsigned char rgb_fusion_dev_id;
enum
{
RGB_FUSION_GPU_REG_COLOR = 0x40,
RGB_FUSION_GPU_REG_MODE = 0x88
};
enum
{
RGB_FUSION_GPU_MODE_STATIC = 0x01,
RGB_FUSION_GPU_MODE_BREATHING = 0x02,
RGB_FUSION_GPU_MODE_FLASHING = 0x04,
RGB_FUSION_GPU_MODE_DUAL_FLASHING = 0x08,
RGB_FUSION_GPU_MODE_SPECTRUM_CYCLE = 0x11
};
enum
{
RGB_FUSION_GPU_SPEED_SLOWEST = 0x00,
RGB_FUSION_GPU_SPEED_NORMAL = 0x05,
RGB_FUSION_GPU_SPEED_FASTEST = 0x09
};
class RGBFusionGPUController
{
public:
RGBFusionGPUController(i2c_smbus_interface* bus, rgb_fusion_dev_id dev);
~RGBFusionGPUController();
std::string GetDeviceLocation();
void SetColor(unsigned char red, unsigned char green, unsigned char blue);
void SetMode(unsigned char mode, unsigned char speed);
private:
i2c_smbus_interface* bus;
rgb_fusion_dev_id dev;
};
@@ -0,0 +1,83 @@
#include "RGBFusionGPUController.h"
#include "RGBController.h"
#include "RGBController_RGBFusionGPU.h"
#include "i2c_smbus.h"
#include <vector>
#include <stdio.h>
#include <stdlib.h>
/******************************************************************************************\
* *
* TestForRGBFusionGPUController *
* *
* Tests the given address to see if an RGB Fusion controller exists there. First *
* does a quick write to test for a response *
* *
\******************************************************************************************/
bool TestForRGBFusionGPUController(i2c_smbus_interface* bus, unsigned char address)
{
bool pass = false;
int res;
//Write out 0xAB 0x00 0x00 0x00 sequence
res = bus->i2c_smbus_write_byte(address, 0xAB);
if (res >= 0)
{
bus->i2c_smbus_write_byte(address, 0x00);
bus->i2c_smbus_write_byte(address, 0x00);
bus->i2c_smbus_write_byte(address, 0x00);
pass = true;
res = bus->i2c_smbus_read_byte(address);
if (res != 0xAB)
{
pass = false;
}
res = bus->i2c_smbus_read_byte(address);
if(res != 0x14)
{
pass = false;
}
bus->i2c_smbus_read_byte(address);
bus->i2c_smbus_read_byte(address);
}
return(pass);
} /* TestForRGBFusionGPUController() */
/******************************************************************************************\
* *
* DetectRGBFusionGPUControllers *
* *
* Detect RGB Fusion controllers on the enumerated I2C busses at address 0x47. *
* *
* bus - pointer to i2c_smbus_interface where RGB Fusion device is connected *
* dev - I2C address of RGB Fusion device *
* *
\******************************************************************************************/
void DetectRGBFusionGPUControllers(std::vector<i2c_smbus_interface*>& busses, std::vector<RGBController*>& rgb_controllers)
{
RGBFusionGPUController* new_rgb_fusion;
RGBController_RGBFusionGPU* new_controller;
for (unsigned int bus = 0; bus < busses.size(); bus++)
{
// Check for RGB Fusion controller at 0x47
if (TestForRGBFusionGPUController(busses[bus], 0x47))
{
new_rgb_fusion = new RGBFusionGPUController(busses[bus], 0x47);
new_controller = new RGBController_RGBFusionGPU(new_rgb_fusion);
rgb_controllers.push_back(new_controller);
}
}
} /* DetectRGBFusionGPUControllers() */
@@ -0,0 +1,117 @@
/*-----------------------------------------*\
| ThermaltakeRiingController.cpp |
| |
| Definitions and types for Thermaltake |
| Riing Plus lighting controller |
| |
| Adam Honse (CalcProgrammer1) 2/7/2020 |
\*-----------------------------------------*/
#include "ThermaltakeRiingController.h"
#include <cstring>
ThermaltakeRiingController::ThermaltakeRiingController(libusb_device_handle* dev_handle)
{
dev = dev_handle;
SendInit();
channel_leds[0] = 9;
channel_leds[1] = 9;
channel_leds[2] = 9;
channel_leds[3] = 0;
channel_leds[4] = 0;
}
ThermaltakeRiingController::~ThermaltakeRiingController()
{
}
void ThermaltakeRiingController::SetChannelLEDs(unsigned char channel, std::vector<RGBColor> colors)
{
unsigned char* color_data = new unsigned char[3 * colors.size()];
for(int color = 0; color < colors.size(); color++)
{
int color_idx = color * 3;
color_data[color_idx + 0] = RGBGetGValue(colors[color]);
color_data[color_idx + 1] = RGBGetRValue(colors[color]);
color_data[color_idx + 2] = RGBGetBValue(colors[color]);
}
SendRGB(channel, current_mode, current_speed, colors.size(), color_data);
delete[] color_data;
}
void ThermaltakeRiingController::SetMode(unsigned char mode, unsigned char speed)
{
current_mode = mode;
current_speed = speed;
}
/*-------------------------------------------------------------------------------------------------*\
| Private packet sending functions. |
\*-------------------------------------------------------------------------------------------------*/
void ThermaltakeRiingController::SendInit()
{
unsigned char usb_buf[64];
int actual;
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up Init packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0xFE;
usb_buf[0x01] = 0x33;
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
libusb_interrupt_transfer(dev, 0x01, usb_buf, 64, &actual, 0);
libusb_interrupt_transfer(dev, 0x81, usb_buf, 64, &actual, 0);
}
void ThermaltakeRiingController::SendRGB
(
unsigned char port,
unsigned char mode,
unsigned char speed,
unsigned char num_colors,
unsigned char* color_data
)
{
unsigned char usb_buf[64];
int actual;
/*-----------------------------------------------------*\
| Zero out buffer |
\*-----------------------------------------------------*/
memset(usb_buf, 0x00, sizeof(usb_buf));
/*-----------------------------------------------------*\
| Set up RGB packet |
\*-----------------------------------------------------*/
usb_buf[0x00] = 0x32;
usb_buf[0x01] = 0x52;
usb_buf[0x02] = port;
usb_buf[0x03] = mode + ( speed & 0x03 );
/*-----------------------------------------------------*\
| Copy in GRB color data |
\*-----------------------------------------------------*/
memcpy(&usb_buf[0x04], color_data, (num_colors * 3));
/*-----------------------------------------------------*\
| Send packet |
\*-----------------------------------------------------*/
libusb_interrupt_transfer(dev, 0x01, usb_buf, 64, &actual, 0);
libusb_interrupt_transfer(dev, 0x81, usb_buf, 64, &actual, 0);
}
@@ -0,0 +1,75 @@
/*-----------------------------------------*\
| ThermaltakeRiingController.h |
| |
| Definitions and types for Thermaltake |
| Riing Plus lighting controller |
| |
| Adam Honse (CalcProgrammer1) 2/7/2020 |
\*-----------------------------------------*/
#include "RGBController.h"
#include <vector>
#include <libusb-1.0/libusb.h>
#pragma once
enum
{
THERMALTAKE_PORT_1 = 0x01,
THERMALTAKE_PORT_2 = 0x02,
THERMALTAKE_PORT_3 = 0x03,
THERMALTAKE_PORT_4 = 0x04,
THERMALTAKE_PORT_5 = 0x05
};
enum
{
THERMALTAKE_MODE_FLOW = 0x00,
THERMALTAKE_MODE_SPECTRUM = 0x04,
THERMALTAKE_MODE_RIPPLE = 0x08,
THERMALTAKE_MODE_BLINK = 0x0C,
THERMALTAKE_MODE_PULSE = 0x10,
THERMALTAKE_MODE_WAVE = 0x14,
THERMALTAKE_MODE_PER_LED = 0x18,
THERMALTAKE_MODE_FULL = 0x19
};
enum
{
THERMALTAKE_SPEED_SLOW = 0x03,
THERMALTAKE_SPEED_NORMAL = 0x02,
THERMALTAKE_SPEED_FAST = 0x01,
THERMALTAKE_SPEED_EXTREME = 0x00
};
class ThermaltakeRiingController
{
public:
ThermaltakeRiingController(libusb_device_handle* dev_handle);
~ThermaltakeRiingController();
void SetChannelLEDs(unsigned char channel, std::vector<RGBColor> colors);
void SetMode(unsigned char mode, unsigned char speed);
unsigned int channel_leds[5];
private:
libusb_device_handle* dev;
unsigned char current_mode;
unsigned char current_speed;
void SendInit();
void SendRGB
(
unsigned char port,
unsigned char mode,
unsigned char speed,
unsigned char num_colors,
unsigned char* color_data
);
void SendFan();
void SendSave();
};
@@ -0,0 +1,41 @@
#include "ThermaltakeRiingController.h"
#include "RGBController.h"
#include "RGBController_ThermaltakeRiing.h"
#include <vector>
#include <libusb-1.0/libusb.h>
#define THERMALTAKE_RIING_VID 0x264A
#define THERMALTAKE_RIING_PID_BEGIN 0x1FA5
#define THERMALTAKE_RIING_PID_END 0x1FB5
/******************************************************************************************\
* *
* DetectThermaltakeRiingControllers *
* *
* Tests the USB address to see if an AMD Wraith Prism controller exists there. *
* *
\******************************************************************************************/
void DetectThermaltakeRiingControllers(std::vector<RGBController*>& rgb_controllers)
{
libusb_context * ctx;
libusb_init(&ctx);
for(int pid = THERMALTAKE_RIING_PID_BEGIN; pid <= THERMALTAKE_RIING_PID_END; pid++)
{
//Look for Thermaltake Riing device
libusb_device_handle * dev = libusb_open_device_with_vid_pid(ctx, THERMALTAKE_RIING_VID, pid);
if( dev )
{
libusb_detach_kernel_driver(dev, 0);
libusb_claim_interface(dev, 0);
ThermaltakeRiingController* controller = new ThermaltakeRiingController(dev);
RGBController_ThermaltakeRiing* rgb_controller = new RGBController_ThermaltakeRiing(controller);
rgb_controllers.push_back(rgb_controller);
}
}
}
+52 -80
View File
@@ -13,15 +13,13 @@
#include <stdlib.h>
#ifdef WIN32
#include <regex>
#include "i2c_smbus_piix4.h"
#include "i2c_smbus_i801.h"
#include "i2c_smbus_nct6775.h"
#include "i2c_smbus_nvapi.h"
#include "super_io.h"
#include "wmi.h"
#include "inpout32.h"
#pragma comment(lib, "inpout32.lib")
#else /* WIN32 */
#include "i2c_smbus_linux.h"
@@ -36,68 +34,6 @@ std::vector<i2c_smbus_interface*> busses;
std::vector<RGBController*> rgb_controllers;
#ifdef WIN32
/******************************************************************************************\
* *
* Nuvoton Super IO constants *
* *
\******************************************************************************************/
#define SIO_NCT5577_ID 0xC330 /* Device ID for NCT5577D (C333) */
#define SIO_NCT6102_ID 0x1060 /* Device ID for NCT6102D/6106D (1061) */
#define SIO_NCT6793_ID 0xd120 /* Device ID for NCT6793D (D121) */
#define SIO_NCT6796_ID 0xd420 /* Device ID for NCT6796D (D421) */
#define SIO_REG_LOGDEV 0x07 /* Logical Device Register */
#define SIO_REG_DEVID 0x20 /* Device ID Register */
#define SIO_REG_SMBA 0x62 /* SMBus Base Address Register */
#define SIO_LOGDEV_SMBUS 0x0B /* Logical Device for SMBus */
#define SIO_ID_MASK 0xFFF8 /* Device ID mask */
/******************************************************************************************\
* *
* superio_enter *
* *
* Put the Super IO chip into Extended Function Mode *
* *
\******************************************************************************************/
void superio_enter(int ioreg)
{
Out32(ioreg, 0x87);
Out32(ioreg, 0x87);
}
/******************************************************************************************\
* *
* superio_outb *
* *
* Write a byte to the Super IO configuration register *
* *
\******************************************************************************************/
void superio_outb(int ioreg, int reg, int val)
{
Out32(ioreg, reg);
Out32(ioreg + 1, val);
}
/******************************************************************************************\
* *
* superio_inb *
* *
* Read a byte to the Super IO configuration register *
* *
\******************************************************************************************/
int superio_inb(int ioreg, int reg)
{
Out32(ioreg, reg);
return Inp32(ioreg + 1);
}
/******************************************************************************************\
* *
* DetectNuvotonI2CBusses (Windows) *
@@ -152,6 +88,33 @@ void DetectNuvotonI2CBusses()
} /* DetectNuvotonI2CBusses() */
/******************************************************************************************\
* *
* DetectNvAPII2CBusses (Windows) *
* *
* Detects available NVidia NvAPI I2C adapters and enumerates *
* i2c_smbus_interface objects for them. Only enumerates the first bus for each GPU *
* *
\******************************************************************************************/
void DetectNvAPII2CBusses()
{
static NV_PHYSICAL_GPU_HANDLE gpu_handles[64];
static NV_S32 gpu_count = 0;
NV_STATUS initialize = NvAPI_Initialize();
NvAPI_EnumPhysicalGPUs(gpu_handles, &gpu_count);
for(NV_S32 gpu_idx = 0; gpu_idx < gpu_count; gpu_idx++)
{
i2c_smbus_nvapi * nvapi_bus = new i2c_smbus_nvapi(gpu_handles[gpu_idx]);
sprintf(nvapi_bus->device_name, "NVidia NvAPI I2C on GPU %d", gpu_idx);
busses.push_back(nvapi_bus);
}
} /* DetectNvAPII2CBusses() */
/******************************************************************************************\
* *
@@ -235,6 +198,9 @@ void DetectI2CBusses()
// Detect Nuvoton Super IO SMBus adapters
DetectNuvotonI2CBusses();
// Detect NVidia NvAPI I2C adapters
DetectNvAPII2CBusses();
} /* DetectI2CBusses() */
#else /* WIN32 */
@@ -283,14 +249,7 @@ void DetectI2CBusses()
{
read(test_fd, device_string, sizeof(device_string));
close(test_fd);
//ignore nvidia adapters for now
if(strncmp(device_string, "NVIDIA", 6) == 0)
{
ent = readdir(dir);
continue;
}
bus = new i2c_smbus_linux();
strcpy(bus->device_name, device_string);
@@ -318,25 +277,31 @@ void DetectI2CBusses()
#endif /* WIN32 */
void DetectAuraControllers(std::vector<i2c_smbus_interface*> &busses, std::vector<RGBController*> &rgb_controllers);
void DetectAuraGPUControllers(std::vector<i2c_smbus_interface*> &busses, std::vector<RGBController*> &rgb_controllers);
void DetectCorsairControllers(std::vector<i2c_smbus_interface*> &busses, std::vector<RGBController*> &rgb_controllers);
void DetectCorsairProControllers(std::vector<i2c_smbus_interface*> &busses, std::vector<RGBController*> &rgb_controllers);
void DetectCrucialControllers(std::vector<i2c_smbus_interface*> &busses, std::vector<RGBController*> &rgb_controllers);
void DetectHyperXControllers(std::vector<i2c_smbus_interface*> &busses, std::vector<RGBController*> &rgb_controllers);
void DetectPatriotViperControllers(std::vector<i2c_smbus_interface*> &busses, std::vector<RGBController*> &rgb_controllers);
void DetectPolychromeControllers(std::vector<i2c_smbus_interface*>& busses, std::vector<RGBController*>& rgb_controllers);
void DetectRGBFusionControllers(std::vector<i2c_smbus_interface*>& busses, std::vector<RGBController*>& rgb_controllers);
void DetectRGBFusionGPUControllers(std::vector<i2c_smbus_interface*>& busses, std::vector<RGBController*>& rgb_controllers);
void DetectMSIRGBControllers(std::vector<RGBController*> &rgb_controllers);
void DetectLEDStripControllers(std::vector<RGBController*> &rgb_controllers);
void DetectHue2Controllers(std::vector<RGBController*> &rgb_controllers);
void DetectHuePlusControllers(std::vector<RGBController*> &rgb_controllers);
void DetectOpenRazerControllers(std::vector<RGBController*> &rgb_controllers);
void DetectRazerChromaSDKControllers(std::vector<RGBController*>& rgb_controllers);
void DetectE131Controllers(std::vector<RGBController*> &rgb_controllers);
void DetectAMDWraithPrismControllers(std::vector<RGBController*>& rgb_controllers);
void DetectAorusGPUControllers(std::vector<RGBController*> &rgb_controllers);
void DetectMSI3ZoneControllers(std::vector<RGBController*>& rgb_controllers);
void DetectPoseidonZRGBControllers(std::vector<RGBController*>& rgb_controllers);
void DetectCorsairCmdrProControllers(std::vector<RGBController*> &rgb_controllers);
void DetectCorsairKeyboardControllers(std::vector<RGBController*>& rgb_controllers);
void DetectCorsairNodeProControllers(std::vector<RGBController*> &rgb_controllers);
void DetectFaustusControllers(std::vector<RGBController*> &rgb_controllers);
void DetectHyperXKeyboardControllers(std::vector<RGBController*>& rgb_controllers);
void DetectThermaltakeRiingControllers(std::vector<RGBController*>& rgb_controllers);
void DetectRGBFusion2Controllers(std::vector<RGBController*> &rgb_controllers);
/******************************************************************************************\
* *
@@ -345,18 +310,23 @@ void DetectFaustusControllers(std::vector<RGBController*> &rgb_controllers);
* Detect and populate RGB Controllers vector *
* *
\******************************************************************************************/
#include "RGBController_Dummy.h"
void DetectRGBControllers(void)
{
DetectI2CBusses();
DetectAuraControllers(busses, rgb_controllers);
DetectAuraGPUControllers(busses, rgb_controllers);
DetectCorsairControllers(busses, rgb_controllers);
DetectCorsairProControllers(busses, rgb_controllers);
DetectCrucialControllers(busses, rgb_controllers);
DetectHyperXControllers(busses, rgb_controllers);
DetectPatriotViperControllers(busses, rgb_controllers);
DetectPolychromeControllers(busses, rgb_controllers);
DetectRGBFusionGPUControllers(busses, rgb_controllers);
DetectRGBFusionControllers(busses, rgb_controllers);
DetectMSIRGBControllers(rgb_controllers);
DetectLEDStripControllers(rgb_controllers);
DetectHue2Controllers(rgb_controllers);
@@ -365,8 +335,12 @@ void DetectRGBControllers(void)
DetectAMDWraithPrismControllers(rgb_controllers);
DetectMSI3ZoneControllers(rgb_controllers);
DetectPoseidonZRGBControllers(rgb_controllers);
DetectHyperXKeyboardControllers(rgb_controllers);
DetectCorsairCmdrProControllers(rgb_controllers);
DetectCorsairKeyboardControllers(rgb_controllers);
DetectCorsairNodeProControllers(rgb_controllers);
DetectThermaltakeRiingControllers(rgb_controllers);
DetectRGBFusion2Controllers(rgb_controllers);
DetectE131Controllers(rgb_controllers);
@@ -374,9 +348,7 @@ void DetectRGBControllers(void)
| Windows-only devices |
\*-------------------------------------*/
#ifdef WIN32
DetectRazerChromaSDKControllers(rgb_controllers);
//DetectAorusGPUControllers(rgb_controllers);
DetectOpenRazerControllers(rgb_controllers);
/*-------------------------------------*\
| Linux-only devices |
\*-------------------------------------*/
+120 -25
View File
@@ -5,33 +5,59 @@ greaterThan(QT_MAJOR_VERSION, 4): QT += widgets
TARGET = OpenRGB
TEMPLATE = app
VERSION = 0.0
win32:BUILDDATE = $$system(date /t)
unix:BUILDDATE = $$system(date -R)
GIT_COMMIT_ID = $$system(git --git-dir $$_PRO_FILE_PWD_/.git --work-tree $$_PRO_FILE_PWD_ rev-parse HEAD)
GIT_COMMIT_DATE = $$system(git --git-dir $$_PRO_FILE_PWD_/.git --work-tree $$_PRO_FILE_PWD_ show -s --format=%ci HEAD)
GIT_BRANCH = $$system(git --git-dir $$_PRO_FILE_PWD_/.git --work-tree $$_PRO_FILE_PWD_ rev-parse --abbrev-ref HEAD)
DEFINES += \
VERSION_STRING=\\"\"\"$$VERSION\\"\"\" \
BUILDDATE_STRING=\\"\"\"$$BUILDDATE\\"\"\" \
GIT_COMMIT_ID=\\"\"\"$$GIT_COMMIT_ID\\"\"\" \
GIT_COMMIT_DATE=\\"\"\"$$GIT_COMMIT_DATE\\"\"\" \
GIT_BRANCH=\\"\"\"$$GIT_BRANCH\\"\"\"
RC_ICONS = qt/OpenRGB.ico
INCLUDEPATH += \
dependencies/libe131/src/ \
i2c_smbus/ \
i2c_tools/ \
net_port/ \
serial_port/ \
super_io/ \
Controllers/AMDWraithPrismController/ \
Controllers/AuraController/ \
Controllers/AuraGPUController/ \
Controllers/CorsairController/ \
Controllers/CorsairCmdrProController/ \
Controllers/CorsairKeyboardController/ \
Controllers/CorsairNodeProController/ \
Controllers/CorsairProController/ \
Controllers/CrucialController/ \
Controllers/Hue2Controller/ \
Controllers/HuePlusController/ \
Controllers/HyperXController/ \
Controllers/HyperXKeyboardController/ \
Controllers/LEDStripController/ \
Controllers/MSI3ZoneController/ \
Controllers/MSIRGBController/ \
Controllers/PatriotViperController/ \
Controllers/PolychromeController/ \
Controllers/PoseidonZRGBController/ \
Controllers/RGBFusionController/ \
Controllers/RGBFusion2Controller/ \
Controllers/RGBFusionGPUController/ \
Controllers/ThermaltakeRiingController/ \
RGBController/ \
qt/
SOURCES += \
dependencies/libe131/src/e131.c \
main.cpp \
cli.cpp \
OpenRGB.cpp \
qt/OpenRGBDeviceInfoPage.cpp \
qt/OpenRGBDevicePage.cpp \
@@ -40,31 +66,44 @@ SOURCES += \
i2c_tools/i2c_tools.cpp \
net_port/net_port.cpp \
qt/OpenRGBDialog2.cpp \
qt/OpenRGBProfileSaveDialog.cpp \
qt/OpenRGBSoftwareInfoPage.cpp \
qt/OpenRGBSystemInfoPage.cpp \
qt/hsv.cpp \
serial_port/serial_port.cpp \
super_io/super_io.cpp \
Controllers/AMDWraithPrismController/AMDWraithPrismController.cpp \
Controllers/AMDWraithPrismController/AMDWraithPrismControllerDetect.cpp \
Controllers/AuraController/AuraController.cpp \
Controllers/AuraController/AuraControllerDetect.cpp \
Controllers/AuraGPUController/AuraGPUController.cpp \
Controllers/AuraGPUController/AuraGPUControllerDetect.cpp \
Controllers/CorsairController/CorsairController.cpp \
Controllers/CorsairController/CorsairControllerDetect.cpp \
Controllers/CorsairCmdrProController/CorsairCmdrProController.cpp \
Controllers/CorsairCmdrProController/CorsairCmdrProControllerDetect.cpp \
Controllers/CorsairKeyboardController/CorsairKeyboardController.cpp \
Controllers/CorsairKeyboardController/CorsairKeyboardControllerDetect.cpp \
Controllers/CorsairNodeProController/CorsairNodeProController.cpp \
Controllers/CorsairNodeProController/CorsairNodeProControllerDetect.cpp \
Controllers/CorsairProController/CorsairProController.cpp \
Controllers/CorsairProController/CorsairProControllerDetect.cpp \
Controllers/CrucialController/CrucialController.cpp \
Controllers/CrucialController/CrucialControllerDetect.cpp \
Controllers/Hue2Controller/Hue2Controller.cpp \
Controllers/Hue2Controller/Hue2ControllerDetect.cpp \
Controllers/HuePlusController/HuePlusController.cpp \
Controllers/HuePlusController/HuePlusControllerDetect.cpp \
Controllers/HyperXController/HyperXController.cpp \
Controllers/HyperXController/HyperXControllerDetect.cpp \
Controllers/HyperXKeyboardController/HyperXKeyboardController.cpp \
Controllers/HyperXKeyboardController/HyperXKeyboardControllerDetect.cpp \
Controllers/LEDStripController/LEDStripController.cpp \
Controllers/LEDStripController/LEDStripControllerDetect.cpp \
Controllers/MSI3ZoneController/MSI3ZoneController.cpp \
Controllers/MSI3ZoneController/MSI3ZoneControllerDetect.cpp \
Controllers/MSIRGBController/MSIRGBController.cpp \
Controllers/MSIRGBController/MSIRGBControllerDetect.cpp \
Controllers/PatriotViperController/PatriotViperController.cpp \
Controllers/PatriotViperController/PatriotViperControllerDetect.cpp \
Controllers/PolychromeController/PolychromeController.cpp \
@@ -73,24 +112,39 @@ SOURCES += \
Controllers/PoseidonZRGBController/PoseidonZRGBControllerDetect.cpp \
Controllers/RGBFusionController/RGBFusionController.cpp \
Controllers/RGBFusionController/RGBFusionControllerDetect.cpp \
Controllers/RGBFusion2Controller/RGBFusion2Controller.cpp \
Controllers/RGBFusion2Controller/RGBFusion2ControllerDetect.cpp \
Controllers/RGBFusionGPUController/RGBFusionGPUController.cpp \
Controllers/RGBFusionGPUController/RGBFusionGPUControllerDetect.cpp \
Controllers/ThermaltakeRiingController/ThermaltakeRiingController.cpp \
Controllers/ThermaltakeRiingController/ThermaltakeRiingControllerDetect.cpp \
RGBController/RGBController.cpp \
RGBController/E131ControllerDetect.cpp \
RGBController/RGBController_AMDWraithPrism.cpp \
RGBController/RGBController_Aura.cpp \
RGBController/RGBController_AuraGPU.cpp \
RGBController/RGBController_Corsair.cpp \
RGBController/RGBController_CorsairCmdrPro.cpp \
RGBController/RGBController_CorsairKeyboard.cpp \
RGBController/RGBController_CorsairNodePro.cpp \
RGBController/RGBController_CorsairPro.cpp \
RGBController/RGBController_Crucial.cpp \
RGBController/RGBController_Dummy.cpp \
RGBController/RGBController_Hue2.cpp \
RGBController/RGBController_HuePlus.cpp \
RGBController/RGBController_HyperX.cpp \
RGBController/RGBController_HyperXKeyboard.cpp \
RGBController/RGBController_E131.cpp \
RGBController/RGBController_LEDStrip.cpp \
RGBController/RGBController_MSI3Zone.cpp \
RGBController/RGBController_MSIRGB.cpp \
RGBController/RGBController_PatriotViper.cpp \
RGBController/RGBController_Polychrome.cpp \
RGBController/RGBController_PoseidonZRGB.cpp \
RGBController/RGBController_RGBFusion.cpp
RGBController/RGBController_RGBFusion.cpp \
RGBController/RGBController_RGBFusion2.cpp \
RGBController/RGBController_RGBFusionGPU.cpp \
RGBController/RGBController_ThermaltakeRiing.cpp \
HEADERS += \
qt/OpenRGBDeviceInfoPage.h \
@@ -100,41 +154,60 @@ HEADERS += \
i2c_tools/i2c_tools.h \
net_port/net_port.h \
qt/OpenRGBDialog2.h \
qt/OpenRGBProfileSaveDialog.h \
qt/OpenRGBSoftwareInfoPage.h \
qt/OpenRGBSystemInfoPage.h \
serial_port/find_usb_serial_port.h \
serial_port/serial_port.h \
super_io/super_io.h \
Controllers/AMDWraithPrismController/AMDWraithPrismController.h \
Controllers/AuraController/AuraController.h \
Controllers/AuraGPUController/AuraGPUController.h \
Controllers/CorsairController/CorsairController.h \
Controllers/CorsairCmdrProController/CorsairCmdrProController.h \
Controllers/CorsairKeyboardController/CorsairKeyboardController.h \
Controllers/CorsairNodeProController/CorsairNodeProController.h \
Controllers/CorsairProController/CorsairProController.h \
Controllers/CrucialController/CrucialController.h \
Controllers/Hue2Controller/Hue2Controller.h \
Controllers/HuePlusController/HuePlusController.h \
Controllers/HyperXController/HyperXController.h \
Controllers/HyperXKeyboardController/HyperXKeyboardController.h \
Controllers/LEDStripController/LEDStripController.h \
Controllers/MSI3ZoneController/MSI3ZoneController.h \
Controllers/MSIRGBController/MSIRGBController.h \
Controllers/PatriotViperController/PatriotViperController.h \
Controllers/PolychromeController/PolychromeController.h \
Controllers/PoseidonZRGBController/PoseidonZRGBController.h \
Controllers/RGBFusionController/RGBFusionController.h \
Controllers/RGBFusion2Controller/RGBFusion2Controller.h \
Controllers/RGBFusionGPUController/RGBFusionGPUController.h \
Controllers/ThermaltakeRiingController/ThermaltakeRiingController.h \
RGBController/RGBController.h \
RGBController/RGBController_AMDWraithPrism.h \
RGBController/RGBController_Aura.h \
RGBController/RGBController_AuraGPU.h \
RGBController/RGBController_Corsair.h \
RGBController/RGBController_CorsairCmdrPro.h \
RGBController/RGBController_CorsairNodePro.h \
RGBController/RGBController_CorsairPro.h \
RGBController/RGBController_Crucial.h \
RGBController/RGBController_Dummy.h \
RGBController/RGBController_E131.h \
RGBController/RGBController_Hue2.h \
RGBController/RGBController_HuePlus.h \
RGBController/RGBController_HyperX.h \
RGBController/RGBController_HyperXKeyboard.h \
RGBController/RGBController_LEDStrip.h \
RGBController/RGBController_MSI3Zone.h \
RGBController/RGBController_MSIRGB.h \
RGBController/RGBController_PatriotViper.h \
RGBController/RGBController_Polychrome.h \
RGBController/RGBController_PoseidonZRGB.h \
RGBController/RGBController_RGBFusion.h
RGBController/RGBController_RGBFusion.h \
RGBController/RGBController_RGBFusion2.h \
RGBController/RGBController_RGBFusionGPU.h \
RGBController/RGBController_ThermaltakeRiing.h \
RESOURCES += \
qt/resources.qrc
@@ -144,6 +217,8 @@ FORMS += \
qt/OpenRGBDevicePage.ui \
qt/OpenRGBDialog.ui \
qt/OpenRGBDialog2.ui \
qt/OpenRGBProfileSaveDialog.ui \
qt/OpenRGBSoftwareInfoPage.ui \
qt/OpenRGBSystemInfoPage.ui
#-----------------------------------------------
@@ -151,36 +226,47 @@ FORMS += \
#-----------------------------------------------
win32:INCLUDEPATH += \
dependencies/inpout32_1501/Win32/ \
dependencies/razer-chroma-2.9.0/inc \
dependencies/libusb-1.0.22/include \
dependencies/hidapi \
dependencies/NVFC \
dependencies/openrazer-win32 \
wmi/ \
win32:SOURCES += \
dependencies/NVFC/nvapi.cpp \
dependencies/hidapi/hid_win.c \
i2c_smbus/i2c_smbus_i801.cpp \
i2c_smbus/i2c_smbus_nct6775.cpp \
i2c_smbus/i2c_smbus_nvapi.cpp \
i2c_smbus/i2c_smbus_piix4.cpp \
serial_port/find_usb_serial_port_win.cpp \
wmi/wmi.cpp \
RGBController/AorusGPUDetect.cpp \
RGBController/RGBController_AorusGPU.cpp \
RGBController/RazerChromaSDKDetect.cpp \
RGBController/RGBController_RazerChromaSDK.cpp \
RGBController/OpenRazerWindowsDetect.cpp \
RGBController/RGBController_OpenRazerWindows.cpp \
win32:HEADERS += \
dependencies/inpout32_1501/Win32/inpout32.h \
dependencies/NVFC/nvapi.h \
i2c_smbus/i2c_smbus_i801.h \
i2c_smbus/i2c_smbus_nct6775.h \
i2c_smbus/i2c_smbus_nvapi.h \
i2c_smbus/i2c_smbus_piix4.h \
wmi/wmi.h \
RGBController/RGBController_AorusGPU.h \
RGBController/RGBController_RazerChromaSDK.h \
RGBController/RGBController_OpenRazerWindows.h \
win32:LIBS += \
-lws2_32 \
-L"$$PWD/dependencies/inpout32_1501/Win32/" -linpout32 \
-L"$$PWD/dependencies/libusb-1.0.22/MS32/dll" -llibusb-1.0 \
-L"$$PWD/dependencies/hidapi-win/x86/" -lhidapi
win32:contains(QMAKE_TARGET.arch, x86_64) {
LIBS += \
-lws2_32 \
-L"$$PWD/dependencies/inpout32_1501/x64/" -linpoutx64 \
-L"$$PWD/dependencies/libusb-1.0.22/MS64/dll" -llibusb-1.0 \
}
win32:contains(QMAKE_TARGET.arch, x86) {
LIBS += \
-lws2_32 \
-L"$$PWD/dependencies/inpout32_1501/Win32/" -linpout32 \
-L"$$PWD/dependencies/libusb-1.0.22/MS32/dll" -llibusb-1.0 \
}
win32:DEFINES -= \
UNICODE
@@ -192,10 +278,28 @@ win32:DEFINES += \
_WINSOCK_DEPRECATED_NO_WARNINGS \
WIN32_LEAN_AND_MEAN
# Copy OpenRazer.dll to output directory
win32:contains(QMAKE_TARGET.arch, x86_64) {
copydata.commands = $(COPY_FILE) \"$$shell_path($$PWD\\dependencies\\openrazer-win32\\OpenRazer64.dll)\" \"$$shell_path($$OUT_PWD)\"
first.depends = $(first) copydata
export(first.depends)
export(copydata.commands)
QMAKE_EXTRA_TARGETS += first copydata
}
win32:contains(QMAKE_TARGET.arch, x86) {
copydata.commands = $(COPY_FILE) \"$$shell_path($$PWD\\dependencies\\openrazer-win32\\OpenRazer.dll)\" \"$$shell_path($$OUT_PWD)\"
first.depends = $(first) copydata
export(first.depends)
export(copydata.commands)
QMAKE_EXTRA_TARGETS += first copydata
}
#-----------------------------------------------
# Linux specific project configuration
#-----------------------------------------------
unix:INCLUDEPATH += \
dependencies/hidapi \
unix:HEADERS += \
i2c_smbus/i2c_smbus_linux.h \
@@ -203,19 +307,10 @@ unix:HEADERS += \
unix:LIBS += \
-lusb-1.0 \
packagesExist(hidapi-libusb){
unix:LIBS += -lhidapi-libusb
} else {
packagesExist(hidapi) {
unix:LIBS += -lhidapi
} else {
unix:LIBS += -lhidapi-libusb
}
}
-lstdc++fs \
unix:SOURCES += \
dependencies/hidapi/hid_win.c \
i2c_smbus/i2c_smbus_linux.cpp \
serial_port/find_usb_serial_port_linux.cpp \
RGBController/OpenRazerDetect.cpp \
-21
View File
@@ -1,21 +0,0 @@
#include "RGBController.h"
#include "RGBController_AorusGPU.h"
#include <vector>
#include <stdio.h>
#include <stdlib.h>
/******************************************************************************************\
* *
* DetectAorusGPUControllers *
* *
* Detect devices supported by the Aorus GPU driver *
* * *
\******************************************************************************************/
void DetectAorusGPUControllers(std::vector<RGBController*> &rgb_controllers)
{
RGBController_AorusGPU * aorus_rgb = new RGBController_AorusGPU();
rgb_controllers.push_back(aorus_rgb);
} /* DetectLEDStripControllers() */
+2 -2
View File
@@ -58,7 +58,7 @@ void DetectOpenRazerControllers(std::vector<RGBController*> &rgb_controllers)
break;
case 7:
strcpy(driver_path, "/sys/bus/hid/drivers/razerchromahdk/");
strcpy(driver_path, "/sys/bus/hid/drivers/razeraccessory/");
break;
}
@@ -102,7 +102,7 @@ void DetectOpenRazerControllers(std::vector<RGBController*> &rgb_controllers)
RGBController_OpenRazer * razer_rgb = new RGBController_OpenRazer(device_string);
if(razer_rgb->device != -1)
if(razer_rgb->device_index != -1)
{
rgb_controllers.push_back(razer_rgb);
}
File diff suppressed because it is too large Load Diff
+387
View File
@@ -0,0 +1,387 @@
#include "RGBController.h"
#include "RGBController_OpenRazerWindows.h"
#include <vector>
#include <stdio.h>
#include <stdlib.h>
#include <Windows.h>
#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/hid.h>
#ifdef _WIN64
#define OPENRAZERDLL "OpenRazer64.dll"
#elif WIN32
#define OPENRAZERDLL "OpenRazer.dll"
#endif
/******************************************************************************************\
* *
* DetectOpenRazerControllers *
* *
* Detect devices supported by the OpenRazer kernel drivers *
* *
\******************************************************************************************/
void DetectOpenRazerControllers(std::vector<RGBController*> &rgb_controllers)
{
static HMODULE module = LoadLibrary(OPENRAZERDLL);
if(module == nullptr)
{
return;
}
// map DLL calls
typedef unsigned int(*INITRAZERDRIVER)(struct hid_device** hdev);
INITRAZERDRIVER init_razer_kbd_driver = reinterpret_cast<INITRAZERDRIVER>(GetProcAddress(module, "init_razer_kbd_driver"));
static struct device_attribute devkbd_attr_device_type = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_device_type"));
static struct device_attribute devkbd_attr_device_serial = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_device_serial"));
static struct device_attribute devkbd_attr_firmware_version = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_firmware_version"));
static struct device_attribute devkbd_attr_matrix_effect_custom = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_matrix_effect_custom"));
static struct device_attribute devkbd_attr_matrix_custom_frame = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_matrix_custom_frame"));
static struct device_attribute devkbd_attr_matrix_brightness = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_matrix_brightness"));
static struct device_attribute devkbd_attr_matrix_effect_none = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_matrix_effect_none"));
static struct device_attribute devkbd_attr_matrix_effect_static = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_matrix_effect_static"));
static struct device_attribute devkbd_attr_matrix_effect_breath = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_matrix_effect_breath"));
static struct device_attribute devkbd_attr_matrix_effect_spectrum = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_matrix_effect_spectrum"));
static struct device_attribute devkbd_attr_matrix_effect_reactive = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_matrix_effect_reactive"));
static struct device_attribute devkbd_attr_matrix_effect_wave = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkbd_attr_matrix_effect_wave"));
INITRAZERDRIVER init_razer_mousemat_driver = reinterpret_cast<INITRAZERDRIVER>(GetProcAddress(module, "init_razer_mousemat_driver"));
static struct device_attribute devmousemat_attr_device_type = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_device_type"));
static struct device_attribute devmousemat_attr_device_serial = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_device_serial"));
static struct device_attribute devmousemat_attr_firmware_version = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_firmware_version"));
static struct device_attribute devmousemat_attr_matrix_effect_custom = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_matrix_effect_custom"));
static struct device_attribute devmousemat_attr_matrix_custom_frame = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_matrix_custom_frame"));
static struct device_attribute devmousemat_attr_matrix_brightness = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_matrix_brightness"));
static struct device_attribute devmousemat_attr_matrix_effect_none = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_matrix_effect_none"));
static struct device_attribute devmousemat_attr_matrix_effect_static = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_matrix_effect_static"));
static struct device_attribute devmousemat_attr_matrix_effect_breath = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_matrix_effect_breath"));
static struct device_attribute devmousemat_attr_matrix_effect_spectrum = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_matrix_effect_spectrum"));
static struct device_attribute devmousemat_attr_matrix_effect_reactive = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_matrix_effect_reactive"));
static struct device_attribute devmousemat_attr_matrix_effect_wave = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmousemat_attr_matrix_effect_wave"));
INITRAZERDRIVER init_razer_mouse_driver = reinterpret_cast<INITRAZERDRIVER>(GetProcAddress(module, "init_razer_mouse_driver"));
static struct device_attribute devmouse_attr_device_type = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_device_type"));
static struct device_attribute devmouse_attr_device_serial = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_device_serial"));
static struct device_attribute devmouse_attr_firmware_version = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_firmware_version"));
static struct device_attribute devmouse_attr_matrix_effect_custom = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_matrix_effect_custom"));
static struct device_attribute devmouse_attr_matrix_custom_frame = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_matrix_custom_frame"));
static struct device_attribute devmouse_attr_matrix_brightness = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_matrix_brightness"));
static struct device_attribute devmouse_attr_logo_led_brightness = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_logo_led_brightness"));
static struct device_attribute devmouse_attr_scroll_led_brightness = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_scroll_led_brightness"));
static struct device_attribute devmouse_attr_matrix_effect_none = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_matrix_effect_none"));
static struct device_attribute devmouse_attr_logo_matrix_effect_none = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_logo_matrix_effect_none"));
static struct device_attribute devmouse_attr_scroll_matrix_effect_none = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_scroll_matrix_effect_none"));
