mirror of
https://github.com/CalcProgrammer1/OpenRGB.git
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* Add zone flags to indicate if fields are manually configurable and if they have been manually configured * Add flags field to segment type * Add segment flags for group start and group member * Add color mode support flags to zone (RGB, RBG, GRB, GBR, BRG, BGR) * Add color mode enum to zone * Update zone and segment description functions to support new fields * Rename the effects-only configurable size flag * Remove zone type and matrix map configuration from E1.31 manual configuration, use zone editor instead * Rework DeviceResizeZone to DeviceConfigureZone * Rework most ARGB controllers to allow zone customizations * Rework DRGBController to define devices in DRGBDevices list (similar to RazerDevices) * Rework NollieController to define devices in NollieDevices list (similar to RazerDevices)
262 lines
8.1 KiB
C++
262 lines
8.1 KiB
C++
/*---------------------------------------------------------*\
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| DRGBController.cpp |
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| Driver for DRGBmods |
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| Zhi Yan 25 Jun 2024 |
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| This file is part of the OpenRGB project |
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| SPDX-License-Identifier: GPL-2.0-or-later |
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\*---------------------------------------------------------*/
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#include <cstring>
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#include "DRGBController.h"
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#include "StringUtils.h"
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using namespace std::chrono_literals;
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DRGBController::DRGBController(hid_device* dev_handle, const char* path, unsigned short pid, std::string dev_name)
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{
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dev = dev_handle;
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location = path;
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name = dev_name;
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/*-----------------------------------------------------*\
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| Loop through all known devices to look for a PID |
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| match |
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\*-----------------------------------------------------*/
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for(unsigned int i = 0; i < DRGB_NUM_DEVICES; i++)
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{
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if(drgb_device_list[i]->pid == pid)
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{
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/*---------------------------------------------*\
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| Set device index |
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\*---------------------------------------------*/
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device_index = i;
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}
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}
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/*-----------------------------------------------------*\
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| Exit hardware effects. Start a thread to continuously|
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| send a keepalive packet every 500ms |
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\*-----------------------------------------------------*/
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keepalive_thread_run = 1;
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keepalive_thread = new std::thread(&DRGBController::KeepaliveThread, this);
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}
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DRGBController::~DRGBController()
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{
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keepalive_thread_run = 0;
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keepalive_thread->join();
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delete keepalive_thread;
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hid_close(dev);
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}
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std::string DRGBController::GetFirmwareString()
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{
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return "v"+std::to_string(version[0]) + "." + std::to_string(version[1]) + "." + std::to_string(version[2]) + "." + std::to_string(version[3]);
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}
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std::string DRGBController::GetLocationString()
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{
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return("HID: " + location);
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}
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std::string DRGBController::GetNameString()
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{
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return(name);
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}
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std::string DRGBController::GetSerialString()
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{
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wchar_t serial_string[128];
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int ret = hid_get_serial_number_string(dev, serial_string, 128);
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if(ret != 0)
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{
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return("");
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}
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return(StringUtils::wstring_to_string(serial_string));
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}
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unsigned short DRGBController::GetDevicePID()
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{
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return(drgb_device_list[device_index]->pid);
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}
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unsigned char DRGBController::GetNumChannels()
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{
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return(drgb_device_list[device_index]->channels);
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}
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unsigned short DRGBController::GetLEDsPerChannel()
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{
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return(drgb_device_list[device_index]->leds_per_channel);
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}
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unsigned short DRGBController::GetVersion()
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{
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return(drgb_device_list[device_index]->version);
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}
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std::string DRGBController::GetChannelName(unsigned char channel)
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{
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std::string channel_name;
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if(drgb_device_list[device_index]->channels == 6)
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{
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if(channel == 0)
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{
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channel_name = "Strimer ATX" + std::to_string(channel + 1);
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}
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else if(channel < 3)
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{
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channel_name = "Channel C" + std::to_string(channel);
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}
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else if(channel == 3)
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{
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channel_name = "Strimer GPU" + std::to_string(channel - 2);
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}
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else if(channel < 6)
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{
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channel_name = "Channel D" + std::to_string(channel - 3);
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}
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}
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else if(drgb_device_list[device_index]->channels == 10 || drgb_device_list[device_index]->channels == 12)
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{
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channel_name = "Channel " + std::to_string(channel + 1);
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}
