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https://github.com/CalcProgrammer1/OpenRGB.git
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177 lines
4.9 KiB
C++
177 lines
4.9 KiB
C++
/*-------------------------------------------------------------------*\
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| CMR6000Controller.cpp |
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| Driver for Coolermaster based AMD Radeon GPU (6000 series) |
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| Eric S (edbgon) 2nd Feb 2021 |
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\*-------------------------------------------------------------------*/
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#include "CMR6000Controller.h"
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#include <cstring>
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CMR6000Controller::CMR6000Controller(hid_device* dev_handle, char *_path)
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{
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dev = dev_handle;
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location = _path;
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const int szTemp = 256;
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wchar_t tmpName[szTemp];
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hid_get_manufacturer_string(dev, tmpName, szTemp);
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std::wstring wName = std::wstring(tmpName);
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device_name = std::string(wName.begin(), wName.end());
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hid_get_product_string(dev, tmpName, szTemp);
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wName = std::wstring(tmpName);
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device_name.append(" ").append(std::string(wName.begin(), wName.end()));
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hid_get_serial_number_string(dev, tmpName, szTemp);
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wName = std::wstring(tmpName);
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serial = std::string(wName.begin(), wName.end());
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}
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CMR6000Controller::~CMR6000Controller()
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{
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if(dev)
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{
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hid_close(dev);
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}
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}
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std::string CMR6000Controller::GetDeviceName()
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{
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return device_name;
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}
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std::string CMR6000Controller::GetSerial()
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{
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return serial;
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}
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std::string CMR6000Controller::GetLocation()
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{
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return("HID: " + location);
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}
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unsigned char CMR6000Controller::GetMode()
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{
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return current_mode;
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}
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unsigned char CMR6000Controller::GetLedRed()
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{
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return current_red;
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}
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unsigned char CMR6000Controller::GetLedGreen()
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{
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return current_green;
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}
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unsigned char CMR6000Controller::GetLedBlue()
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{
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return current_blue;
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}
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unsigned char CMR6000Controller::GetLedSpeed()
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{
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return current_speed;
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}
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unsigned char CMR6000Controller::GetBrightness()
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{
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return current_brightness;
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}
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bool CMR6000Controller::GetRandomColours()
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{
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return current_random;
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}
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void CMR6000Controller::SetMode(unsigned char mode, unsigned char speed, unsigned char red, unsigned char green, unsigned char blue, unsigned char random, unsigned char brightness)
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{
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current_mode = mode;
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current_speed = speed;
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current_red = red;
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current_green = green;
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current_blue = blue;
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current_random = random;
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current_brightness = brightness;
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SendUpdate();
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}
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void CMR6000Controller::SendUpdate()
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{
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if(current_mode == CM_MR6000_MODE_OFF)
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{
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unsigned char buffer[CM_6K_PACKET_SIZE] = { 0x00, 0x41, 0x43 };
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int buffer_size = (sizeof(buffer) / sizeof(buffer[0]));
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hid_write(dev, buffer, buffer_size);
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}
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else
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{
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SendEnableCommand();
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unsigned char buffer[CM_6K_PACKET_SIZE] = { 0x00 };
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int buffer_size = (sizeof(buffer) / sizeof(buffer[0]));
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memset(buffer, 0xFF, buffer_size);
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buffer[0x00] = 0x00;
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buffer[0x01] = 0x51;
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buffer[0x02] = 0x2C;
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buffer[0x03] = 0x01;
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buffer[0x04] = 0x00;
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buffer[0x05] = current_mode;
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buffer[0x06] = (current_mode == CM_MR6000_MODE_DIRECT) ? 0xFF: current_speed;
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buffer[0x07] = (current_mode == CM_MR6000_MODE_BREATHE)? current_random : 0x00; //random (A0)
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buffer[0x08] = (current_mode == CM_MR6000_MODE_BREATHE)? 0x03 : 0xFF;
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//buffer[0x09] = 0xFF;
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buffer[0x0A] = current_brightness;
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buffer[0x0B] = (current_mode == CM_MR6000_MODE_COLOR_CYCLE) ? 0xFF : current_red;
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buffer[0x0C] = (current_mode == CM_MR6000_MODE_COLOR_CYCLE) ? 0xFF : current_green;
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buffer[0x0D] = (current_mode == CM_MR6000_MODE_COLOR_CYCLE) ? 0xFF : current_blue;
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buffer[0x0E] = 0x00;
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buffer[0x0F] = 0x00;
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buffer[0x10] = 0x00;
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hid_write(dev, buffer, buffer_size);
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SendColourConfig();
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SendApplyCommand();
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}
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}
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void CMR6000Controller::SendEnableCommand()
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{
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unsigned char buffer[CM_6K_PACKET_SIZE] = { 0x00, 0x41, 0x80 };
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int buffer_size = (sizeof(buffer) / sizeof(buffer[0]));
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hid_write(dev, buffer, buffer_size);
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hid_read_timeout(dev, buffer, buffer_size, CM_6K_INTERRUPT_TIMEOUT);
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}
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void CMR6000Controller::SendApplyCommand()
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{
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unsigned char buffer[CM_6K_PACKET_SIZE] = { 0x00, 0x51, 0x28, 0x00, 0x00, 0xE0 };
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int buffer_size = (sizeof(buffer) / sizeof(buffer[0]));
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hid_write(dev, buffer, buffer_size);
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hid_read_timeout(dev, buffer, buffer_size, CM_6K_INTERRUPT_TIMEOUT);
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}
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void CMR6000Controller::SendColourConfig()
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{
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unsigned char buffer[CM_6K_PACKET_SIZE] = { 0x00, 0x51, 0xA0, 0x01, 0x00, 0x00, 0x03, 0x00, 0x00, 0x05, 0x06 };
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int buffer_size = (sizeof(buffer) / sizeof(buffer[0]));
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for(int i = 0x0B; i < 0x1A; i++)
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{
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buffer[i] = current_mode;
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}
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hid_write(dev, buffer, buffer_size);
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hid_read_timeout(dev, buffer, buffer_size, CM_6K_INTERRUPT_TIMEOUT);
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}
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