static struct device_attribute devmouse_attr_matrix_effect_static = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_matrix_effect_static"));
static struct device_attribute devmouse_attr_logo_matrix_effect_static = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_logo_matrix_effect_static"));
static struct device_attribute devmouse_attr_scroll_matrix_effect_static = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_scroll_matrix_effect_static"));
static struct device_attribute devmouse_attr_matrix_effect_breath = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_matrix_effect_breath"));
static struct device_attribute devmouse_attr_matrix_effect_spectrum = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_matrix_effect_spectrum"));
static struct device_attribute devmouse_attr_logo_matrix_effect_spectrum = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_logo_matrix_effect_spectrum"));
static struct device_attribute devmouse_attr_scroll_matrix_effect_spectrum = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_scroll_matrix_effect_spectrum"));
static struct device_attribute devmouse_attr_matrix_effect_reactive = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_matrix_effect_reactive"));
static struct device_attribute devmouse_attr_logo_matrix_effect_reactive = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_logo_matrix_effect_reactive"));
static struct device_attribute devmouse_attr_scroll_matrix_effect_reactive = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_scroll_matrix_effect_reactive"));
static struct device_attribute devmouse_attr_scroll_led_effect = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_scroll_led_effect"));
static struct device_attribute devmouse_attr_scroll_led_rgb = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_scroll_led_rgb"));
static struct device_attribute devmouse_attr_scroll_led_state = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_scroll_led_state"));
static struct device_attribute devmouse_attr_matrix_effect_wave = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devmouse_attr_matrix_effect_wave"));
INITRAZERDRIVER init_razer_accessory_driver = reinterpret_cast<INITRAZERDRIVER>(GetProcAddress(module, "init_razer_accessory_driver"));
static struct device_attribute devaccessory_attr_device_type = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_device_type"));
static struct device_attribute devaccessory_attr_device_serial = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_device_serial"));
static struct device_attribute devaccessory_attr_firmware_version = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_firmware_version"));
static struct device_attribute devaccessory_attr_matrix_effect_custom = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_matrix_effect_custom"));
static struct device_attribute devaccessory_attr_matrix_custom_frame = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_matrix_custom_frame"));
static struct device_attribute devaccessory_attr_matrix_brightness = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_matrix_brightness"));
static struct device_attribute devaccessory_attr_matrix_effect_none = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_matrix_effect_none"));
static struct device_attribute devaccessory_attr_matrix_effect_static = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_matrix_effect_static"));
static struct device_attribute devaccessory_attr_matrix_effect_breath = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_matrix_effect_breath"));
static struct device_attribute devaccessory_attr_matrix_effect_spectrum = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_matrix_effect_spectrum"));
//static struct device_attribute devaccessory_attr_matrix_effect_reactive = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_matrix_effect_reactive"));
static struct device_attribute devaccessory_attr_matrix_effect_wave = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devaccessory_attr_matrix_effect_wave"));
INITRAZERDRIVER init_razer_kraken_driver = reinterpret_cast<INITRAZERDRIVER>(GetProcAddress(module, "init_razer_kraken_driver"));
static struct device_attribute devkraken_attr_device_type = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkraken_attr_device_type"));
static struct device_attribute devkraken_attr_device_serial = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkraken_attr_device_serial"));
static struct device_attribute devkraken_attr_firmware_version = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkraken_attr_firmware_version"));
static struct device_attribute devkraken_attr_matrix_effect_custom = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkraken_attr_matrix_effect_custom"));
//static struct device_attribute devkraken_attr_matrix_custom_frame = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkraken_attr_matrix_custom_frame"));
//static struct device_attribute devkraken_attr_matrix_brightness = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkraken_attr_matrix_brightness"));
static struct device_attribute devkraken_attr_matrix_effect_none = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkraken_attr_matrix_effect_none"));
static struct device_attribute devkraken_attr_matrix_effect_static = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkraken_attr_matrix_effect_static"));
static struct device_attribute devkraken_attr_matrix_effect_breath = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkraken_attr_matrix_effect_breath"));
static struct device_attribute devkraken_attr_matrix_effect_spectrum = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devkraken_attr_matrix_effect_spectrum"));
INITRAZERDRIVER init_razer_core_driver = reinterpret_cast<INITRAZERDRIVER>(GetProcAddress(module, "init_razer_core_driver"));
static struct device_attribute devcore_attr_device_type = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_device_type"));
static struct device_attribute devcore_attr_device_serial = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_device_serial"));
static struct device_attribute devcore_attr_firmware_version = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_firmware_version"));
static struct device_attribute devcore_attr_matrix_effect_custom = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_matrix_effect_custom"));
static struct device_attribute devcore_attr_matrix_custom_frame = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_matrix_custom_frame"));
static struct device_attribute devcore_attr_matrix_brightness = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_matrix_brightness"));
static struct device_attribute devcore_attr_matrix_effect_none = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_matrix_effect_none"));
static struct device_attribute devcore_attr_matrix_effect_static = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_matrix_effect_static"));
static struct device_attribute devcore_attr_matrix_effect_breath = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_matrix_effect_breath"));
static struct device_attribute devcore_attr_matrix_effect_spectrum = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_matrix_effect_spectrum"));
static struct device_attribute devcore_attr_matrix_effect_reactive = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_matrix_effect_reactive"));
static struct device_attribute devcore_attr_matrix_effect_wave = *(struct device_attribute*)reinterpret_cast<void*>(GetProcAddress(module, "devcore_attr_matrix_effect_wave"));
struct hid_device* hdev;
unsigned int num;
hdev = NULL;
num = init_razer_kbd_driver(&hdev);
for (unsigned int i = 0; i < num; i++)
{
device_fn_type* device_fn = new device_fn_type;
device_fn->device_type = &devkbd_attr_device_type;
device_fn->device_serial = &devkbd_attr_device_serial;
device_fn->firmware_version = &devkbd_attr_firmware_version;
device_fn->matrix_effect_custom = &devkbd_attr_matrix_effect_custom;
device_fn->matrix_custom_frame = &devkbd_attr_matrix_custom_frame;
device_fn->matrix_brightness = &devkbd_attr_matrix_brightness;
device_fn->matrix_effect_none = &devkbd_attr_matrix_effect_none;
device_fn->matrix_effect_static = &devkbd_attr_matrix_effect_static;
device_fn->matrix_effect_breath = &devkbd_attr_matrix_effect_breath;
device_fn->matrix_effect_spectrum = &devkbd_attr_matrix_effect_spectrum;
device_fn->matrix_effect_reactive = &devkbd_attr_matrix_effect_reactive;
device_fn->matrix_effect_wave = &devkbd_attr_matrix_effect_wave;
device_fn->logo_led_brightness = NULL;
device_fn->logo_matrix_effect_none = NULL;
device_fn->logo_matrix_effect_static = NULL;
device_fn->logo_matrix_effect_spectrum = NULL;
device_fn->logo_matrix_effect_reactive = NULL;
device_fn->scroll_led_brightness = NULL;
device_fn->scroll_matrix_effect_none = NULL;
device_fn->scroll_matrix_effect_static = NULL;
device_fn->scroll_matrix_effect_spectrum = NULL;
device_fn->scroll_matrix_effect_reactive = NULL;
device_fn->scroll_led_effect = NULL;
device_fn->scroll_led_rgb = NULL;
RGBController_OpenRazer * razer_rgb = new RGBController_OpenRazer(&hdev[i].dev, device_fn);
if(razer_rgb->device_index != -1)
{
rgb_controllers.push_back(razer_rgb);
}
else
{
delete razer_rgb;
}
}
hdev = NULL;
num = init_razer_mouse_driver(&hdev);
for (unsigned int i = 0; i < num; i++)
{
device_fn_type* device_fn = new device_fn_type;
device_fn->device_type = &devmouse_attr_device_type;
device_fn->device_serial = &devmouse_attr_device_serial;
device_fn->firmware_version = &devmouse_attr_firmware_version;
device_fn->matrix_effect_custom = &devmouse_attr_matrix_effect_custom;
device_fn->matrix_custom_frame = &devmouse_attr_matrix_custom_frame;
device_fn->matrix_brightness = &devmouse_attr_matrix_brightness;
device_fn->matrix_effect_none = &devmouse_attr_matrix_effect_none;
device_fn->matrix_effect_static = &devmouse_attr_matrix_effect_static;
device_fn->matrix_effect_breath = &devmouse_attr_matrix_effect_breath;
device_fn->matrix_effect_spectrum = &devmouse_attr_matrix_effect_spectrum;
device_fn->matrix_effect_reactive = &devmouse_attr_matrix_effect_reactive;
device_fn->matrix_effect_wave = &devmouse_attr_matrix_effect_wave;
device_fn->logo_led_brightness = NULL;
device_fn->logo_matrix_effect_none = NULL;
device_fn->logo_matrix_effect_static = NULL;
device_fn->logo_matrix_effect_spectrum = NULL;
device_fn->logo_matrix_effect_reactive = NULL;
device_fn->scroll_led_brightness = NULL;
device_fn->scroll_matrix_effect_none = NULL;
device_fn->scroll_matrix_effect_static = NULL;
device_fn->scroll_matrix_effect_spectrum = NULL;
device_fn->scroll_matrix_effect_reactive = NULL;
device_fn->scroll_led_effect = NULL;
device_fn->scroll_led_rgb = NULL;
RGBController_OpenRazer * razer_rgb = new RGBController_OpenRazer(&hdev[i].dev, device_fn);
if(razer_rgb->device_index != -1)
{
rgb_controllers.push_back(razer_rgb);
}
else
{
delete razer_rgb;
}
}
hdev = NULL;
num = init_razer_mousemat_driver(&hdev);
for (unsigned int i = 0; i < num; i++)
{
device_fn_type* device_fn = new device_fn_type;
device_fn->device_type = &devmousemat_attr_device_type;
device_fn->device_serial = &devmousemat_attr_device_serial;
device_fn->firmware_version = &devmousemat_attr_firmware_version;
device_fn->matrix_effect_custom = &devmousemat_attr_matrix_effect_custom;
device_fn->matrix_custom_frame = &devmousemat_attr_matrix_custom_frame;
device_fn->matrix_brightness = &devmousemat_attr_matrix_brightness;
device_fn->matrix_effect_none = &devmousemat_attr_matrix_effect_none;
device_fn->matrix_effect_static = &devmousemat_attr_matrix_effect_static;
device_fn->matrix_effect_breath = &devmousemat_attr_matrix_effect_breath;
device_fn->matrix_effect_spectrum = &devmousemat_attr_matrix_effect_spectrum;
device_fn->matrix_effect_reactive = &devmousemat_attr_matrix_effect_reactive;
device_fn->matrix_effect_wave = &devmousemat_attr_matrix_effect_wave;
device_fn->logo_led_brightness = NULL;
device_fn->logo_matrix_effect_none = NULL;
device_fn->logo_matrix_effect_static = NULL;
device_fn->logo_matrix_effect_spectrum = NULL;
device_fn->logo_matrix_effect_reactive = NULL;
device_fn->scroll_led_brightness = NULL;
device_fn->scroll_matrix_effect_none = NULL;
device_fn->scroll_matrix_effect_static = NULL;
device_fn->scroll_matrix_effect_spectrum = NULL;
device_fn->scroll_matrix_effect_reactive = NULL;
device_fn->scroll_led_effect = NULL;
device_fn->scroll_led_rgb = NULL;
RGBController_OpenRazer * razer_rgb = new RGBController_OpenRazer(&hdev[i].dev, device_fn);
if(razer_rgb->device_index != -1)
{
rgb_controllers.push_back(razer_rgb);
}
else
{
delete razer_rgb;
}
}
hdev = NULL;
num = init_razer_accessory_driver(&hdev);
for (unsigned int i = 0; i < num; i++)
{
device_fn_type* device_fn = new device_fn_type;
device_fn->device_type = &devaccessory_attr_device_type;
device_fn->device_serial = &devaccessory_attr_device_serial;
device_fn->firmware_version = &devaccessory_attr_firmware_version;
device_fn->matrix_effect_custom = &devaccessory_attr_matrix_effect_custom;
device_fn->matrix_custom_frame = &devaccessory_attr_matrix_custom_frame;
device_fn->matrix_brightness = &devaccessory_attr_matrix_brightness;
device_fn->matrix_effect_none = &devaccessory_attr_matrix_effect_none;
device_fn->matrix_effect_static = &devaccessory_attr_matrix_effect_static;
device_fn->matrix_effect_breath = &devaccessory_attr_matrix_effect_breath;
device_fn->matrix_effect_spectrum = &devaccessory_attr_matrix_effect_spectrum;
device_fn->matrix_effect_reactive = NULL;//&devaccessory_attr_matrix_effect_reactive;
device_fn->matrix_effect_wave = &devaccessory_attr_matrix_effect_wave;
device_fn->logo_led_brightness = NULL;
device_fn->logo_matrix_effect_none = NULL;
device_fn->logo_matrix_effect_static = NULL;
device_fn->logo_matrix_effect_spectrum = NULL;
device_fn->logo_matrix_effect_reactive = NULL;
device_fn->scroll_led_brightness = NULL;
device_fn->scroll_matrix_effect_none = NULL;
device_fn->scroll_matrix_effect_static = NULL;
device_fn->scroll_matrix_effect_spectrum = NULL;
device_fn->scroll_matrix_effect_reactive = NULL;
device_fn->scroll_led_effect = NULL;
device_fn->scroll_led_rgb = NULL;
RGBController_OpenRazer * razer_rgb = new RGBController_OpenRazer(&hdev[i].dev, device_fn);
if(razer_rgb->device_index != -1)
{
rgb_controllers.push_back(razer_rgb);
}
else
{
delete razer_rgb;
}
}
hdev = NULL;
num = init_razer_kraken_driver(&hdev);
for (unsigned int i = 0; i < num; i++)
{
device_fn_type* device_fn = new device_fn_type;
device_fn->device_type = &devkraken_attr_device_type;
device_fn->device_serial = &devkraken_attr_device_serial;
device_fn->firmware_version = &devkraken_attr_firmware_version;
device_fn->matrix_effect_custom = &devkraken_attr_matrix_effect_custom;
device_fn->matrix_custom_frame = NULL;//&devkraken_attr_matrix_custom_frame;
device_fn->matrix_brightness = NULL;//&devkraken_attr_matrix_brightness;
device_fn->matrix_effect_none = &devkraken_attr_matrix_effect_none;
device_fn->matrix_effect_static = &devkraken_attr_matrix_effect_static;
device_fn->matrix_effect_breath = &devkraken_attr_matrix_effect_breath;
device_fn->matrix_effect_spectrum = &devkraken_attr_matrix_effect_spectrum;
device_fn->matrix_effect_reactive = NULL;//&devkraken_attr_matrix_effect_reactive;
device_fn->matrix_effect_wave = NULL;//&devkraken_attr_matrix_effect_wave;
device_fn->logo_led_brightness = NULL;
device_fn->logo_matrix_effect_none = NULL;
device_fn->logo_matrix_effect_static = NULL;
device_fn->logo_matrix_effect_spectrum = NULL;
device_fn->logo_matrix_effect_reactive = NULL;
device_fn->scroll_led_brightness = NULL;
device_fn->scroll_matrix_effect_none = NULL;
device_fn->scroll_matrix_effect_static = NULL;
device_fn->scroll_matrix_effect_spectrum = NULL;
device_fn->scroll_matrix_effect_reactive = NULL;
device_fn->scroll_led_effect = NULL;
device_fn->scroll_led_rgb = NULL;
RGBController_OpenRazer * razer_rgb = new RGBController_OpenRazer(&hdev[i].dev, device_fn);
if(razer_rgb->device_index != -1)
{
rgb_controllers.push_back(razer_rgb);
}
else
{
delete razer_rgb;
}
}
hdev = NULL;
num = init_razer_core_driver(&hdev);
for (unsigned int i = 0; i < num; i++)
{
device_fn_type* device_fn = new device_fn_type;
device_fn->device_type = &devcore_attr_device_type;
device_fn->device_serial = &devcore_attr_device_serial;
device_fn->firmware_version = &devcore_attr_firmware_version;
device_fn->matrix_effect_custom = &devcore_attr_matrix_effect_custom;
device_fn->matrix_custom_frame = &devcore_attr_matrix_custom_frame;
device_fn->matrix_brightness = &devcore_attr_matrix_brightness;
device_fn->matrix_effect_none = &devcore_attr_matrix_effect_none;
device_fn->matrix_effect_static = &devcore_attr_matrix_effect_static;
device_fn->matrix_effect_breath = &devcore_attr_matrix_effect_breath;
device_fn->matrix_effect_spectrum = &devcore_attr_matrix_effect_spectrum;
device_fn->matrix_effect_reactive = &devcore_attr_matrix_effect_reactive;
device_fn->matrix_effect_wave = &devcore_attr_matrix_effect_wave;
device_fn->logo_led_brightness = NULL;
device_fn->logo_matrix_effect_none = NULL;
device_fn->logo_matrix_effect_static = NULL;
device_fn->logo_matrix_effect_spectrum = NULL;
device_fn->logo_matrix_effect_reactive = NULL;
device_fn->scroll_led_brightness = NULL;
device_fn->scroll_matrix_effect_none = NULL;
device_fn->scroll_matrix_effect_static = NULL;
device_fn->scroll_matrix_effect_spectrum = NULL;
device_fn->scroll_matrix_effect_reactive = NULL;
device_fn->scroll_led_effect = NULL;
device_fn->scroll_led_rgb = NULL;
RGBController_OpenRazer * razer_rgb = new RGBController_OpenRazer(&hdev[i].dev, device_fn);
if(razer_rgb->device_index != -1)
{
rgb_controllers.push_back(razer_rgb);
}
else
{
delete razer_rgb;
}
}
} /* DetectOpenRazerControllers() */
+684 -1
View File
@@ -1,4 +1,660 @@
#include "RGBController.h"
#include <cstring>
unsigned char * RGBController::GetDeviceDescription()
{
unsigned int data_ptr = 0;
unsigned int data_size = 0;
/*---------------------------------------------------------*\
| Calculate data size |
\*---------------------------------------------------------*/
unsigned short name_len = strlen(name.c_str()) + 1;
unsigned short description_len = strlen(description.c_str()) + 1;
unsigned short version_len = strlen(version.c_str()) + 1;
unsigned short serial_len = strlen(serial.c_str()) + 1;
unsigned short location_len = strlen(location.c_str()) + 1;
unsigned short num_modes = modes.size();
unsigned short num_zones = zones.size();
unsigned short num_leds = leds.size();
unsigned short num_colors = colors.size();
unsigned short *mode_name_len = new unsigned short[num_modes];
unsigned short *zone_name_len = new unsigned short[num_zones];
unsigned short *led_name_len = new unsigned short[num_leds];
unsigned short *mode_num_colors = new unsigned short[num_modes];
unsigned short *zone_map_rows = new unsigned short[num_zones];
data_size += sizeof(data_size);
data_size += sizeof(device_type);
data_size += name_len + sizeof(name_len);
data_size += description_len + sizeof(description_len);
data_size += version_len + sizeof(version_len);
data_size += serial_len + sizeof(serial_len);
data_size += location_len + sizeof(location_len);
data_size += sizeof(num_modes);
data_size += sizeof(active_mode);
for(int mode_index = 0; mode_index < num_modes; mode_index++)
{
mode_name_len[mode_index] = strlen(modes[mode_index].name.c_str()) + 1;
mode_num_colors[mode_index] = modes[mode_index].colors.size();
data_size += mode_name_len[mode_index] + sizeof(mode_name_len[mode_index]);
data_size += sizeof(modes[mode_index].value);
data_size += sizeof(modes[mode_index].flags);
data_size += sizeof(modes[mode_index].speed_min);
data_size += sizeof(modes[mode_index].speed_max);
data_size += sizeof(modes[mode_index].colors_min);
data_size += sizeof(modes[mode_index].colors_max);
data_size += sizeof(modes[mode_index].speed);
data_size += sizeof(modes[mode_index].direction);
data_size += sizeof(modes[mode_index].color_mode);
data_size += sizeof(mode_num_colors[mode_index]);
data_size += (mode_num_colors[mode_index] * sizeof(RGBColor));
}
data_size += sizeof(num_zones);
for(int zone_index = 0; zone_index < num_zones; zone_index++)
{
zone_name_len[zone_index] = strlen(zones[zone_index].name.c_str()) + 1;
zone_map_rows[zone_index] = zones[zone_index].map.size();
data_size += zone_name_len[zone_index] + sizeof(zone_name_len[zone_index]);
data_size += sizeof(zones[zone_index].type);
data_size += sizeof(zone_map_rows[zone_index]);
for(int row_index = 0; row_index < zone_map_rows[zone_index]; row_index++)
{
data_size += sizeof(unsigned short);
for(int row_led_index = 0; row_led_index < zones[zone_index].map[row_index].size(); row_led_index++)
{
data_size += sizeof(int);
}
}
}
data_size += sizeof(num_leds);
for(int led_index = 0; led_index < num_leds; led_index++)
{
led_name_len[led_index] = strlen(leds[led_index].name.c_str()) + 1;
data_size += led_name_len[led_index] + sizeof(led_name_len[led_index]);
}
data_size += sizeof(num_colors);
data_size += num_colors * sizeof(RGBColor);
/*---------------------------------------------------------*\
| Create data buffer |
\*---------------------------------------------------------*/
unsigned char *data_buf = new unsigned char[data_size];
/*---------------------------------------------------------*\
| Copy in data size |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &data_size, sizeof(data_size));
data_ptr += sizeof(data_size);
/*---------------------------------------------------------*\
| Copy in type |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &type, sizeof(device_type));
data_ptr += sizeof(device_type);
/*---------------------------------------------------------*\
| Copy in name (size+data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &name_len, sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
strcpy((char *)&data_buf[data_ptr], name.c_str());
data_ptr += name_len;
/*---------------------------------------------------------*\
| Copy in description (size+data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &description_len, sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
strcpy((char *)&data_buf[data_ptr], description.c_str());
data_ptr += description_len;
/*---------------------------------------------------------*\
| Copy in version (size+data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &version_len, sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
strcpy((char *)&data_buf[data_ptr], version.c_str());
data_ptr += version_len;
/*---------------------------------------------------------*\
| Copy in serial (size+data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &serial_len, sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
strcpy((char *)&data_buf[data_ptr], serial.c_str());
data_ptr += serial_len;
/*---------------------------------------------------------*\
| Copy in location (size+data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &location_len, sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
strcpy((char *)&data_buf[data_ptr], location.c_str());
data_ptr += location_len;
/*---------------------------------------------------------*\
| Copy in number of modes (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &num_modes, sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in active mode (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &active_mode, sizeof(active_mode));
data_ptr += sizeof(active_mode);
/*---------------------------------------------------------*\
| Copy in modes |
\*---------------------------------------------------------*/
for(int mode_index = 0; mode_index < num_modes; mode_index++)
{
/*---------------------------------------------------------*\
| Copy in mode name (size+data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &mode_name_len[mode_index], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
strcpy((char *)&data_buf[data_ptr], modes[mode_index].name.c_str());
data_ptr += mode_name_len[mode_index];
/*---------------------------------------------------------*\
| Copy in mode value (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &modes[mode_index].value, sizeof(modes[mode_index].value));
data_ptr += sizeof(modes[mode_index].value);
/*---------------------------------------------------------*\
| Copy in mode flags (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &modes[mode_index].flags, sizeof(modes[mode_index].flags));
data_ptr += sizeof(modes[mode_index].flags);
/*---------------------------------------------------------*\
| Copy in mode speed_min (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &modes[mode_index].speed_min, sizeof(modes[mode_index].speed_min));
data_ptr += sizeof(modes[mode_index].speed_min);
/*---------------------------------------------------------*\
| Copy in mode speed_max (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &modes[mode_index].speed_max, sizeof(modes[mode_index].speed_max));
data_ptr += sizeof(modes[mode_index].speed_max);
/*---------------------------------------------------------*\
| Copy in mode colors_min (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &modes[mode_index].colors_min, sizeof(modes[mode_index].colors_min));
data_ptr += sizeof(modes[mode_index].colors_min);
/*---------------------------------------------------------*\
| Copy in mode colors_max (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &modes[mode_index].colors_max, sizeof(modes[mode_index].colors_max));
data_ptr += sizeof(modes[mode_index].colors_max);
/*---------------------------------------------------------*\
| Copy in mode speed (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &modes[mode_index].speed, sizeof(modes[mode_index].speed));
data_ptr += sizeof(modes[mode_index].speed);
/*---------------------------------------------------------*\
| Copy in mode direction (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &modes[mode_index].direction, sizeof(modes[mode_index].direction));
data_ptr += sizeof(modes[mode_index].direction);
/*---------------------------------------------------------*\
| Copy in mode color_mode (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &modes[mode_index].color_mode, sizeof(modes[mode_index].color_mode));
data_ptr += sizeof(modes[mode_index].color_mode);
/*---------------------------------------------------------*\
| Copy in mode number of colors |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &mode_num_colors[mode_index], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in mode mode colors |
\*---------------------------------------------------------*/
for(int color_index = 0; color_index < mode_num_colors[mode_index]; color_index++)
{
/*---------------------------------------------------------*\
| Copy in color (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &modes[mode_index].colors[color_index], sizeof(modes[mode_index].colors[color_index]));
data_ptr += sizeof(modes[mode_index].colors[color_index]);
}
}
/*---------------------------------------------------------*\
| Copy in number of zones (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &num_zones, sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in zones |
\*---------------------------------------------------------*/
for(int zone_index = 0; zone_index < num_zones; zone_index++)
{
/*---------------------------------------------------------*\
| Copy in zone name (size+data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &zone_name_len[zone_index], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
strcpy((char *)&data_buf[data_ptr], zones[zone_index].name.c_str());
data_ptr += zone_name_len[zone_index];
/*---------------------------------------------------------*\
| Copy in zone type (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &zones[zone_index].type, sizeof(zones[zone_index].type));
data_ptr += sizeof(zones[zone_index].type);
/*---------------------------------------------------------*\
| Copy in zone map number of rows |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &zone_map_rows[zone_index], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in rows |
\*---------------------------------------------------------*/
for(int row_index = 0; row_index < zone_map_rows[zone_index]; row_index++)
{
/*---------------------------------------------------------*\
| Copy row size |
\*---------------------------------------------------------*/
unsigned short zone_map_row_size = zones[zone_index].map[row_index].size();
memcpy(&data_buf[data_ptr], &zone_map_row_size, sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in row LEDs |
\*---------------------------------------------------------*/
for(int row_led_index = 0; row_led_index < zone_map_row_size; row_led_index++)
{
/*---------------------------------------------------------*\
| Copy row size |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &zones[zone_index].map[row_index][row_led_index], sizeof(zones[zone_index].map[row_index][row_led_index]));
data_ptr += sizeof(zones[zone_index].map[row_index][row_led_index]);
}
}
}
/*---------------------------------------------------------*\
| Copy in number of LEDs (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &num_leds, sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in LEDs |
\*---------------------------------------------------------*/
for(int led_index = 0; led_index < num_leds; led_index++)
{
/*---------------------------------------------------------*\
| Copy in LED name (size+data) |
\*---------------------------------------------------------*/
unsigned short ledname_len = strlen(leds[led_index].name.c_str()) + 1;
memcpy(&data_buf[data_ptr], &ledname_len, sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
strcpy((char *)&data_buf[data_ptr], leds[led_index].name.c_str());
data_ptr += ledname_len;
}
/*---------------------------------------------------------*\
| Copy in number of colors (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &num_colors, sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in colors |
\*---------------------------------------------------------*/
for(int color_index = 0; color_index < num_colors; color_index++)
{
/*---------------------------------------------------------*\
| Copy in color (data) |
\*---------------------------------------------------------*/
memcpy(&data_buf[data_ptr], &colors[color_index], sizeof(colors[color_index]));
data_ptr += sizeof(colors[color_index]);
}
delete[] mode_name_len;
delete[] zone_name_len;
delete[] led_name_len;
delete[] mode_num_colors;
delete[] zone_map_rows;
return(data_buf);
}
void RGBController::ReadDeviceDescription(unsigned char* data_buf)
{
unsigned int data_ptr = 0;
data_ptr += sizeof(unsigned int);
/*---------------------------------------------------------*\
| Copy in type |
\*---------------------------------------------------------*/
memcpy(&type, &data_buf[data_ptr], sizeof(device_type));
data_ptr += sizeof(device_type);
/*---------------------------------------------------------*\
| Copy in name |
\*---------------------------------------------------------*/
unsigned short name_len;
memcpy(&name_len, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
name = (char *)&data_buf[data_ptr];
data_ptr += name_len;
/*---------------------------------------------------------*\
| Copy in description |
\*---------------------------------------------------------*/
unsigned short description_len;
memcpy(&description_len, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
description = (char *)&data_buf[data_ptr];
data_ptr += description_len;
/*---------------------------------------------------------*\
| Copy in version |
\*---------------------------------------------------------*/
unsigned short version_len;
memcpy(&version_len, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
version = (char *)&data_buf[data_ptr];
data_ptr += version_len;
/*---------------------------------------------------------*\
| Copy in serial |
\*---------------------------------------------------------*/
unsigned short serial_len;
memcpy(&serial_len, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
serial = (char *)&data_buf[data_ptr];
data_ptr += serial_len;
/*---------------------------------------------------------*\
| Copy in location |
\*---------------------------------------------------------*/
unsigned short location_len;
memcpy(&location_len, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
location = (char *)&data_buf[data_ptr];
data_ptr += location_len;
/*---------------------------------------------------------*\
| Copy in number of modes (data) |
\*---------------------------------------------------------*/
unsigned short num_modes;
memcpy(&num_modes, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in active mode (data) |
\*---------------------------------------------------------*/
memcpy(&active_mode, &data_buf[data_ptr], sizeof(active_mode));
data_ptr += sizeof(active_mode);
/*---------------------------------------------------------*\
| Copy in modes |
\*---------------------------------------------------------*/
for(int mode_index = 0; mode_index < num_modes; mode_index++)
{
mode new_mode;
/*---------------------------------------------------------*\
| Copy in mode name (size+data) |
\*---------------------------------------------------------*/
unsigned short modename_len;
memcpy(&modename_len, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
new_mode.name = (char *)&data_buf[data_ptr];
data_ptr += modename_len;
/*---------------------------------------------------------*\
| Copy in mode value (data) |
\*---------------------------------------------------------*/
memcpy(&new_mode.value, &data_buf[data_ptr], sizeof(new_mode.value));
data_ptr += sizeof(new_mode.value);
/*---------------------------------------------------------*\
| Copy in mode flags (data) |
\*---------------------------------------------------------*/
memcpy(&new_mode.flags, &data_buf[data_ptr], sizeof(new_mode.flags));
data_ptr += sizeof(new_mode.flags);
/*---------------------------------------------------------*\
| Copy in mode speed_min (data) |
\*---------------------------------------------------------*/
memcpy(&new_mode.speed_min, &data_buf[data_ptr], sizeof(new_mode.speed_min));
data_ptr += sizeof(new_mode.speed_min);
/*---------------------------------------------------------*\
| Copy in mode speed_max (data) |
\*---------------------------------------------------------*/
memcpy(&new_mode.speed_max, &data_buf[data_ptr], sizeof(new_mode.speed_max));
data_ptr += sizeof(new_mode.speed_max);
/*---------------------------------------------------------*\
| Copy in mode colors_min (data) |
\*---------------------------------------------------------*/
memcpy(&new_mode.colors_min, &data_buf[data_ptr], sizeof(new_mode.colors_min));
data_ptr += sizeof(new_mode.colors_min);
/*---------------------------------------------------------*\
| Copy in mode colors_max (data) |
\*---------------------------------------------------------*/
memcpy(&new_mode.colors_max, &data_buf[data_ptr], sizeof(new_mode.colors_max));
data_ptr += sizeof(new_mode.colors_max);
/*---------------------------------------------------------*\
| Copy in mode speed (data) |
\*---------------------------------------------------------*/
memcpy(&new_mode.speed, &data_buf[data_ptr], sizeof(new_mode.speed));
data_ptr += sizeof(new_mode.speed);
/*---------------------------------------------------------*\
| Copy in mode direction (data) |
\*---------------------------------------------------------*/
memcpy(&new_mode.direction, &data_buf[data_ptr], sizeof(new_mode.direction));
data_ptr += sizeof(new_mode.direction);
/*---------------------------------------------------------*\
| Copy in mode color_mode (data) |
\*---------------------------------------------------------*/
memcpy(&new_mode.color_mode, &data_buf[data_ptr], sizeof(new_mode.color_mode));
data_ptr += sizeof(new_mode.color_mode);
/*---------------------------------------------------------*\
| Copy in mode number of colors |
\*---------------------------------------------------------*/
unsigned short mode_num_colors;
memcpy(&mode_num_colors, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in mode mode colors |
\*---------------------------------------------------------*/
for(int color_index = 0; color_index < mode_num_colors; color_index++)
{
/*---------------------------------------------------------*\
| Copy in color (data) |
\*---------------------------------------------------------*/
RGBColor new_color;
memcpy(&new_color, &data_buf[data_ptr], sizeof(RGBColor));
data_ptr += sizeof(modes[mode_index].colors[color_index]);
new_mode.colors.push_back(new_color);
}
modes.push_back(new_mode);
}
/*---------------------------------------------------------*\
| Copy in number of zones (data) |
\*---------------------------------------------------------*/
unsigned short num_zones;
memcpy(&num_zones, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in zones |
\*---------------------------------------------------------*/
for(int zone_index = 0; zone_index < num_zones; zone_index++)
{
zone new_zone;
/*---------------------------------------------------------*\
| Copy in zone name (size+data) |
\*---------------------------------------------------------*/