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else if(drgb_device_list[device_index]->channels == 14)
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{
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if(channel < 4)
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{
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channel_name = "LCD " + std::to_string(channel + 1);
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}
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else if(channel < 6)
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{
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channel_name = "LED " + std::to_string(channel + 1);
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}
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else if(channel < 16)
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{
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channel_name = "ARGB " + std::to_string(channel - 5);
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}
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}
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else if(channel < 8)
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{
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channel_name = "Channel A" + std::to_string(channel + 1);
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}
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else if(channel < 16)
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{
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channel_name = "Channel B" + std::to_string(channel - 7);
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}
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else if(drgb_device_list[device_index]->channels == 30)
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{
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if(channel < 24)
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{
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channel_name = "Channel C" + std::to_string(channel - 15);
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}
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else if(channel < 30)
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{
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channel_name = "Channel D" + std::to_string(channel - 23);
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}
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}
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else if(channel < 22)
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{
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channel_name = "Channel C" + std::to_string(channel - 15);
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}
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else if(channel < 28)
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{
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channel_name = "Channel D" + std::to_string(channel - 21);
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}
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else if(channel < 36)
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{
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channel_name = "Channel E" + std::to_string(channel - 27);
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}
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return(channel_name);
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}
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void DRGBController::SetChannelLEDs(unsigned char /*channel*/, RGBColor* /*colors*/, unsigned int /*num_colors*/)
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{
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}
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void DRGBController::SendPacket(unsigned char* colors, unsigned int buf_packets , unsigned int LEDtotal)
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{
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unsigned char usb_buf[1025];
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unsigned int buf_idx = 0;
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memset(usb_buf, 0x00, sizeof(usb_buf));
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usb_buf[0x00] = 0x00;
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/*-----------------------------------------------------*\
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| Update last commit time |
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\*-----------------------------------------------------*/
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last_commit_time = std::chrono::steady_clock::now();
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unsigned int HigCount = LEDtotal / 256 >= 1 ? 1 : 0;
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unsigned int LowCount = LEDtotal >= DRGB_V4_ONE_PACKAGE_SIZE ? 60 : (LEDtotal % 256) ;
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LEDtotal = LEDtotal <= DRGB_V4_ONE_PACKAGE_SIZE ? 0 : (LEDtotal-DRGB_V4_ONE_PACKAGE_SIZE);
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for(unsigned int i = 0; i < buf_packets; i++)
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{
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usb_buf[1] = i + 100 ;
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usb_buf[2] = buf_packets + 99 ;
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usb_buf[3] = HigCount;
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usb_buf[4] = LowCount;
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buf_idx = i*1020;
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memcpy(usb_buf + 5, colors + buf_idx, 1020);
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hid_write(dev, usb_buf, 1025);
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if(LEDtotal)
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{
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HigCount = LEDtotal / 256 >= 1 ? 1 : 0;
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LowCount = LEDtotal >= DRGB_V4_PACKAGE_SIZE ? 84 : (LEDtotal % 256) ;
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LEDtotal = LEDtotal <= DRGB_V4_PACKAGE_SIZE ? 0 : (LEDtotal-DRGB_V4_PACKAGE_SIZE);
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}
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}
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}
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void DRGBController::SendPacketFS(unsigned char* colors, unsigned int buf_packets , unsigned int Array)
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{
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unsigned char usb_buf[65] = {0};
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unsigned int current_index = 0;
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/*-----------------------------------------------------*\
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| Update last commit time |
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\*-----------------------------------------------------*/
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last_commit_time = std::chrono::steady_clock::now();
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if(Array == 0x64 || Array == 0x47)
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{
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const unsigned int offset = (Array == 0x64) ? 100 : 92;
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for(unsigned int i = 0; i < buf_packets; i++)
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{
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const bool is_last_packet = (i == buf_packets - 1);
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usb_buf[1] = is_last_packet ? (Array + offset + i) : (Array + i);
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current_index = i * 63;
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memcpy(usb_buf + 2, colors + current_index, 63);
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hid_write(dev, usb_buf, 65);
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}
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}
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else
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{
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memcpy(usb_buf + 1, colors, 64);
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hid_write(dev, usb_buf, 65);
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}
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}
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void DRGBController::KeepaliveThread()
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{
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unsigned char sleep_buf[65];
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sleep_buf[0] = 0x65;
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while(keepalive_thread_run.load())
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{
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if((std::chrono::steady_clock::now() - last_commit_time) > std::chrono::milliseconds(500))
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{
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SendPacketFS(sleep_buf, 1, 0);
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}
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std::this_thread::sleep_for(300ms);
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}
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}
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