Files
OpenRGB/Controllers/MSIMysticLightController/RGBController_MSIMysticLight64.cpp
2022-11-11 17:25:15 +00:00

151 lines
4.6 KiB
C++

#include "RGBController_MSIMysticLight64.h"
/**------------------------------------------------------------------*\
@name MSI GL66 Mystic Light Keyboard (64 Byte)
@category Keyboard
@type USB
@save :robot:
@effects :white_check_mark:
@detectors DetectMSIMysticLight64Controllers
@comment
\*-------------------------------------------------------------------*/
RGBController_MSIMysticLight64::RGBController_MSIMysticLight64
(
MSIMysticLight64Controller *controller_ptr
)
{
controller = controller_ptr;
name = controller->GetDeviceName();
vendor = "MSI";
type = DEVICE_TYPE_KEYBOARD;
description = "MSI Mystic Light Device (64-byte)";
version = controller->GetFWVersion();
location = controller->GetDeviceLocation();
serial = controller->GetSerial();
SetupZones();
}
RGBController_MSIMysticLight64::~RGBController_MSIMysticLight64()
{
delete controller;
}
void RGBController_MSIMysticLight64::ResizeZone
(
int /*zone*/,
int /*new_size*/
)
{
}
void RGBController_MSIMysticLight64::SetupZones()
{
zone msi_zone;
msi_zone.name = "MSI Zone";
msi_zone.type = ZONE_TYPE_SINGLE;
msi_zone.leds_min = 1;
msi_zone.leds_max = 1;
msi_zone.leds_count = 1;
msi_zone.matrix_map = NULL;
zones.push_back(msi_zone);
led msi_led;
msi_led.name = "MSI LED";
leds.push_back(msi_led);
SetupModes();
SetupColors();
}
void RGBController_MSIMysticLight64::DeviceUpdateMode()
{
DeviceUpdateLEDs();
}
void RGBController_MSIMysticLight64::DeviceUpdateLEDs()
{
mode &Mode = modes[active_mode];
MSI_64_MODE msi_mode = (MSI_64_MODE)Mode.value;
MSI_SPEED speed = (MSI_SPEED)Mode.speed;
MSI_BRIGHTNESS brightness = (MSI_BRIGHTNESS)(Mode.brightness);
Color led_colors[MSI_64_MAX_COLORS] = {};
unsigned int num_colors = 0;
if(Mode.flags & MODE_FLAG_HAS_MODE_SPECIFIC_COLOR)
{
num_colors = Mode.colors.size();
for(unsigned int i = 0; i < num_colors; i++)
{
led_colors[i].R = RGBGetRValue(Mode.colors[i]);
led_colors[i].G = RGBGetGValue(Mode.colors[i]);
led_colors[i].B = RGBGetBValue(Mode.colors[i]);
}
}
controller->SetMode(msi_mode, speed, brightness, num_colors, led_colors);
}
void RGBController_MSIMysticLight64::UpdateZoneLEDs(int /*zone*/)
{
DeviceUpdateLEDs();
}
void RGBController_MSIMysticLight64::UpdateSingleLED(int /*led*/)
{
DeviceUpdateLEDs();
}
void RGBController_MSIMysticLight64::SetupModes()
{
unsigned int TRANSITION=MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR;
SetupMode("Off", MSI_64_MODE::MSI_64_OFF, 0);
SetupMode("Static", MSI_64_MODE::MSI_64_STEADY, MODE_FLAG_HAS_BRIGHTNESS | MODE_FLAG_HAS_MODE_SPECIFIC_COLOR);
SetupMode("Breathing", MSI_64_MODE::MSI_64_BREATHING, TRANSITION);
SetupMode("Flashing", MSI_64_MODE::MSI_64_PULSE, TRANSITION);
SetupMode("Double Flashing", MSI_64_MODE::MSI_64_DOUBLE_PULSE, TRANSITION);
SetupMode("Spectrum Cycle", MSI_64_MODE::MSI_64_CYCLE, TRANSITION);
SetupMode("Smooth Spectrum Cycle", MSI_64_MODE::MSI_64_SMOOTH_CYCLE, TRANSITION);
}
void RGBController_MSIMysticLight64::SetupMode
(
const char *name,
MSI_64_MODE mod,
unsigned int flags
)
{
mode Mode;
Mode.name = name;
Mode.value = mod;
Mode.flags = flags;
if(flags & MODE_FLAG_HAS_BRIGHTNESS)
{
Mode.brightness_min = MSI_BRIGHTNESS_LEVEL_10;
Mode.brightness_max = MSI_BRIGHTNESS_LEVEL_100;
Mode.brightness = MSI_BRIGHTNESS_LEVEL_100;
}
if(flags & MODE_FLAG_HAS_SPEED)
{
Mode.speed_min = MSI_SPEED_LOW;
Mode.speed_max = MSI_SPEED_HIGH;
Mode.speed = MSI_SPEED_LOW;
}
if(flags & MODE_FLAG_HAS_MODE_SPECIFIC_COLOR)
{
Mode.color_mode= MODE_COLORS_MODE_SPECIFIC;
Mode.colors_min = 1;
Mode.colors_max = 1;
if (flags & MODE_FLAG_HAS_SPEED)
{
Mode.colors_max = MSI_64_MAX_COLORS;
}
/*-------------------------------------------------*\
| Set up colors for rainbow cycle |
\*-------------------------------------------------*/
Mode.colors.push_back(0x000000FF);
Mode.colors.push_back(0x000050FF);
Mode.colors.push_back(0x0000FFFF);
Mode.colors.push_back(0x0000FF00);
Mode.colors.push_back(0x00FF0000);
Mode.colors.push_back(0x00FF0096);
Mode.colors.push_back(0x00FF00FF);
}
modes.push_back(Mode);
}