unsigned short zonename_len;
memcpy(&zonename_len, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
new_zone.name = (char *)&data_buf[data_ptr];
data_ptr += zonename_len;
/*---------------------------------------------------------*\
| Copy in zone type (data) |
\*---------------------------------------------------------*/
memcpy(&new_zone.type, &data_buf[data_ptr], sizeof(new_zone.type));
data_ptr += sizeof(new_zone.type);
/*---------------------------------------------------------*\
| Copy in zone map number of rows |
\*---------------------------------------------------------*/
unsigned short zone_map_rows;
memcpy(&zone_map_rows, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in rows |
\*---------------------------------------------------------*/
for(int row_index = 0; row_index < zone_map_rows; row_index++)
{
std::vector<int> new_zone_map_row;
/*---------------------------------------------------------*\
| Copy row size |
\*---------------------------------------------------------*/
unsigned short zone_map_row_size;
memcpy(&zone_map_row_size, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in row LEDs |
\*---------------------------------------------------------*/
for(int row_led_index = 0; row_led_index < zone_map_row_size; row_led_index++)
{
int new_index;
/*---------------------------------------------------------*\
| Copy row size |
\*---------------------------------------------------------*/
memcpy(&new_index, &data_buf[data_ptr], sizeof(int));
data_ptr += sizeof(int);
new_zone_map_row.push_back(new_index);
}
new_zone.map.push_back(new_zone_map_row);
}
zones.push_back(new_zone);
}
/*---------------------------------------------------------*\
| Copy in number of LEDs (data) |
\*---------------------------------------------------------*/
unsigned short num_leds;
memcpy(&num_leds, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in LEDs |
\*---------------------------------------------------------*/
for(int led_index = 0; led_index < num_leds; led_index++)
{
led new_led;
/*---------------------------------------------------------*\
| Copy in LED name (size+data) |
\*---------------------------------------------------------*/
unsigned short ledname_len;
memcpy(&ledname_len, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
new_led.name = (char *)&data_buf[data_ptr];
data_ptr += ledname_len;
leds.push_back(new_led);
}
/*---------------------------------------------------------*\
| Copy in number of colors (data) |
\*---------------------------------------------------------*/
unsigned short num_colors;
memcpy(&num_colors, &data_buf[data_ptr], sizeof(unsigned short));
data_ptr += sizeof(unsigned short);
/*---------------------------------------------------------*\
| Copy in colors |
\*---------------------------------------------------------*/
for(int color_index = 0; color_index < num_colors; color_index++)
{
RGBColor new_color;
/*---------------------------------------------------------*\
| Copy in color (data) |
\*---------------------------------------------------------*/
memcpy(&new_color, &data_buf[data_ptr], sizeof(RGBColor));
data_ptr += sizeof(RGBColor);
colors.push_back(new_color);
}
}
RGBColor RGBController::GetLED(int led)
{
@@ -55,4 +711,31 @@ void RGBController::SetMode(int mode)
active_mode = mode;
UpdateMode();
}
}
std::string device_type_to_str(device_type type)
{
switch(type)
{
case DEVICE_TYPE_MOTHERBOARD:
return "Motherboard";
case DEVICE_TYPE_DRAM:
return "DRAM";
case DEVICE_TYPE_GPU:
return "GPU";
case DEVICE_TYPE_COOLER:
return "Cooler";
case DEVICE_TYPE_LEDSTRIP:
return "LED Strip";
case DEVICE_TYPE_KEYBOARD:
return "Keyboard";
case DEVICE_TYPE_MOUSE:
return "Mouse";
case DEVICE_TYPE_MOUSEMAT:
return "Mousemat";
case DEVICE_TYPE_HEADSET:
return "Headset";
default:
return "Unknown";
}
}
+26 -9
View File
@@ -25,14 +25,14 @@ typedef unsigned int RGBColor;
\*------------------------------------------------------------------*/
enum
{
MODE_FLAG_HAS_SPEED = (1 << 0), /* Mode has speed parameter */
MODE_FLAG_HAS_DIRECTION_LR = (1 << 1), /* Mode has left/right parameter */
MODE_FLAG_HAS_DIRECTION_UD = (1 << 2), /* Mode has up/down parameter */
MODE_FLAG_HAS_DIRECTION_HV = (1 << 3), /* Mode has horiz/vert parameter */
MODE_FLAG_HAS_BRIGHTNESS = (1 << 4), /* Mode has brightness parameter */
MODE_FLAG_HAS_COLOR = (1 << 5), /* Mode has custom color parameter */
MODE_FLAG_RANDOM_COLOR = (1 << 6), /* Mode has random color option */
MODE_FLAG_PER_LED_COLOR = (1 << 7), /* Mode uses device LED colors */
MODE_FLAG_HAS_SPEED = (1 << 0), /* Mode has speed parameter */
MODE_FLAG_HAS_DIRECTION_LR = (1 << 1), /* Mode has left/right parameter */
MODE_FLAG_HAS_DIRECTION_UD = (1 << 2), /* Mode has up/down parameter */
MODE_FLAG_HAS_DIRECTION_HV = (1 << 3), /* Mode has horiz/vert parameter */
MODE_FLAG_HAS_BRIGHTNESS = (1 << 4), /* Mode has brightness parameter */
MODE_FLAG_HAS_PER_LED_COLOR = (1 << 5), /* Mode has per-LED colors */
MODE_FLAG_HAS_MODE_SPECIFIC_COLOR = (1 << 6), /* Mode has mode specific colors */
MODE_FLAG_HAS_RANDOM_COLOR = (1 << 7), /* Mode has random color option */
};
/*------------------------------------------------------------------*\
@@ -48,6 +48,14 @@ enum
MODE_DIRECTION_VERTICAL = 5, /* Mode direction vertical */
};
enum
{
MODE_COLORS_NONE = 0, /* Mode has no colors */
MODE_COLORS_PER_LED = 1, /* Mode has per LED colors selected */
MODE_COLORS_MODE_SPECIFIC = 2, /* Mode specific colors selected */
MODE_COLORS_RANDOM = 3, /* Mode has random colors selected */
};
/*------------------------------------------------------------------*\
| Mode Type |
\*------------------------------------------------------------------*/
@@ -61,13 +69,17 @@ typedef struct
unsigned int flags; /* Mode flags bitfield */
unsigned int speed_min; /* speed minimum value */
unsigned int speed_max; /* speed maximum value */
unsigned int colors_min; /* minimum number of mode colors*/
unsigned int colors_max; /* maximum numver of mode colors*/
/*--------------------------------------------------------------*\
| Mode Settings |
\*--------------------------------------------------------------*/
unsigned int speed; /* Mode speed parameter value */
unsigned int direction; /* Mode direction value */
bool random; /* Random color mode enabled */
unsigned int color_mode; /* Mode color selection */
std::vector<RGBColor>
colors; /* mode-specific colors */
} mode;
typedef struct
@@ -100,6 +112,8 @@ enum
DEVICE_TYPE_UNKNOWN
};
std::string device_type_to_str(device_type type);
typedef struct
{
std::string name; /* Zone name */
@@ -136,6 +150,9 @@ public:
int GetMode();
void SetMode(int mode);
unsigned char * GetDeviceDescription();
void ReadDeviceDescription(unsigned char* data_buf);
/*---------------------------------------------------------*\
| Functions to be implemented in device implementation |
\*---------------------------------------------------------*/
+60 -58
View File
@@ -18,70 +18,70 @@ RGBController_AMDWraithPrism::RGBController_AMDWraithPrism(AMDWraithPrismControl
version = wraith->GetFirmwareVersionString();
mode Static;
Static.name = "Static";
Static.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_STATIC;
Static.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Static.random = false;
Static.name = "Static";
Static.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR | MODE_FLAG_RANDOM_COLOR;
Breathing.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Breathing.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Breathing.random = false;
Breathing.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
Breathing.name = "Breathing";
Breathing.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Breathing.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Breathing.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Breathing.color_mode = MODE_COLORS_PER_LED;
Breathing.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(Breathing);
mode ColorCycle;
ColorCycle.name = "Color Cycle";
ColorCycle.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_COLOR_CYCLE;
ColorCycle.flags = MODE_FLAG_HAS_SPEED;
ColorCycle.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
ColorCycle.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
ColorCycle.random = false;
ColorCycle.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
ColorCycle.name = "Color Cycle";
ColorCycle.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_COLOR_CYCLE;
ColorCycle.flags = MODE_FLAG_HAS_SPEED;
ColorCycle.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
ColorCycle.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
ColorCycle.color_mode = MODE_COLORS_NONE;
ColorCycle.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(ColorCycle);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Rainbow.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Rainbow.random = false;
Rainbow.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
Rainbow.name = "Rainbow";
Rainbow.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Rainbow.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Rainbow.color_mode = MODE_COLORS_NONE;
Rainbow.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(Rainbow);
mode Bounce;
Bounce.name = "Bounce";
Bounce.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_BOUNCE;
Bounce.flags = MODE_FLAG_HAS_SPEED;
Bounce.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Bounce.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Bounce.random = true;
Bounce.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
Bounce.name = "Bounce";
Bounce.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_BOUNCE;
Bounce.flags = MODE_FLAG_HAS_SPEED;
Bounce.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Bounce.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Bounce.color_mode = MODE_COLORS_NONE;
Bounce.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(Bounce);
mode Chase;
Chase.name = "Chase";
Chase.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_CHASE;
Chase.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR | MODE_FLAG_RANDOM_COLOR;
Chase.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Chase.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Chase.random = false;
Chase.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
Chase.name = "Chase";
Chase.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_CHASE;
Chase.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Chase.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Chase.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Chase.color_mode = MODE_COLORS_PER_LED;
Chase.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(Chase);
mode Swirl;
Swirl.name = "Swirl";
Swirl.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_SWIRL;
Swirl.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR | MODE_FLAG_RANDOM_COLOR;
Swirl.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Swirl.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Swirl.random = false;
Swirl.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
Swirl.name = "Swirl";
Swirl.value = AMD_WRAITH_PRISM_EFFECT_CHANNEL_SWIRL;
Swirl.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Swirl.speed_min = AMD_WRAITH_PRISM_SPEED_SLOWEST;
Swirl.speed_max = AMD_WRAITH_PRISM_SPEED_FASTEST;
Swirl.color_mode = MODE_COLORS_PER_LED;
Swirl.speed = AMD_WRAITH_PRISM_SPEED_NORMAL;
modes.push_back(Swirl);
led logo_led;
@@ -175,40 +175,42 @@ void RGBController_AMDWraithPrism::UpdateSingleLED(int led)
void RGBController_AMDWraithPrism::SetCustomMode()
{
SetMode(0);
active_mode = 0;
}
void RGBController_AMDWraithPrism::UpdateMode()
{
wraith->SetRingMode(modes[active_mode].value, modes[active_mode].speed, modes[active_mode].direction, modes[active_mode].random);
bool random = (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
wraith->SetRingMode(modes[active_mode].value, modes[active_mode].speed, modes[active_mode].direction, random);
switch(modes[active_mode].value)
{
case AMD_WRAITH_PRISM_EFFECT_CHANNEL_COLOR_CYCLE:
case AMD_WRAITH_PRISM_EFFECT_CHANNEL_RAINBOW:
case AMD_WRAITH_PRISM_EFFECT_CHANNEL_BOUNCE:
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, modes[active_mode].random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, modes[active_mode].random);
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, random);
break;
case AMD_WRAITH_PRISM_EFFECT_CHANNEL_BREATHING:
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_BREATHING, modes[active_mode].speed, modes[active_mode].random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_BREATHING, modes[active_mode].speed, modes[active_mode].random);
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_BREATHING, modes[active_mode].speed, random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_BREATHING, modes[active_mode].speed, random);
break;
default:
if(modes[active_mode].random)
if(random)
{
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, modes[active_mode].random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, modes[active_mode].random);
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_COLOR_CYCLE, modes[active_mode].speed, random);
}
else
{
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC, modes[active_mode].speed, modes[active_mode].random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC, modes[active_mode].speed, modes[active_mode].random);
wraith->SetFanMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC, modes[active_mode].speed, random);
wraith->SetLogoMode(AMD_WRAITH_PRISM_FAN_LOGO_MODE_STATIC, modes[active_mode].speed, random);
}
break;
}
UpdateLEDs();
}
}
-83
View File
@@ -1,83 +0,0 @@
/*-----------------------------------------*\
| RGBController_AorusGPU.cpp |
| |
| Generic RGB Interface for OpenAuraSDK |
| Aorus GPU |
| |
| Adam Honse (CalcProgrammer1) 6/17/2019 |
\*-----------------------------------------*/
#include "RGBController_AorusGPU.h"
#include <Windows.h>
static HMODULE handle;
static unsigned char data[] = { 0x8E, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x40, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x04, 0x00, 0x00, 0x00,
0x64, 0x00, 0x00, 0x00,
0x01, 0x00, 0x00, 0x00 };
void RGBController_AorusGPU::UpdateLEDs()
{
RGBColor color = colors[0];
data[9] = RGBGetRValue(color);
data[10] = RGBGetGValue(color);
data[11] = RGBGetBValue(color);
GvWriteI2C(0x00000000, data, 0x00000000);
}
void RGBController_AorusGPU::UpdateZoneLEDs(int zone)
{
UpdateLEDs();
}
void RGBController_AorusGPU::UpdateSingleLED(int led)
{
UpdateLEDs();
}
RGBController_AorusGPU::RGBController_AorusGPU()
{
name = "Aorus GPU";
type = DEVICE_TYPE_GPU;
handle = LoadLibrary("GvDisplay.dll");
GvWriteI2C = (_GvWriteI2C)GetProcAddress(handle, "GvWriteI2C");
GvFreeDispLib = (_GvFreeDispLib)GetProcAddress(handle, "GvFreeDispLib");
GvInitDispLib = (_GvInitDispLib)GetProcAddress(handle, "GvInitDispLib");
GvFreeDispLib();
GvInitDispLib();
colors.push_back(0x00000000);
mode aorus_mode;
aorus_mode.name = "Static";
modes.push_back(aorus_mode);
led aorus_led;
aorus_led.name = "GPU LED";
leds.push_back(aorus_led);
zone aorus_zone;
aorus_zone.name = "GPU LED";
std::vector<int> aorus_zone_map;
aorus_zone_map.push_back(0);
aorus_zone.map.push_back(aorus_zone_map);
zones.push_back(aorus_zone);
}
void RGBController_AorusGPU::SetCustomMode()
{
}
void RGBController_AorusGPU::UpdateMode()
{
}
-33
View File
@@ -1,33 +0,0 @@
/*-----------------------------------------*\
| RGBController_AorusGPU.h |
| |
| Generic RGB Interface for OpenAuraSDK |
| Aorus GPU |
| |
| Adam Honse (CalcProgrammer1) 6/17/2019 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
typedef unsigned int uint32;
typedef uint32(*_GvWriteI2C)(uint32, void*, uint32);
typedef void (*_GvFreeDispLib)();
typedef void (*_GvInitDispLib)();
class RGBController_AorusGPU : public RGBController
{
public:
RGBController_AorusGPU();
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void UpdateMode();
private:
_GvWriteI2C GvWriteI2C;
_GvFreeDispLib GvFreeDispLib;
_GvInitDispLib GvInitDispLib;
};
+73 -55
View File
@@ -11,38 +11,45 @@
int RGBController_Aura::GetDeviceMode()
{
int dev_mode = aura->AuraRegisterRead(AURA_REG_MODE);
bool random = false;
switch(dev_mode)
{
case AURA_MODE_SPECTRUM_CYCLE_CHASE:
dev_mode = AURA_MODE_CHASE;
random = true;
break;
case AURA_MODE_SPECTRUM_CYCLE_BREATHING:
dev_mode = AURA_MODE_BREATHING;
random = true;
break;
case AURA_MODE_SPECTRUM_CYCLE_CHASE_FADE:
dev_mode = AURA_MODE_CHASE_FADE;
random = true;
break;
}
int dev_mode = aura->AuraRegisterRead(AURA_REG_MODE);
int color_mode = MODE_COLORS_PER_LED;
if (aura->AuraRegisterRead(AURA_REG_DIRECT))
{
dev_mode = 0xFFFF;
}
switch(dev_mode)
{
case AURA_MODE_OFF:
case AURA_MODE_RAINBOW:
case AURA_MODE_SPECTRUM_CYCLE:
case AURA_MODE_RANDOM_FLICKER:
color_mode = MODE_COLORS_NONE;
break;
case AURA_MODE_SPECTRUM_CYCLE_CHASE:
dev_mode = AURA_MODE_CHASE;
color_mode = MODE_COLORS_RANDOM;
break;
case AURA_MODE_SPECTRUM_CYCLE_BREATHING:
dev_mode = AURA_MODE_BREATHING;
color_mode = MODE_COLORS_RANDOM;
break;
case AURA_MODE_SPECTRUM_CYCLE_CHASE_FADE:
dev_mode = AURA_MODE_CHASE_FADE;
color_mode = MODE_COLORS_RANDOM;
break;
}
for(int mode = 0; mode < modes.size(); mode++)
{
if(modes[mode].value == dev_mode)
{
active_mode = mode;
modes[mode].random = random;
active_mode = mode;
modes[mode].color_mode = color_mode;
}
}
@@ -129,63 +136,73 @@ RGBController_Aura::RGBController_Aura(AuraController * aura_ptr)
}
mode Direct;
Direct.name = "Direct";
Direct.value = 0xFFFF;
Direct.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Direct.name = "Direct";
Direct.value = 0xFFFF;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Off;
Off.name = "Off";
Off.value = AURA_MODE_OFF;
Off.flags = 0;
Off.name = "Off";
Off.value = AURA_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
mode Static;
Static.name = "Static";
Static.value = AURA_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Static.name = "Static";
Static.value = AURA_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR | MODE_FLAG_PER_LED_COLOR;
Breathing.name = "Breathing";
Breathing.value = AURA_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = AURA_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Flashing.name = "Flashing";
Flashing.value = AURA_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Flashing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Flashing);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = AURA_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = 0;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = AURA_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = 0;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = AURA_MODE_RAINBOW;
Rainbow.flags = 0;
Rainbow.name = "Rainbow";
Rainbow.value = AURA_MODE_RAINBOW;
Rainbow.flags = 0;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
mode ChaseFade;
ChaseFade.name = "Chase Fade";
ChaseFade.value = AURA_MODE_CHASE_FADE;
ChaseFade.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR | MODE_FLAG_PER_LED_COLOR;
ChaseFade.name = "Chase Fade";
ChaseFade.value = AURA_MODE_CHASE_FADE;
ChaseFade.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_PER_LED_COLOR;
ChaseFade.color_mode = MODE_COLORS_PER_LED;
modes.push_back(ChaseFade);
mode Chase;
Chase.name = "Chase";
Chase.value = AURA_MODE_CHASE;
Chase.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR | MODE_FLAG_PER_LED_COLOR;
Chase.name = "Chase";
Chase.value = AURA_MODE_CHASE;
Chase.flags = MODE_FLAG_HAS_RANDOM_COLOR | MODE_FLAG_HAS_PER_LED_COLOR;
Chase.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Chase);
mode RandomFlicker;
RandomFlicker.name = "Random Flicker";
RandomFlicker.value = AURA_MODE_RANDOM_FLICKER;
RandomFlicker.flags = 0;
RandomFlicker.name = "Random Flicker";
RandomFlicker.value = AURA_MODE_RANDOM_FLICKER;
RandomFlicker.flags = 0;
RandomFlicker.color_mode = MODE_COLORS_NONE;
modes.push_back(RandomFlicker);
colors.resize(aura->GetLEDCount());
@@ -197,6 +214,7 @@ RGBController_Aura::RGBController_Aura(AuraController * aura_ptr)
led* new_led = new led();
new_led->name = aura->GetChannelName(i);
new_led->name.append(std::to_string(i));
leds.push_back(*new_led);
@@ -259,7 +277,7 @@ RGBController_Aura::RGBController_Aura(AuraController * aura_ptr)
void RGBController_Aura::SetCustomMode()
{
SetMode(0);
active_mode = 0;
}
void RGBController_Aura::UpdateMode()
@@ -272,7 +290,7 @@ void RGBController_Aura::UpdateMode()
{
int new_mode = modes[active_mode].value;
if(modes[active_mode].random == true)
if(modes[active_mode].color_mode == MODE_COLORS_RANDOM)
{
switch(new_mode)
{
@@ -291,4 +309,4 @@ void RGBController_Aura::UpdateMode()
aura->SetMode(new_mode);
aura->SetDirect(false);
}
}
}
+176
View File
@@ -0,0 +1,176 @@
/*-----------------------------------------*\
| RGBController_AuraGPU.h |
| |
| Generic RGB Interface for Asus Aura GPU |
| |
| Jan Rettig (Klapstuhl) 14.02.2020 |
\*-----------------------------------------*/
#include "RGBController_AuraGPU.h"
int RGBController_AuraGPU::GetDeviceMode()
{
int dev_mode = aura_gpu->AuraGPURegisterRead(AURA_GPU_REG_MODE);
int color_mode = MODE_COLORS_PER_LED;
if(dev_mode == AURA_GPU_MODE_STATIC)
{
if (aura_gpu->direct)
{
dev_mode = AURA_GPU_MODE_DIRECT;
}
}
switch(dev_mode)
{
case AURA_GPU_MODE_OFF:
case AURA_GPU_MODE_SPECTRUM_CYCLE:
color_mode = MODE_COLORS_NONE;
break;
}
for(int mode = 0; mode < modes.size(); mode++)
{
if(modes[mode].value == dev_mode)
{
active_mode = mode;
modes[mode].color_mode = color_mode;
}
}
return(active_mode);
}
void RGBController_AuraGPU::UpdateLEDs()
{
for(std::size_t led = 0; led < colors.size(); led++)
{
unsigned char red = RGBGetRValue(colors[led]);
unsigned char grn = RGBGetGValue(colors[led]);
unsigned char blu = RGBGetBValue(colors[led]);
if (GetMode() == 0)
{
aura_gpu->SetLEDColorsDirect(red, grn, blu);
}
else
{
aura_gpu->SetLEDColorsEffect(red, grn, blu);
}
}
}
void RGBController_AuraGPU::UpdateZoneLEDs(int zone)
{
UpdateLEDs();
}
void RGBController_AuraGPU::UpdateSingleLED(int led)
{
UpdateLEDs();
}
RGBController_AuraGPU::RGBController_AuraGPU(AuraGPUController * aura_gpu_ptr)
{
aura_gpu = aura_gpu_ptr;
name = aura_gpu->GetDeviceName();
version = "0.00.1";
location = aura_gpu->GetDeviceLocation();
type = DEVICE_TYPE_GPU;
mode Direct;
Direct.name = "Direct";
Direct.value = AURA_GPU_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Off;
Off.name = "Off";
Off.value = AURA_GPU_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
mode Static;
Static.name = "Static";
Static.value = AURA_GPU_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = AURA_GPU_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = AURA_GPU_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Flashing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Flashing);
mode Spectrum_Cycle;
Spectrum_Cycle.name = "Spectrum Cycle";
Spectrum_Cycle.value = AURA_GPU_MODE_SPECTRUM_CYCLE;
Spectrum_Cycle.flags = 0;
Spectrum_Cycle.color_mode = MODE_COLORS_NONE;
modes.push_back(Spectrum_Cycle);
colors.resize(1);
led aura_gpu_led;
aura_gpu_led.name = "GPU";
leds.push_back(aura_gpu_led);
zone aura_gpu_zone;
aura_gpu_zone.name = "GPU";
aura_gpu_zone.type = ZONE_TYPE_SINGLE;
std::vector<int> aura_gpu_zone_map;
aura_gpu_zone_map.push_back(0);
aura_gpu_zone.map.push_back(aura_gpu_zone_map);
zones.push_back(aura_gpu_zone);
unsigned char red = aura_gpu->GetLEDRed();
unsigned char grn = aura_gpu->GetLEDGreen();
unsigned char blu = aura_gpu->GetLEDBlue();
colors[0] = ToRGBColor(red, grn, blu);
active_mode = GetDeviceMode();
}
void RGBController_AuraGPU::SetCustomMode()
{
active_mode = 0;
}
void RGBController_AuraGPU::UpdateMode()
{
int new_mode = modes[active_mode].value;
aura_gpu->direct = false;
switch(new_mode)
{
// Set all LEDs to 0 and Mode to static as a workaround for the non existing Off Mode
case AURA_GPU_MODE_OFF:
aura_gpu->SetLEDColorsEffect(0, 0, 0);
new_mode = AURA_GPU_MODE_STATIC;
break;
// Direct mode is done by switching to Static and not applying color changes
case AURA_GPU_MODE_DIRECT:
aura_gpu->direct = true;
new_mode = AURA_GPU_MODE_STATIC;
break;
}
aura_gpu->SetMode(new_mode);
}
+29
View File
@@ -0,0 +1,29 @@
/*-----------------------------------------*\
| RGBController_AuraGPU.h |
| |
| Generic RGB Interface for Asus Aura GPU |
| |
| Jan Rettig (Klapstuhl) 14.02.2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "AuraGPUController.h"
class RGBController_AuraGPU : public RGBController
{
public:
RGBController_AuraGPU(AuraGPUController* aura_gpu_ptr);
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void UpdateMode();
private:
AuraGPUController* aura_gpu;
int GetDeviceMode();
};
+14 -11
View File
@@ -39,21 +39,24 @@ RGBController_Corsair::RGBController_Corsair(CorsairController* corsair_ptr)
type = DEVICE_TYPE_DRAM;
mode Static;
Static.name = "Static";
Static.value = CORSAIR_VENGEANCE_RGB_MODE_SINGLE;
Static.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Static.name = "Static";
Static.value = CORSAIR_VENGEANCE_RGB_MODE_SINGLE;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Fade;
Fade.name = "Fade";
Fade.value = CORSAIR_VENGEANCE_RGB_MODE_FADE;
Fade.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Fade.name = "Fade";
Fade.value = CORSAIR_VENGEANCE_RGB_MODE_FADE;
Fade.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Fade.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Fade);
mode Pulse;
Pulse.name = "Pulse";
Pulse.value = CORSAIR_VENGEANCE_RGB_MODE_PULSE;
Pulse.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Pulse.name = "Pulse";
Pulse.value = CORSAIR_VENGEANCE_RGB_MODE_PULSE;
Pulse.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Pulse.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Pulse);
for (unsigned int i = 0; i < corsair->GetLEDCount(); i++)
@@ -85,10 +88,10 @@ RGBController_Corsair::RGBController_Corsair(CorsairController* corsair_ptr)
void RGBController_Corsair::SetCustomMode()
{
SetMode(0);
active_mode = 0;
}
void RGBController_Corsair::UpdateMode()
{
corsair->SetMode(modes[active_mode].value);
}
}
+126 -71
View File
@@ -19,106 +19,145 @@ RGBController_CorsairCmdrPro::RGBController_CorsairCmdrPro(CorsairCmdrProControl
type = DEVICE_TYPE_LEDSTRIP;
mode Direct;
Direct.name = "Direct";
Direct.value = 0xFFFF;
Direct.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Direct.name = "Direct";
Direct.value = 0xFFFF;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode RainbowWave;
RainbowWave.name = "Rainbow Wave";
RainbowWave.value = CORSAIR_CMDR_PRO_MODE_RAINBOW_WAVE;
RainbowWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
RainbowWave.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
RainbowWave.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
RainbowWave.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
RainbowWave.direction = MODE_DIRECTION_RIGHT;
RainbowWave.name = "Rainbow Wave";
RainbowWave.value = CORSAIR_CMDR_PRO_MODE_RAINBOW_WAVE;
RainbowWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
RainbowWave.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
RainbowWave.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
RainbowWave.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
RainbowWave.direction = MODE_DIRECTION_RIGHT;
RainbowWave.color_mode = MODE_COLORS_NONE;
modes.push_back(RainbowWave);
mode ColorShift;
ColorShift.name = "Color Shift";
ColorShift.value = CORSAIR_CMDR_PRO_MODE_COLOR_SHIFT;
ColorShift.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
ColorShift.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
ColorShift.colors_min = 2;
ColorShift.colors_max = 2;
ColorShift.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
ColorShift.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
ColorShift.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
ColorShift.color_mode = MODE_COLORS_MODE_SPECIFIC;
ColorShift.colors.resize(2);
modes.push_back(ColorShift);
mode ColorPulse;
ColorPulse.name = "Color Pulse";
ColorPulse.value = CORSAIR_CMDR_PRO_MODE_COLOR_PULSE;
ColorPulse.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
ColorPulse.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
ColorPulse.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
ColorPulse.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
ColorPulse.name = "Color Pulse";
ColorPulse.value = CORSAIR_CMDR_PRO_MODE_COLOR_PULSE;
ColorPulse.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
ColorPulse.colors_min = 2;
ColorPulse.colors_max = 2;
ColorPulse.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
ColorPulse.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
ColorPulse.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
ColorPulse.color_mode = MODE_COLORS_MODE_SPECIFIC;
ColorPulse.colors.resize(2);
modes.push_back(ColorPulse);
mode ColorWave;
ColorWave.name = "Color Wave";
ColorWave.value = CORSAIR_CMDR_PRO_MODE_COLOR_WAVE;
ColorWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
ColorWave.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
ColorWave.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
ColorWave.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
ColorWave.direction = MODE_DIRECTION_RIGHT;
ColorWave.name = "Color Wave";
ColorWave.value = CORSAIR_CMDR_PRO_MODE_COLOR_WAVE;
ColorWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
ColorWave.colors_min = 2;
ColorWave.colors_max = 2;
ColorWave.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
ColorWave.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
ColorWave.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
ColorWave.direction = MODE_DIRECTION_RIGHT;
ColorWave.color_mode = MODE_COLORS_MODE_SPECIFIC;
ColorWave.colors.resize(2);
modes.push_back(ColorWave);
mode Static;
Static.name = "Static";
Static.value = CORSAIR_CMDR_PRO_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_COLOR;
Static.name = "Static";
Static.value = CORSAIR_CMDR_PRO_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
mode Temperature;
Temperature.name = "Temperature";
Temperature.value = CORSAIR_CMDR_PRO_MODE_TEMPERATURE;
Temperature.flags = MODE_FLAG_HAS_COLOR;
Temperature.name = "Temperature";
Temperature.value = CORSAIR_CMDR_PRO_MODE_TEMPERATURE;
Temperature.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Temperature.colors_min = 3;
Temperature.colors_max = 3;
Temperature.color_mode = MODE_COLORS_MODE_SPECIFIC;
Temperature.colors.resize(3);
modes.push_back(Temperature);
mode Visor;
Visor.name = "Visor";
Visor.value = CORSAIR_CMDR_PRO_MODE_VISOR;
Visor.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Visor.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Visor.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Visor.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Visor.name = "Visor";
Visor.value = CORSAIR_CMDR_PRO_MODE_VISOR;
Visor.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Visor.colors_min = 2;
Visor.colors_max = 2;
Visor.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Visor.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Visor.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Visor.color_mode = MODE_COLORS_MODE_SPECIFIC;
Visor.colors.resize(2);
modes.push_back(Visor);
mode Marquee;
Marquee.name = "Marquee";
Marquee.value = CORSAIR_CMDR_PRO_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Marquee.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Marquee.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Marquee.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Marquee.direction = MODE_DIRECTION_RIGHT;
Marquee.name = "Marquee";
Marquee.value = CORSAIR_CMDR_PRO_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Marquee.colors_min = 1;
Marquee.colors_max = 1;
Marquee.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Marquee.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Marquee.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Marquee.direction = MODE_DIRECTION_RIGHT;
Marquee.color_mode = MODE_COLORS_MODE_SPECIFIC;
Marquee.colors.resize(1);
modes.push_back(Marquee);
mode Blink;
Blink.name = "Blink";
Blink.value = CORSAIR_CMDR_PRO_MODE_BLINK;
Blink.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Blink.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Blink.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Blink.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Blink.name = "Blink";
Blink.value = CORSAIR_CMDR_PRO_MODE_BLINK;
Blink.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Blink.colors_min = 2;
Blink.colors_max = 2;
Blink.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Blink.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Blink.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Blink.color_mode = MODE_COLORS_MODE_SPECIFIC;
Blink.colors.resize(2);
modes.push_back(Blink);
mode Sequential;
Sequential.name = "Sequential";
Sequential.value = CORSAIR_CMDR_PRO_MODE_SEQUENTIAL;
Sequential.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Sequential.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Sequential.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Sequential.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Sequential.direction = MODE_DIRECTION_RIGHT;
Sequential.name = "Sequential";
Sequential.value = CORSAIR_CMDR_PRO_MODE_SEQUENTIAL;
Sequential.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Sequential.colors_min = 1;
Sequential.colors_max = 1;
Sequential.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Sequential.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Sequential.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Sequential.direction = MODE_DIRECTION_RIGHT;
Sequential.color_mode = MODE_COLORS_MODE_SPECIFIC;
Sequential.colors.resize(1);
modes.push_back(Sequential);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = CORSAIR_CMDR_PRO_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Rainbow.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Rainbow.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Rainbow.name = "Rainbow";
Rainbow.value = CORSAIR_CMDR_PRO_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Rainbow.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Rainbow.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
/*-------------------------------------------------*\
@@ -240,7 +279,7 @@ void RGBController_CorsairCmdrPro::UpdateSingleLED(int led)
void RGBController_CorsairCmdrPro::SetCustomMode()
{
SetMode(9);
active_mode = 0;
}
void RGBController_CorsairCmdrPro::UpdateMode()
@@ -254,23 +293,39 @@ void RGBController_CorsairCmdrPro::UpdateMode()
for(int channel = 0; channel < CORSAIR_CMDR_PRO_NUM_CHANNELS; channel++)
{
unsigned int direction = 0;
bool random = (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
if(modes[active_mode].direction == MODE_DIRECTION_RIGHT)
{
direction = 1;
}
unsigned char mode_colors[9];
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
for(int i = 0; i < modes[active_mode].colors.size(); i++)
{
mode_colors[(3 * i) + 0] = RGBGetRValue(modes[active_mode].colors[i]);
mode_colors[(3 * i) + 1] = RGBGetGValue(modes[active_mode].colors[i]);
mode_colors[(3 * i) + 2] = RGBGetBValue(modes[active_mode].colors[i]);
}
}
corsair->SetChannelEffect(channel,
modes[active_mode].value,
modes[active_mode].speed,
direction,
modes[active_mode].random,
RGBGetRValue(colors[0]),
RGBGetGValue(colors[0]),
RGBGetBValue(colors[0]),
RGBGetRValue(colors[1]),
RGBGetGValue(colors[1]),
RGBGetBValue(colors[1]));
random,
mode_colors[0],
mode_colors[1],
mode_colors[2],
mode_colors[3],
mode_colors[4],
mode_colors[5],
mode_colors[6],
mode_colors[7],
mode_colors[8]);
}
}
}
}
@@ -9,7 +9,6 @@
#pragma once
#include "RGBController.h"
#include "serial_port.h"
#include "CorsairCmdrProController.h"
class RGBController_CorsairCmdrPro : public RGBController
@@ -0,0 +1,209 @@
/*-----------------------------------------*\
| RGBController_CorsairKeyboard.cpp |
| |
| Generic RGB Interface for Corsair RGB |
| keyboards |
| |
| Adam Honse (CalcProgrammer1) 1/9/2020 |
\*-----------------------------------------*/
#include "RGBController_CorsairKeyboard.h"
static const char* zone_names[] =
{
"Keyboard",
"Media Keys"
};
static const unsigned int zone_sizes[] =
{
104,
7
};
static const char* led_names[] =
{
"Key: Escape", //0
"Key: `", //1
"Key: Tab", //2
"Key: Caps Lock", //3
"Key: Left Shift", //4
"Key: Left Control", //5
"Key: F12", //6
"Key: =", //7
"Key: Lock", //8
"Key: Number Pad 7", //9
"Key: F1", //12
"Key: 1", //13
"Key: Q", //14
"Key: A", //15
"Key: Left Windows", //17
"Key: Print Screen", //18
"Media Mute", //20
"Key: Number Pad 8", //21
"Key: F2", //24
"Key: 2", //25
"Key: W", //26
"Key: S", //27
"Key: Z", //28
"Key: Left Alt", //29
"Key: Scroll Lock", //30
"Key: Backspace", //31
"Media Stop", //32
"Key: Number Pad 9", //33
"Key: F3", //36
"Key: 3", //37
"Key: E", //38
"Key: D", //39
"Key: X", //40
"Key: Pause/Break", //42
"Key: Delete", //43
"Media Previous", //44
"Key: F4", //48
"Key: 4", //49
"Key: R", //50
"Key: F", //51
"Key: C", //52
"Key: Space", //53
"Key: Insert", //54
"Key: End", //55
"Media Play/Pause", //56
"Key: Number Pad 4", //57
"Key: F5", //60
"Key: 5", //61
"Key: T", //62
"Key: G", //63
"Key: V", //64
"Key: Home", //66
"Key: Page Down", //67
"Media Next", //68
"Key: Number Pad 5", //69
"Key: F6", //72
"Key: 6", //73
"Key: Y", //74
"Key: H", //75
"Key: B", //76
"Key: Page Up", //78
"Key: Right Shift", //79
"Key: Num Lock", //80
"Key: Number Pad 6", //81
"Key: F7", //84
"Key: 7", //85
"Key: U", //86
"Key: J", //87
"Key: N", //88
"Key: Right Alt", //89
"Key: ]", //90
"Key: Right Control", //91
"Key: Number Pad /", //92
"Key: Number Pad 1", //93
"Key: F8", //96
"Key: 8", //97
"Key: I", //98
"Key: K", //99
"Key: M", //100
"Key: Right Windows", //101
"Key: \\", //102
"Key: Up Arrow", //103
"Key: Number Pad *", //104
"Key: Number Pad 2", //105
"Key: F9", //108
"Key: 9", //109
"Key: O", //110
"Key: L", //111
"Key: ,", //112
"Key: Context", //113
"Key: Left Arrow", //115
"Key: Number Pad -", //116
"Key: Number Pad 3", //117
"Key: F10", //120
"Key: 0", //121
"Key: P", //122
"Key: ;", //123
"Key: .", //124
"Key: Enter", //126
"Key: Down Arrow", //127
"Key: Number Pad +", //128
"Key: Number Pad 0", //129
"Key: F11", //132
"Key: -", //133
"Key: [", //134
"Key: '", //135
"Key: /", //136
"Key: Brightness", //137
"Key: Right Arrow", //139
"Key: Number Pad Enter",//140
"Key: Number Pad .", //141
"Key: F12"
};
RGBController_CorsairKeyboard::RGBController_CorsairKeyboard(CorsairKeyboardController* corsair_ptr)
{
corsair = corsair_ptr;
name = "Corsair RGB Keyboard";
type = DEVICE_TYPE_KEYBOARD;
mode Direct;
Direct.name = "Direct";
Direct.value = 0;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
colors.resize(111);
unsigned int led_idx = 0;
for(unsigned int zone_idx = 0; zone_idx < 2; zone_idx++)
{
zone new_zone;
new_zone.name.append(zone_names[zone_idx]);
std::vector<int> new_zone_map;
for(unsigned int led_count = 0; led_count < zone_sizes[zone_idx]; led_count++)
{
led new_led;
new_led.name.append(led_names[led_idx]);
leds.push_back(new_led);
new_zone_map.push_back(led_idx);
led_idx++;
}
new_zone.map.push_back(new_zone_map);
zones.push_back(new_zone);
}
}
RGBController_CorsairKeyboard::~RGBController_CorsairKeyboard()
{
}
void RGBController_CorsairKeyboard::UpdateLEDs()
{
corsair->SetLEDs(colors);
}
void RGBController_CorsairKeyboard::UpdateZoneLEDs(int zone)
{
corsair->SetLEDs(colors);
}
void RGBController_CorsairKeyboard::UpdateSingleLED(int led)
{
corsair->SetLEDs(colors);
}
void RGBController_CorsairKeyboard::SetCustomMode()
{
active_mode = 0;
}
void RGBController_CorsairKeyboard::UpdateMode()
{
}
@@ -0,0 +1,29 @@
/*-----------------------------------------*\
| RGBController_CorsairKeyboard.h |
| |
| Generic RGB Interface for Corsair RGB |
| keyboards |
| |
| Adam Honse (CalcProgrammer1) 1/9/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "CorsairKeyboardController.h"
class RGBController_CorsairKeyboard : public RGBController
{
public:
RGBController_CorsairKeyboard(CorsairKeyboardController* corsair_ptr);
~RGBController_CorsairKeyboard();
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void UpdateMode();
private:
CorsairKeyboardController* corsair;
};
+126 -71
View File
@@ -19,106 +19,145 @@ RGBController_CorsairNodePro::RGBController_CorsairNodePro(CorsairNodeProControl
type = DEVICE_TYPE_LEDSTRIP;
mode Direct;
Direct.name = "Direct";
Direct.value = 0xFFFF;
Direct.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Direct.name = "Direct";
Direct.value = 0xFFFF;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode RainbowWave;
RainbowWave.name = "Rainbow Wave";
RainbowWave.value = CORSAIR_CMDR_PRO_MODE_RAINBOW_WAVE;
RainbowWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
RainbowWave.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
RainbowWave.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
RainbowWave.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
RainbowWave.direction = MODE_DIRECTION_RIGHT;
RainbowWave.name = "Rainbow Wave";
RainbowWave.value = CORSAIR_CMDR_PRO_MODE_RAINBOW_WAVE;
RainbowWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
RainbowWave.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
RainbowWave.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
RainbowWave.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
RainbowWave.direction = MODE_DIRECTION_RIGHT;
RainbowWave.color_mode = MODE_COLORS_NONE;
modes.push_back(RainbowWave);
mode ColorShift;
ColorShift.name = "Color Shift";
ColorShift.value = CORSAIR_CMDR_PRO_MODE_COLOR_SHIFT;
ColorShift.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
ColorShift.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
ColorShift.colors_min = 2;
ColorShift.colors_max = 2;
ColorShift.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
ColorShift.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
ColorShift.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
ColorShift.color_mode = MODE_COLORS_MODE_SPECIFIC;
ColorShift.colors.resize(2);
modes.push_back(ColorShift);
mode ColorPulse;
ColorPulse.name = "Color Pulse";
ColorPulse.value = CORSAIR_CMDR_PRO_MODE_COLOR_PULSE;
ColorPulse.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
ColorPulse.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
ColorPulse.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
ColorPulse.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
ColorPulse.name = "Color Pulse";
ColorPulse.value = CORSAIR_CMDR_PRO_MODE_COLOR_PULSE;
ColorPulse.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
ColorPulse.colors_min = 2;
ColorPulse.colors_max = 2;
ColorPulse.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
ColorPulse.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
ColorPulse.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
ColorPulse.color_mode = MODE_COLORS_MODE_SPECIFIC;
ColorPulse.colors.resize(2);
modes.push_back(ColorPulse);
mode ColorWave;
ColorWave.name = "Color Wave";
ColorWave.value = CORSAIR_CMDR_PRO_MODE_COLOR_WAVE;
ColorWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
ColorWave.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
ColorWave.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
ColorWave.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
ColorWave.direction = MODE_DIRECTION_RIGHT;
ColorWave.name = "Color Wave";
ColorWave.value = CORSAIR_CMDR_PRO_MODE_COLOR_WAVE;
ColorWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
ColorWave.colors_min = 2;
ColorWave.colors_max = 2;
ColorWave.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
ColorWave.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
ColorWave.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
ColorWave.direction = MODE_DIRECTION_RIGHT;
ColorWave.color_mode = MODE_COLORS_MODE_SPECIFIC;
ColorWave.colors.resize(2);
modes.push_back(ColorWave);
mode Static;
Static.name = "Static";
Static.value = CORSAIR_CMDR_PRO_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_COLOR;
Static.name = "Static";
Static.value = CORSAIR_CMDR_PRO_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
mode Temperature;
Temperature.name = "Temperature";
Temperature.value = CORSAIR_CMDR_PRO_MODE_TEMPERATURE;
Temperature.flags = MODE_FLAG_HAS_COLOR;
Temperature.name = "Temperature";
Temperature.value = CORSAIR_CMDR_PRO_MODE_TEMPERATURE;
Temperature.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Temperature.colors_min = 3;
Temperature.colors_max = 3;
Temperature.color_mode = MODE_COLORS_MODE_SPECIFIC;
Temperature.colors.resize(3);
modes.push_back(Temperature);
mode Visor;
Visor.name = "Visor";
Visor.value = CORSAIR_CMDR_PRO_MODE_VISOR;
Visor.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Visor.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Visor.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Visor.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Visor.name = "Visor";
Visor.value = CORSAIR_CMDR_PRO_MODE_VISOR;
Visor.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Visor.colors_min = 2;
Visor.colors_max = 2;
Visor.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Visor.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Visor.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Visor.color_mode = MODE_COLORS_MODE_SPECIFIC;
Visor.colors.resize(2);
modes.push_back(Visor);
mode Marquee;
Marquee.name = "Marquee";
Marquee.value = CORSAIR_CMDR_PRO_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Marquee.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Marquee.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Marquee.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Marquee.direction = MODE_DIRECTION_RIGHT;
Marquee.name = "Marquee";
Marquee.value = CORSAIR_CMDR_PRO_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Marquee.colors_min = 1;
Marquee.colors_max = 1;
Marquee.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Marquee.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Marquee.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Marquee.direction = MODE_DIRECTION_RIGHT;
Marquee.color_mode = MODE_COLORS_MODE_SPECIFIC;
Marquee.colors.resize(1);
modes.push_back(Marquee);
mode Blink;
Blink.name = "Blink";
Blink.value = CORSAIR_CMDR_PRO_MODE_BLINK;
Blink.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Blink.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Blink.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Blink.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Blink.name = "Blink";
Blink.value = CORSAIR_CMDR_PRO_MODE_BLINK;
Blink.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Blink.colors_min = 2;
Blink.colors_max = 2;
Blink.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Blink.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Blink.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Blink.color_mode = MODE_COLORS_MODE_SPECIFIC;
Blink.colors.resize(2);
modes.push_back(Blink);
mode Sequential;
Sequential.name = "Sequential";
Sequential.value = CORSAIR_CMDR_PRO_MODE_SEQUENTIAL;
Sequential.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Sequential.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Sequential.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Sequential.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Sequential.direction = MODE_DIRECTION_RIGHT;
Sequential.name = "Sequential";
Sequential.value = CORSAIR_CMDR_PRO_MODE_SEQUENTIAL;
Sequential.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Sequential.colors_min = 1;
Sequential.colors_max = 1;
Sequential.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Sequential.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Sequential.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Sequential.direction = MODE_DIRECTION_RIGHT;
Sequential.color_mode = MODE_COLORS_MODE_SPECIFIC;
Sequential.colors.resize(1);
modes.push_back(Sequential);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = CORSAIR_CMDR_PRO_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Rainbow.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Rainbow.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Rainbow.name = "Rainbow";
Rainbow.value = CORSAIR_CMDR_PRO_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = CORSAIR_CMDR_PRO_SPEED_SLOW;
Rainbow.speed_max = CORSAIR_CMDR_PRO_SPEED_FAST;
Rainbow.speed = CORSAIR_CMDR_PRO_SPEED_MEDIUM;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
/*-------------------------------------------------*\
@@ -240,7 +279,7 @@ void RGBController_CorsairNodePro::UpdateSingleLED(int led)
void RGBController_CorsairNodePro::SetCustomMode()
{
SetMode(9);
active_mode = 0;
}
void RGBController_CorsairNodePro::UpdateMode()
@@ -254,23 +293,39 @@ void RGBController_CorsairNodePro::UpdateMode()
for(int channel = 0; channel < CORSAIR_CMDR_PRO_NUM_CHANNELS; channel++)
{
unsigned int direction = 0;
bool random = (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
if(modes[active_mode].direction == MODE_DIRECTION_RIGHT)
{
direction = 1;
}
unsigned char mode_colors[9];
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
for(int i = 0; i < modes[active_mode].colors.size(); i++)
{
mode_colors[(3 * i) + 0] = RGBGetRValue(modes[active_mode].colors[i]);
mode_colors[(3 * i) + 1] = RGBGetGValue(modes[active_mode].colors[i]);
mode_colors[(3 * i) + 2] = RGBGetBValue(modes[active_mode].colors[i]);
}
}
corsair->SetChannelEffect(channel,
modes[active_mode].value,
modes[active_mode].speed,
direction,
modes[active_mode].random,
RGBGetRValue(colors[0]),
RGBGetGValue(colors[0]),
RGBGetBValue(colors[0]),
RGBGetRValue(colors[1]),
RGBGetGValue(colors[1]),
RGBGetBValue(colors[1]));
random,
mode_colors[0],
mode_colors[1],
mode_colors[2],
mode_colors[3],
mode_colors[4],
mode_colors[5],
mode_colors[6],
mode_colors[7],
mode_colors[8]);
}
}
}
}
@@ -9,7 +9,6 @@
#pragma once
#include "RGBController.h"
#include "serial_port.h"
#include "CorsairNodeProController.h"
class RGBController_CorsairNodePro : public RGBController
+121 -84
View File
@@ -49,108 +49,129 @@ RGBController_CorsairPro::RGBController_CorsairPro(CorsairProController* corsair
type = DEVICE_TYPE_DRAM;
mode ColorShift;
ColorShift.name = "Color Shift";
ColorShift.value = CORSAIR_PRO_MODE_COLOR_SHIFT;
ColorShift.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
ColorShift.speed_min = CORSAIR_PRO_SPEED_SLOW;
ColorShift.speed_max = CORSAIR_PRO_SPEED_FAST;
ColorShift.random = false;
ColorShift.speed = CORSAIR_PRO_SPEED_SLOW;
ColorShift.name = "Color Shift";
ColorShift.value = CORSAIR_PRO_MODE_COLOR_SHIFT;
ColorShift.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
ColorShift.speed_min = CORSAIR_PRO_SPEED_SLOW;
ColorShift.speed_max = CORSAIR_PRO_SPEED_FAST;
ColorShift.colors_min = 2;
ColorShift.colors_max = 2;
ColorShift.speed = CORSAIR_PRO_SPEED_SLOW;
ColorShift.color_mode = MODE_COLORS_MODE_SPECIFIC;
ColorShift.colors.resize(2);
modes.push_back(ColorShift);
mode ColorPulse;
ColorPulse.name = "Color Pulse";
ColorPulse.value = CORSAIR_PRO_MODE_COLOR_PULSE;
ColorPulse.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
ColorPulse.speed_min = CORSAIR_PRO_SPEED_SLOW;
ColorPulse.speed_max = CORSAIR_PRO_SPEED_FAST;
ColorPulse.random = false;
ColorPulse.speed = CORSAIR_PRO_SPEED_SLOW;
ColorPulse.name = "Color Pulse";
ColorPulse.value = CORSAIR_PRO_MODE_COLOR_PULSE;
ColorPulse.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
ColorPulse.speed_min = CORSAIR_PRO_SPEED_SLOW;
ColorPulse.speed_max = CORSAIR_PRO_SPEED_FAST;
ColorPulse.colors_min = 2;
ColorPulse.colors_max = 2;
ColorPulse.speed = CORSAIR_PRO_SPEED_SLOW;
ColorPulse.color_mode = MODE_COLORS_MODE_SPECIFIC;
ColorPulse.colors.resize(2);
modes.push_back(ColorPulse);
mode RainbowWave;
RainbowWave.name = "Rainbow Wave";
RainbowWave.value = CORSAIR_PRO_MODE_RAINBOW_WAVE;
RainbowWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_DIRECTION_UD;
RainbowWave.speed_min = CORSAIR_PRO_SPEED_SLOW;
RainbowWave.speed_max = CORSAIR_PRO_SPEED_FAST;
RainbowWave.random = false;
RainbowWave.speed = CORSAIR_PRO_SPEED_SLOW;
RainbowWave.direction = MODE_DIRECTION_DOWN;
RainbowWave.name = "Rainbow Wave";
RainbowWave.value = CORSAIR_PRO_MODE_RAINBOW_WAVE;
RainbowWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_DIRECTION_UD;
RainbowWave.speed_min = CORSAIR_PRO_SPEED_SLOW;
RainbowWave.speed_max = CORSAIR_PRO_SPEED_FAST;
RainbowWave.speed = CORSAIR_PRO_SPEED_SLOW;
RainbowWave.direction = MODE_DIRECTION_DOWN;
RainbowWave.color_mode = MODE_COLORS_NONE;
modes.push_back(RainbowWave);
mode ColorWave;
ColorWave.name = "Color Wave";
ColorWave.value = CORSAIR_PRO_MODE_COLOR_WAVE;
ColorWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
ColorWave.speed_min = CORSAIR_PRO_SPEED_SLOW;
ColorWave.speed_max = CORSAIR_PRO_SPEED_FAST;
ColorWave.random = false;
ColorWave.speed = CORSAIR_PRO_SPEED_SLOW;
ColorWave.direction = MODE_DIRECTION_DOWN;
ColorWave.name = "Color Wave";
ColorWave.value = CORSAIR_PRO_MODE_COLOR_WAVE;
ColorWave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
ColorWave.speed_min = CORSAIR_PRO_SPEED_SLOW;
ColorWave.speed_max = CORSAIR_PRO_SPEED_FAST;
ColorWave.colors_min = 2;
ColorWave.colors_max = 2;
ColorWave.speed = CORSAIR_PRO_SPEED_SLOW;
ColorWave.direction = MODE_DIRECTION_DOWN;
ColorWave.color_mode = MODE_COLORS_MODE_SPECIFIC;
ColorWave.colors.resize(2);
modes.push_back(ColorWave);
mode Visor;
Visor.name = "Visor";
Visor.value = CORSAIR_PRO_MODE_VISOR;
Visor.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_HV | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Visor.speed_min = CORSAIR_PRO_SPEED_SLOW;
Visor.speed_max = CORSAIR_PRO_SPEED_FAST;
Visor.random = false;
Visor.speed = CORSAIR_PRO_SPEED_SLOW;
Visor.direction = MODE_DIRECTION_VERTICAL;
Visor.name = "Visor";
Visor.value = CORSAIR_PRO_MODE_VISOR;
Visor.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_HV | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Visor.speed_min = CORSAIR_PRO_SPEED_SLOW;
Visor.speed_max = CORSAIR_PRO_SPEED_FAST;
Visor.colors_min = 2;
Visor.colors_max = 2;
Visor.speed = CORSAIR_PRO_SPEED_SLOW;
Visor.direction = MODE_DIRECTION_VERTICAL;
Visor.color_mode = MODE_COLORS_MODE_SPECIFIC;
Visor.colors.resize(2);
modes.push_back(Visor);
mode Rain;
Rain.name = "Rain";
Rain.value = CORSAIR_PRO_MODE_RAIN;
Rain.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Rain.speed_min = CORSAIR_PRO_SPEED_SLOW;
Rain.speed_max = CORSAIR_PRO_SPEED_FAST;
Rain.random = false;
Rain.speed = CORSAIR_PRO_SPEED_SLOW;
Rain.direction = MODE_DIRECTION_DOWN;
Rain.name = "Rain";
Rain.value = CORSAIR_PRO_MODE_RAIN;
Rain.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Rain.speed_min = CORSAIR_PRO_SPEED_SLOW;
Rain.speed_max = CORSAIR_PRO_SPEED_FAST;
Rain.colors_min = 2;
Rain.colors_max = 2;
Rain.speed = CORSAIR_PRO_SPEED_SLOW;
Rain.direction = MODE_DIRECTION_DOWN;
Rain.color_mode = MODE_COLORS_MODE_SPECIFIC;
Rain.colors.resize(2);
modes.push_back(Rain);
mode Marquee;
Marquee.name = "Marquee";
Marquee.value = CORSAIR_PRO_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR;
Marquee.speed_min = CORSAIR_PRO_SPEED_SLOW;
Marquee.speed_max = CORSAIR_PRO_SPEED_FAST;
Marquee.random = false;
Marquee.speed = CORSAIR_PRO_SPEED_SLOW;
Marquee.name = "Marquee";
Marquee.value = CORSAIR_PRO_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Marquee.speed_min = CORSAIR_PRO_SPEED_SLOW;
Marquee.speed_max = CORSAIR_PRO_SPEED_FAST;
Marquee.colors_min = 1;
Marquee.colors_max = 1;
Marquee.speed = CORSAIR_PRO_SPEED_SLOW;
Marquee.color_mode = MODE_COLORS_MODE_SPECIFIC;
Marquee.colors.resize(1);
modes.push_back(Marquee);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = CORSAIR_PRO_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = CORSAIR_PRO_SPEED_SLOW;
Rainbow.speed_max = CORSAIR_PRO_SPEED_FAST;
Rainbow.random = false;
Rainbow.speed = CORSAIR_PRO_SPEED_SLOW;
Rainbow.name = "Rainbow";
Rainbow.value = CORSAIR_PRO_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = CORSAIR_PRO_SPEED_SLOW;
Rainbow.speed_max = CORSAIR_PRO_SPEED_FAST;
Rainbow.speed = CORSAIR_PRO_SPEED_SLOW;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
mode Sequential;
Sequential.name = "Sequential";
Sequential.value = CORSAIR_PRO_MODE_SEQUENTIAL;
Sequential.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Sequential.speed_min = CORSAIR_PRO_SPEED_SLOW;
Sequential.speed_max = CORSAIR_PRO_SPEED_FAST;
Sequential.random = false;
Sequential.speed = CORSAIR_PRO_SPEED_SLOW;
Sequential.direction = MODE_DIRECTION_DOWN;
Sequential.name = "Sequential";
Sequential.value = CORSAIR_PRO_MODE_SEQUENTIAL;
Sequential.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_UD | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Sequential.speed_min = CORSAIR_PRO_SPEED_SLOW;
Sequential.speed_max = CORSAIR_PRO_SPEED_FAST;
Sequential.colors_min = 1;
Sequential.colors_max = 1;
Sequential.speed = CORSAIR_PRO_SPEED_SLOW;
Sequential.direction = MODE_DIRECTION_DOWN;
Sequential.color_mode = MODE_COLORS_MODE_SPECIFIC;
Sequential.colors.resize(1);
modes.push_back(Sequential);
mode Static;
Static.name = "Static";
Static.value = CORSAIR_PRO_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Static.speed_min = 0;
Static.speed_max = 0;
Static.random = false;
Static.speed = 0;
Static.name = "Static";
Static.value = CORSAIR_PRO_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.speed_min = 0;
Static.speed_max = 0;
Static.speed = 0;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
active_mode = 9;
@@ -185,12 +206,14 @@ RGBController_CorsairPro::RGBController_CorsairPro(CorsairProController* corsair
void RGBController_CorsairPro::SetCustomMode()
{
SetMode(9);
active_mode = 9;
}
void RGBController_CorsairPro::UpdateMode()
{
unsigned int corsair_direction;
bool random = (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
unsigned char mode_colors[6];
switch(modes[active_mode].direction)
{
@@ -214,14 +237,28 @@ void RGBController_CorsairPro::UpdateMode()
break;
}
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
mode_colors[0] = RGBGetRValue(modes[active_mode].colors[0]);
mode_colors[1] = RGBGetGValue(modes[active_mode].colors[0]);
mode_colors[2] = RGBGetBValue(modes[active_mode].colors[0]);
if(modes[active_mode].colors.size() == 2)
{
mode_colors[3] = RGBGetRValue(modes[active_mode].colors[1]);
mode_colors[4] = RGBGetGValue(modes[active_mode].colors[1]);
mode_colors[5] = RGBGetBValue(modes[active_mode].colors[1]);
}
}
corsair->SetEffect(modes[active_mode].value,
modes[active_mode].speed,
corsair_direction,
modes[active_mode].random,
RGBGetRValue(colors[0]),
RGBGetGValue(colors[0]),
RGBGetBValue(colors[0]),
RGBGetRValue(colors[1]),
RGBGetGValue(colors[1]),
RGBGetBValue(colors[1]));
}
random,
mode_colors[0],
mode_colors[1],
mode_colors[2],
mode_colors[3],
mode_colors[4],
mode_colors[5]);
}
+160
View File
@@ -0,0 +1,160 @@
/*-----------------------------------------*\
| RGBController_Crucial.cpp |
| |
| Generic RGB Interface for Crucial |
| Ballistix RGB controller |
| |
| Adam Honse (CalcProgrammer1) 1/19/2020 |
\*-----------------------------------------*/
#include "RGBController_Crucial.h"
void RGBController_Crucial::UpdateLEDs()
{
if(modes[active_mode].value == 0xFFFF)
{
crucial->SetAllColorsDirect(&colors[0]);
}
else
{
}
}
void RGBController_Crucial::UpdateZoneLEDs(int zone)
{
UpdateLEDs();
}
void RGBController_Crucial::UpdateSingleLED(int led)
{
UpdateLEDs();
}
RGBController_Crucial::RGBController_Crucial(CrucialController * crucial_ptr)
{
crucial = crucial_ptr;
location = crucial->GetDeviceLocation();
type = DEVICE_TYPE_DRAM;
name = "Crucial DRAM";
mode Direct;
Direct.name = "Direct";
Direct.value = 0xFFFF;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
#if 0
mode Shift;
Shift.name = "Shift";
Shift.value = CRUCIAL_MODE_SHIFT;
Shift.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Shift.colors_min = 1;
Shift.colors_max = 1;
Shift.color_mode = MODE_COLORS_MODE_SPECIFIC;
Shift.colors.resize(1);
modes.push_back(Shift);
mode GradientShift;
GradientShift.name = "Gradient Shift";
GradientShift.value = CRUCIAL_MODE_GRADIENT_SHIFT;
GradientShift.flags = 0;
GradientShift.color_mode = MODE_COLORS_NONE;
modes.push_back(GradientShift);
mode Fill;
Fill.name = "Fill";
Fill.value = CRUCIAL_MODE_FILL;
Fill.flags = 0;
Fill.color_mode = MODE_COLORS_NONE;
modes.push_back(Fill);
mode Stack;
Stack.name = "Stack";
Stack.value = CRUCIAL_MODE_STACK;
Stack.flags = 0;
Stack.color_mode = MODE_COLORS_NONE;
modes.push_back(Stack);
mode DoubleStack;
DoubleStack.name = "Double Stack";
DoubleStack.value = CRUCIAL_MODE_DOUBLE_STACK;
DoubleStack.flags = 0;
modes.push_back(DoubleStack);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = CRUCIAL_MODE_BREATHING;
Breathing.flags = 0;
modes.push_back(Breathing);
mode MotionPoint;
MotionPoint.name = "Motion Point";
MotionPoint.value = CRUCIAL_MODE_MOTION_POINT;
MotionPoint.flags = 0;
modes.push_back(MotionPoint);
mode InsideOut;
InsideOut.name = "Inside Out";
InsideOut.value = CRUCIAL_MODE_INSIDE_OUT;
InsideOut.flags = 0;
modes.push_back(InsideOut);
mode ColorStep;
ColorStep.name = "Color Step";
ColorStep.value = CRUCIAL_MODE_COLOR_STEP;
ColorStep.flags = 0;
modes.push_back(ColorStep);
mode WaterWave;
WaterWave.name = "Water Wave (Color Blending)";
WaterWave.value = CRUCIAL_MODE_WATER_WAVE;
WaterWave.flags = 0;
modes.push_back(WaterWave);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = CRUCIAL_MODE_FLASHING;
Flashing.flags = 0;
modes.push_back(Flashing);
mode Static;
Static.name = "Static";
Static.value = CRUCIAL_MODE_STATIC;
Static.flags = 0;
modes.push_back(Static);
#endif
zone new_zone;
new_zone.name = "DRAM";
new_zone.type = ZONE_TYPE_LINEAR;
std::vector<int> new_zone_map;
for(int led_idx = 0; led_idx < 8; led_idx++)
{
colors.push_back(0x00000000);
led new_led;
new_led.name = "DRAM LED";
leds.push_back(new_led);
new_zone_map.push_back(led_idx);
}
new_zone.map.push_back(new_zone_map);
zones.push_back(new_zone);
}
void RGBController_Crucial::SetCustomMode()
{
active_mode = 0;
}
void RGBController_Crucial::UpdateMode()
{
crucial->SetMode(modes[active_mode].value);
}
+28
View File
@@ -0,0 +1,28 @@
/*-----------------------------------------*\
| RGBController_Crucial.h |
| |
| Generic RGB Interface for Crucial |
| Ballistix RGB controller |
| |
| Adam Honse (CalcProgrammer1) 1/19/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "CrucialController.h"
class RGBController_Crucial : public RGBController
{
public:
RGBController_Crucial(CrucialController* crucial_ptr);
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void UpdateMode();
private:
CrucialController* crucial;
};
+39
View File
@@ -0,0 +1,39 @@
/*-----------------------------------------*\
| RGBController_Dummy.cpp |
| |
| Generic RGB Interface Dummy Class |
| |
| Adam Honse (CalcProgrammer1) 2/25/2020 |
\*-----------------------------------------*/
#include "RGBController_Dummy.h"
RGBController_Dummy::RGBController_Dummy()
{
}
void RGBController_Dummy::UpdateLEDs()
{
}
void RGBController_Dummy::UpdateZoneLEDs(int zone)
{
}
void RGBController_Dummy::UpdateSingleLED(int led)
{
}
void RGBController_Dummy::SetCustomMode()
{
}
void RGBController_Dummy::UpdateMode()
{
}
+23
View File
@@ -0,0 +1,23 @@
/*-----------------------------------------*\
| RGBController_Dummy.h |
| |
| Generic RGB Interface Dummy Class |
| |
| Adam Honse (CalcProgrammer1) 2/25/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
class RGBController_Dummy : public RGBController
{
public:
RGBController_Dummy();
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void UpdateMode();
};
+17 -6
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@@ -18,22 +18,33 @@ RGBController_E131::RGBController_E131(std::vector<E131Device> device_list)
devices = device_list;
unsigned int led_zone_idx = 0;
mode led_mode;
led_mode.name = "Custom";
modes.push_back(led_mode);
mode Direct;
Direct.name = "Direct";
Direct.value = 0;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
sockfd = e131_socket();
colors.resize(0);
for (std::size_t i = 0; i < devices.size(); i++)
{
/*-----------------------------------------*\
| Add LEDs |
\*-----------------------------------------*/
colors.resize(colors.size() + devices[i].num_leds);
for (unsigned int led_idx = 0; led_idx < devices[i].num_leds; led_idx++)
{
colors.push_back(0x00000000);
char id_buf[16];
snprintf(id_buf, 16, "%d", led_idx);
led new_led;
new_led.name = devices[i].name + " LED";
new_led.name = devices[i].name + " LED ";
new_led.name.append(id_buf);
leds.push_back(new_led);
}
@@ -165,4 +176,4 @@ void RGBController_E131::SetCustomMode()
void RGBController_E131::UpdateMode()
{
}
}
+25 -25
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@@ -10,34 +10,34 @@ RGBController_Faustus::RGBController_Faustus(const std::string& dev_path)
type = DEVICE_TYPE_KEYBOARD;
modes.resize(4);
modes[0].name = "Static";
modes[0].value = FAUSTUS_MODE_STATIC;
modes[0].flags = MODE_FLAG_HAS_COLOR;
modes[0].random = false;
modes[0].name = "Static";
modes[0].value = FAUSTUS_MODE_STATIC;
modes[0].flags = MODE_FLAG_HAS_PER_LED_COLOR;
modes[0].color_mode = MODE_COLORS_PER_LED;
modes[1].name = "Breathing";
modes[1].value = FAUSTUS_MODE_BREATHING;
modes[1].flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR;
modes[1].speed_min = FAUSTUS_SPEED_SLOWEST;
modes[1].speed_max = FAUSTUS_SPEED_FASTEST;
modes[1].random = false;
modes[1].speed = FAUSTUS_SPEED_NORMAL;
modes[1].name = "Breathing";
modes[1].value = FAUSTUS_MODE_BREATHING;
modes[1].flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
modes[1].speed_min = FAUSTUS_SPEED_SLOWEST;
modes[1].speed_max = FAUSTUS_SPEED_FASTEST;
modes[1].color_mode = MODE_COLORS_PER_LED;
modes[1].speed = FAUSTUS_SPEED_NORMAL;
modes[2].name = "Color Cycle";
modes[2].value = FAUSTUS_MODE_COLOR_CYCLE;
modes[2].flags = MODE_FLAG_HAS_SPEED;
modes[2].speed_min = FAUSTUS_SPEED_SLOWEST;
modes[2].speed_max = FAUSTUS_SPEED_FASTEST;
modes[2].random = false;
modes[2].speed = FAUSTUS_SPEED_NORMAL;
modes[2].name = "Color Cycle";
modes[2].value = FAUSTUS_MODE_COLOR_CYCLE;
modes[2].flags = MODE_FLAG_HAS_SPEED;
modes[2].speed_min = FAUSTUS_SPEED_SLOWEST;
modes[2].speed_max = FAUSTUS_SPEED_FASTEST;
modes[2].color_mode = MODE_COLORS_NONE;
modes[2].speed = FAUSTUS_SPEED_NORMAL;
modes[3].name = "Strobe";
modes[3].value = FAUSTUS_MODE_STROBE;
modes[3].flags = MODE_FLAG_HAS_SPEED;
modes[3].speed_min = FAUSTUS_SPEED_SLOWEST;
modes[3].speed_max = FAUSTUS_SPEED_FASTEST;
modes[3].random = false;
modes[3].speed = FAUSTUS_SPEED_NORMAL;
modes[3].name = "Strobe";
modes[3].value = FAUSTUS_MODE_STROBE;
modes[3].flags = MODE_FLAG_HAS_SPEED;
modes[3].speed_min = FAUSTUS_SPEED_SLOWEST;
modes[3].speed_max = FAUSTUS_SPEED_FASTEST;
modes[3].color_mode = MODE_COLORS_NONE;
modes[3].speed = FAUSTUS_SPEED_NORMAL;
colors.resize(1);
leds.resize(1);
+93 -52
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@@ -18,76 +18,102 @@ RGBController_Hue2::RGBController_Hue2(Hue2Controller* hue2_ptr)
type = DEVICE_TYPE_LEDSTRIP;
mode Direct;
Direct.name = "Direct";
Direct.value = HUE_2_MODE_FIXED;
Direct.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Direct.name = "Direct";
Direct.value = HUE_2_MODE_FIXED;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Fading;
Fading.name = "Fading";
Fading.value = HUE_2_MODE_FADING;
Fading.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Fading.speed_min = HUE_2_SPEED_SLOWEST;
Fading.speed_max = HUE_2_SPEED_FASTEST;
Fading.speed = HUE_2_SPEED_NORMAL;
Fading.name = "Fading";
Fading.value = HUE_2_MODE_FADING;
Fading.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Fading.speed_min = HUE_2_SPEED_SLOWEST;
Fading.speed_max = HUE_2_SPEED_FASTEST;
Fading.colors_min = 1;
Fading.colors_max = 8;
Fading.speed = HUE_2_SPEED_NORMAL;
Fading.color_mode = MODE_COLORS_MODE_SPECIFIC;
Fading.colors.resize(1);
modes.push_back(Fading);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = HUE_2_MODE_SPECTRUM;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
SpectrumCycle.speed_min = HUE_2_SPEED_SLOWEST;
SpectrumCycle.speed_max = HUE_2_SPEED_FASTEST;
SpectrumCycle.speed = HUE_2_SPEED_NORMAL;
SpectrumCycle.direction = MODE_DIRECTION_RIGHT;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = HUE_2_MODE_SPECTRUM;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
SpectrumCycle.speed_min = HUE_2_SPEED_SLOWEST;
SpectrumCycle.speed_max = HUE_2_SPEED_FASTEST;
SpectrumCycle.speed = HUE_2_SPEED_NORMAL;
SpectrumCycle.direction = MODE_DIRECTION_RIGHT;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
mode Marquee;
Marquee.name = "Marquee";
Marquee.value = HUE_2_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Marquee.speed_min = HUE_2_SPEED_SLOWEST;
Marquee.speed_max = HUE_2_SPEED_FASTEST;
Marquee.speed = HUE_2_SPEED_NORMAL;
Marquee.direction = MODE_DIRECTION_RIGHT;
Marquee.name = "Marquee";
Marquee.value = HUE_2_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Marquee.speed_min = HUE_2_SPEED_SLOWEST;
Marquee.speed_max = HUE_2_SPEED_FASTEST;
Marquee.colors_min = 1;
Marquee.colors_max = 1;
Marquee.speed = HUE_2_SPEED_NORMAL;
Marquee.direction = MODE_DIRECTION_RIGHT;
Marquee.color_mode = MODE_COLORS_MODE_SPECIFIC;
Marquee.colors.resize(1);
modes.push_back(Marquee);
mode CoverMarquee;
CoverMarquee.name = "Cover Marquee";
CoverMarquee.value = HUE_2_MODE_COVER_MARQUEE;
CoverMarquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
CoverMarquee.speed_min = HUE_2_SPEED_SLOWEST;
CoverMarquee.speed_max = HUE_2_SPEED_FASTEST;
CoverMarquee.speed = HUE_2_SPEED_NORMAL;
CoverMarquee.direction = MODE_DIRECTION_RIGHT;
CoverMarquee.name = "Cover Marquee";
CoverMarquee.value = HUE_2_MODE_COVER_MARQUEE;
CoverMarquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
CoverMarquee.speed_min = HUE_2_SPEED_SLOWEST;
CoverMarquee.speed_max = HUE_2_SPEED_FASTEST;
CoverMarquee.colors_min = 1;
CoverMarquee.colors_max = 8;
CoverMarquee.speed = HUE_2_SPEED_NORMAL;
CoverMarquee.direction = MODE_DIRECTION_RIGHT;
CoverMarquee.color_mode = MODE_COLORS_MODE_SPECIFIC;
CoverMarquee.colors.resize(1);
modes.push_back(CoverMarquee);
mode Alternating;
Alternating.name = "Alternating";
Alternating.value = HUE_2_MODE_ALTERNATING;
Alternating.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Alternating.speed_min = HUE_2_SPEED_SLOWEST;
Alternating.speed_max = HUE_2_SPEED_FASTEST;
Alternating.speed = HUE_2_SPEED_NORMAL;
Alternating.direction = MODE_DIRECTION_RIGHT;
Alternating.name = "Alternating";
Alternating.value = HUE_2_MODE_ALTERNATING;
Alternating.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Alternating.speed_min = HUE_2_SPEED_SLOWEST;
Alternating.speed_max = HUE_2_SPEED_FASTEST;
Alternating.colors_min = 1;
Alternating.colors_max = 2;
Alternating.speed = HUE_2_SPEED_NORMAL;
Alternating.direction = MODE_DIRECTION_RIGHT;
Alternating.color_mode = MODE_COLORS_MODE_SPECIFIC;
Alternating.colors.resize(1);
modes.push_back(Alternating);
mode Pulsing;
Pulsing.name = "Pulsing";
Pulsing.value = HUE_2_MODE_PULSING;
Pulsing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Pulsing.speed_min = HUE_2_SPEED_SLOWEST;
Pulsing.speed_max = HUE_2_SPEED_FASTEST;
Pulsing.speed = HUE_2_SPEED_NORMAL;
Pulsing.name = "Pulsing";
Pulsing.value = HUE_2_MODE_PULSING;
Pulsing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Pulsing.speed_min = HUE_2_SPEED_SLOWEST;
Pulsing.speed_max = HUE_2_SPEED_FASTEST;
Pulsing.colors_min = 1;
Pulsing.colors_max = 8;
Pulsing.speed = HUE_2_SPEED_NORMAL;
Pulsing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Pulsing.colors.resize(1);
modes.push_back(Pulsing);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = HUE_2_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Breathing.speed_min = HUE_2_SPEED_SLOWEST;
Breathing.speed_max = HUE_2_SPEED_FASTEST;
Breathing.speed = HUE_2_SPEED_NORMAL;
Breathing.name = "Breathing";
Breathing.value = HUE_2_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.speed_min = HUE_2_SPEED_SLOWEST;
Breathing.speed_max = HUE_2_SPEED_FASTEST;
Breathing.colors_min = 1;
Breathing.colors_max = 8;
Breathing.speed = HUE_2_SPEED_NORMAL;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(1);
modes.push_back(Breathing);
/*-------------------------------------------------*\
@@ -209,7 +235,7 @@ void RGBController_Hue2::UpdateSingleLED(int led)
void RGBController_Hue2::SetCustomMode()
{
SetMode(0);
active_mode = 0;
}
void RGBController_Hue2::UpdateMode()
@@ -238,7 +264,22 @@ void RGBController_Hue2::UpdateMode()
}
hue2->SetMode(modes[active_mode].value, modes[active_mode].speed, direction);
hue2->SetChannelLEDs(channel, channel_colors);
if(modes[active_mode].color_mode == MODE_COLORS_PER_LED)
{
hue2->SetChannelLEDs(channel, channel_colors);
}
else if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
hue2->SetChannelLEDs(channel, modes[active_mode].colors);
}
else if(modes[active_mode].color_mode == MODE_COLORS_NONE)
{
std::vector<RGBColor> temp_colors;
temp_colors.push_back(0x00000000);
hue2->SetChannelLEDs(channel, temp_colors);
}
}
}
}
}
-1
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@@ -8,7 +8,6 @@
#pragma once
#include "RGBController.h"
#include "serial_port.h"
#include "Hue2Controller.h"
class RGBController_Hue2 : public RGBController
+126 -76
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@@ -20,109 +20,143 @@ RGBController_HuePlus::RGBController_HuePlus(HuePlusController* hueplus_ptr)
location = hueplus->GetLocation();
mode Direct;
Direct.name = "Direct";
Direct.value = HUE_PLUS_MODE_FIXED;
Direct.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Direct.name = "Direct";
Direct.value = HUE_PLUS_MODE_FIXED;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
// Fading mode is currently disabled because it doesn't appear to work
// mode Fading;
// Fading.name = "Fading";
// Fading.value = HUE_PLUS_MODE_FADING;
// Fading.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
// Fading.speed_min = HUE_PLUS_SPEED_SLOWEST;
// Fading.speed_max = HUE_PLUS_SPEED_FASTEST;
// Fading.speed = HUE_PLUS_SPEED_NORMAL;
// modes.push_back(Fading);
mode Fading;
Fading.name = "Fading";
Fading.value = HUE_PLUS_MODE_FADING;
Fading.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Fading.speed_min = HUE_PLUS_SPEED_SLOWEST;
Fading.speed_max = HUE_PLUS_SPEED_FASTEST;
Fading.colors_min = 1;
Fading.colors_max = 8;
Fading.speed = HUE_PLUS_SPEED_NORMAL;
Fading.color_mode = MODE_COLORS_MODE_SPECIFIC;
Fading.colors.resize(2);
modes.push_back(Fading);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = HUE_PLUS_MODE_SPECTRUM;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
SpectrumCycle.speed_min = HUE_PLUS_SPEED_SLOWEST;
SpectrumCycle.speed_max = HUE_PLUS_SPEED_FASTEST;
SpectrumCycle.speed = HUE_PLUS_SPEED_NORMAL;
SpectrumCycle.direction = MODE_DIRECTION_RIGHT;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = HUE_PLUS_MODE_SPECTRUM;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
SpectrumCycle.speed_min = HUE_PLUS_SPEED_SLOWEST;
SpectrumCycle.speed_max = HUE_PLUS_SPEED_FASTEST;
SpectrumCycle.speed = HUE_PLUS_SPEED_NORMAL;
SpectrumCycle.direction = MODE_DIRECTION_RIGHT;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
mode Marquee;
Marquee.name = "Marquee";
Marquee.value = HUE_PLUS_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Marquee.speed_min = HUE_PLUS_SPEED_SLOWEST;
Marquee.speed_max = HUE_PLUS_SPEED_FASTEST;
Marquee.speed = HUE_PLUS_SPEED_NORMAL;
Marquee.direction = MODE_DIRECTION_RIGHT;
Marquee.name = "Marquee";
Marquee.value = HUE_PLUS_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Marquee.speed_min = HUE_PLUS_SPEED_SLOWEST;
Marquee.speed_max = HUE_PLUS_SPEED_FASTEST;
Marquee.colors_min = 1;
Marquee.colors_max = 1;
Marquee.speed = HUE_PLUS_SPEED_NORMAL;
Marquee.direction = MODE_DIRECTION_RIGHT;
Marquee.color_mode = MODE_COLORS_MODE_SPECIFIC;
Marquee.colors.resize(1);
modes.push_back(Marquee);
mode CoverMarquee;
CoverMarquee.name = "Cover Marquee";
CoverMarquee.value = HUE_PLUS_MODE_COVER_MARQUEE;
CoverMarquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
CoverMarquee.speed_min = HUE_PLUS_SPEED_SLOWEST;
CoverMarquee.speed_max = HUE_PLUS_SPEED_FASTEST;
CoverMarquee.speed = HUE_PLUS_SPEED_NORMAL;
CoverMarquee.direction = MODE_DIRECTION_RIGHT;
CoverMarquee.name = "Cover Marquee";
CoverMarquee.value = HUE_PLUS_MODE_COVER_MARQUEE;
CoverMarquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
CoverMarquee.speed_min = HUE_PLUS_SPEED_SLOWEST;
CoverMarquee.speed_max = HUE_PLUS_SPEED_FASTEST;
CoverMarquee.colors_min = 1;
CoverMarquee.colors_max = 8;
CoverMarquee.speed = HUE_PLUS_SPEED_NORMAL;
CoverMarquee.direction = MODE_DIRECTION_RIGHT;
CoverMarquee.color_mode = MODE_COLORS_MODE_SPECIFIC;
CoverMarquee.colors.resize(2);
modes.push_back(CoverMarquee);
mode Alternating;
Alternating.name = "Alternating";
Alternating.value = HUE_PLUS_MODE_ALTERNATING;
Alternating.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Alternating.speed_min = HUE_PLUS_SPEED_SLOWEST;
Alternating.speed_max = HUE_PLUS_SPEED_FASTEST;
Alternating.speed = HUE_PLUS_SPEED_NORMAL;
Alternating.direction = MODE_DIRECTION_RIGHT;
Alternating.name = "Alternating";
Alternating.value = HUE_PLUS_MODE_ALTERNATING;
Alternating.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Alternating.speed_min = HUE_PLUS_SPEED_SLOWEST;
Alternating.speed_max = HUE_PLUS_SPEED_FASTEST;
Alternating.colors_min = 1;
Alternating.colors_max = 2;
Alternating.speed = HUE_PLUS_SPEED_NORMAL;
Alternating.direction = MODE_DIRECTION_RIGHT;
Alternating.color_mode = MODE_COLORS_MODE_SPECIFIC;
Alternating.colors.resize(2);
modes.push_back(Alternating);
mode Pulsing;
Pulsing.name = "Pulsing";
Pulsing.value = HUE_PLUS_MODE_PULSING;
Pulsing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Pulsing.speed_min = HUE_PLUS_SPEED_SLOWEST;
Pulsing.speed_max = HUE_PLUS_SPEED_FASTEST;
Pulsing.speed = HUE_PLUS_SPEED_NORMAL;
Pulsing.name = "Pulsing";
Pulsing.value = HUE_PLUS_MODE_PULSING;
Pulsing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Pulsing.speed_min = HUE_PLUS_SPEED_SLOWEST;
Pulsing.speed_max = HUE_PLUS_SPEED_FASTEST;
Pulsing.colors_min = 1;
Pulsing.colors_max = 8;
Pulsing.speed = HUE_PLUS_SPEED_NORMAL;
Pulsing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Pulsing.colors.resize(2);
modes.push_back(Pulsing);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = HUE_PLUS_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Breathing.speed_min = HUE_PLUS_SPEED_SLOWEST;
Breathing.speed_max = HUE_PLUS_SPEED_FASTEST;
Breathing.speed = HUE_PLUS_SPEED_NORMAL;
Breathing.name = "Breathing";
Breathing.value = HUE_PLUS_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.speed_min = HUE_PLUS_SPEED_SLOWEST;
Breathing.speed_max = HUE_PLUS_SPEED_FASTEST;
Breathing.colors_min = 1;
Breathing.colors_max = 8;
Breathing.speed = HUE_PLUS_SPEED_NORMAL;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(2);
modes.push_back(Breathing);
mode Alert;
Alert.name = "Alert";
Alert.value = HUE_PLUS_MODE_ALERT;
Alert.flags = 0;
Alert.name = "Alert";
Alert.value = HUE_PLUS_MODE_ALERT;
Alert.flags = 0;
Alert.color_mode = MODE_COLORS_NONE;
modes.push_back(Alert);
mode Candlelight;
Candlelight.name = "Candlelight";
Candlelight.value = HUE_PLUS_MODE_CANDLELIGHT;
Candlelight.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Candlelight.name = "Candlelight";
Candlelight.value = HUE_PLUS_MODE_CANDLELIGHT;
Candlelight.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Candlelight.colors_min = 1;
Candlelight.colors_max = 1;
Candlelight.color_mode = MODE_COLORS_MODE_SPECIFIC;
Candlelight.colors.resize(1);
modes.push_back(Candlelight);
mode Wings;
Wings.name = "Wings";
Wings.value = HUE_PLUS_MODE_WINGS;
Wings.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Wings.speed_min = HUE_PLUS_SPEED_SLOWEST;
Wings.speed_max = HUE_PLUS_SPEED_FASTEST;
Wings.speed = HUE_PLUS_SPEED_NORMAL;
Wings.name = "Wings";
Wings.value = HUE_PLUS_MODE_WINGS;
Wings.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Wings.speed_min = HUE_PLUS_SPEED_SLOWEST;
Wings.speed_max = HUE_PLUS_SPEED_FASTEST;
Wings.colors_min = 1;
Wings.colors_max = 1;
Wings.speed = HUE_PLUS_SPEED_NORMAL;
Wings.color_mode = MODE_COLORS_MODE_SPECIFIC;
Wings.colors.resize(1);
modes.push_back(Wings);
// Wave mode is currently disabled because it doesn't appear to work
// mode Wave;
// Wave.name = "Wave";
// Wave.value = HUE_PLUS_MODE_WAVE;
// Wave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
// Wave.speed_min = HUE_PLUS_SPEED_SLOWEST;
// Wave.speed_max = HUE_PLUS_SPEED_FASTEST;
// Wave.speed = HUE_PLUS_SPEED_NORMAL;
// modes.push_back(Wave);
mode Wave;
Wave.name = "Wave";
Wave.value = HUE_PLUS_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Wave.speed_min = HUE_PLUS_SPEED_SLOWEST;
Wave.speed_max = HUE_PLUS_SPEED_FASTEST;
Wave.speed = HUE_PLUS_SPEED_NORMAL;
Wave.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Wave);
/*-------------------------------------------------*\
| Set size of colors array |
@@ -243,7 +277,7 @@ void RGBController_HuePlus::UpdateSingleLED(int led)
void RGBController_HuePlus::SetCustomMode()
{
SetMode(0);
active_mode = 0;
}
void RGBController_HuePlus::UpdateMode()
@@ -272,7 +306,23 @@ void RGBController_HuePlus::UpdateMode()
}
hueplus->SetMode(modes[active_mode].value, modes[active_mode].speed, direction);
hueplus->SetChannelLEDs(channel, channel_colors);
if(modes[active_mode].color_mode == MODE_COLORS_PER_LED)
{
hueplus->SetChannelLEDs(channel, channel_colors);
}
else if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
hueplus->SetModeColors(channel, modes[active_mode].colors);
}
else if(modes[active_mode].color_mode == MODE_COLORS_NONE)
{
std::vector<RGBColor> temp_colors;
temp_colors.push_back(0x00000000);
hueplus->SetModeColors(channel, temp_colors);
}
}
}
}
}
+88 -55
View File
@@ -92,83 +92,105 @@ RGBController_HyperX::RGBController_HyperX(HyperXController* hyperx_ptr)
type = DEVICE_TYPE_DRAM;
mode Direct;
Direct.name = "Direct";
Direct.value = HYPERX_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Direct.name = "Direct";
Direct.value = HYPERX_MODE_DIRECT;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Static;
Static.name = "Static";
Static.value = HYPERX_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_COLOR;
Static.name = "Static";
Static.value = HYPERX_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = HYPERX_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = HYPERX_SPEED_RAINBOW_SLOW;
Rainbow.speed_max = HYPERX_SPEED_RAINBOW_FAST;
Rainbow.speed = HYPERX_SPEED_RAINBOW_NORMAL;
Rainbow.name = "Rainbow";
Rainbow.value = HYPERX_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.speed_min = HYPERX_SPEED_RAINBOW_SLOW;
Rainbow.speed_max = HYPERX_SPEED_RAINBOW_FAST;
Rainbow.speed = HYPERX_SPEED_RAINBOW_NORMAL;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
mode Comet;
Comet.name = "Comet";
Comet.value = HYPERX_MODE_COMET;
Comet.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Comet.speed_min = HYPERX_SPEED_COMET_SLOW;
Comet.speed_max = HYPERX_SPEED_COMET_FAST;
Comet.random = false;
Comet.speed = HYPERX_SPEED_COMET_NORMAL;
Comet.name = "Comet";
Comet.value = HYPERX_MODE_COMET;
Comet.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Comet.speed_min = HYPERX_SPEED_COMET_SLOW;
Comet.speed_max = HYPERX_SPEED_COMET_FAST;
Comet.colors_min = 1;
Comet.colors_max = 1;
Comet.speed = HYPERX_SPEED_COMET_NORMAL;
Comet.color_mode = MODE_COLORS_MODE_SPECIFIC;
Comet.colors.resize(1);
modes.push_back(Comet);
mode Heartbeat;
Heartbeat.name = "Heartbeat";
Heartbeat.value = HYPERX_MODE_HEARTBEAT;
Heartbeat.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Heartbeat.speed_min = HYPERX_SPEED_COMET_SLOW;
Heartbeat.speed_max = HYPERX_SPEED_COMET_FAST;
Heartbeat.random = false;
Heartbeat.speed = HYPERX_SPEED_COMET_NORMAL;
Heartbeat.name = "Heartbeat";
Heartbeat.value = HYPERX_MODE_HEARTBEAT;
Heartbeat.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Heartbeat.speed_min = HYPERX_SPEED_COMET_SLOW;
Heartbeat.speed_max = HYPERX_SPEED_COMET_FAST;
Heartbeat.colors_min = 1;
Heartbeat.colors_max = 1;
Heartbeat.speed = HYPERX_SPEED_COMET_NORMAL;
Heartbeat.color_mode = MODE_COLORS_MODE_SPECIFIC;
Heartbeat.colors.resize(1);
modes.push_back(Heartbeat);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = HYPERX_MODE_CYCLE;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED;
SpectrumCycle.speed_min = HYPERX_SPEED_CYCLE_SLOW;
SpectrumCycle.speed_max = HYPERX_SPEED_CYCLE_FAST;
SpectrumCycle.speed = HYPERX_SPEED_CYCLE_NORMAL;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = HYPERX_MODE_CYCLE;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED;
SpectrumCycle.speed_min = HYPERX_SPEED_CYCLE_SLOW;
SpectrumCycle.speed_max = HYPERX_SPEED_CYCLE_FAST;
SpectrumCycle.speed = HYPERX_SPEED_CYCLE_NORMAL;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = HYPERX_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Breathing.speed_min = HYPERX_SPEED_BREATHING_SLOW;
Breathing.speed_max = HYPERX_SPEED_BREATHING_FAST;
Breathing.random = false;
Breathing.speed = HYPERX_SPEED_BREATHING_NORMAL;
Breathing.name = "Breathing";
Breathing.value = HYPERX_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Breathing.speed_min = HYPERX_SPEED_BREATHING_SLOW;
Breathing.speed_max = HYPERX_SPEED_BREATHING_FAST;
Breathing.colors_min = 1;
Breathing.colors_max = 1;
Breathing.speed = HYPERX_SPEED_BREATHING_NORMAL;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(1);
modes.push_back(Breathing);
mode Bounce;
Bounce.name = "Bounce";
Bounce.value = HYPERX_MODE_BOUNCE;
Bounce.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Bounce.speed_min = HYPERX_SPEED_BOUNCE_SLOW;
Bounce.speed_max = HYPERX_SPEED_BOUNCE_FAST;
Bounce.random = false;
Bounce.speed = HYPERX_SPEED_BOUNCE_NORMAL;
Bounce.name = "Bounce";
Bounce.value = HYPERX_MODE_BOUNCE;
Bounce.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Bounce.speed_min = HYPERX_SPEED_BOUNCE_SLOW;
Bounce.speed_max = HYPERX_SPEED_BOUNCE_FAST;
Bounce.colors_min = 1;
Bounce.colors_max = 1;
Bounce.speed = HYPERX_SPEED_BOUNCE_NORMAL;
Bounce.color_mode = MODE_COLORS_MODE_SPECIFIC;
Bounce.colors.resize(1);
modes.push_back(Bounce);
mode Blink;
Blink.name = "Blink";
Blink.value = HYPERX_MODE_BLINK;
Blink.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_RANDOM_COLOR;
Blink.speed_min = HYPERX_SPEED_BLINK_SLOW;
Blink.speed_max = HYPERX_SPEED_BLINK_FAST;
Blink.random = false;
Blink.speed = HYPERX_SPEED_BLINK_NORMAL;
Blink.name = "Blink";
Blink.value = HYPERX_MODE_BLINK;
Blink.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Blink.speed_min = HYPERX_SPEED_BLINK_SLOW;
Blink.speed_max = HYPERX_SPEED_BLINK_FAST;
Blink.colors_min = 1;
Blink.colors_max = 1;
Blink.speed = HYPERX_SPEED_BLINK_NORMAL;
Blink.color_mode = MODE_COLORS_MODE_SPECIFIC;
Blink.colors.resize(1);
modes.push_back(Blink);
colors.resize(hyperx->GetLEDCount());
@@ -212,11 +234,22 @@ RGBController_HyperX::RGBController_HyperX(HyperXController* hyperx_ptr)
void RGBController_HyperX::SetCustomMode()
{
SetMode(0);
active_mode = 0;
}
void RGBController_HyperX::UpdateMode()
{
hyperx->SetMode(modes[active_mode].value, modes[active_mode].random, modes[active_mode].speed);
bool random = (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
hyperx->SetMode(modes[active_mode].value, random, modes[active_mode].speed);
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
unsigned char red = RGBGetRValue(modes[active_mode].colors[0]);
unsigned char grn = RGBGetGValue(modes[active_mode].colors[0]);
unsigned char blu = RGBGetBValue(modes[active_mode].colors[0]);
hyperx->SetEffectColor(red, grn, blu);
}
}
@@ -0,0 +1,331 @@
/*-----------------------------------------*\
| RGBController_HyperXKeyboard.cpp |
| |
| Generic RGB Interface for HyperX RGB |
| Keyboard |
| |
| Adam Honse (CalcProgrammer1) 2/2/2020 |
\*-----------------------------------------*/
#include "RGBController_HyperXKeyboard.h"
//Include thread libraries for Windows or Linux
#ifdef WIN32
#include <process.h>
#else
#include "pthread.h"
#include "unistd.h"
#endif
//Thread functions have different types in Windows and Linux
#ifdef WIN32
#define THREAD static void
#define THREADRETURN
#else
#define THREAD static void*
#define THREADRETURN return(NULL);
#endif
#ifdef WIN32
#include <Windows.h>
#else
#include <unistd.h>
static void Sleep(unsigned int milliseconds)
{
usleep(1000 * milliseconds);
}
#endif
THREAD keepalive_thread(void *param)
{
RGBController_HyperXKeyboard* controller = static_cast<RGBController_HyperXKeyboard*>(param);
controller->KeepaliveThread();
THREADRETURN
}
static const char* zone_names[] =
{
"Keyboard",
"RGB Strip",
"Media Keys"
};
static const unsigned int zone_sizes[] =
{
104,
18,
4
};
static const char* led_names[] =
{
"Key: Escape",
"Key: `",
"Key: Tab",
"Key: Caps Lock",
"Key: Left Shift",
"Key: Left Control",
"Key: F12",
"Key: =",
"Key: F9",
"Key: 9",
"Key: O",
"Key: L",
"Key: ,",
"Key: Context",
"Key: Left Arrow",
"Key: F1",
"Key: 1",
"Key: Q",
"Key: A",
"Key: Left Windows",
"Key: Print Screen",
"Key: F10",
"Key: 0",
"Key: P",
"Key: ;",
"Key: .",
"Key: Enter",
"Key: Down Arrow",
"Key: F2",
"Key: 2",
"Key: W",
"Key: S",
"Key: Z",
"Key: Left Alt",
"Key: Scroll Lock",
"Key: Backspace",
"Key: F11",
"Key: -",
"Key: [",
"Key: '",
"Key: /",
"Key: Right Arrow",
"Key: F3",
"Key: 3",
"Key: E",
"Key: D",
"Key: X",
"Key: Pause/Break",
"Key: Delete",
"Key: Number Pad 7",
"Key: Num Lock",
"Key: Number Pad 6",
"Key: F4",
"Key: 4",
"Key: R",
"Key: F",
"Key: C",
"Key: Space",
"Key: Insert",
"Key: End",
"Key: Number Pad 8",
"Key: Number Pad /",
"Key: Number Pad 1",
"Key: F5",
"Key: 5",
"Key: T",
"Key: G",
"Key: V",
"Key: Home",
"Key: Page Down",
"Key: Number Pad 9",
"Key: Number Pad *",
"Key: Number Pad 2",
"Key: F6",
"Key: 6",
"Key: Y",
"Key: H",
"Key: B",
"Key: Page Up",
"Key: Right Shift",
"Key: Number Pad -",
"Key: Number Pad 3",
"Key: F7",
"Key: 7",
"Key: U",
"Key: J",
"Key: N",
"Key: Right Alt",
"Key: ]",
"Key: Right Control",
"Key: Number Pad 4",
"Key: Number Pad +",
"Key: Number Pad 0",
"Key: F8",
"Key: 8",
"Key: I",
"Key: K",
"Key: M",
"Key: Right Windows",
"Key: \\",
"Key: Up Arrow",
"Key: Number Pad 5",
"Key: Number Pad Enter",
"Key: Number Pad .",
"RGB Strip 1",
"RGB Strip 2",
"RGB Strip 3",
"RGB Strip 4",
"RGB Strip 5",
"RGB Strip 6",
"RGB Strip 7",
"RGB Strip 8",
"RGB Strip 9",
"RGB Strip 10",
"RGB Strip 11",
"RGB Strip 12",
"RGB Strip 13",
"RGB Strip 14",
"RGB Strip 15",
"RGB Strip 16",
"RGB Strip 17",
"RGB Strip 18",
"Media Previous",
"Media Play/Pause",
"Media Next",
"Media Mute"
};
RGBController_HyperXKeyboard::RGBController_HyperXKeyboard(HyperXKeyboardController* hyperx_ptr)
{
hyperx = hyperx_ptr;
name = "HyperX RGB Keyboard";
type = DEVICE_TYPE_KEYBOARD;
mode Direct;
Direct.name = "Direct";
Direct.value = HYPERX_MODE_STATIC;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Static;
Static.name = "Static";
Static.value = HYPERX_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Wave;
Wave.name = "Wave";
Wave.value = HYPERX_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
Wave.speed_min = 0x00;
Wave.speed_max = 0x09;
Wave.color_mode = MODE_COLORS_NONE;
Wave.speed = 0x09;
Wave.direction = MODE_DIRECTION_LEFT;
modes.push_back(Wave);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = HYPERX_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Breathing.speed_min = 0x00;
Breathing.speed_max = 0x09;
Breathing.colors_min = 1;
Breathing.colors_max = 2;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.speed = 0x09;
Breathing.colors.resize(2);
modes.push_back(Breathing);
colors.resize(126);
unsigned int led_idx = 0;
for(unsigned int zone_idx = 0; zone_idx < 3; zone_idx++)
{
zone new_zone;
new_zone.name.append(zone_names[zone_idx]);
std::vector<int> new_zone_map;
for(unsigned int led_count = 0; led_count < zone_sizes[zone_idx]; led_count++)
{
led new_led;
new_led.name.append(led_names[led_idx]);
leds.push_back(new_led);
new_zone_map.push_back(led_idx);
led_idx++;
}
new_zone.map.push_back(new_zone_map);
zones.push_back(new_zone);
}
/*-----------------------------------------------------*\
| The Corsair Lighting Node Pro requires a packet within|
| 20 seconds of sending the lighting change in order |
| to not revert back into rainbow mode. Start a thread |
| to continuously send a keepalive packet every 5s |
\*-----------------------------------------------------*/
#ifdef WIN32
_beginthread(keepalive_thread, 0, this);
#else
pthread_t thread;
pthread_create(&thread, NULL, &keepalive_thread, this);
#endif
}
RGBController_HyperXKeyboard::~RGBController_HyperXKeyboard()
{
}
void RGBController_HyperXKeyboard::UpdateLEDs()
{
if(active_mode == 0)
{
hyperx->SetLEDsDirect(colors);
}
else
{
hyperx->SetLEDs(colors);
}
}
void RGBController_HyperXKeyboard::UpdateZoneLEDs(int zone)
{
UpdateLEDs();
}
void RGBController_HyperXKeyboard::UpdateSingleLED(int led)
{
UpdateLEDs();
}
void RGBController_HyperXKeyboard::SetCustomMode()
{
active_mode = 1;
}
void RGBController_HyperXKeyboard::UpdateMode()
{
if(modes[active_mode].color_mode == MODE_COLORS_MODE_SPECIFIC)
{
hyperx->SetMode(modes[active_mode].value, modes[active_mode].direction, modes[active_mode].speed, modes[active_mode].colors);
}
else
{
std::vector<RGBColor> temp_colors;
hyperx->SetMode(modes[active_mode].value, modes[active_mode].direction, modes[active_mode].speed, temp_colors);
}
}
void RGBController_HyperXKeyboard::KeepaliveThread()
{
while(1)
{
if(active_mode == 0)
{
hyperx->SetLEDsDirect(colors);
}
Sleep(200);
}
}
@@ -0,0 +1,30 @@
/*-----------------------------------------*\
| RGBController_HyperXKeyboard.h |
| |
| Generic RGB Interface for HyperX RGB |
| Keyboard |
| |
| Adam Honse (CalcProgrammer1) 2/2/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "HyperXKeyboardController.h"
class RGBController_HyperXKeyboard : public RGBController
{
public:
RGBController_HyperXKeyboard(HyperXKeyboardController* hyperx_ptr);
~RGBController_HyperXKeyboard();
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void UpdateMode();
void KeepaliveThread();
private:
HyperXKeyboardController* hyperx;
};
+13 -5
View File
@@ -18,16 +18,24 @@ RGBController_LEDStrip::RGBController_LEDStrip(LEDStripController* ledstrip_ptr)
type = DEVICE_TYPE_LEDSTRIP;
mode led_mode;
led_mode.name = "Custom";
modes.push_back(led_mode);
mode Direct;
Direct.name = "Direct";
Direct.value = 0;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
colors.resize(strip->num_leds);
for (int i = 0; i < strip->num_leds; i++)
{
char id_buf[16];
snprintf(id_buf, 16, "%d", i);
led new_led;
new_led.name = "LED Strip";
new_led.name = "LED ";
new_led.name.append(id_buf);
leds.push_back(new_led);
}
@@ -65,4 +73,4 @@ void RGBController_LEDStrip::SetCustomMode()
void RGBController_LEDStrip::UpdateMode()
{
}
}
+7 -4
View File
@@ -16,9 +16,12 @@ RGBController_MSI3Zone::RGBController_MSI3Zone(MSI3ZoneController* msi_ptr)
name = "MSI 3-Zone Keyboard";
type = DEVICE_TYPE_KEYBOARD;
mode led_mode;
led_mode.name = "Custom";
modes.push_back(led_mode);
mode Direct;
Direct.name = "Direct";
Direct.value = 0;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
led left_led;
left_led.name = "Keyboard Left";
@@ -87,4 +90,4 @@ void RGBController_MSI3Zone::SetCustomMode()
void RGBController_MSI3Zone::UpdateMode()
{
}
}
+75
View File
@@ -0,0 +1,75 @@
/*-----------------------------------------*\
| RGBController_MSIRGB.cpp |
| |
| Generic RGB Interface for MSI-RGB |
| |
| Adam Honse (CalcProgrammer1) 2/14/2020 |
\*-----------------------------------------*/
#include "RGBController_MSIRGB.h"
RGBController_MSIRGB::RGBController_MSIRGB(MSIRGBController* msi_ptr)
{
msi = msi_ptr;
name = "MSI Motherboard";
description = "MSI-RGB Device";
type = DEVICE_TYPE_MOTHERBOARD;
mode Direct;
Direct.name = "Direct";
Direct.value = 0;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
led msi_led;
msi_led.name = "MSI LED";
leds.push_back(msi_led);
zone msi_zone;
msi_zone.name = "MSI Zone";
msi_zone.type = ZONE_TYPE_SINGLE;
std::vector<int> msi_zone_map;
msi_zone_map.push_back(0);
msi_zone.map.push_back(msi_zone_map);
zones.push_back(msi_zone);
colors.push_back(0x00000000);
}
RGBController_MSIRGB::~RGBController_MSIRGB()
{
}
void RGBController_MSIRGB::UpdateLEDs()
{
RGBColor color = colors[0];
unsigned char red = RGBGetRValue(color);
unsigned char grn = RGBGetGValue(color);
unsigned char blu = RGBGetBValue(color);
msi->SetColor(red, grn, blu);
}
void RGBController_MSIRGB::UpdateZoneLEDs(int zone)
{
UpdateLEDs();
}
void RGBController_MSIRGB::UpdateSingleLED(int led)
{
UpdateLEDs();
}
void RGBController_MSIRGB::SetCustomMode()
{
}
void RGBController_MSIRGB::UpdateMode()
{
}
+27
View File
@@ -0,0 +1,27 @@
/*-----------------------------------------*\
| RGBController_MSIRGB.h |
| |
| Generic RGB Interface for MSI-RGB |
| |
| Adam Honse (CalcProgrammer1) 2/14/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "MSIRGBController.h"
class RGBController_MSIRGB : public RGBController
{
public:
RGBController_MSIRGB(MSIRGBController* msi_ptr);
~RGBController_MSIRGB();
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void UpdateMode();
private:
MSIRGBController* msi;
};
+182 -88
View File
@@ -12,7 +12,6 @@
#include <fstream>
#include <unistd.h>
void RGBController_OpenRazer::UpdateLEDs()
{
switch(matrix_type)
@@ -81,7 +80,7 @@ void RGBController_OpenRazer::UpdateLEDs()
}
}
break;
#if 0
case RAZER_TYPE_NOMATRIX:
{
unsigned int output_array_size = 3;
@@ -107,6 +106,7 @@ void RGBController_OpenRazer::UpdateLEDs()
scroll_led_effect.flush();
}
break;
#endif
}
}
@@ -120,59 +120,8 @@ void RGBController_OpenRazer::UpdateSingleLED(int led)
UpdateLEDs();
}
static std::string GetDeviceTypeString(std::string dev_path)
{
// Read device_type for device name string
std::string dev_type_path = dev_path + "/device_type";
std::ifstream dev_type_file;
std::string ret_str;
dev_type_file.open(dev_type_path);
std::getline(dev_type_file, ret_str);
dev_type_file.close();
return(ret_str);
}
static std::string GetFirmwareVersionString(std::string dev_path)
{
// Read firmware_version for firmware version string
std::string firm_ver_path = dev_path + "/firmware_version";
std::ifstream firm_ver_file;
std::string ret_str;
firm_ver_file.open(firm_ver_path);
std::getline(firm_ver_file, ret_str);
firm_ver_file.close();
return(ret_str);
}
static std::string GetSerialNumberString(std::string dev_path)
{
// Read device_serial for serial number string
std::string ser_num_path = dev_path + "/device_serial";
std::ifstream ser_num_file;
std::string ret_str;
ser_num_file.open(ser_num_path);
std::getline(ser_num_file, ret_str);
ser_num_file.close();
return(ret_str);
}
void RGBController_OpenRazer::SetupMatrixDevice(std::string dev_path, unsigned int rows, unsigned int cols)
{
matrix_custom_frame.open(dev_path + "/matrix_custom_frame");
matrix_effect_custom.open(dev_path + "/matrix_effect_custom");
matrix_effect_breath.open(dev_path + "/matrix_effect_breath");
matrix_effect_none.open(dev_path + "/matrix_effect_none");
matrix_effect_reactive.open(dev_path + "/matrix_effect_reactive");
matrix_effect_spectrum.open(dev_path + "/matrix_effect_spectrum");
matrix_effect_static.open(dev_path + "/matrix_effect_static");
matrix_effect_wave.open(dev_path + "/matrix_effect_wave");
if(!matrix_custom_frame)
{
if(!matrix_effect_custom)
@@ -198,27 +147,60 @@ void RGBController_OpenRazer::SetupMatrixDevice(std::string dev_path, unsigned i
void RGBController_OpenRazer::SetupNonMatrixDevice(std::string dev_path)
{
logo_led_effect.open(dev_path + "/logo_led_effect");
logo_led_rgb.open(dev_path + "/logo_led_rgb");
scroll_led_effect.open(dev_path + "/scroll_led_effect");
scroll_led_rgb.open(dev_path + "/scroll_led_rgb");
matrix_type = RAZER_TYPE_NOMATRIX;
}
void RGBController_OpenRazer::OpenFunctions(std::string dev_path)
{
device_type.open( dev_path + "/device_type");
device_serial.open( dev_path + "/device_serial");
firmware_version.open( dev_path + "/firmware_version");
matrix_custom_frame.open( dev_path + "/matrix_custom_frame");
matrix_brightness.open( dev_path + "/matrix_brightness");
matrix_effect_custom.open( dev_path + "/matrix_effect_custom");
matrix_effect_none.open( dev_path + "/matrix_effect_none");
matrix_effect_static.open( dev_path + "/matrix_effect_static");
matrix_effect_breath.open( dev_path + "/matrix_effect_breath");
matrix_effect_spectrum.open( dev_path + "/matrix_effect_spectrum");
matrix_effect_reactive.open( dev_path + "/matrix_effect_reactive");
matrix_effect_wave.open( dev_path + "/matrix_effect_wave");
logo_led_brightness.open( dev_path + "/logo_led_brightness");
logo_matrix_effect_none.open( dev_path + "/logo_matrix_effect_none");
logo_matrix_effect_static.open( dev_path + "/logo_matrix_effect_static");
logo_matrix_effect_spectrum.open( dev_path + "/logo_matrix_effect_spectrum");
logo_matrix_effect_reactive.open( dev_path + "/logo_matrix_effect_reactive");
scroll_led_brightness.open( dev_path + "/scroll_led_brightness");
scroll_matrix_effect_none.open( dev_path + "/scroll_matrix_effect_none");
scroll_matrix_effect_static.open( dev_path + "/scroll_matrix_effect_static");
scroll_matrix_effect_spectrum.open(dev_path + "/scroll_matrix_effect_spectrum");
scroll_matrix_effect_reactive.open(dev_path + "/scroll_matrix_effect_reactive");
scroll_led_effect.open( dev_path + "/scroll_led_effect");
scroll_led_rgb.open( dev_path + "/scroll_led_rgb");
}
RGBController_OpenRazer::RGBController_OpenRazer(std::string dev_path)
{
unsigned int led_count = 0;
/*-----------------------------------------------------------------*\
| Open the OpenRazer device functions |
\*-----------------------------------------------------------------*/
OpenFunctions(dev_path);
/*-----------------------------------------------------------------*\
| Start device at -1. This indicates the device was not detected |
\*-----------------------------------------------------------------*/
device = -1;
device_index = -1;
/*-----------------------------------------------------------------*\
| Get the device name from the OpenRazer driver |
\*-----------------------------------------------------------------*/
name = GetDeviceTypeString(dev_path);
std::getline(device_type, name);
/*-----------------------------------------------------------------*\
| Set the description to indicate this is an OpenRazer device |
@@ -233,12 +215,12 @@ RGBController_OpenRazer::RGBController_OpenRazer(std::string dev_path)
/*-----------------------------------------------------------------*\
| Get the serial number from the dev path |
\*-----------------------------------------------------------------*/
serial = GetSerialNumberString(dev_path);
std::getline(device_serial, serial);
/*-----------------------------------------------------------------*\
| Get the firmware version from the dev path |
\*-----------------------------------------------------------------*/
version = GetFirmwareVersionString(dev_path);
std::getline(firmware_version, version);
/*-----------------------------------------------------------------*\
| Loop through all known devices to look for a name match |
@@ -250,7 +232,7 @@ RGBController_OpenRazer::RGBController_OpenRazer(std::string dev_path)
/*---------------------------------------------------------*\
| Set device ID |
\*---------------------------------------------------------*/
device = i;
device_index = i;
/*---------------------------------------------------------*\
| Set device type |
@@ -260,19 +242,81 @@ RGBController_OpenRazer::RGBController_OpenRazer(std::string dev_path)
/*---------------------------------------------------------*\
| Initialize modes |
\*---------------------------------------------------------*/
mode razer_modes[RAZER_NUM_MODES];
razer_modes[0].name = "Custom";
razer_modes[1].name = "Off";
razer_modes[2].name = "Static";
razer_modes[3].name = "Breathing";
razer_modes[4].name = "Spectrum Cycle";
razer_modes[5].name = "Wave";
razer_modes[6].name = "Reactive";
for (int i = 0; i < RAZER_NUM_MODES; i++)
if(matrix_effect_custom)
{
modes.push_back(razer_modes[i]);
mode Custom;
Custom.name = "Custom";
Custom.value = RAZER_MODE_CUSTOM;
Custom.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Custom.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Custom);
}
if(matrix_effect_none)
{
mode Off;
Off.name = "Off";
Off.value = RAZER_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
}
if(matrix_effect_static)
{
mode Static;
Static.name = "Static";
Static.value = RAZER_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
}
if(matrix_effect_breath)
{
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = RAZER_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Breathing.colors_min = 1;
Breathing.colors_max = 2;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(1);
modes.push_back(Breathing);
}
if(matrix_effect_spectrum)
{
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = RAZER_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = 0;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
}
if(matrix_effect_wave)
{
mode Wave;
Wave.name = "Wave";
Wave.value = RAZER_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_DIRECTION_LR;
Wave.direction = MODE_DIRECTION_RIGHT;
Wave.color_mode = MODE_COLORS_NONE;
modes.push_back(Wave);
}
if(matrix_effect_reactive)
{
mode Reactive;
Reactive.name = "Reactive";
Reactive.value = RAZER_MODE_REACTIVE;
Reactive.flags = 0;
Reactive.color_mode = MODE_COLORS_NONE;
modes.push_back(Reactive);
}
/*---------------------------------------------------------*\
@@ -304,11 +348,15 @@ RGBController_OpenRazer::RGBController_OpenRazer(std::string dev_path)
for (unsigned int col_id = 0; col_id < device_list[i]->zones[zone_id]->cols; col_id++)
{
char id_buf[8];
snprintf(id_buf, 8, "%d", col_id + 1);
RGBColor new_color = 0x00000000;
colors.push_back(new_color);
led* new_led = new led();
new_led->name = device_list[i]->zones[zone_id]->name;
new_led->name = device_list[i]->zones[zone_id]->name + " LED ";
new_led->name.append(id_buf);
leds.push_back(*new_led);
new_zone_map.push_back(led_count);
@@ -327,54 +375,99 @@ RGBController_OpenRazer::RGBController_OpenRazer(std::string dev_path)
void RGBController_OpenRazer::SetCustomMode()
{
SetMode(RAZER_MODE_CUSTOM);
active_mode = RAZER_MODE_CUSTOM;
}
void RGBController_OpenRazer::UpdateMode()
{
char update_value = 1;
char update_value[6];
update_value[0] = 1;
switch(matrix_type)
{
case RAZER_TYPE_MATRIX_FRAME:
case RAZER_TYPE_MATRIX_NOFRAME:
{
switch(active_mode)
switch(modes[active_mode].value)
{
case RAZER_MODE_CUSTOM:
matrix_effect_custom.write(&update_value, 1);
matrix_effect_custom.write(update_value, 1);
matrix_effect_custom.flush();
break;
case RAZER_MODE_OFF:
matrix_effect_none.write(&update_value, 1);
matrix_effect_none.write(update_value, 1);
matrix_effect_none.flush();
break;
case RAZER_MODE_STATIC:
update_value[0] = RGBGetRValue(modes[RAZER_MODE_STATIC].colors[0]);
update_value[1] = RGBGetGValue(modes[RAZER_MODE_STATIC].colors[0]);
update_value[2] = RGBGetBValue(modes[RAZER_MODE_STATIC].colors[0]);
matrix_effect_static.write(update_value, 3);
matrix_effect_static.flush();
break;
case RAZER_MODE_BREATHING:
switch(modes[RAZER_MODE_BREATHING].color_mode)
{
case MODE_COLORS_MODE_SPECIFIC:
update_value[0] = RGBGetRValue(modes[RAZER_MODE_BREATHING].colors[0]);
update_value[1] = RGBGetGValue(modes[RAZER_MODE_BREATHING].colors[0]);
update_value[2] = RGBGetBValue(modes[RAZER_MODE_BREATHING].colors[0]);
if(modes[RAZER_MODE_BREATHING].colors.size() == 2)
{
update_value[3] = RGBGetRValue(modes[RAZER_MODE_BREATHING].colors[1]);
update_value[4] = RGBGetGValue(modes[RAZER_MODE_BREATHING].colors[1]);
update_value[5] = RGBGetBValue(modes[RAZER_MODE_BREATHING].colors[1]);
matrix_effect_breath.write(update_value, 6);
matrix_effect_breath.flush();
}
else
{
matrix_effect_breath.write(update_value, 3);
matrix_effect_breath.flush();
}
break;
case MODE_COLORS_RANDOM:
matrix_effect_breath.write(update_value, 1);
matrix_effect_breath.flush();
break;
}
break;
case RAZER_MODE_SPECTRUM_CYCLE:
matrix_effect_spectrum.write(&update_value, 1);
matrix_effect_spectrum.write(update_value, 1);
matrix_effect_spectrum.flush();
break;
case RAZER_MODE_WAVE:
matrix_effect_wave.write(&update_value, 1);
switch(modes[active_mode].direction)
{
case MODE_DIRECTION_LEFT:
update_value[0] = '2';
break;
default:
update_value[0] = '1';
break;
}
matrix_effect_wave.write(update_value, 1);
matrix_effect_wave.flush();
break;
case RAZER_MODE_REACTIVE:
matrix_effect_reactive.write(&update_value, 1);
matrix_effect_reactive.write(update_value, 1);
matrix_effect_reactive.flush();
break;
}
}
break;
#if 0
case RAZER_TYPE_NOMATRIX:
{
switch(active_mode)
@@ -396,5 +489,6 @@ void RGBController_OpenRazer::UpdateMode()
break;
}
}
#endif
}
}
}
+26 -890
View File
@@ -10,890 +10,10 @@
#pragma once
#include "RGBController.h"
#include "OpenRazerDevices.h"
#include <fstream>
#define RAZER_MAX_ZONES 6
typedef struct
{
std::string name;
unsigned int type;
unsigned int rows;
unsigned int cols;
} razer_zone;
typedef struct
{
std::string name;
device_type type;
bool matrix_type;
unsigned int rows;
unsigned int cols;
const razer_zone* zones[RAZER_MAX_ZONES];
} razer_device;
/*-------------------------------------------------------------------------*\
| KEYBOARDS |
\*-------------------------------------------------------------------------*/
/*-------------------------------------------------------------*\
| Razer BlackWidow Chroma |
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 22 Columns |
\*-------------------------------------------------------------*/
static const razer_zone blackwidow_chroma_zone =
{
"Keyboard",
ZONE_TYPE_MATRIX,
6,
22
};
static const razer_device blackwidow_chroma_device =
{
"Razer BlackWidow Chroma",
DEVICE_TYPE_KEYBOARD,
true,
6,
22,
{
&blackwidow_chroma_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer BlackWidow Chroma Tournament Edition |
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 22 Columns |
\*-------------------------------------------------------------*/
static const razer_zone blackwidow_chroma_te_zone =
{
"Keyboard",
ZONE_TYPE_MATRIX,
6,
22
};
static const razer_device blackwidow_chroma_te_device =
{
"Razer BlackWidow Chroma Tournament Edition",
DEVICE_TYPE_KEYBOARD,
true,
6,
22,
{
&blackwidow_chroma_te_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer Ornata Chroma |
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 22 Columns |
\*-------------------------------------------------------------*/
static const razer_zone ornata_chroma_zone =
{
"Keyboard",
ZONE_TYPE_MATRIX,
6,
22
};
static const razer_device ornata_chroma_device =
{
"Razer Ornata Chroma",
DEVICE_TYPE_KEYBOARD,
true,
6,
22,
{
&ornata_chroma_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer DeathStalker Chroma |
| |
| Zone "Keyboard" |
| Linear |
| 12 LEDs |
\*-------------------------------------------------------------*/
static const razer_zone deathstalker_chroma_zone =
{
"Keyboard",
ZONE_TYPE_LINEAR,
1,
12
};
static const razer_device deathstalker_chroma_device =
{
"Razer DeathStalker Chroma",
DEVICE_TYPE_KEYBOARD,
true,
1,
12,
{
&deathstalker_chroma_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------------------*\
| LAPTOPS |
\*-------------------------------------------------------------------------*/
/*-------------------------------------------------------------*\
| Razer Blade Stealth |
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 16 Columns |
\*-------------------------------------------------------------*/
static const razer_zone blade_stealth_zone =
{
"Keyboard",
ZONE_TYPE_MATRIX,
6,
16
};
static const razer_device blade_stealth_device =
{
"Razer Blade Stealth",
DEVICE_TYPE_KEYBOARD,
true,
6,
16,
{
&blade_stealth_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer Blade Pro (Late 2016) |
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 25 Columns |
\*-------------------------------------------------------------*/
static const razer_zone blade_pro_late_2016_zone =
{
"Keyboard",
ZONE_TYPE_MATRIX,
6,
25
};
static const razer_device blade_pro_late_2016_device =
{
"Razer Blade Pro (Late 2016)",
DEVICE_TYPE_KEYBOARD,
true,
6,
25,
{
&blade_pro_late_2016_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer Blade Pro (2017) |
| |
| Zone "Keyboard" |
| Matrix |
| 6 Rows, 25 Columns |
\*-------------------------------------------------------------*/
static const razer_zone blade_pro_2017_zone =
{
"Keyboard",
ZONE_TYPE_MATRIX,
6,
25
};
static const razer_device blade_pro_2017_device =
{
"Razer Blade Pro (2017)",
DEVICE_TYPE_KEYBOARD,
true,
6,
25,
{
&blade_pro_2017_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------------------*\
| MICE |
\*-------------------------------------------------------------------------*/
/*-------------------------------------------------------------*\
| Razer Mamba Tournament Edition |
| |
| Zone "Left" |
| Linear |
| 7 LEDs |
| |
| Zone "Right" |
| Linear |
| 7 LEDs |
| |
| Zone "Logo" |
| Single |
| 1 LED |
| |
| Zone "Scroll Wheel" |
| Single |
| 1 LED |
\*-------------------------------------------------------------*/
static const razer_zone mamba_te_left_zone =
{
"Left LED Strip",
ZONE_TYPE_LINEAR,
1,
7
};
static const razer_zone mamba_te_right_zone =
{
"Right LED Strip",
ZONE_TYPE_LINEAR,
1,
7
};
static const razer_zone mamba_te_logo_zone =
{
"Logo",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_zone mamba_te_scroll_wheel_zone =
{
"Scroll Wheel",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_device mamba_te_device =
{
"Razer Mamba Tournament Edition",
DEVICE_TYPE_MOUSE,
true,
1,
16,
{
&mamba_te_left_zone,
&mamba_te_right_zone,
&mamba_te_logo_zone,
&mamba_te_scroll_wheel_zone,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer Diamondback Chroma |
| |
| Zone "Right" |
| Linear |
| 7 LEDs |
| |
| Zone "Bottom" |
| Linear |
| 5 LEDs |
| |
| Zone "Left" |
| Linear |
| 7 LEDs |
| |
| Zone "Logo" |
| Single |
| 1 LED |
| |
| Zone "Scroll Wheel" |
| Single |
| 1 LED |
\*-------------------------------------------------------------*/
static const razer_zone diamondback_chroma_right_zone =
{
"Right LED Strip",
ZONE_TYPE_LINEAR,
1,
7
};
static const razer_zone diamondback_chroma_bottom_zone =
{
"Bottom LED Strip",
ZONE_TYPE_LINEAR,
1,
5
};
static const razer_zone diamondback_chroma_left_zone =
{
"Left LED Strip",
ZONE_TYPE_LINEAR,
1,
7
};
static const razer_zone diamondback_chroma_logo_zone =
{
"Logo",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_zone diamondback_chroma_scroll_wheel_zone =
{
"Scroll Wheel",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_device diamondback_chroma_device =
{
"Razer Diamondback Chroma",
DEVICE_TYPE_MOUSE,
true,
1,
21,
{
&diamondback_chroma_right_zone,
&diamondback_chroma_bottom_zone,
&diamondback_chroma_left_zone,
&diamondback_chroma_logo_zone,
&diamondback_chroma_scroll_wheel_zone,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer DeathAdder Chroma |
| |
| Zone "Logo" |
| Single |
| 1 LED |
| |
| Zone "Scroll Wheel" |
| Single |
| 1 LED |
\*-------------------------------------------------------------*/
static const razer_zone deathadder_chroma_logo_zone =
{
"Logo",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_zone deathadder_chroma_scroll_wheel_zone =
{
"Scroll Wheel",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_device deathadder_chroma_device =
{
"Razer DeathAdder Chroma",
DEVICE_TYPE_MOUSE,
false,
1,
2,
{
&deathadder_chroma_logo_zone,
&deathadder_chroma_scroll_wheel_zone,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer Naga Chroma |
| |
| Zone "Logo" |
| Single |
| 1 LED |
| |
| Zone "Scroll Wheel" |
| Single |
| 1 LED |
| |
| Zone "Numpad" |
| Single |
| 1 LED |
\*-------------------------------------------------------------*/
static const razer_zone naga_chroma_logo_zone =
{
"Logo",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_zone naga_chroma_scroll_wheel_zone =
{
"Scroll Wheel",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_zone naga_chroma_numpad_zone =
{
"Numpad",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_device naga_chroma_device =
{
"Razer Naga Chroma",
DEVICE_TYPE_MOUSE,
false,
1,
3,
{
&naga_chroma_logo_zone,
&naga_chroma_scroll_wheel_zone,
&naga_chroma_numpad_zone,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------------------*\
| KEYPADS |
\*-------------------------------------------------------------------------*/
/*-------------------------------------------------------------*\
| Razer Orbweaver Chroma |
| |
| Zone "Keypad" |
| Matrix |
| 4 Rows, 5 Columns |
\*-------------------------------------------------------------*/
static const razer_zone orbweaver_chroma_zone =
{
"Keypad",
ZONE_TYPE_MATRIX,
4,
5
};
static const razer_device orbweaver_chroma_device =
{
"Razer Orbweaver Chroma",
DEVICE_TYPE_KEYBOARD,
true,
6,
25,
{
&orbweaver_chroma_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer Tartarus Chroma |
| |
| Zone "Keypad" |
| Single |
| 1 LED |
\*-------------------------------------------------------------*/
static const razer_zone tartarus_chroma_zone =
{
"Keypad",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_device tartarus_chroma_device =
{
"Razer Tartarus Chroma",
DEVICE_TYPE_KEYBOARD,
true,
1,
1,
{
&tartarus_chroma_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------------------*\
| MOUSEMATS |
\*-------------------------------------------------------------------------*/
/*-------------------------------------------------------------*\
| Razer Firefly |
| |
| Zone "LED Strip" |
| Linear |
| 15 LEDs |
\*-------------------------------------------------------------*/
static const razer_zone firefly_zone =
{
"LED Strip",
ZONE_TYPE_LINEAR,
1,
15
};
static const razer_device firefly_device =
{
"Razer Firefly",
DEVICE_TYPE_MOUSEMAT,
true,
1,
15,
{
&firefly_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer Goliathus Extended |
| |
| Zone "LED Strip" |
| Single |
| 1 LED |
\*-------------------------------------------------------------*/
static const razer_zone goliathus_extended_zone =
{
"LED Strip",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_device goliathus_extended_device =
{
"Razer Goliathus Extended",
DEVICE_TYPE_MOUSEMAT,
true,
1,
1,
{
&goliathus_extended_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------------------*\
| HEADSETS |
\*-------------------------------------------------------------------------*/
/*-------------------------------------------------------------*\
| Razer Kraken 7.1 Chroma |
| |
| Zone "Headset" |
| Single |
| 1 LED |
\*-------------------------------------------------------------*/
static const razer_zone kraken_chroma_zone =
{
"Headset",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_device kraken_chroma_device =
{
"Razer Kraken 7.1 Chroma",
DEVICE_TYPE_HEADSET,
true,
1,
1,
{
&kraken_chroma_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer Kraken 7.1 V2 |
| |
| Zone "Headset" |
| Single |
| 1 LED |
\*-------------------------------------------------------------*/
static const razer_zone kraken_v2_zone =
{
"Headset",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_device kraken_v2_device =
{
"Razer Kraken 7.1 V2",
DEVICE_TYPE_HEADSET,
true,
1,
1,
{
&kraken_v2_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------------------*\
| OTHER |
\*-------------------------------------------------------------------------*/
/*-------------------------------------------------------------*\
| Razer Core |
| |
| Zone "Side Window Lights" |
| Single |
| 1 LED |
| |
| Zone "LED Strip" |
| Linear |
| 8 LEDs |
\*-------------------------------------------------------------*/
static const razer_zone core_side_zone =
{
"Side Window Lights",
ZONE_TYPE_SINGLE,
1,
1
};
static const razer_zone core_led_strip_zone =
{
"LED Strip",
ZONE_TYPE_LINEAR,
1,
8
};
static const razer_device core_device =
{
"Razer Core",
DEVICE_TYPE_UNKNOWN,
true,
1,
9,
{
&core_side_zone,
&core_led_strip_zone,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer Chroma Mug Holder |
| |
| Zone "LED Strip" |
| Linear |
| 15 LEDs |
\*-------------------------------------------------------------*/
static const razer_zone mug_holder_zone =
{
"LED Strip",
ZONE_TYPE_LINEAR,
1,
15
};
static const razer_device mug_holder_device =
{
"Razer Chroma Mug Holder",
DEVICE_TYPE_UNKNOWN,
true,
1,
15,
{
&mug_holder_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*-------------------------------------------------------------*\
| Razer Chroma HDK |
| |
| Zone "LED Strip" |
| Linear |
| 16 LEDs |
| |
| Zone "LED Strip" |
| Linear |
| 16 LEDs |
| |
| Zone "LED Strip" |
| Linear |
| 16 LEDs |
| |
| Zone "LED Strip" |
| Linear |
| 16 LEDs |
\*-------------------------------------------------------------*/
static const razer_zone chromahdk_zone =
{
"LED Strip",
ZONE_TYPE_LINEAR,
1,
16
};
static const razer_device chromahdk_device =
{
"Razer Chroma HDK",
DEVICE_TYPE_LEDSTRIP,
true,
4,
16,
{
&chromahdk_zone,
&chromahdk_zone,
&chromahdk_zone,
&chromahdk_zone,
NULL,
NULL
}
};
/*-------------------------------------------------------------------------*\
| DEVICE MASTER LIST |
\*-------------------------------------------------------------------------*/
#define RAZER_NUM_DEVICES (sizeof(device_list) / sizeof(device_list[ 0 ]))
static const razer_device* device_list[] =
{
/*-----------------------------------------------------------------*\
| KEYBOARDS |
\*-----------------------------------------------------------------*/
&blackwidow_chroma_device,
&blackwidow_chroma_te_device,
&ornata_chroma_device,
&deathstalker_chroma_device,
/*-----------------------------------------------------------------*\
| LAPTOPS |
\*-----------------------------------------------------------------*/
&blade_stealth_device,
&blade_pro_late_2016_device,
&blade_pro_2017_device,
/*-----------------------------------------------------------------*\
| MICE |
\*-----------------------------------------------------------------*/
&mamba_te_device,
&diamondback_chroma_device,
&deathadder_chroma_device,
/*-----------------------------------------------------------------*\
| KEYPADS |
\*-----------------------------------------------------------------*/
&orbweaver_chroma_device,
&tartarus_chroma_device,
/*-----------------------------------------------------------------*\
| MOUSEMATS |
\*-----------------------------------------------------------------*/
&firefly_device,
&goliathus_extended_device,
/*-----------------------------------------------------------------*\
| HEADSETS |
\*-----------------------------------------------------------------*/
&kraken_chroma_device,
&kraken_v2_device,
/*-----------------------------------------------------------------*\
| OTHER |
\*-----------------------------------------------------------------*/
&core_device,
&mug_holder_device,
&chromahdk_device
};
class RGBController_OpenRazer : public RGBController
{
public:
@@ -927,7 +47,7 @@ public:
void SetCustomMode();
void UpdateMode();
int device;
int device_index;
private:
void SetupMatrixDevice(std::string dev_path, unsigned int rows, unsigned int cols);
@@ -937,19 +57,35 @@ private:
unsigned int matrix_rows;
unsigned int matrix_cols;
//OpenRazer Sysfs Entries for Matrix Devices
void OpenFunctions(std::string dev_path);
std::ifstream device_type;
std::ifstream device_serial;
std::ifstream firmware_version;
std::ofstream matrix_custom_frame;
std::ofstream matrix_brightness;
std::ofstream matrix_effect_custom;
std::ofstream matrix_effect_breath;
std::ofstream matrix_effect_none;
std::ofstream matrix_effect_reactive;
std::ofstream matrix_effect_spectrum;
std::ofstream matrix_effect_static;
std::ofstream matrix_effect_breath;
std::ofstream matrix_effect_spectrum;
std::ofstream matrix_effect_reactive;
std::ofstream matrix_effect_wave;
//OpenRazer Sysfs Entries for Non-Matrix Devices
std::ofstream logo_led_effect;
std::ofstream logo_led_rgb;
std::ofstream logo_led_brightness;
std::ofstream logo_matrix_effect_none;
std::ofstream logo_matrix_effect_static;
std::ofstream logo_matrix_effect_spectrum;
std::ofstream logo_matrix_effect_reactive;
std::ofstream scroll_led_brightness;
std::ofstream scroll_matrix_effect_none;
std::ofstream scroll_matrix_effect_static;
std::ofstream scroll_matrix_effect_spectrum;
std::ofstream scroll_matrix_effect_reactive;
std::ofstream scroll_led_effect;
std::ofstream scroll_led_rgb;
};
@@ -0,0 +1,476 @@
/*-----------------------------------------*\
| RGBController_OpenRazer.cpp |
| |
| Generic RGB Interface for OpenRazer |
| kernel drivers for Chroma peripherals |
| |
| Adam Honse (CalcProgrammer1) 6/15/2019 |
\*-----------------------------------------*/
#include "RGBController_OpenRazerWindows.h"
#include <algorithm>
#include <fstream>
#include <string.h>
#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/hid.h>
void RGBController_OpenRazer::UpdateLEDs()
{
switch(matrix_type)
{
case RAZER_TYPE_MATRIX_FRAME:
case RAZER_TYPE_MATRIX_NOFRAME:
case RAZER_TYPE_MATRIX_STATIC:
{
char update_value = 1;
for (unsigned int row = 0; row < matrix_rows; row++)
{
unsigned int output_array_size;
unsigned int output_offset;
unsigned int row_offset = (row * matrix_cols);
if(matrix_type == RAZER_TYPE_MATRIX_FRAME)
{
output_array_size = 3 + (matrix_cols* 3);
output_offset = 3;
}
else
{
output_array_size = 3;
output_offset = 0;
}
char* output_array = new char[output_array_size];
if(matrix_type == RAZER_TYPE_MATRIX_FRAME)
{
output_array[0] = row;
output_array[1] = 0;
output_array[2] = matrix_cols - 1;
}
for(unsigned int col = 0; col < matrix_cols; col++)
{
unsigned int color_idx = col + row_offset;
output_array[(col * 3) + 0 + output_offset] = (char)RGBGetRValue(colors[color_idx]);
output_array[(col * 3) + 1 + output_offset] = (char)RGBGetGValue(colors[color_idx]);
output_array[(col * 3) + 2 + output_offset] = (char)RGBGetBValue(colors[color_idx]);
}
if(matrix_type == RAZER_TYPE_MATRIX_FRAME)
{
razer_functions->matrix_custom_frame->store(razer_device, NULL, output_array, output_array_size);
}
else if(matrix_type == RAZER_TYPE_MATRIX_NOFRAME)
{
razer_functions->matrix_effect_custom->store(razer_device, NULL, output_array, output_array_size);
}
else
{
razer_functions->matrix_effect_static->store(razer_device, NULL, output_array, output_array_size);
}
}
if(matrix_type == RAZER_TYPE_MATRIX_FRAME)
{
razer_functions->matrix_effect_custom->store(razer_device, NULL, &update_value, 1);
}
}
break;
#if 0
case RAZER_TYPE_NOMATRIX:
{
unsigned int output_array_size = 3;
char output_array[output_array_size];
char update_value = 0;
output_array[0] = (char)RGBGetRValue(colors[0]);
output_array[1] = (char)RGBGetGValue(colors[0]);
output_array[2] = (char)RGBGetBValue(colors[0]);
logo_led_rgb.write(output_array, output_array_size);
output_array[0] = (char)RGBGetRValue(colors[1]);
output_array[1] = (char)RGBGetGValue(colors[1]);
output_array[2] = (char)RGBGetBValue(colors[1]);
scroll_led_rgb.write(output_array, output_array_size);
logo_led_rgb.flush();
scroll_led_rgb.flush();
logo_led_effect.write(&update_value, 1);
scroll_led_effect.write(&update_value, 1);
logo_led_effect.flush();
scroll_led_effect.flush();
}
break;
#endif
}
}
void RGBController_OpenRazer::UpdateZoneLEDs(int zone)
{
UpdateLEDs();
}
void RGBController_OpenRazer::UpdateSingleLED(int led)
{
UpdateLEDs();
}
void RGBController_OpenRazer::SetupMatrixDevice(device * razer_device, device_fn_type* razer_functions, unsigned int rows, unsigned int cols)
{
if(!razer_functions->matrix_custom_frame)
{
if(!razer_functions->matrix_effect_custom)
{
matrix_type = RAZER_TYPE_MATRIX_STATIC;
}
else
{
matrix_type = RAZER_TYPE_MATRIX_NOFRAME;
}
matrix_rows = 1;
matrix_cols = 1;
}
else
{
matrix_type = RAZER_TYPE_MATRIX_FRAME;
matrix_rows = rows;
matrix_cols = cols;
}
}
void RGBController_OpenRazer::SetupNonMatrixDevice(device * razer_device, device_fn_type* razer_functions)
{
matrix_type = RAZER_TYPE_NOMATRIX;
}
RGBController_OpenRazer::RGBController_OpenRazer(device * razer_device, device_fn_type* razer_functions)
{
char string_buf[1024];
this->razer_device = razer_device;
this->razer_functions = razer_functions;
unsigned int led_count = 0;
/*-----------------------------------------------------------------*\
| Initialize buffer |
\*-----------------------------------------------------------------*/
memset(string_buf, 0xFF, sizeof(string_buf));
string_buf[1023] = '\0';
/*-----------------------------------------------------------------*\
| Start device at -1. This indicates the device was not detected |
\*-----------------------------------------------------------------*/
device_index = -1;
/*-----------------------------------------------------------------*\
| Get the device name from the OpenRazer driver |
\*-----------------------------------------------------------------*/
razer_functions->device_type->show(razer_device, NULL, string_buf);
name = string_buf;
name.erase(std::remove(name.begin(), name.end(), '\n'), name.end());
name.erase(std::remove(name.begin(), name.end(), '\r'), name.end());
/*-----------------------------------------------------------------*\
| Set the description to indicate this is an OpenRazer device |
\*-----------------------------------------------------------------*/
description = "OpenRazer Device";
/*-----------------------------------------------------------------*\
| Set the device path as the location |
\*-----------------------------------------------------------------*/
location = "";
/*-----------------------------------------------------------------*\
| Initialize buffer |
\*-----------------------------------------------------------------*/
//memset(string_buf, 0xFF, sizeof(string_buf));
//string_buf[1023] = '\0';
/*-----------------------------------------------------------------*\
| Get the serial number from the dev path |
\*-----------------------------------------------------------------*/
//razer_functions->device_serial->show(razer_device, NULL, string_buf);
//serial = string_buf;
/*-----------------------------------------------------------------*\
| Initialize buffer |
\*-----------------------------------------------------------------*/
//memset(string_buf, 0xFF, sizeof(string_buf));
//string_buf[1023] = '\0';
/*-----------------------------------------------------------------*\
| Get the firmware version from the dev path |
\*-----------------------------------------------------------------*/
//razer_functions->firmware_version->show(razer_device, NULL, string_buf);
//version = string_buf;
/*-----------------------------------------------------------------*\
| Loop through all known devices to look for a name match |
\*-----------------------------------------------------------------*/
for (unsigned int i = 0; i < RAZER_NUM_DEVICES; i++)
{
if (device_list[i]->name == name)
{
/*---------------------------------------------------------*\
| Set device ID |
\*---------------------------------------------------------*/
device_index = i;
/*---------------------------------------------------------*\
| Set device type |
\*---------------------------------------------------------*/
type = device_list[i]->type;
/*---------------------------------------------------------*\
| Initialize modes |
\*---------------------------------------------------------*/
if(razer_functions->matrix_effect_custom)
{
mode Custom;
Custom.name = "Custom";
Custom.value = RAZER_MODE_CUSTOM;
Custom.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Custom.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Custom);
}
if(razer_functions->matrix_effect_none)
{
mode Off;
Off.name = "Off";
Off.value = RAZER_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
}
if(razer_functions->matrix_effect_static)
{
mode Static;
Static.name = "Static";
Static.value = RAZER_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
}
if(razer_functions->matrix_effect_breath)
{
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = RAZER_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Breathing.colors_min = 1;
Breathing.colors_max = 2;
Breathing.color_mode = MODE_COLORS_MODE_SPECIFIC;
Breathing.colors.resize(2);
modes.push_back(Breathing);
}
if(razer_functions->matrix_effect_spectrum)
{
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = RAZER_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = 0;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
}
if(razer_functions->matrix_effect_wave)
{
mode Wave;
Wave.name = "Wave";
Wave.value = RAZER_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_DIRECTION_LR;
Wave.direction = MODE_DIRECTION_RIGHT;
Wave.color_mode = MODE_COLORS_NONE;
modes.push_back(Wave);
}
if(razer_functions->matrix_effect_reactive)
{
mode Reactive;
Reactive.name = "Reactive";
Reactive.value = RAZER_MODE_REACTIVE;
Reactive.flags = 0;
Reactive.color_mode = MODE_COLORS_NONE;
modes.push_back(Reactive);
}
/*---------------------------------------------------------*\
| Initialize file descriptors |
\*---------------------------------------------------------*/
if(device_list[i]->matrix_type == true)
{
SetupMatrixDevice(razer_device, razer_functions, device_list[i]->rows, device_list[i]->cols);
}
else
{
SetupNonMatrixDevice(razer_device, razer_functions);
}
/*---------------------------------------------------------*\
| Fill in zone information based on device table |
\*---------------------------------------------------------*/
for (int zone_id = 0; zone_id < RAZER_MAX_ZONES; zone_id++)
{
if (device_list[i]->zones[zone_id] != NULL)
{
zone new_zone;
new_zone.name = device_list[i]->zones[zone_id]->name;
new_zone.type = device_list[i]->zones[zone_id]->type;
for (unsigned int row_id = 0; row_id < device_list[i]->zones[zone_id]->rows; row_id++)
{
std::vector<int> new_zone_map;
for (unsigned int col_id = 0; col_id < device_list[i]->zones[zone_id]->cols; col_id++)
{
char id_buf[8];
snprintf(id_buf, 8, "%d", col_id + 1);
RGBColor new_color = 0x00000000;
colors.push_back(new_color);
led* new_led = new led();
new_led->name = device_list[i]->zones[zone_id]->name + " LED ";
new_led->name.append(id_buf);
leds.push_back(*new_led);
new_zone_map.push_back(led_count);
led_count++;
}
new_zone.map.push_back(new_zone_map);
}
zones.push_back(new_zone);
}
}
}
}
}
void RGBController_OpenRazer::SetCustomMode()
{
SetMode(RAZER_MODE_CUSTOM);
}
void RGBController_OpenRazer::UpdateMode()
{
char update_value[6];
update_value[0] = 1;
switch(matrix_type)
{
case RAZER_TYPE_MATRIX_FRAME:
case RAZER_TYPE_MATRIX_NOFRAME:
{
switch(modes[active_mode].value)
{
case RAZER_MODE_CUSTOM:
razer_functions->matrix_effect_custom->store(razer_device, NULL, update_value, 1);
break;
case RAZER_MODE_OFF:
razer_functions->matrix_effect_none->store(razer_device, NULL, update_value, 1);
break;
case RAZER_MODE_STATIC:
update_value[0] = RGBGetRValue(modes[RAZER_MODE_STATIC].colors[0]);
update_value[1] = RGBGetGValue(modes[RAZER_MODE_STATIC].colors[0]);
update_value[2] = RGBGetBValue(modes[RAZER_MODE_STATIC].colors[0]);
razer_functions->matrix_effect_static->store(razer_device, NULL, update_value, 3);
break;
case RAZER_MODE_BREATHING:
switch(modes[RAZER_MODE_BREATHING].color_mode)
{
case MODE_COLORS_MODE_SPECIFIC:
update_value[0] = RGBGetRValue(modes[RAZER_MODE_BREATHING].colors[0]);
update_value[1] = RGBGetGValue(modes[RAZER_MODE_BREATHING].colors[0]);
update_value[2] = RGBGetBValue(modes[RAZER_MODE_BREATHING].colors[0]);
if(modes[RAZER_MODE_BREATHING].colors.size() == 2)
{
update_value[3] = RGBGetRValue(modes[RAZER_MODE_BREATHING].colors[1]);
update_value[4] = RGBGetGValue(modes[RAZER_MODE_BREATHING].colors[1]);
update_value[5] = RGBGetBValue(modes[RAZER_MODE_BREATHING].colors[1]);
razer_functions->matrix_effect_breath->store(razer_device, NULL, update_value, 6);
}
else
{
razer_functions->matrix_effect_breath->store(razer_device, NULL, update_value, 3);
}
break;
case MODE_COLORS_RANDOM:
razer_functions->matrix_effect_breath->store(razer_device, NULL, update_value, 1);
break;
}
break;
case RAZER_MODE_SPECTRUM_CYCLE:
razer_functions->matrix_effect_spectrum->store(razer_device, NULL, update_value, 1);
break;
case RAZER_MODE_WAVE:
switch(modes[active_mode].direction)
{
case MODE_DIRECTION_LEFT:
update_value[0] = '2';
break;
default:
update_value[0] = '1';
break;
}
razer_functions->matrix_effect_wave->store(razer_device, NULL, update_value, 1);
break;
case RAZER_MODE_REACTIVE:
razer_functions->matrix_effect_reactive->store(razer_device, NULL, update_value, 1);
break;
}
}
break;
#if 0
case RAZER_TYPE_NOMATRIX:
{
switch(modes[active_mode].value)
{
case RAZER_MODE_CUSTOM:
update_value = 0;
logo_led_effect.write(&update_value, 1);
scroll_led_effect.write(&update_value, 1);
logo_led_effect.flush();
scroll_led_effect.flush();
break;
case RAZER_MODE_SPECTRUM_CYCLE:
update_value = '4';
logo_led_effect.write(&update_value, 1);
scroll_led_effect.write(&update_value, 1);
logo_led_effect.flush();
scroll_led_effect.flush();
break;
}
}
#endif
}
}
@@ -0,0 +1,112 @@
/*-----------------------------------------*\
| RGBController_OpenRazerWindows.h |
| |
| Generic RGB Interface for OpenRazer |
| kernel drivers for Chroma peripherals |
| |
| Adam Honse (CalcProgrammer1) 6/15/2019 |
\*-----------------------------------------*/
#include "RGBController.h"
#include "OpenRazerDevices.h"
#include <fstream>
#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/hid.h>
typedef struct
{
struct device_attribute * device_type;
struct device_attribute * device_serial;
struct device_attribute * firmware_version;
struct device_attribute * matrix_custom_frame;
struct device_attribute * matrix_brightness;
struct device_attribute * matrix_effect_custom;
struct device_attribute * matrix_effect_none;
struct device_attribute * matrix_effect_static;
struct device_attribute * matrix_effect_breath;
struct device_attribute * matrix_effect_spectrum;
struct device_attribute * matrix_effect_reactive;
struct device_attribute * matrix_effect_wave;
struct device_attribute * logo_led_brightness;
struct device_attribute * logo_matrix_effect_none;
struct device_attribute * logo_matrix_effect_static;
struct device_attribute * logo_matrix_effect_spectrum;
struct device_attribute * logo_matrix_effect_reactive;
struct device_attribute * scroll_led_brightness;
struct device_attribute * scroll_matrix_effect_none;
struct device_attribute * scroll_matrix_effect_static;
struct device_attribute * scroll_matrix_effect_spectrum;
struct device_attribute * scroll_matrix_effect_reactive;
struct device_attribute * scroll_led_effect;
struct device_attribute * scroll_led_rgb;
} device_fn_type;
class RGBController_OpenRazer : public RGBController
{
public:
enum
{
RAZER_MODE_CUSTOM,
RAZER_MODE_OFF,
RAZER_MODE_STATIC,
RAZER_MODE_BREATHING,
RAZER_MODE_SPECTRUM_CYCLE,
RAZER_MODE_WAVE,
RAZER_MODE_REACTIVE,
RAZER_NUM_MODES
};
enum
{
RAZER_TYPE_MATRIX_FRAME,
RAZER_TYPE_MATRIX_NOFRAME,
RAZER_TYPE_MATRIX_STATIC,
RAZER_TYPE_NOMATRIX,
RAZER_NUM_TYPES
};
public:
RGBController_OpenRazer(device * razer_device, device_fn_type* razer_functions);
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void UpdateMode();
int device_index;
private:
void SetupMatrixDevice(device * razer_device, device_fn_type* razer_functions, unsigned int rows, unsigned int cols);
void SetupNonMatrixDevice(device * razer_device, device_fn_type* razer_functions);
unsigned int matrix_type;
unsigned int matrix_rows;
unsigned int matrix_cols;
device* razer_device;
device_fn_type* razer_functions;
//OpenRazer Sysfs Entries for Matrix Devices
std::ofstream matrix_custom_frame;
std::ofstream matrix_effect_custom;
std::ofstream matrix_effect_breath;
std::ofstream matrix_effect_none;
std::ofstream matrix_effect_reactive;
std::ofstream matrix_effect_spectrum;
std::ofstream matrix_effect_static;
std::ofstream matrix_effect_wave;
//OpenRazer Sysfs Entries for Non-Matrix Devices
std::ofstream logo_led_effect;
std::ofstream logo_led_rgb;
std::ofstream scroll_led_effect;
std::ofstream scroll_led_rgb;
};
+58 -58
View File
@@ -67,83 +67,83 @@ RGBController_PatriotViper::RGBController_PatriotViper(PatriotViperController* v
type = DEVICE_TYPE_DRAM;
mode Direct;
Direct.name = "Direct";
Direct.value = 0xFFFF;
Direct.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Direct.speed_min = 0;
Direct.speed_max = 0;
Direct.random = false;
Direct.speed = 0;
Direct.name = "Direct";
Direct.value = 0xFFFF;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.speed_min = 0;
Direct.speed_max = 0;
Direct.color_mode = MODE_COLORS_PER_LED;
Direct.speed = 0;
modes.push_back(Direct);
mode Dark;
Dark.name = "Dark";
Dark.value = VIPER_MODE_DARK;
Dark.flags = 0;
Dark.speed_min = 0;
Dark.speed_max = 0;
Dark.random = false;
Dark.speed = 0;
Dark.name = "Dark";
Dark.value = VIPER_MODE_DARK;
Dark.flags = 0;
Dark.speed_min = 0;
Dark.speed_max = 0;
Dark.color_mode = MODE_COLORS_NONE;
Dark.speed = 0;
modes.push_back(Dark);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = VIPER_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Breathing.speed_min = VIPER_SPEED_BREATHING_MIN;
Breathing.speed_max = VIPER_SPEED_BREATHING_MAX;
Breathing.random = false;
Breathing.speed = VIPER_SPEED_BREATHING_DEFAULT;
Breathing.name = "Breathing";
Breathing.value = VIPER_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.speed_min = VIPER_SPEED_BREATHING_MIN;
Breathing.speed_max = VIPER_SPEED_BREATHING_MAX;
Breathing.color_mode = MODE_COLORS_PER_LED;
Breathing.speed = VIPER_SPEED_BREATHING_DEFAULT;
modes.push_back(Breathing);
mode Viper;
Viper.name = "Viper";
Viper.value = VIPER_MODE_VIPER;
Viper.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Viper.speed_min = VIPER_SPEED_MIN;
Viper.speed_max = VIPER_SPEED_MAX;
Viper.random = false;
Viper.speed = VIPER_SPEED_DEFAULT;
Viper.name = "Viper";
Viper.value = VIPER_MODE_VIPER;
Viper.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Viper.speed_min = VIPER_SPEED_MIN;
Viper.speed_max = VIPER_SPEED_MAX;
Viper.color_mode = MODE_COLORS_PER_LED;
Viper.speed = VIPER_SPEED_DEFAULT;
modes.push_back(Viper);
mode Heartbeat;
Heartbeat.name = "Heartbeat";
Heartbeat.value = VIPER_MODE_HEARTBEAT;
Heartbeat.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Heartbeat.speed_min = VIPER_SPEED_MIN;
Heartbeat.speed_max = VIPER_SPEED_MAX;
Heartbeat.random = false;
Heartbeat.speed = VIPER_SPEED_DEFAULT;
Heartbeat.name = "Heartbeat";
Heartbeat.value = VIPER_MODE_HEARTBEAT;
Heartbeat.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Heartbeat.speed_min = VIPER_SPEED_MIN;
Heartbeat.speed_max = VIPER_SPEED_MAX;
Heartbeat.color_mode = MODE_COLORS_PER_LED;
Heartbeat.speed = VIPER_SPEED_DEFAULT;
modes.push_back(Heartbeat);
mode Marquee;
Marquee.name = "Marquee";
Marquee.value = VIPER_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Marquee.speed_min = VIPER_SPEED_MIN;
Marquee.speed_max = VIPER_SPEED_MAX;
Marquee.random = false;
Marquee.speed = VIPER_SPEED_DEFAULT;
Marquee.name = "Marquee";
Marquee.value = VIPER_MODE_MARQUEE;
Marquee.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Marquee.speed_min = VIPER_SPEED_MIN;
Marquee.speed_max = VIPER_SPEED_MAX;
Marquee.color_mode = MODE_COLORS_PER_LED;
Marquee.speed = VIPER_SPEED_DEFAULT;
modes.push_back(Marquee);
mode Raindrop;
Raindrop.name = "Raindrop";
Raindrop.value = VIPER_MODE_RAINDROP;
Raindrop.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Raindrop.speed_min = VIPER_SPEED_MIN;
Raindrop.speed_max = VIPER_SPEED_MAX;
Raindrop.random = false;
Raindrop.speed = VIPER_SPEED_DEFAULT;
Raindrop.name = "Raindrop";
Raindrop.value = VIPER_MODE_RAINDROP;
Raindrop.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Raindrop.speed_min = VIPER_SPEED_MIN;
Raindrop.speed_max = VIPER_SPEED_MAX;
Raindrop.color_mode = MODE_COLORS_PER_LED;
Raindrop.speed = VIPER_SPEED_DEFAULT;
modes.push_back(Raindrop);
mode Aurora;
Aurora.name = "Aurora";
Aurora.value = VIPER_MODE_AURORA;
Aurora.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Aurora.speed_min = VIPER_SPEED_MIN;
Aurora.speed_max = VIPER_SPEED_MAX;
Aurora.random = false;
Aurora.speed = VIPER_SPEED_DEFAULT;
Aurora.name = "Aurora";
Aurora.value = VIPER_MODE_AURORA;
Aurora.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Aurora.speed_min = VIPER_SPEED_MIN;
Aurora.speed_max = VIPER_SPEED_MAX;
Aurora.color_mode = MODE_COLORS_PER_LED;
Aurora.speed = VIPER_SPEED_DEFAULT;
modes.push_back(Aurora);
colors.resize(viper->GetLEDCount());
@@ -186,7 +186,7 @@ RGBController_PatriotViper::RGBController_PatriotViper(PatriotViperController* v
void RGBController_PatriotViper::SetCustomMode()
{
SetMode(0);
active_mode = 0;
}
void RGBController_PatriotViper::UpdateMode()
@@ -199,4 +199,4 @@ void RGBController_PatriotViper::UpdateMode()
{
viper->SetMode(modes[active_mode].value, modes[active_mode].speed);
}
}
}
+160 -12
View File
@@ -18,7 +18,7 @@ void RGBController_Polychrome::UpdateLEDs()
unsigned char grn = RGBGetGValue(colors[led]);
unsigned char blu = RGBGetBValue(colors[led]);
polychrome->SetLEDColor(led, red, grn, blu);
polychrome->SetColor(red, grn, blu);
}
}
@@ -43,15 +43,163 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* polychr
name = polychrome->GetDeviceName();
mode polychrome_modes[POLYCHROME_NUM_MODES];
polychrome_modes[0].name = "Static";
polychrome_modes[1].name = "Breathing";
polychrome_modes[2].name = "Flashing";
for (int i = 0; i < POLYCHROME_NUM_MODES; i++)
if(polychrome->IsAsrLed())
{
modes.push_back(polychrome_modes[i]);
mode Off;
Off.name = "Off";
Off.value = ASRLED_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
mode Static;
Static.name = "Static";
Static.value = ASRLED_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = ASRLED_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode Strobe;
Strobe.name = "Strobe";
Strobe.value = ASRLED_MODE_FLASHING;
Strobe.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Strobe.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Strobe);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = ASRLED_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
mode Random;
Random.name = "Random";
Random.value = ASRLED_MODE_RANDOM;
Random.flags = MODE_FLAG_HAS_SPEED;
Random.color_mode = MODE_COLORS_NONE;
modes.push_back(Random);
mode Music;
Music.name = "Music";
Music.value = ASRLED_MODE_MUSIC;
Music.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Music.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Music);
mode Wave;
Wave.name = "Wave";
Wave.value = ASRLED_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_SPEED;
Wave.color_mode = MODE_COLORS_NONE;
modes.push_back(Wave);
}
else
{
mode Off;
Off.name = "Off";
Off.value = POLYCHROME_MODE_OFF;
Off.flags = 0;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
mode Static;
Static.name = "Static";
Static.value = POLYCHROME_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = POLYCHROME_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode Strobe;
Strobe.name = "Strobe";
Strobe.value = POLYCHROME_MODE_FLASHING;
Strobe.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Strobe.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Strobe);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = POLYCHROME_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
mode Random;
Random.name = "Random";
Random.value = POLYCHROME_MODE_RANDOM;
Random.flags = MODE_FLAG_HAS_SPEED;
Random.color_mode = MODE_COLORS_NONE;
modes.push_back(Random);
mode Wave;
Wave.name = "Wave";
Wave.value = POLYCHROME_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_SPEED;
Wave.color_mode = MODE_COLORS_NONE;
modes.push_back(Wave);
mode Spring;
Spring.name = "Spring";
Spring.value = POLYCHROME_MODE_SPRING;
Spring.flags = MODE_FLAG_HAS_SPEED;
Spring.color_mode = MODE_COLORS_NONE;
modes.push_back(Spring);
mode Stack;
Stack.name = "Stack";
Stack.value = POLYCHROME_MODE_STACK;
Stack.flags = MODE_FLAG_HAS_SPEED;
Stack.color_mode = MODE_COLORS_NONE;
modes.push_back(Stack);
mode Cram;
Cram.name = "Cram";
Cram.value = POLYCHROME_MODE_CRAM;
Cram.flags = MODE_FLAG_HAS_SPEED;
Cram.color_mode = MODE_COLORS_NONE;
modes.push_back(Cram);
mode Scan;
Scan.name = "Scan";
Scan.value = POLYCHROME_MODE_SCAN;
Scan.flags = MODE_FLAG_HAS_SPEED;
Scan.color_mode = MODE_COLORS_NONE;
modes.push_back(Scan);
mode Neon;
Neon.name = "Neon";
Neon.value = POLYCHROME_MODE_NEON;
Neon.flags = 0;
Neon.color_mode = MODE_COLORS_NONE;
modes.push_back(Neon);
mode Water;
Water.name = "Water";
Water.value = POLYCHROME_MODE_WATER;
Water.flags = MODE_FLAG_HAS_SPEED;
Water.color_mode = MODE_COLORS_NONE;
modes.push_back(Water);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = POLYCHROME_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
}
colors.resize(polychrome->GetLEDCount());
@@ -84,10 +232,10 @@ RGBController_Polychrome::RGBController_Polychrome(PolychromeController* polychr
void RGBController_Polychrome::SetCustomMode()
{
SetMode(0);
active_mode = 1;
}
void RGBController_Polychrome::UpdateMode()
{
polychrome->SetMode(active_mode);
}
polychrome->SetMode(modes[active_mode].value);
}
+193 -8
View File
@@ -9,6 +9,124 @@
#include "RGBController_PoseidonZRGB.h"
static const char* zone_names[] =
{
"Keyboard"
};
static const unsigned int zone_sizes[] =
{
104
};
static const char* led_names[] =
{
"Key: Escape",
"Key: `",
"Key: Tab",
"Key: Caps Lock",
"Key: Left Shift",
"Key: Left Control",
"Key: Left Arrow",
"Key: Insert",
"Key: F1",
"Key: 1",
"Key: Q",
"Key: A",
"Key: Windows",
"Key: Down Arrow",
"Key: Delete",
"Key: F2",
"Key: 2",
"Key: W",
"Key: S",
"Key: Left Alt",
"Key: Right Arrow",
"Key: Home",
"Key: F3",
"Key: 3",
"Key: E",
"Key: D",
"Key: Z",
"Key: Up Arrow",
"Key: End",
"Key: F4",
"Key: 4",
"Key: R",
"Key: F",
"Key: X",
"Key: Space",
"Key: Number Pad 4",
"Key: Page Up",
"Key: F5",
"Key: 5",
"Key: T",
"Key: G",
"Key: C",
"Key: Number Pad 1",
"Key: Page Down",
"Key: F6",
"Key: 6",
"Key: Y",
"Key: H",
"Key: V",
"Key: Number Pad 2",
"Key: Num Lock",
"Key: F7",
"Key: 7",
"Key: U",
"Key: J",
"Key: B",
"Key: Number Pad 0",
"Key: Number Pad 7",
"Key: F8",
"Key: 8",
"Key: I",
"Key: K",
"Key: N",
"Key: Number Pad 6",
"Key: Number Pad /",
"Key: F9",
"Key: 9",
"Key: O",
"Key: L",
"Key: M",
"Key: Right Alt",
"Key: Number Pad 3",
"Key: Number Pad 8",
"Key: F10",
"Key: 0",
"Key: P",
"Key: ;",
"Key: ,",
"Key: Fn",
"Key: Number Pad .",
"Key: Number Pad *",
"Key: F11",
"Key: -",
"Key: [",
"Key: '",
"Key: .",
"Key: Number Pad +",
"Key: Number Pad 9",
"Key: F12",
"Key: =",
"Key: ]",
"Key: /",
"Key: Context",
"Key: Number Pad -",
"Key: Print Screen",
"Key: \\",
"Key: Enter",
"Key: Right Control",
"Key: Number Pad Enter",
"Key: Number Pad 5",
"Key: Scroll Lock",
"Key: Right Shift",
"Key: Pause/Break",
"Key: Backspace"
};
RGBController_PoseidonZRGB::RGBController_PoseidonZRGB(PoseidonZRGBController* poseidon_ptr)
{
poseidon = poseidon_ptr;
@@ -16,9 +134,69 @@ RGBController_PoseidonZRGB::RGBController_PoseidonZRGB(PoseidonZRGBController* p
name = "Thermaltake Poseidon Z RGB";
type = DEVICE_TYPE_KEYBOARD;
for(int i = 0; i < 104; i++)
mode Direct;
Direct.name = "Direct";
Direct.value = POSEIDONZ_MODE_STATIC;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Direct);
mode Static;
Static.name = "Static";
Static.value = POSEIDONZ_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Wave;
Wave.name = "Wave";
Wave.value = POSEIDONZ_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_DIRECTION_LR;
Wave.speed_min = POSEIDONZ_SPEED_SLOW;
Wave.speed_max = POSEIDONZ_SPEED_FAST;
Wave.color_mode = MODE_COLORS_NONE;
Wave.speed = POSEIDONZ_SPEED_FAST;
Wave.direction = MODE_DIRECTION_LEFT;
modes.push_back(Wave);
mode Ripple;
Ripple.name = "Ripple";
Ripple.value = POSEIDONZ_MODE_RIPPLE;
Ripple.flags = 0;
Ripple.color_mode = MODE_COLORS_NONE;
modes.push_back(Ripple);
mode Reactive;
Reactive.name = "Reactive";
Reactive.value = POSEIDONZ_MODE_REACTIVE;
Reactive.flags = 0;
Reactive.color_mode = MODE_COLORS_NONE;
modes.push_back(Reactive);
colors.resize(104);
unsigned int led_idx = 0;
for(unsigned int zone_idx = 0; zone_idx < 1; zone_idx++)
{
colors.push_back(0x00000000);
zone new_zone;
new_zone.name.append(zone_names[zone_idx]);
std::vector<int> new_zone_map;
for(unsigned int led_count = 0; led_count < zone_sizes[zone_idx]; led_count++)
{
led new_led;
new_led.name.append(led_names[led_idx]);
leds.push_back(new_led);
new_zone_map.push_back(led_idx);
led_idx++;
}
new_zone.map.push_back(new_zone_map);
zones.push_back(new_zone);
}
}
@@ -29,25 +207,32 @@ RGBController_PoseidonZRGB::~RGBController_PoseidonZRGB()
void RGBController_PoseidonZRGB::UpdateLEDs()
{
poseidon->SetLEDs(colors);
if(active_mode == 0)
{
poseidon->SetLEDsDirect(colors);
}
else
{
poseidon->SetLEDs(colors);
}
}
void RGBController_PoseidonZRGB::UpdateZoneLEDs(int zone)
{
poseidon->SetLEDs(colors);
UpdateLEDs();
}
void RGBController_PoseidonZRGB::UpdateSingleLED(int led)
{
poseidon->SetLEDs(colors);
UpdateLEDs();
}
void RGBController_PoseidonZRGB::SetCustomMode()
{
active_mode = 0;
}
void RGBController_PoseidonZRGB::UpdateMode()
{
}
poseidon->SetMode(modes[active_mode].value, modes[active_mode].direction, modes[active_mode].speed);
}
+20 -17
View File
@@ -55,27 +55,30 @@ RGBController_RGBFusion::RGBController_RGBFusion(RGBFusionController* rgb_fusion
type = DEVICE_TYPE_MOTHERBOARD;
mode Static;
Static.name = "Static";
Static.value = RGB_FUSION_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Static.name = "Static";
Static.value = RGB_FUSION_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = RGB_FUSION_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Breathing.speed_min = RGB_FUSION_SPEED_SLOW;
Breathing.speed_max = RGB_FUSION_SPEED_FAST;
Breathing.speed = RGB_FUSION_SPEED_NORMAL;
Breathing.name = "Breathing";
Breathing.value = RGB_FUSION_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.speed_min = RGB_FUSION_SPEED_SLOW;
Breathing.speed_max = RGB_FUSION_SPEED_FAST;
Breathing.speed = RGB_FUSION_SPEED_NORMAL;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = RGB_FUSION_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_COLOR | MODE_FLAG_PER_LED_COLOR;
Flashing.speed_min = RGB_FUSION_SPEED_SLOW;
Flashing.speed_max = RGB_FUSION_SPEED_FAST;
Flashing.speed = RGB_FUSION_SPEED_NORMAL;
Flashing.name = "Flashing";
Flashing.value = RGB_FUSION_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Flashing.speed_min = RGB_FUSION_SPEED_SLOW;
Flashing.speed_max = RGB_FUSION_SPEED_FAST;
Flashing.speed = RGB_FUSION_SPEED_NORMAL;
Flashing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Flashing);
colors.resize(rgb_fusion->GetLEDCount());
@@ -126,10 +129,10 @@ int RGBController_RGBFusion::GetDeviceMode()
void RGBController_RGBFusion::SetCustomMode()
{
rgb_fusion->SetMode(RGB_FUSION_MODE_STATIC, 0);
active_mode = 0;
}
void RGBController_RGBFusion::UpdateMode()
{
rgb_fusion->SetMode(modes[active_mode].value, modes[active_mode].speed);
}
}
+289
View File
@@ -0,0 +1,289 @@
/*-----------------------------------------*\
| RGBController_RGBFusion2.cpp |
| |
| Generic RGB Interface for OpenRGB |
| Gigabyte RGB Fusion 2.0 Driver |
| |
| jackun 1/8/2020 |
\*-----------------------------------------*/
#include "RGBController_RGBFusion2.h"
#include <sstream>
#include <array>
enum
{
ZONE_MB,
ZONE_STRIP1,
ZONE_STRIP2,
};
static const std::array<const char *, 3> led_zones
{
"Motherboard",
"LED Strip 1", // WS2812(B) strips
"LED Strip 2",
};
static const KnownChannels known_channels
{
{
"Generic",
{
{
{ "Led 1", 0x20 },
{ "Led 2", 0x21 },
{ "Led 3", 0x22 },
{ "Led 4", 0x23 },
{ "Led 5", 0x24 },
{ "Led 6", 0x25 },
{ "Led 7", 0x26 },
{ "Led 8", 0x27 },
},
// Zone 1
{
{ "LED Strip 1, LED 0", HDR_D_LED1 },
},
// Zone 2
{
{ "LED Strip 2, LED 0", HDR_D_LED2 },
}
}
},
{
"IT8297BX-GBX570",
{
// Zone 0
{
{ "Back I/O", HDR_BACK_IO },
{ "CPU", HDR_CPU },
{ "PCIe", HDR_PCIE },
{ "LED C1/C2", HDR_LED_C1C2 }, // 12VGRB headers seem to be connected
},
// Zone 1
{
{ "LED Strip 1, LED 0", HDR_D_LED1 },
},
// Zone 2
{
{ "LED Strip 2, LED 0", HDR_D_LED2 },
}
}
},
};
RGBController_RGBFusion2::RGBController_RGBFusion2(RGBFusion2Controller* controller_ptr)
{
controller = controller_ptr;
name = "RGB Fusion 2 Controller";
type = DEVICE_TYPE_MOTHERBOARD;
description = controller->GetDeviceName();
version = controller->GetFWVersion();
location = controller->GetDeviceLocation();
serial = controller->GetSerial();
auto it = known_channels.find(controller->GetDeviceName());
if (it == known_channels.end())
{
it = known_channels.find("Generic");
}
size_t mb_led_cnt = it->second[0].size();
mode Static;
Static.name = "Static";
Static.value = EFFECT_STATIC;
Static.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = EFFECT_PULSE;
Breathing.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Breathing.speed_min = 0;
Breathing.speed_max = 4;
Breathing.color_mode = MODE_COLORS_PER_LED;
Breathing.speed = 2;
modes.push_back(Breathing);
mode Blinking;
Blinking.name = "Blinking";
Blinking.value = EFFECT_BLINKING;
Blinking.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Blinking.speed_min = 0;
Blinking.speed_max = 4;
Blinking.color_mode = MODE_COLORS_PER_LED;
Blinking.speed = 2;
modes.push_back(Blinking);
mode ColorCycle;
ColorCycle.name = "Color Cycle";
ColorCycle.value = EFFECT_COLORCYCLE;
ColorCycle.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED;
ColorCycle.speed_min = 0;
ColorCycle.speed_max = 4;
ColorCycle.color_mode = MODE_COLORS_NONE;
ColorCycle.speed = 2;
modes.push_back(ColorCycle);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = 10;
Flashing.flags = MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_HAS_RANDOM_COLOR;
Flashing.speed_min = 0;
Flashing.speed_max = 4;
Flashing.color_mode = MODE_COLORS_PER_LED;
Flashing.speed = 2;
modes.push_back(Flashing);
per_strip_led_cnt = 64; // TODO needs GUI option
colors.resize(mb_led_cnt + per_strip_led_cnt * 2, 0x000021FF);
controller->SetLedCount(per_strip_led_cnt);
controller->DisableBuiltinEffect(0, 0x3);
unsigned int led_idx = 0;
std::stringstream ss;
for(size_t i = 0; i < led_zones.size(); i++)
{
std::vector<int> new_zone_map;
zone new_zone;
new_zone.name = led_zones[i];
new_zone.type = ZONE_TYPE_LINEAR; // TODO
unsigned int zone_led_cnt = mb_led_cnt;
if( i > 0 )
{
zone_led_cnt = per_strip_led_cnt;
}
for(unsigned int zone_led_idx = 0; zone_led_idx < zone_led_cnt; zone_led_idx++)
{
led new_led;
if( it != known_channels.end() && i < it->second.size() && zone_led_idx < it->second[i].size())
{
new_led.name = it->second[i][zone_led_idx].name;
}
else
{
ss.clear(); ss.str("");
ss << led_zones[i];
if (zone_led_cnt > 1)
{
ss << ", LED " << zone_led_idx;
}
new_led.name = ss.str();
}
leds.push_back(new_led);
new_zone_map.push_back(led_idx);
led_idx++;
}
new_zone.map.push_back(new_zone_map);
zones.push_back(new_zone);
}
}
void RGBController_RGBFusion2::SetCustomMode()
{
active_mode = 0;
}
void RGBController_RGBFusion2::UpdateLEDs()
{
for(size_t i = 0; i < led_zones.size(); i++)
{
UpdateZoneLEDs(i);
}
}
void RGBController_RGBFusion2::UpdateZoneLEDs(int zone)
{
bool random = (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
auto it = known_channels.find(controller->GetDeviceName());
if (it == known_channels.end())
{
it = known_channels.find("Generic");
}
if (it == known_channels.end() || zone >= (int)it->second.size())
{
return;
}
if(zone == ZONE_MB)
{
std::vector<int>& leds = zones[zone].map[0];
for(size_t i = 0; i < leds.size(); i++)
{
unsigned char red = RGBGetRValue(colors[leds[i]]);
unsigned char grn = RGBGetGValue(colors[leds[i]]);
unsigned char blu = RGBGetBValue(colors[leds[i]]);
controller->SetLEDEffect(it->second[zone][i].header, modes[active_mode].value, modes[active_mode].speed, random, red, grn, blu);
}
controller->ApplyEffect();
}
else // assuming other two zones are LED strips
{
int led = zones[zone].map[0][0];
unsigned char red = RGBGetRValue(colors[led]);
unsigned char grn = RGBGetGValue(colors[led]);
unsigned char blu = RGBGetBValue(colors[led]);
int hdr = it->second[zone].size() ? it->second[zone].front().header : led;
// apply built-in effects to LED strips
controller->DisableBuiltinEffect(0, zone == 1 ? 0x01 : 0x02);
controller->SetLEDEffect(hdr, modes[active_mode].value, modes[active_mode].speed, random, red, grn, blu);
controller->ApplyEffect();
}
}
void RGBController_RGBFusion2::UpdateSingleLED(int led)
{
bool random = (modes[active_mode].color_mode == MODE_COLORS_RANDOM);
if (led >= zones[ZONE_STRIP1].map[0].front() && led <= zones[ZONE_STRIP1].map[0].back())
{
controller->SetStripColors(HDR_D_LED1_RGB,
zones[ZONE_STRIP1].map[0].front(),
zones[ZONE_STRIP1].map[0].back(),
colors, led);
}
else if (led >= zones[ZONE_STRIP2].map[0].front() && led <= zones[ZONE_STRIP2].map[0].back())
{
controller->SetStripColors(HDR_D_LED2_RGB,
zones[ZONE_STRIP2].map[0].front(),
zones[ZONE_STRIP2].map[0].back(),
colors, led);
}
else
{
int header = led;
auto it = known_channels.find(controller->GetDeviceName());
if (it == known_channels.end() || it->second.size() == 0)
header = it->second[ZONE_MB][led].header;
unsigned char red = RGBGetRValue(colors[led]);
unsigned char grn = RGBGetGValue(colors[led]);
unsigned char blu = RGBGetBValue(colors[led]);
controller->SetLEDEffect(header, modes[active_mode].value, modes[active_mode].speed, random, red, grn, blu);
controller->ApplyEffect();
}
}
void RGBController_RGBFusion2::UpdateMode()
{
// XXX Comment out to allow each zone or motherboard LED have different modes
UpdateLEDs();
}
+39
View File
@@ -0,0 +1,39 @@
/*-----------------------------------------*\
| RGBController_RGBFusion2.h |
| |
| Generic RGB Interface for OpenRGB |
| Gigabyte RGB Fusion 2.0 Driver |
| |
| jackun 1/8/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "RGBFusion2Controller.h"
#include <map>
#include <vector>
struct LedPort
{
const char* name;
int header;
};
typedef std::vector< std::vector<LedPort> > ZoneLeds;
typedef std::map< std::string, ZoneLeds > KnownChannels;
class RGBController_RGBFusion2: public RGBController
{
public:
RGBController_RGBFusion2(RGBFusion2Controller* controller_ptr);
void SetCustomMode();
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void UpdateMode();
private:
RGBFusion2Controller* controller;
IT8297Report report;
unsigned int per_strip_led_cnt;
};
@@ -0,0 +1,125 @@
/*-----------------------------------------*\
| RGBController_RGBFusionGPU.cpp |
| |
| Generic RGB Interface for OpenRGB |
| Gigabyte RGB Fusion GPU Driver |
| |
| Adam Honse (CalcProgrammer1) 2/23/2020 |
\*-----------------------------------------*/
#include "RGBController_RGBFusionGPU.h"
void RGBController_RGBFusionGPU::UpdateLEDs()
{
RGBColor color = colors[0];
unsigned char red = RGBGetRValue(color);
unsigned char grn = RGBGetGValue(color);
unsigned char blu = RGBGetBValue(color);
rgb_fusion->SetColor(red, grn, blu);
}
void RGBController_RGBFusionGPU::UpdateZoneLEDs(int zone)
{
UpdateLEDs();
}
void RGBController_RGBFusionGPU::UpdateSingleLED(int led)
{
UpdateLEDs();
}
RGBController_RGBFusionGPU::RGBController_RGBFusionGPU(RGBFusionGPUController* rgb_fusion_ptr)
{
rgb_fusion = rgb_fusion_ptr;
name = "Gigabyte GPU";
description = "RGB Fusion GPU";
location = rgb_fusion->GetDeviceLocation();
type = DEVICE_TYPE_GPU;
mode Static;
Static.name = "Static";
Static.value = RGB_FUSION_GPU_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = RGB_FUSION_GPU_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Breathing.speed_min = RGB_FUSION_GPU_SPEED_SLOWEST;
Breathing.speed_max = RGB_FUSION_GPU_SPEED_FASTEST;
Breathing.speed = RGB_FUSION_GPU_SPEED_NORMAL;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode Flashing;
Flashing.name = "Flashing";
Flashing.value = RGB_FUSION_GPU_MODE_FLASHING;
Flashing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Flashing.speed_min = RGB_FUSION_GPU_SPEED_SLOWEST;
Flashing.speed_max = RGB_FUSION_GPU_SPEED_FASTEST;
Flashing.speed = RGB_FUSION_GPU_SPEED_NORMAL;
Flashing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Flashing);
mode DualFlashing;
DualFlashing.name = "Dual Flashing";
DualFlashing.value = RGB_FUSION_GPU_MODE_DUAL_FLASHING;
DualFlashing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
DualFlashing.speed_min = RGB_FUSION_GPU_SPEED_SLOWEST;
DualFlashing.speed_max = RGB_FUSION_GPU_SPEED_FASTEST;
DualFlashing.speed = RGB_FUSION_GPU_SPEED_NORMAL;
DualFlashing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(DualFlashing);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = RGB_FUSION_GPU_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED;
SpectrumCycle.speed_min = RGB_FUSION_GPU_SPEED_SLOWEST;
SpectrumCycle.speed_max = RGB_FUSION_GPU_SPEED_FASTEST;
SpectrumCycle.speed = RGB_FUSION_GPU_SPEED_NORMAL;
SpectrumCycle.color_mode = MODE_COLORS_NONE;
modes.push_back(SpectrumCycle);
colors.resize(1);
zone* new_zone = new zone();
led* new_led = new led();
std::vector<int>* zone_row = new std::vector<int>();
// Set zone name to channel name
new_zone->name = "GPU Zone";
new_led->name = "GPU LED";
zone_row->push_back(0);
// Aura devices can be either single or linear, never matrix
// That means only one row is needed
new_zone->map.push_back(*zone_row);
// Push new LED to LEDs vector
leds.push_back(*new_led);
// Push new zone to zones vector
zones.push_back(*new_zone);
// Initialize active mode
active_mode = 0;
}
void RGBController_RGBFusionGPU::SetCustomMode()
{
active_mode = 0;
}
void RGBController_RGBFusionGPU::UpdateMode()
{
rgb_fusion->SetMode(modes[active_mode].value, modes[active_mode].speed);
}
@@ -0,0 +1,28 @@
/*-----------------------------------------*\
| RGBController_RGBFusionGPU.h |
| |
| Generic RGB Interface for OpenRGB |
| Gigabyte RGB Fusion GPU Driver |
| |
| Adam Honse (CalcProgrammer1) 2/23/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "RGBFusionGPUController.h"
class RGBController_RGBFusionGPU : public RGBController
{
public:
RGBController_RGBFusionGPU(RGBFusionGPUController* rgb_fusion_ptr);
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void UpdateMode();
private:
RGBFusionGPUController* rgb_fusion;
};
@@ -1,166 +0,0 @@
/*-----------------------------------------*\
| RGBController_RazerChromaSDK.h |
| |
| Generic RGB Interface for official Razer |
| Chroma SDK |
| |
| Adam Honse (CalcProgrammer1) 9/2/2019 |
\*-----------------------------------------*/
#include "RGBController_RazerChromaSDK.h"
CREATEEFFECT RGBController_RazerChromaSDK::CreateEffect = NULL;
CREATEKEYBOARDEFFECT RGBController_RazerChromaSDK::CreateKeyboardEffect = NULL;
CREATEMOUSEEFFECT RGBController_RazerChromaSDK::CreateMouseEffect = NULL;
CREATEMOUSEPADEFFECT RGBController_RazerChromaSDK::CreateMousepadEffect = NULL;
CREATEHEADSETEFFECT RGBController_RazerChromaSDK::CreateHeadsetEffect = NULL;
CREATECHROMALINKEFFECT RGBController_RazerChromaSDK::CreateChromaLinkEffect = NULL;
RGBController_RazerChromaSDK::RGBController_RazerChromaSDK(unsigned int device_type, HMODULE* hModule)
{
unsigned int led_count = 0;
for (int i = 0; i < RAZER_NUM_DEVICES; i++)
{
if (device_list[i]->razer_type == device_type)
{
name = device_list[i]->name;
type = device_list[i]->type;
location = "Razer Chroma SDK";
for (int zone_id = 0; zone_id < RAZER_MAX_ZONES; zone_id++)
{
if (device_list[i]->zones[zone_id] != NULL)
{
device = device_list[i];
zone* new_zone = new zone();
new_zone->name = device_list[i]->zones[zone_id]->name;
new_zone->type = device_list[i]->zones[zone_id]->type;
std::vector<int> new_zone_map;
for (int led_id = 0; led_id < device_list[i]->zones[zone_id]->leds; led_id++)
{
RGBColor new_color = 0x00000000;
colors.push_back(new_color);
led* new_led = new led();
new_led->name = device_list[i]->zones[zone_id]->name;
leds.push_back(*new_led);
new_zone_map.push_back(led_count);
led_count++;
}
new_zone->map.push_back(new_zone_map);
zones.push_back(*new_zone);
}
}
}
}
if(CreateEffect == NULL) CreateEffect = (CREATEEFFECT)GetProcAddress(*hModule, "CreateEffect");
if(CreateKeyboardEffect == NULL) CreateKeyboardEffect = (CREATEKEYBOARDEFFECT)GetProcAddress(*hModule, "CreateKeyboardEffect");
if(CreateMouseEffect == NULL) CreateMouseEffect = (CREATEMOUSEEFFECT)GetProcAddress(*hModule, "CreateMouseEffect");
if(CreateMousepadEffect == NULL) CreateMousepadEffect = (CREATEMOUSEPADEFFECT)GetProcAddress(*hModule, "CreateMousepadEffect");
if(CreateHeadsetEffect == NULL) CreateHeadsetEffect = (CREATEHEADSETEFFECT)GetProcAddress(*hModule, "CreateHeadsetEffect");
if(CreateChromaLinkEffect == NULL) CreateChromaLinkEffect = (CREATECHROMALINKEFFECT)GetProcAddress(*hModule, "CreateChromaLinkEffect");
}
void RGBController_RazerChromaSDK::UpdateLEDs()
{
switch (device->razer_type)
{
case RAZER_GENERIC_MOUSE:
{
ChromaSDK::Mouse::CUSTOM_EFFECT_TYPE2 MouseEffect = {};
std::vector<int> left_zone_map = zones[0].map[0];
for (int left = 1; left < 8; left++)
{
MouseEffect.Color[left][0] = colors[left_zone_map[left - 1]];
}
std::vector<int> right_zone_map = zones[1].map[0];
for (int right = 1; right < 8; right++)
{
MouseEffect.Color[right][6] = colors[right_zone_map[right - 1]];
}
std::vector<int> bottom_zone_map = zones[2].map[0];
for (int bottom = 1; bottom < 6; bottom++)
{
MouseEffect.Color[8][bottom] = colors[bottom_zone_map[bottom - 1]];
}
std::vector<int> scroll_wheel_zone_map = zones[3].map[0];
MouseEffect.Color[2][3] = colors[scroll_wheel_zone_map[0]];
std::vector<int> logo_zone_map = zones[4].map[0];
MouseEffect.Color[7][3] = colors[logo_zone_map[0]];
std::vector<int> numpad_backlight_zone_map = zones[5].map[0];
MouseEffect.Color[4][3] = colors[numpad_backlight_zone_map[0]];
CreateMouseEffect(ChromaSDK::Mouse::CHROMA_CUSTOM2, &MouseEffect, NULL);
}
break;
case RAZER_GENERIC_MOUSEPAD:
{
ChromaSDK::Mousepad::CUSTOM_EFFECT_TYPE MousepadEffect = {};
for (int x = 0; x < 15; x++)
{
MousepadEffect.Color[x] = colors[x];
}
CreateMousepadEffect(ChromaSDK::Mousepad::CHROMA_CUSTOM, &MousepadEffect, NULL);
}
break;
case RAZER_CHROMA_HDK:
{
ChromaSDK::CUSTOM_EFFECT_TYPE ChromaBoxEffect = {};
for (int x = 0; x < 16; x++)
{
for (int y = 0; y < 4; y++)
{
ChromaBoxEffect.Color[y][x] = colors[(y*16) + x];
}
}
CreateEffect(ChromaSDK::CHROMABOX, ChromaSDK::CHROMA_CUSTOM, &ChromaBoxEffect, NULL);
}
break;
}
}
void RGBController_RazerChromaSDK::UpdateZoneLEDs(int zone)
{
UpdateLEDs();
}
void RGBController_RazerChromaSDK::UpdateSingleLED(int led)
{
UpdateLEDs();
}
void RGBController_RazerChromaSDK::SetCustomMode()
{
}
void RGBController_RazerChromaSDK::UpdateMode()
{
}
@@ -1,248 +0,0 @@
/*-----------------------------------------*\
| RGBController_RazerChromaSDK.h |
| |
| Generic RGB Interface for official Razer |
| Chroma SDK |
| |
| Adam Honse (CalcProgrammer1) 9/2/2019 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include <Windows.h>
#include "RzChromaSDKDefines.h"
#include "RzChromaSDKTypes.h"
#include "RzErrors.h"
using namespace ChromaSDK::Keyboard;
typedef RZRESULT(*INIT)(void);
typedef RZRESULT(*UNINIT)(void);
typedef RZRESULT(*CREATEEFFECT)(RZDEVICEID DeviceId, ChromaSDK::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
typedef RZRESULT(*CREATEKEYBOARDEFFECT)(ChromaSDK::Keyboard::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
typedef RZRESULT(*CREATEMOUSEEFFECT)(ChromaSDK::Mouse::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
typedef RZRESULT(*CREATEMOUSEPADEFFECT)(ChromaSDK::Mousepad::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
typedef RZRESULT(*CREATEHEADSETEFFECT)(ChromaSDK::Headset::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
typedef RZRESULT(*CREATECHROMALINKEFFECT)(ChromaSDK::ChromaLink::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
#define RAZER_MAX_ZONES 6
#define RAZER_NUM_DEVICES 3
enum
{
RAZER_GENERIC_KEYBOARD,
RAZER_GENERIC_MOUSE,
RAZER_GENERIC_MOUSEPAD,
RAZER_CHROMA_HDK
};
enum
{
RAZER_MODE_CUSTOM,
RAZER_MODE_OFF,
RAZER_MODE_STATIC,
RAZER_MODE_BREATHING,
RAZER_MODE_SPECTRUM_CYCLE,
RAZER_MODE_WAVE,
RAZER_MODE_REACTIVE,
RAZER_NUM_MODES
};
typedef struct
{
std::string name;
unsigned int type;
unsigned int leds;
} razer_zone;
typedef struct
{
std::string name;
unsigned int razer_type;
unsigned int type;
const razer_zone* zones[RAZER_MAX_ZONES];
} razer_device;
/*------------------------------------------------------------ *\
| Razer Generic Mouse |
| |
| Zone "Left" |
| Linear |
| 7 LEDs |
| |
| Zone "Right" |
| Linear |
| 7 LEDs |
| |
| Zone "Bottom" |
| Linear |
| 5 LEDs |
| |
| Zone "Scroll Wheel" |
| Single |
| 1 LED |
| |
| Zone "Logo" |
| Single |
| 1 LED |
| |
| Zone "Numpad/Backlight" |
| Single |
| 1 LED |
\*-------------------------------------------------------------*/
static const razer_zone mouse_left_zone =
{
"Left LED Strip",
ZONE_TYPE_LINEAR,
7
};
static const razer_zone mouse_right_zone =
{
"Right LED Strip",
ZONE_TYPE_LINEAR,
7
};
static const razer_zone mouse_bottom_zone =
{
"Bottom LED Strip",
ZONE_TYPE_LINEAR,
5
};
static const razer_zone mouse_scroll_wheel_zone =
{
"Scroll Wheel",
ZONE_TYPE_SINGLE,
1
};
static const razer_zone mouse_logo_zone =
{
"Logo",
ZONE_TYPE_SINGLE,
1
};
static const razer_zone mouse_numpad_backlight_zone =
{
"Numpad/Backlight",
ZONE_TYPE_SINGLE,
1
};
static const razer_device mouse_device =
{
"Razer Generic Mouse",
RAZER_GENERIC_MOUSE,
DEVICE_TYPE_MOUSE,
{
&mouse_left_zone,
&mouse_right_zone,
&mouse_bottom_zone,
&mouse_scroll_wheel_zone,
&mouse_logo_zone,
&mouse_numpad_backlight_zone
}
};
/*------------------------------------------------------------ *\
| Razer Generic Mousepad (Firefly, Mug Holder) |
| |
| Zone "LED Strip" |
| Linear |
| 15 LEDs |
\*-------------------------------------------------------------*/
static const razer_zone mousepad_zone =
{
"LED Strip",
ZONE_TYPE_LINEAR,
15
};
static const razer_device mousepad_device =
{
"Razer Generic Mousepad",
RAZER_GENERIC_MOUSEPAD,
DEVICE_TYPE_MOUSE,
{
&mousepad_zone,
NULL,
NULL,
NULL,
NULL,
NULL
}
};
/*------------------------------------------------------------ *\
| Razer Chroma HDK |
| |
| Zone "LED Strip" |
| Linear |
| 16 LEDs |
| |
| Zone "LED Strip" |
| Linear |
| 16 LEDs |
| |
| Zone "LED Strip" |
| Linear |
| 16 LEDs |
| |
| Zone "LED Strip" |
| Linear |
| 16 LEDs |
\*-------------------------------------------------------------*/
static const razer_zone chromahdk_zone =
{
"LED Strip",
ZONE_TYPE_LINEAR,
16
};
static const razer_device chromahdk_device =
{
"Razer Chroma HDK",
RAZER_CHROMA_HDK,
DEVICE_TYPE_LEDSTRIP,
{
&chromahdk_zone,
&chromahdk_zone,
&chromahdk_zone,
&chromahdk_zone,
NULL,
NULL
}
};
static const razer_device* device_list[RAZER_NUM_DEVICES] =
{
&mouse_device,
&mousepad_device,
&chromahdk_device
};
class RGBController_RazerChromaSDK : public RGBController
{
public:
RGBController_RazerChromaSDK(unsigned int device_type, HMODULE* hModule);
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void UpdateMode();
private:
const razer_device* device;
static CREATEEFFECT CreateEffect;
static CREATEKEYBOARDEFFECT CreateKeyboardEffect;
static CREATEMOUSEEFFECT CreateMouseEffect;
static CREATEMOUSEPADEFFECT CreateMousepadEffect;
static CREATEHEADSETEFFECT CreateHeadsetEffect;
static CREATECHROMALINKEFFECT CreateChromaLinkEffect;
};
@@ -0,0 +1,248 @@
/*-----------------------------------------*\
| RGBController_ThermaltakeRiing.cpp |
| |
| Generic RGB Interface for Thermaltake |
| Riing controller |
| |
| Adam Honse (CalcProgrammer1) 2/9/2020 |
\*-----------------------------------------*/
#include "RGBController_ThermaltakeRiing.h"
RGBController_ThermaltakeRiing::RGBController_ThermaltakeRiing(ThermaltakeRiingController* riing_ptr)
{
riing = riing_ptr;
name = "Thermaltake Riing";
type = DEVICE_TYPE_COOLER;
mode Flow;
Flow.name = "Flow";
Flow.value = THERMALTAKE_MODE_FLOW;
Flow.flags = MODE_FLAG_HAS_SPEED;
Flow.speed_min = THERMALTAKE_SPEED_SLOW;
Flow.speed_max = THERMALTAKE_SPEED_EXTREME;
Flow.speed = THERMALTAKE_SPEED_NORMAL;
Flow.color_mode = MODE_COLORS_NONE;
modes.push_back(Flow);
mode Spectrum;
Spectrum.name = "Spectrum";
Spectrum.value = THERMALTAKE_MODE_SPECTRUM;
Spectrum.flags = MODE_FLAG_HAS_SPEED;
Spectrum.speed_min = THERMALTAKE_SPEED_SLOW;
Spectrum.speed_max = THERMALTAKE_SPEED_EXTREME;
Spectrum.speed = THERMALTAKE_SPEED_NORMAL;
Spectrum.color_mode = MODE_COLORS_NONE;
modes.push_back(Spectrum);
mode Ripple;
Ripple.name = "Ripple";
Ripple.value = THERMALTAKE_MODE_RIPPLE;
Ripple.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Ripple.speed_min = THERMALTAKE_SPEED_SLOW;
Ripple.speed_max = THERMALTAKE_SPEED_EXTREME;
Ripple.speed = THERMALTAKE_SPEED_NORMAL;
Ripple.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Ripple);
mode Blink;
Blink.name = "Blink";
Blink.value = THERMALTAKE_MODE_BLINK;
Blink.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Blink.speed_min = THERMALTAKE_SPEED_SLOW;
Blink.speed_max = THERMALTAKE_SPEED_EXTREME;
Blink.speed = THERMALTAKE_SPEED_NORMAL;
Blink.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Blink);
mode Pulse;
Pulse.name = "Pulse";
Pulse.value = THERMALTAKE_MODE_PULSE;
Pulse.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Pulse.speed_min = THERMALTAKE_SPEED_SLOW;
Pulse.speed_max = THERMALTAKE_SPEED_EXTREME;
Pulse.speed = THERMALTAKE_SPEED_NORMAL;
Pulse.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Pulse);
mode Wave;
Wave.name = "Wave";
Wave.value = THERMALTAKE_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR;
Wave.speed_min = THERMALTAKE_SPEED_SLOW;
Wave.speed_max = THERMALTAKE_SPEED_EXTREME;
Wave.speed = THERMALTAKE_SPEED_NORMAL;
Wave.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Wave);
mode Direct;
Direct.name = "Direct";
Direct.value = THERMALTAKE_MODE_PER_LED;
Direct.flags = MODE_FLAG_HAS_PER_LED_COLOR;
Direct.speed_min = 0;
Direct.speed_max = 0;
Direct.speed = 0;
Direct.color_mode = MODE_FLAG_HAS_PER_LED_COLOR;
modes.push_back(Direct);
mode Static;
Static.name = "Static";
Static.value = THERMALTAKE_MODE_FULL;
Static.flags = MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
Static.colors_min = 1;
Static.colors_max = 1;
Static.speed_min = 0;
Static.speed_max = 0;
Static.speed = 0;
Static.color_mode = MODE_COLORS_MODE_SPECIFIC;
Static.colors.resize(1);
modes.push_back(Static);
/*-------------------------------------------------*\
| Set size of colors array |
\*-------------------------------------------------*/
unsigned int led_count = 0;
for (unsigned int channel_idx = 0; channel_idx < 5; channel_idx++)
{
led_count += riing->channel_leds[channel_idx];
}
colors.resize(led_count);
/*-------------------------------------------------*\
| Set zones and leds |
\*-------------------------------------------------*/
unsigned int led_idx = 0;
for (unsigned int channel_idx = 0; channel_idx < 5; channel_idx++)
{
if(riing->channel_leds[channel_idx] > 0)
{
zone* new_zone = new zone;
char ch_idx_string[2];
sprintf(ch_idx_string, "%d", channel_idx + 1);
new_zone->name = "Riing Channel ";
new_zone->name.append(ch_idx_string);
new_zone->type = ZONE_TYPE_LINEAR;
std::vector<int> *new_zone_map = new std::vector<int>();
for (unsigned int led_ch_idx = 0; led_ch_idx < riing->channel_leds[channel_idx]; led_ch_idx++)
{
char led_idx_string[3];
sprintf(led_idx_string, "%d", led_ch_idx + 1);
led new_led;
new_led.name = "Riing Channel ";
new_led.name.append(ch_idx_string);
new_led.name.append(", LED ");
new_led.name.append(led_idx_string);
leds.push_back(new_led);
leds_channel.push_back(channel_idx + 1);
new_zone_map->push_back(led_idx);
led_idx++;
}
new_zone->map.push_back(*new_zone_map);
zones.push_back(*new_zone);
zones_channel.push_back(channel_idx + 1);
}
}
}
void RGBController_ThermaltakeRiing::UpdateLEDs()
{
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
unsigned int channel = zones_channel[zone_idx];
std::vector<RGBColor> channel_colors;
for(std::size_t color = 0; color < colors.size(); color++)
{
if(leds_channel[color] == channel)
{
channel_colors.push_back(colors[color]);
}
}
if(channel_colors.size() > 0)
{
riing->SetChannelLEDs(channel, channel_colors);
}
}
}
void RGBController_ThermaltakeRiing::UpdateZoneLEDs(int zone)
{
unsigned int channel = zones_channel[zone];
std::vector<RGBColor> channel_colors;
for(std::size_t color = 0; color < colors.size(); color++)
{
if(leds_channel[color] == channel)
{
channel_colors.push_back(colors[color]);
}
}
if(channel_colors.size() > 0)
{
riing->SetChannelLEDs(channel, channel_colors);
}
}
void RGBController_ThermaltakeRiing::UpdateSingleLED(int led)
{
unsigned int channel = leds_channel[led];
std::vector<RGBColor> channel_colors;
for(std::size_t color = 0; color < colors.size(); color++)
{
if(leds_channel[color] == channel)
{
channel_colors.push_back(colors[color]);
}
}
if(channel_colors.size() > 0)
{
riing->SetChannelLEDs(channel, channel_colors);
}
}
void RGBController_ThermaltakeRiing::SetCustomMode()
{
active_mode = 6;
}
void RGBController_ThermaltakeRiing::UpdateMode()
{
for(std::size_t zone_idx = 0; zone_idx < zones.size(); zone_idx++)
{
unsigned int channel = zones_channel[zone_idx];
std::vector<RGBColor> channel_colors;
for(std::size_t color = 0; color < colors.size(); color++)
{
if(leds_channel[color] == channel)
{
channel_colors.push_back(colors[color]);
}
}
if(channel_colors.size() > 0)
{
riing->SetMode(modes[active_mode].value, modes[active_mode].speed);
riing->SetChannelLEDs(channel, channel_colors);
}
}
}
@@ -0,0 +1,29 @@
/*-----------------------------------------*\
| RGBController_ThermaltakeRiing.h |
| |
| Generic RGB Interface for Thermaltake |
| Riing controller |
| |
| Adam Honse (CalcProgrammer1) 2/9/2020 |
\*-----------------------------------------*/
#pragma once
#include "RGBController.h"
#include "ThermaltakeRiingController.h"
class RGBController_ThermaltakeRiing : public RGBController
{
public:
RGBController_ThermaltakeRiing(ThermaltakeRiingController* riing_ptr);
void UpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void SetCustomMode();
void UpdateMode();
private:
ThermaltakeRiingController* riing;
std::vector<unsigned int> leds_channel;
std::vector<unsigned int> zones_channel;
};
-70
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@@ -1,70 +0,0 @@
#include "RGBController.h"
#include "RGBController_RazerChromaSDK.h"
#include <vector>
#include <stdio.h>
#include <stdlib.h>
#include <fcntl.h>
#include <string.h>
static HMODULE hModule;
#include "RzChromaSDKDefines.h"
#include "RzChromaSDKTypes.h"
#include "RzErrors.h"
using namespace ChromaSDK::Keyboard;
typedef RZRESULT(*INIT)(void);
typedef RZRESULT(*UNINIT)(void);
typedef RZRESULT(*CREATEEFFECT)(RZDEVICEID DeviceId, ChromaSDK::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
typedef RZRESULT(*CREATEKEYBOARDEFFECT)(ChromaSDK::Keyboard::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
typedef RZRESULT(*CREATEMOUSEEFFECT)(ChromaSDK::Mouse::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
typedef RZRESULT(*CREATEMOUSEPADEFFECT)(ChromaSDK::Mousepad::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
typedef RZRESULT(*CREATEHEADSETEFFECT)(ChromaSDK::Headset::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
typedef RZRESULT(*CREATECHROMALINKEFFECT)(ChromaSDK::ChromaLink::EFFECT_TYPE Effect, PRZPARAM pParam, RZEFFECTID* pEffectId);
#ifdef _WIN64
#define CHROMASDKDLL ("RzChromaSDK64.dll")
#else
#define CHROMASDKDLL ("RzChromaSDK.dll")
#endif
/******************************************************************************************\
* *
* DetectRazerChromaSDKControllers *
* *
* Detect devices supported by the Razer Chroma SDK *
* * *
\******************************************************************************************/
void DetectRazerChromaSDKControllers(std::vector<RGBController*>& rgb_controllers)
{
RGBController_RazerChromaSDK* razer_rgb;
// Dynamically loads the Chroma SDK library.
hModule = LoadLibrary(CHROMASDKDLL);
if (hModule)
{
INIT Init = (INIT)GetProcAddress(hModule, "Init");
if (Init)
{
//Initialize the SDK
Init();
}
}
razer_rgb = new RGBController_RazerChromaSDK(RAZER_GENERIC_MOUSE, &hModule);
rgb_controllers.push_back(razer_rgb);
razer_rgb = new RGBController_RazerChromaSDK(RAZER_GENERIC_MOUSEPAD, &hModule);
rgb_controllers.push_back(razer_rgb);
razer_rgb = new RGBController_RazerChromaSDK(RAZER_CHROMA_HDK, &hModule);
rgb_controllers.push_back(razer_rgb);
} /* DetectRazerChromaSDKControllers() */
+368
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@@ -0,0 +1,368 @@
#include <vector>
#include <cstring>
#include <string>
#include <tuple>
#include <iostream>
#include "OpenRGB.h"
#include "RGBController.h"
#include "i2c_smbus.h"
extern std::vector<i2c_smbus_interface*> busses;
extern std::vector<RGBController*> rgb_controllers;
struct DeviceOptions
{
int device;
std::vector<std::tuple<unsigned char, unsigned char, unsigned char>> colors;
std::string mode;
bool hasOption;
};
struct Options
{
std::vector<DeviceOptions> devices;
// if hasDevice is false, devices above is empty and allDeviceOptions
// shall be applied to all available devices
bool hasDevice;
DeviceOptions allDeviceOptions;
};
void PrintHelp()
{
std::string help_text;
help_text += "OpenRGB ";
help_text += VERSION_STRING;
help_text += ", for controlling RGB lighting.\n";
help_text += "Usage: OpenRGB (--device [--mode] [--color])...\n";
help_text += "\nOptions:\n";
help_text += "--gui\t\t\t\t\t Show GUI, also appears when not passing any parameters\n";
help_text += "-l, --list-devices\t\t\t Lists every compatible device with their number\n";
help_text += "-d, --device [0-9]\t\t\t Selects device to apply colors and/or effect to, or applies to all devices if omitted\n";
help_text += "\t\t\t\t\t Can be specified multiple times with different modes and colors\n";
help_text += "-c, --color \"FFFFFF,00AAFF...\"\t\t Sets colors on each device directly if no effect is specified, and sets the effect color if an effect is specified\n";
help_text += "\t\t\t\t\t If there are more LEDs than colors given, the last color will be applied to the remaining LEDs\n";
help_text += "-m, --mode [breathing | static | ...] Sets the mode to be applied, check --list-devices to see which modes are supported on your device\n";
help_text += "-v, --version\t\t\t\t Display version and software build information\n";
std::cout << help_text << std::endl;
}
void PrintVersion()
{
std::string version_text;
version_text += "OpenRGB ";
version_text += VERSION_STRING;
version_text += ", for controlling RGB lighting.\n";
version_text += " Version:\t\t ";
version_text += VERSION_STRING;
version_text += "\n Build Date\t\t ";
version_text += BUILDDATE_STRING;
version_text += "\n Git Commit ID\t\t ";
version_text += GIT_COMMIT_ID;
version_text += "\n Git Commit Date\t ";
version_text += GIT_COMMIT_DATE;
version_text += "\n Git Branch\t\t ";
version_text += GIT_BRANCH;
version_text += "\n";
std::cout << version_text << std::endl;
}
bool ParseColors(std::string colors_string, DeviceOptions *options)
{
while (colors_string.length() >= 6)
{
int rgb_end = colors_string.find_first_of(',');
std::string color = colors_string.substr(0, rgb_end);
if (color.length() != 6)
break;
try
{
unsigned char r = std::stoi(color.substr(0, 2), nullptr, 16);
unsigned char g = std::stoi(color.substr(2, 2), nullptr, 16);
unsigned char b = std::stoi(color.substr(4, 2), nullptr, 16);
options->colors.push_back(std::make_tuple(r, g, b));
}
catch (...)
{
break;
}
// If there are no more colors
if (rgb_end == std::string::npos)
break;
// Remove the current color and the next color's leading comma
colors_string = colors_string.substr(color.length() + 1);
}
return options->colors.size() > 0;
}
int ParseMode(DeviceOptions& options)
{
auto availableModes = rgb_controllers[options.device]->modes;
for (int i = 0; i < availableModes.size(); i++)
{
if (availableModes[i].name == options.mode)
{
return i;
}
}
std::cout << "Error: Mode '" + options.mode + "' not available for device '" +
rgb_controllers[options.device]->name + "'" << std::endl;
return false;
}
DeviceOptions* GetDeviceOptionsForDevID(Options *opts, int device)
{
if (device == -1)
{
return &opts->allDeviceOptions;
}
for (int i = 0; i < opts->devices.size(); i++)
{
if (opts->devices[i].device == device)
{
return &opts->devices[i];
}
}
// should never happen
std::cout << "Internal error: Tried setting an option on a device that wasn't specified" << std::endl;
abort();
}
std::string QuoteIfNecessary(std::string str)
{
if (str.find(' ') == std::string::npos)
{
return str;
}
else
{
return "'" + str + "'";
}
}
bool ProcessOptions(int argc, char *argv[], Options *res)
{
int arg_index = 1;
int currentDev = -1;
while (arg_index < argc)
{
std::string option = argv[arg_index];
// Handle options that take no arguments
if (option == "--list-devices" || option == "-l")
{
for (int i = 0; i < rgb_controllers.size(); i++)
{
RGBController *c = rgb_controllers[i];
std::cout << i << ": " << c->name << std::endl;
std::cout << " Type: " << device_type_to_str(c->type) << std::endl;
if (!c->serial.empty())
{
std::cout << " Serial: " << c->serial << std::endl;
}
if (!c->description.empty())
{
std::cout << " Description: " << c->description << std::endl;
}
if (!c->modes.empty())
{
std::cout << " Modes:";
int curMode = c->GetMode();
for (int i = 0; i < c->modes.size(); i++)
{
std::string modeStr = QuoteIfNecessary(c->modes[i].name);
if (curMode == i) {
modeStr = "[" + modeStr + "]";
}
std::cout << " " << modeStr;
}
std::cout << std::endl;
}
if (!c->zones.empty())
{
std::cout << " Zones:";
for (int i = 0; i < c->zones.size(); i++)
{
std::cout << " " << QuoteIfNecessary(c->zones[i].name);
}
std::cout << std::endl;
}
if (!c->leds.empty())
{
std::cout << " LEDs:";
for (int i = 0; i < c->leds.size(); i++)
{
std::cout << " " << QuoteIfNecessary(c->leds[i].name);
}
std::cout << std::endl;
}
std::cout << std::endl;
}
exit(0);
}
else if (arg_index + 1 < argc) // Handle options that take an argument
{
std::string argument = argv[arg_index + 1];
if (option == "--device" || option == "-d")
{
try
{
currentDev = std::stoi(argument);
if (rgb_controllers.size() <= currentDev || currentDev < 0)
{
throw;
}
DeviceOptions newDev;
newDev.device = currentDev;
if (!res->hasDevice)
{
res->hasDevice = true;
}
res->devices.push_back(newDev);
}
catch (...)
{
std::cout << "Error: Invalid device ID: " + argument << std::endl;
return false;
}
}
else if (option == "--color" || option == "-c")
{
DeviceOptions* currentDevOpts = GetDeviceOptionsForDevID(res, currentDev);
if (ParseColors(argument, currentDevOpts))
{
currentDevOpts->hasOption = true;
}
else
{
std::cout << "Error: Invalid argument to " + option + ": " + argument << std::endl;
return false;
}
}
else if (option == "--mode" || option == "-m")
{
DeviceOptions* currentDevOpts = GetDeviceOptionsForDevID(res, currentDev);
currentDevOpts->mode = argument;
currentDevOpts->hasOption = true;
}
else
{
std::cout << "Error: Invalid option: " + option << std::endl;
return false;
}
arg_index++;
}
else
{
return false;
}
arg_index++;
}
if (res->hasDevice)
{
for (int i = 0; i < res->devices.size(); i++)
{
if (!res->devices[i].hasOption)
{
std::cout << "Error: Device " + std::to_string(i) + " specified, but neither mode nor color given" << std::endl;
return false;
}
}
}
else
{
return res->allDeviceOptions.hasOption;
}
return true;
}
void ApplyOptions(DeviceOptions& options)
{
RGBController *device = rgb_controllers[options.device];
// Set mode first, in case it's 'direct' (which affects SetLED below)
int mode = ParseMode(options);
device->SetMode(mode);
if (options.colors.size() != 0)
{
int last_set_color;
for (int i = 0; i < device->leds.size(); i++)
{
if (i < options.colors.size())
{
last_set_color = i;
}
device->SetLED(i, ToRGBColor(std::get<0>(options.colors[last_set_color]),
std::get<1>(options.colors[last_set_color]),
std::get<2>(options.colors[last_set_color])));
}
}
}
int cli_main(int argc, char *argv[])
{
if (argc == 2 && (!strcmp(argv[1], "--help") || !strcmp(argv[1], "-h")))
{
PrintHelp();
return 0;
}
if (argc == 2 && (!strcmp(argv[1], "--version") || !strcmp(argv[1], "-v")))
{
PrintVersion();
return 0;
}
DetectRGBControllers();
Options options;
if (!ProcessOptions(argc, argv, &options))
{
PrintHelp();
return -1;
}
if (options.hasDevice)
{
for (int i = 0; i < options.devices.size(); i++)
{
ApplyOptions(options.devices[i]);
}
}
else
{
for (int i = 0; i < rgb_controllers.size(); i++)
{
options.allDeviceOptions.device = i;
ApplyOptions(options.allDeviceOptions);
}
}
return 0;
}
+560
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@@ -0,0 +1,560 @@
#define _WIN32_LEAN_AND_MEAN
#include <windows.h>
#include "nvapi.h"
// Constructors for NvAPI structures that just zero the memory and set the right version
NV_DELTA_ENTRY::NV_DELTA_ENTRY()
{
memset(this, 0, sizeof *this);
}
NV_GPU_PSTATES20_V2::NV_GPU_PSTATES20_V2()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_GPU_PSTATES20_V2, 2);
}
NV_CLOCK_FREQUENCIES_V2::NV_CLOCK_FREQUENCIES_V2()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_CLOCK_FREQUENCIES_V2, 2);
}
NV_GPU_PERFORMANCE_TABLE_V1::NV_GPU_PERFORMANCE_TABLE_V1()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_GPU_PERFORMANCE_TABLE_V1, 1);
}
NV_DYNAMIC_PSTATES_V1::NV_DYNAMIC_PSTATES_V1()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_DYNAMIC_PSTATES_V1, 1);
}
NV_GPU_POWER_POLICIES_INFO_V1::NV_GPU_POWER_POLICIES_INFO_V1()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_GPU_POWER_POLICIES_INFO_V1, 1);
}
NV_GPU_POWER_POLICIES_STATUS_V1::NV_GPU_POWER_POLICIES_STATUS_V1()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_GPU_POWER_POLICIES_STATUS_V1, 1);
}
NV_GPU_VOLTAGE_DOMAINS_STATUS_V1::NV_GPU_VOLTAGE_DOMAINS_STATUS_V1()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_GPU_VOLTAGE_DOMAINS_STATUS_V1, 1);
}
NV_GPU_THERMAL_SETTINGS_V2::NV_GPU_THERMAL_SETTINGS_V2()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_GPU_THERMAL_SETTINGS_V2, 2);
}
NV_GPU_THERMAL_POLICIES_INFO_V2::NV_GPU_THERMAL_POLICIES_INFO_V2()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_GPU_THERMAL_POLICIES_INFO_V2, 2);
}
NV_GPU_THERMAL_POLICIES_STATUS_V2::NV_GPU_THERMAL_POLICIES_STATUS_V2()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_GPU_THERMAL_POLICIES_STATUS_V2, 2);
}
NV_GPU_COOLER_SETTINGS_V2::NV_GPU_COOLER_SETTINGS_V2()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_GPU_COOLER_SETTINGS_V2, 2);
}
NV_GPU_COOLER_LEVELS_V1::NV_GPU_COOLER_LEVELS_V1()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_GPU_COOLER_LEVELS_V1, 1);
}
NV_MEMORY_INFO_V2::NV_MEMORY_INFO_V2()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_MEMORY_INFO_V2, 2);
}
NV_DISPLAY_DRIVER_VERSION_V1::NV_DISPLAY_DRIVER_VERSION_V1()
{
memset(this, 0, sizeof *this);
version = NV_STRUCT_VERSION(NV_DISPLAY_DRIVER_VERSION_V1, 1);
}
NV_I2C_INFO_V3::NV_I2C_INFO_V3()
{
memset(this, 0, sizeof * this);
version = NV_STRUCT_VERSION(NV_I2C_INFO_V3, 3);
}
// Interface: 0150E828
static NV_STATUS (*pNvAPI_Initialize)();
// Interface: D22BDD7E
static NV_STATUS (*pNvAPI_Unload)();
// Interface: 9ABDD40D
static NV_STATUS (*pNvAPI_EnumDisplayHandle)(
NV_S32 this_enum,
NV_DISPLAY_HANDLE *display_handle);
// Interface: E5AC921F
static NV_STATUS (*pNvAPI_EnumPhysicalGPUs)(
NV_PHYSICAL_GPU_HANDLE *physical_gpu_handles,
NV_S32 *gpu_count);
// Interface: F951A4D1
static NV_STATUS (*pNvAPI_GetDisplayDriverVersion)(
NV_DISPLAY_HANDLE display_handle,
NV_DISPLAY_DRIVER_VERSION_V1 *display_driver_version);
// Interface: 01053FA5
static NV_STATUS (*pNvAPI_GetInterfaceVersionString)(
NV_SHORT_STRING version);
// Interface: 34EF9506
static NV_STATUS (*pNvAPI_GetPhysicalGPUsFromDisplay)(
NV_DISPLAY_HANDLE display_handle,
NV_PHYSICAL_GPU_HANDLE *gpu_handles,
NV_U32 *gpu_count);
// Interface: 774AA982
static NV_STATUS (*pNvAPI_GetMemoryInfo)(
NV_DISPLAY_HANDLE display_handle,
NV_MEMORY_INFO_V2 *memory_info);
// Interface: 0CEEE8E9F
static NV_STATUS (*pNvAPI_GPU_GetFullName)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_SHORT_STRING name);
// Interface: 6FF81213
static NV_STATUS (*pNvAPI_GPU_GetPStates20)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_PSTATES20_V2 *pstates);
// Interface: 0F4DAE6B
static NV_STATUS (*pNvAPI_GPU_SetPStates20)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_PSTATES20_V2 *pstates);
// Interface: DCB616C3
static NV_STATUS (*pNvAPI_GPU_GetAllClockFrequencies)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_CLOCK_FREQUENCIES_V2 *frequencies);
// Interface: 60DED2ED
static NV_STATUS (*pNvAPI_GPU_GetDynamicPStates)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_DYNAMIC_PSTATES_V1 *dynamic_pstates);
// Interface: 34206D86
static NV_STATUS (*pNvAPI_GPU_GetPowerPoliciesInfo)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_POWER_POLICIES_INFO_V1 *policies_info);
// Interface: 70916171
static NV_STATUS (*pNvAPI_GPU_GetPowerPoliciesStatus)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_POWER_POLICIES_STATUS_V1 *policies_status);
// Interface: 0C16C7E2C
static NV_STATUS (*pNvAPI_GPU_GetVoltageDomainStatus)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_VOLTAGE_DOMAINS_STATUS_V1 *voltage_domains_status);
// Interface: 0E3640A56
static NV_STATUS (*pNvAPI_GPU_GetThermalSettings)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_THERMAL_TARGET sensor_index,
NV_GPU_THERMAL_SETTINGS_V2 *thermal_settings);
// Interface: 014B83A5F
static NV_STATUS (*pNvAPI_GPU_GetSerialNumber)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_SHORT_STRING serial_number);
// Interface: 0AD95F5ED
static NV_STATUS (*pNvAPI_GPU_SetPowerPoliciesStatus)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_POWER_POLICIES_STATUS_V1* policies_status);
// Interface: 00D258BB5
static NV_STATUS (*pNvAPI_GPU_GetThermalPoliciesInfo)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_THERMAL_POLICIES_INFO_V2* thermal_info);
// Interface: 0E9C425A1
static NV_STATUS (*pNvAPI_GPU_GetThermalPoliciesStatus)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_THERMAL_POLICIES_STATUS_V2* thermal_status);
// Interface: 034C0B13D
static NV_STATUS (*pNvAPI_GPU_SetThermalPoliciesStatus)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_THERMAL_POLICIES_STATUS_V2* thermal_status);
// Interface: DA141340
static NV_STATUS (*pNvAPI_GPU_GetCoolerSettings)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_S32 cooler_index,
NV_GPU_COOLER_SETTINGS_V2 *cooler_settings);
// Interface: 891FA0AE
static NV_STATUS (*pNvAPI_GPU_SetCoolerLevels)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_S32 cooler_index,
NV_GPU_COOLER_LEVELS_V1 *cooler_levels);
// Interface: 2DDFB66E
static NV_STATUS (*pNvAPI_GPU_GetPCIIdentifiers)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_U32 *device_id,
NV_U32 *sub_system_id,
NV_U32 *revision_id,
NV_U32 *ext_device_id);
// Interface: 283AC65A
static NV_STATUS (*pNvAPI_I2CWriteEx)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_I2C_INFO_V3* i2c_info,
NV_U32 *unknown);
// Interface: 4D7B0709
static NV_STATUS(*pNvAPI_I2CReadEx)(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_I2C_INFO_V3* i2c_info,
NV_U32 *unknown);
static bool QueryInterfaceOpaque(FARPROC query_interface, NV_U32 id, void **result)
{
void *address = ((void *(*)(NV_U32))query_interface)(id);
if (address) {
*result = address;
return true;
}
return false;
}
template<typename F>
static void QueryInterfaceCast(FARPROC query_interface, NV_U32 id, const char *function_name, F &function_pointer)
{
const bool result = QueryInterfaceOpaque(query_interface, id, (void **)&function_pointer);
////Log::write("%s querying interface '0x%08x' '%s'", result ? "success" : "failure", id, function_name);
}
#define QueryInterface(query_interface, id, function) \
QueryInterfaceCast((query_interface), (id), #function, p ## function)
static void QueryInterfaces(FARPROC query_interface)
{
//Log::write("querying interfaces with '0x%p'", query_interface);
QueryInterface(query_interface, 0x0150E828, NvAPI_Initialize);
QueryInterface(query_interface, 0xD22BDD7E, NvAPI_Unload);
QueryInterface(query_interface, 0x9ABDD40D, NvAPI_EnumDisplayHandle);
QueryInterface(query_interface, 0xE5AC921F, NvAPI_EnumPhysicalGPUs);
QueryInterface(query_interface, 0xF951A4D1, NvAPI_GetDisplayDriverVersion);
QueryInterface(query_interface, 0x01053FA5, NvAPI_GetInterfaceVersionString);
QueryInterface(query_interface, 0x34EF9506, NvAPI_GetPhysicalGPUsFromDisplay);
QueryInterface(query_interface, 0x774AA982, NvAPI_GetMemoryInfo);
QueryInterface(query_interface, 0x0CEEE8E9F, NvAPI_GPU_GetFullName);
QueryInterface(query_interface, 0x6FF81213, NvAPI_GPU_GetPStates20);
QueryInterface(query_interface, 0x0F4DAE6B, NvAPI_GPU_SetPStates20);
QueryInterface(query_interface, 0xDCB616C3, NvAPI_GPU_GetAllClockFrequencies);
QueryInterface(query_interface, 0x60DED2ED, NvAPI_GPU_GetDynamicPStates);
QueryInterface(query_interface, 0x34206D86, NvAPI_GPU_GetPowerPoliciesInfo);
QueryInterface(query_interface, 0x70916171, NvAPI_GPU_GetPowerPoliciesStatus);
QueryInterface(query_interface, 0x0C16C7E2C, NvAPI_GPU_GetVoltageDomainStatus);
QueryInterface(query_interface, 0x0E3640A56, NvAPI_GPU_GetThermalSettings);
QueryInterface(query_interface, 0x014B83A5F, NvAPI_GPU_GetSerialNumber);
QueryInterface(query_interface, 0x0AD95F5ED, NvAPI_GPU_SetPowerPoliciesStatus);
QueryInterface(query_interface, 0x00D258BB5, NvAPI_GPU_GetThermalPoliciesInfo);
QueryInterface(query_interface, 0x0E9C425A1, NvAPI_GPU_GetThermalPoliciesStatus);
QueryInterface(query_interface, 0x034C0B13D, NvAPI_GPU_SetThermalPoliciesStatus);
QueryInterface(query_interface, 0xDA141340, NvAPI_GPU_GetCoolerSettings);
QueryInterface(query_interface, 0x891FA0AE, NvAPI_GPU_SetCoolerLevels);
QueryInterface(query_interface, 0x2DDFB66E, NvAPI_GPU_GetPCIIdentifiers);
QueryInterface(query_interface, 0x283AC65A, NvAPI_I2CWriteEx);
QueryInterface(query_interface, 0x4D7B0709, NvAPI_I2CReadEx);
}
NV_STATUS NvAPI_Initialize()
{
if (!pNvAPI_Initialize) {
const char *name = sizeof(void*) == 4 ? "nvapi.dll" : "nvapi64.dll";
HMODULE nvapi = LoadLibraryA(name);
if (!nvapi) {
//Log::write("failed to load '%s'", name);
return -1;
}
//Log::write("loaded '%s' '0x%p'", name, nvapi);
FARPROC query_interface = GetProcAddress(nvapi, "nvapi_QueryInterface");
if (!query_interface) {
//Log::write("failed to find 'nvapi_QueryInterface'");
return -1;
}
QueryInterfaces(query_interface);
}
return pNvAPI_Initialize
? (*pNvAPI_Initialize)()
: -1;
}
NV_STATUS NvAPI_Unload()
{
return pNvAPI_Unload
? (*pNvAPI_Unload)()
: -1;
}
NV_STATUS NvAPI_EnumDisplayHandle(
NV_S32 this_enum,
NV_DISPLAY_HANDLE *display_handle)
{
return pNvAPI_EnumDisplayHandle
? (*pNvAPI_EnumDisplayHandle)(this_enum, display_handle)
: -1;
}
NV_STATUS NvAPI_EnumPhysicalGPUs(
NV_PHYSICAL_GPU_HANDLE *physical_gpu_handles,
NV_S32 *gpu_count)
{
return pNvAPI_EnumPhysicalGPUs
? (*pNvAPI_EnumPhysicalGPUs)(physical_gpu_handles, gpu_count)
: -1;
}
NV_STATUS NvAPI_GetDisplayDriverVersion(
NV_DISPLAY_HANDLE display_handle,
NV_DISPLAY_DRIVER_VERSION_V1 *display_driver_version)
{
return pNvAPI_GetDisplayDriverVersion
? (*pNvAPI_GetDisplayDriverVersion)(display_handle, display_driver_version)
: -1;
}
NV_STATUS NvAPI_GetInterfaceVersionString(
NV_SHORT_STRING version)
{
return pNvAPI_GetInterfaceVersionString
? (*pNvAPI_GetInterfaceVersionString)(version)
: -1;
}
NV_STATUS NvAPI_GetPhysicalGPUsFromDisplay(
NV_DISPLAY_HANDLE display_handle,
NV_PHYSICAL_GPU_HANDLE *gpu_handles,
NV_U32 *gpu_count)
{
return pNvAPI_GetPhysicalGPUsFromDisplay
? (*pNvAPI_GetPhysicalGPUsFromDisplay)(display_handle, gpu_handles, gpu_count)
: -1;
}
NV_STATUS NvAPI_GetMemoryInfo(
NV_DISPLAY_HANDLE display_handle,
NV_MEMORY_INFO_V2 *memory_info)
{
return pNvAPI_GetMemoryInfo
? (*pNvAPI_GetMemoryInfo)(display_handle, memory_info)
: -1;
}
NV_STATUS NvAPI_GPU_GetFullName(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_SHORT_STRING name)
{
return pNvAPI_GPU_GetFullName
? (*pNvAPI_GPU_GetFullName)(physical_gpu_handle, name)
: -1;
}
NV_STATUS NvAPI_GPU_GetPStates20(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_PSTATES20_V2 *pstates)
{
return pNvAPI_GPU_GetPStates20
? (*pNvAPI_GPU_GetPStates20)(physical_gpu_handle, pstates)
: -1;
}
NV_STATUS NvAPI_GPU_SetPStates20(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_PSTATES20_V2 *pstates)
{
return pNvAPI_GPU_SetPStates20
? (*pNvAPI_GPU_GetPStates20)(physical_gpu_handle, pstates)
: -1;
}
NV_STATUS NvAPI_GPU_GetAllClockFrequencies(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_CLOCK_FREQUENCIES_V2 *frequencies)
{
return pNvAPI_GPU_GetAllClockFrequencies
? (*pNvAPI_GPU_GetAllClockFrequencies)(physical_gpu_handle, frequencies)
: -1;
}
NV_STATUS NvAPI_GPU_GetDynamicPStates(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_DYNAMIC_PSTATES_V1 *dynamic_pstates)
{
return pNvAPI_GPU_GetDynamicPStates
? (*pNvAPI_GPU_GetDynamicPStates)(physical_gpu_handle, dynamic_pstates)
: -1;
}
NV_STATUS NvAPI_GPU_GetPowerPoliciesInfo(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_POWER_POLICIES_INFO_V1 *policies_info)
{
return pNvAPI_GPU_GetPowerPoliciesInfo
? (*pNvAPI_GPU_GetPowerPoliciesInfo)(physical_gpu_handle, policies_info)
: -1;
}
NV_STATUS NvAPI_GPU_GetPowerPoliciesStatus(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_POWER_POLICIES_STATUS_V1 *policies_status)
{
return pNvAPI_GPU_GetPowerPoliciesStatus
? (*NvAPI_GPU_GetPowerPoliciesStatus)(physical_gpu_handle, policies_status)
: -1;
}
NV_STATUS NvAPI_GPU_GetVoltageDomainStatus(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_VOLTAGE_DOMAINS_STATUS_V1 *voltage_domains_status)
{
return pNvAPI_GPU_GetVoltageDomainStatus
? (*pNvAPI_GPU_GetVoltageDomainStatus)(physical_gpu_handle, voltage_domains_status)
: -1;
}
NV_STATUS NvAPI_GPU_GetThermalSettings(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_THERMAL_TARGET sensor_index,
NV_GPU_THERMAL_SETTINGS_V2 *thermal_settings)
{
return pNvAPI_GPU_GetThermalSettings
? (*pNvAPI_GPU_GetThermalSettings)(physical_gpu_handle, sensor_index, thermal_settings)
: -1;
}
NV_STATUS NvAPI_GPU_GetSerialNumber(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_SHORT_STRING serial_number)
{
return pNvAPI_GPU_GetSerialNumber
? (*pNvAPI_GPU_GetSerialNumber)(physical_gpu_handle, serial_number)
: -1;
}
NV_STATUS NvAPI_GPU_SetPowerPoliciesStatus(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_POWER_POLICIES_STATUS_V1* policies_status)
{
return pNvAPI_GPU_SetPowerPoliciesStatus
? (*pNvAPI_GPU_SetPowerPoliciesStatus)(physical_gpu_handle, policies_status)
: -1;
}
NV_STATUS NvAPI_GPU_GetThermalPoliciesInfo(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_THERMAL_POLICIES_INFO_V2* thermal_info)
{
return pNvAPI_GPU_GetThermalPoliciesInfo
? (*pNvAPI_GPU_GetThermalPoliciesInfo)(physical_gpu_handle, thermal_info)
: -1;
}
NV_STATUS NvAPI_GPU_GetThermalPoliciesStatus(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_THERMAL_POLICIES_STATUS_V2* thermal_status)
{
return pNvAPI_GPU_GetThermalPoliciesStatus
? (*pNvAPI_GPU_GetThermalPoliciesStatus)(physical_gpu_handle, thermal_status)
: -1;
}
NV_STATUS NvAPI_GPU_SetThermalPoliciesStatus(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_THERMAL_POLICIES_STATUS_V2* thermal_status)
{
return pNvAPI_GPU_SetThermalPoliciesStatus
? (*pNvAPI_GPU_SetThermalPoliciesStatus)(physical_gpu_handle, thermal_status)
: -1;
}
NV_STATUS NvAPI_GPU_GetCoolerSettings(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_S32 cooler_index,
NV_GPU_COOLER_SETTINGS_V2 *cooler_settings)
{
return pNvAPI_GPU_GetCoolerSettings
? (*pNvAPI_GPU_GetCoolerSettings)(physical_gpu_handle, cooler_index, cooler_settings)
: -1;
}
NV_STATUS NvAPI_GPU_SetCoolerLevels(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_S32 cooler_index,
NV_GPU_COOLER_LEVELS_V1 *cooler_levels)
{
return pNvAPI_GPU_SetCoolerLevels
? (*pNvAPI_GPU_SetCoolerLevels)(physical_gpu_handle, cooler_index, cooler_levels)
: -1;
}
NV_STATUS NvAPI_GPU_GetPCIIdentifiers(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_U32 *device_id,
NV_U32 *sub_system_id,
NV_U32 *revision_id,
NV_U32 *ext_device_id)
{
return pNvAPI_GPU_GetPCIIdentifiers
? (*pNvAPI_GPU_GetPCIIdentifiers)(physical_gpu_handle, device_id, sub_system_id, revision_id, ext_device_id)
: -1;
}
NV_STATUS NvAPI_I2CWriteEx(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_I2C_INFO_V3* i2c_info,
NV_U32 *unknown)
{
return pNvAPI_I2CWriteEx
? (*pNvAPI_I2CWriteEx)(physical_gpu_handle, i2c_info, unknown)
: -1;
}
NV_STATUS NvAPI_I2CReadEx(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_I2C_INFO_V3* i2c_info,
NV_U32 *unknown)
{
return pNvAPI_I2CReadEx
? (*pNvAPI_I2CReadEx)(physical_gpu_handle, i2c_info, unknown)
: -1;
}
+465
View File
@@ -0,0 +1,465 @@
#ifndef NVAPI_H
#define NVAPI_H
#include <stdint.h>
typedef int32_t NV_S32;
typedef uint32_t NV_U32;
typedef uint8_t NV_U8;
typedef NV_S32* NV_HANDLE;
typedef NV_HANDLE NV_PHYSICAL_GPU_HANDLE;
typedef NV_HANDLE NV_VIRTUAL_GPU_HANDLE;
typedef NV_HANDLE NV_UNATTACHED_DISPLAY_HANDLE;
typedef NV_HANDLE NV_DISPLAY_HANDLE;
typedef char NV_SHORT_STRING[64];
typedef NV_S32 NV_STATUS;
#define NV_STRUCT_VERSION(STRUCT, VERSION) \
(((VERSION) << 16) | sizeof(STRUCT))
enum class NV_CLOCK_SYSTEM : NV_S32 {
GPU,
MEMORY,
SHADER
};
enum class NV_DYNAMIC_PSTATES_SYSTEM : NV_S32 {
GPU,
FB,
VID,
BUS
};
struct NV_DELTA_ENTRY {
NV_DELTA_ENTRY();
NV_S32 value;
NV_S32 value_min;
NV_S32 value_max;
};
struct NV_GPU_PSTATES20_V2 {
NV_GPU_PSTATES20_V2();
NV_U32 version;
NV_U32 flags;
NV_U32 state_count;
NV_U32 clock_count;
NV_U32 voltage_count;
struct {
NV_U32 state_num;
NV_U32 flags;
struct {
NV_U32 domain;
NV_U32 type; // NOTE(dweiler): 0 = single frequency, 1 = dynamic frequencu
NV_U32 flags; // NOTE(dweiler): flags don't appear to be enforced by NVAPI
NV_DELTA_ENTRY frequency_delta; // NOTE(dweiler): only valid when type == 1
NV_U32 min_or_single_frequency; // NOTE(dweiler): only valid when type == 0
NV_U32 max_frequency; // NOTE(dweiler): only valid when type == 1
NV_U32 voltage_domain; // NOTE(dweiler): only valid when type == 1
NV_U32 min_voltage; // NOTE(dweiler): only valid when type == 1
NV_U32 max_voltage; // NOTE(dweiler): only valid when type == 1
} clocks[8];
struct {
NV_U32 domain;
NV_U32 flags; // NOTE(dweiler): base voltage can only be changed if bit 0 is set
NV_U32 voltage;
NV_DELTA_ENTRY voltage_delta;
} base_voltages[4]; // NOTE(dweiler): base voltage (resting voltage wheen given a pstate) for all available voltage domains
} states[16];
struct {
NV_U32 voltage_count;
struct {
NV_U32 domain;
NV_U32 flags;
NV_U32 voltage;
NV_DELTA_ENTRY voltage_delta;
} voltages[4];
} over_voltage;
};
enum class NV_CLOCK_FREQUENCY_TYPE : NV_S32 {
CURRENT,
BASE,
BOOST,
LAST
};
struct NV_CLOCK_FREQUENCIES_V2 {
NV_CLOCK_FREQUENCIES_V2();
NV_U32 version;
NV_U32 clock_type;
struct {
NV_U32 present;
NV_U32 frequency;
} entries[32];
};
struct NV_GPU_PERFORMANCE_TABLE_V1 {
NV_GPU_PERFORMANCE_TABLE_V1();
NV_U32 version;
NV_U32 plevel_count;
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_U32 domain_entries;
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_U32 pstate_level;
NV_U32 : 32; // NOTE(dweiler): unknown value
struct {
struct {
NV_U32 domain;
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_U32 clock;
NV_U32 default_clock;
NV_U32 min_clock;
NV_U32 max_clock;
NV_U32 : 32; // NOTE(dweiler): unknown value
} domains[32];
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_U32 setting_flags;
} entries[10];
NV_U32 unknown[450]; // NOTE(dweiler): the following block of memory is completely unknown
};
struct NV_DYNAMIC_PSTATES_V1 {
NV_DYNAMIC_PSTATES_V1();
NV_U32 version;
NV_U32 flags;
struct {
NV_U32 present;
NV_U32 value;
} pstates[8];
};
struct NV_GPU_POWER_POLICIES_INFO_V1 {
NV_GPU_POWER_POLICIES_INFO_V1();
NV_U32 version;
NV_U32 flags;
struct {
NV_U32 pstate;
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_U32 min_power;
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_U32 default_power;
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_U32 max_power;
NV_U32 : 32; // NOTE(dweiler): unknown value
} entries[4];
};
struct NV_GPU_POWER_POLICIES_STATUS_V1 {
NV_GPU_POWER_POLICIES_STATUS_V1();
NV_U32 version;
NV_U32 count;
struct {
NV_U32 pstate; // NOTE(dweiler): assumed?
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_U32 power;
NV_U32 : 32; // NOTE(dweiler): unknown value
} entries[4];
};
struct NV_GPU_VOLTAGE_DOMAINS_STATUS_V1 {
NV_GPU_VOLTAGE_DOMAINS_STATUS_V1();
NV_U32 version;
NV_U32 flags;
NV_U32 count;
struct {
NV_U32 voltage_domain;
NV_U32 current_voltage;
} entries[16];
};
enum class NV_THERMAL_CONTROLLER : NV_S32 {
NONE,
GPU_INTERNAL,
ADM103,
MAX6649,
MAX1617,
LM99,
LM89,
LM64,
ADT7473,
SBMAX6649,
VBIOSEVT,
OS,
UNKNOWN = -1
};
enum class NV_THERMAL_TARGET : NV_S32 {
NONE = 0,
GPU = 1,
MEMORY = 2,
POWER_SUPPLY = 4,
BOARD = 8,
ALL = 15,
UNKNOWN = -1
};
enum class NV_I2C_SPEED : NV_U32 {
NVAPI_I2C_SPEED_DEFAULT,
NVAPI_I2C_SPEED_3KHZ,
NVAPI_I2C_SPEED_10KHZ,
NVAPI_I2C_SPEED_33KHZ,
NVAPI_I2C_SPEED_100KHZ,
NVAPI_I2C_SPEED_200KHZ,
NVAPI_I2C_SPEED_400KHZ
};
struct NV_GPU_THERMAL_SETTINGS_V2 {
NV_GPU_THERMAL_SETTINGS_V2();
NV_U32 version;
NV_U32 count;
struct {
NV_THERMAL_CONTROLLER controller;
NV_S32 default_min;
NV_S32 default_max;
NV_S32 current_temperature;
NV_THERMAL_TARGET target;
} sensor[3];
};
struct NV_GPU_THERMAL_POLICIES_INFO_V2 {
NV_GPU_THERMAL_POLICIES_INFO_V2();
NV_U32 version;
NV_U32 flags;
struct {
NV_U32 controller; // NOTE(dweiler): can't be NV_THERMAL_CONTROLLER since this needs to be unsigned
NV_U32 : 32; // NOTE(dweiler): unknown value
NV_S32 min; // NOTE(dweiler): stored as multiples of 256
NV_S32 default_; // NOTE(dweiler): stored as multiples of 256
NV_S32 max; // NOTE(dweiler): stored as multiples of 256
NV_U32 default_flags; // NOTE(dweiler): bit zero of the flags indicates the thermal priority
} entries[4];
};
struct NV_GPU_THERMAL_POLICIES_STATUS_V2 {
NV_GPU_THERMAL_POLICIES_STATUS_V2();
NV_U32 version;
NV_U32 count;
struct {
NV_U32 controller;
NV_U32 value; // NOTE(dweiler): stored as multiples of 256
NV_U32 flags; // NOTE(dweiler): bit zero of the flags indicates the thermal priority
} entries[4];
};
struct NV_GPU_COOLER_SETTINGS_V2 {
NV_GPU_COOLER_SETTINGS_V2();
NV_U32 version;
NV_U32 count;
struct {
NV_S32 type;
NV_S32 controller;
NV_S32 default_min;
NV_S32 default_max;
NV_S32 current_min;
NV_S32 current_max;
NV_S32 current_level;
NV_S32 default_policy;
NV_S32 current_policy;
NV_S32 target;
NV_S32 control_type;
NV_S32 active;
} coolers[20];
};
struct NV_GPU_COOLER_LEVELS_V1 {
NV_GPU_COOLER_LEVELS_V1();
NV_U32 version;
struct {
NV_S32 level;
NV_S32 policy; // NOTE(dweiler): 0x20 is default policy, 0x01 is user supplied policy
// TODO(dweiler): figure out what other policy values are valid
} levels[20];
};
struct NV_MEMORY_INFO_V2 {
NV_MEMORY_INFO_V2();
NV_U32 version;
NV_U32 values[5];
};
struct NV_DISPLAY_DRIVER_VERSION_V1 {
NV_DISPLAY_DRIVER_VERSION_V1();
NV_U32 version;
NV_U32 driver_version; // NOTE(dweiler): major = (driver_version / 100), minor = (driver_version % 100)
NV_U32 : 32; // NOTE(dweiler): unknown vaue
NV_SHORT_STRING build_branch;
NV_SHORT_STRING adapter;
};
struct NV_I2C_INFO_V3 {
NV_I2C_INFO_V3();
NV_U32 version;
NV_U32 display_mask;
NV_U8 is_ddc_port;
NV_U8 i2c_dev_address;
NV_U8* i2c_reg_address;
NV_U32 reg_addr_size;
NV_U8* data;
NV_U32 size;
NV_U32 i2c_speed;
NV_I2C_SPEED i2c_speed_khz;
NV_U8 port_id;
NV_U32 is_port_id_set;
};
// Interface: 0150E828
NV_STATUS NvAPI_Initialize();
// Interface: D22BDD7E
NV_STATUS NvAPI_Unload();
// Interface: 9ABDD40D
NV_STATUS NvAPI_EnumDisplayHandle(
NV_S32 this_enum,
NV_DISPLAY_HANDLE *display_handle);
// Interface: E5AC921F
NV_STATUS NvAPI_EnumPhysicalGPUs(
NV_PHYSICAL_GPU_HANDLE *physical_gpu_handles,
NV_S32 *gpu_count);
// Interface: F951A4D1
NV_STATUS NvAPI_GetDisplayDriverVersion(
NV_DISPLAY_HANDLE display_handle,
NV_DISPLAY_DRIVER_VERSION_V1 *display_driver_version);
// Interface: 01053FA5
NV_STATUS NvAPI_GetInterfaceVersionString(
NV_SHORT_STRING version);
// Interface: 34EF9506
NV_STATUS NvAPI_GetPhysicalGPUsFromDisplay(
NV_DISPLAY_HANDLE display_handle,
NV_PHYSICAL_GPU_HANDLE *gpu_handles,
NV_U32 *gpu_count);
// Interface: 774AA982
NV_STATUS NvAPI_GetMemoryInfo(
NV_DISPLAY_HANDLE display_handle,
NV_MEMORY_INFO_V2 *memory_info);
// Interface: 0CEEE8E9F
NV_STATUS NvAPI_GPU_GetFullName(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_SHORT_STRING name);
// Interface: 6FF81213
NV_STATUS NvAPI_GPU_GetPStates20(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_PSTATES20_V2 *pstates);
// Interface: 0F4DAE6B
NV_STATUS NvAPI_GPU_SetPStates20(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_PSTATES20_V2 *pstates);
// Get frequencies of all clocks of the GPU
//
// The actual frequencies (current, base, boost) returned is based on the value
// set in frequencies->clock_type before calling this function. The value values
// are part of the NV_CLOCK_FREQUENCY_TYPE enumeration.
//
// Interface: DCB616C3
NV_STATUS NvAPI_GPU_GetAllClockFrequencies(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_CLOCK_FREQUENCIES_V2 *frequencies);
// Interface: 60DED2ED
NV_STATUS NvAPI_GPU_GetDynamicPStates(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_DYNAMIC_PSTATES_V1 *dynamic_pstates);
// Interface: 34206D86
NV_STATUS NvAPI_GPU_GetPowerPoliciesInfo(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_POWER_POLICIES_INFO_V1 *policies_info);
// Interface: 70916171
NV_STATUS NvAPI_GPU_GetPowerPoliciesStatus(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_POWER_POLICIES_STATUS_V1 *policies_status);
// Interface: 0C16C7E2C
NV_STATUS NvAPI_GPU_GetVoltageDomainStatus(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_VOLTAGE_DOMAINS_STATUS_V1 *voltage_domains_status);
// Get the thermal settings of the GPU
//
// The value of [sensor_index] must be one of the values of NV_THERMAL_TARGET,
// either a single sensor, or the special value NV_THERMAL_TARGET::ALL for all
// sensors present on the GPU
//
// Interface: 0E3640A56
NV_STATUS NvAPI_GPU_GetThermalSettings(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_THERMAL_TARGET sensor_index,
NV_GPU_THERMAL_SETTINGS_V2 *thermal_settings);
// Get the serial number of the GPU
//
// The NV_SHORT_STRING will be filled out accordingly
//
// Interface: 014B83A5F
NV_STATUS NvAPI_GPU_GetSerialNumber(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_SHORT_STRING serial_number);
// Interface: 0AD95F5ED
NV_STATUS NvAPI_GPU_SetPowerPoliciesStatus(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_POWER_POLICIES_STATUS_V1* policies_status);
// Interface: 00D258BB5
NV_STATUS NvAPI_GPU_GetThermalPoliciesInfo(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_THERMAL_POLICIES_INFO_V2* thermal_info);
// Interface: 0E9C425A1
NV_STATUS NvAPI_GPU_GetThermalPoliciesStatus(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_THERMAL_POLICIES_STATUS_V2* thermal_status);
// Interface: 034C0B13D
NV_STATUS NvAPI_GPU_SetThermalPoliciesStatus(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_GPU_THERMAL_POLICIES_STATUS_V2* thermal_status);
// Interface: DA141340
NV_STATUS NvAPI_GPU_GetCoolerSettings(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_S32 cooler_index,
NV_GPU_COOLER_SETTINGS_V2 *cooler_settings);
// Interface: 891FA0AE
NV_STATUS NvAPI_GPU_SetCoolerLevels(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_S32 cooler_index,
NV_GPU_COOLER_LEVELS_V1 *cooler_levels);
// Interface: 2DDFB66E
NV_STATUS NvAPI_GPU_GetPCIIdentifiers(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_U32 *device_id,
NV_U32 *sub_system_id,
NV_U32 *revision_id,
NV_U32 *ext_device_id);
// Interface: 283AC65A
NV_STATUS NvAPI_I2CWriteEx(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_I2C_INFO_V3 *i2c_info,
NV_U32 *unknown);
// Interface: 4D7B0709
NV_STATUS NvAPI_I2CReadEx(
NV_PHYSICAL_GPU_HANDLE physical_gpu_handle,
NV_I2C_INFO_V3* i2c_info,
NV_U32 *unknown);
#endif

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