Publish LumaOps source

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LumaOps release export
2026-09-03 01:18:36 +02:00
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/*---------------------------------------------------------*\
| ASRockPolychromeV1SMBusController.cpp |
| |
| Driver for SMBus ASRock Polychrome V1 motherboards |
| |
| Adam Honse (CalcProgrammer1) 14 Dec 2019 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include <cstring>
#include "ASRockPolychromeV1SMBusController.h"
#include "dmiinfo.h"
#include "LogManager.h"
#define ASROCK_ZONE_LED_COUNT_MESSAGE_EN "[%s] Zone %i LED count: %02d"
using namespace std::chrono_literals;
ASRockPolychromeV1SMBusController::ASRockPolychromeV1SMBusController(i2c_smbus_interface* bus, polychrome_dev_id dev)
{
this->bus = bus;
this->dev = dev;
DMIInfo dmi;
device_name = "ASRock " + dmi.getMainboard();
ReadLEDConfiguration();
}
ASRockPolychromeV1SMBusController::~ASRockPolychromeV1SMBusController()
{
}
std::string ASRockPolychromeV1SMBusController::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("I2C: " + return_string);
}
std::string ASRockPolychromeV1SMBusController::GetDeviceName()
{
return(device_name);
}
std::string ASRockPolychromeV1SMBusController::GetFirmwareVersion()
{
uint8_t major_version = fw_version >> 8;
uint8_t minor_version = fw_version & 0xFF;
return(std::to_string(major_version) + "." + std::to_string(minor_version));
}
void ASRockPolychromeV1SMBusController::ReadLEDConfiguration()
{
/*---------------------------------------------------------------------------------*\
| The LED configuration register holds 6 bytes, so the first read should return 6 |
| If not, set all zone sizes to zero |
\*---------------------------------------------------------------------------------*/
LOG_DEBUG("[%s] Reading Zone sizes from controller", device_name.c_str());
uint8_t asrock_zone_count[I2C_SMBUS_BLOCK_MAX] = { 0x0, 0x0, 0x0, 0x0, 0x0, 0x0 };
if (bus->i2c_smbus_read_block_data(dev, POLYCHROME_V1_REG_ZONE_SIZE, asrock_zone_count) == 0x06)
{
zone_led_count[POLYCHROME_V1_ZONE_1] = asrock_zone_count[0];
zone_led_count[POLYCHROME_V1_ZONE_2] = asrock_zone_count[1];
zone_led_count[POLYCHROME_V1_ZONE_3] = asrock_zone_count[2];
zone_led_count[POLYCHROME_V1_ZONE_4] = asrock_zone_count[3];
zone_led_count[POLYCHROME_V1_ZONE_5] = asrock_zone_count[4];
zone_led_count[POLYCHROME_V1_ZONE_ADDRESSABLE] = asrock_zone_count[5];
LOG_DEBUG(ASROCK_ZONE_LED_COUNT_MESSAGE_EN, device_name.c_str(), POLYCHROME_V1_ZONE_1, zone_led_count[POLYCHROME_V1_ZONE_1]);
LOG_DEBUG(ASROCK_ZONE_LED_COUNT_MESSAGE_EN, device_name.c_str(), POLYCHROME_V1_ZONE_2, zone_led_count[POLYCHROME_V1_ZONE_2]);
LOG_DEBUG(ASROCK_ZONE_LED_COUNT_MESSAGE_EN, device_name.c_str(), POLYCHROME_V1_ZONE_3, zone_led_count[POLYCHROME_V1_ZONE_3]);
LOG_DEBUG(ASROCK_ZONE_LED_COUNT_MESSAGE_EN, device_name.c_str(), POLYCHROME_V1_ZONE_4, zone_led_count[POLYCHROME_V1_ZONE_4]);
LOG_DEBUG(ASROCK_ZONE_LED_COUNT_MESSAGE_EN, device_name.c_str(), POLYCHROME_V1_ZONE_5, zone_led_count[POLYCHROME_V1_ZONE_5]);
LOG_DEBUG("[%s] Addressable Zone LED count: %02d", device_name.c_str(), zone_led_count[POLYCHROME_V1_ZONE_ADDRESSABLE]);
}
else
{
LOG_WARNING("[%s] LED config read failed", device_name.c_str());
memset(zone_led_count, 0, sizeof(zone_led_count));
}
}
uint8_t ASRockPolychromeV1SMBusController::GetARGBColorOrder()
{
uint8_t temp[1] = { 0x00 };
LOG_TRACE("[%s] Reading ARGB color order config from the controller", device_name.c_str());
//Read the data
if(bus->i2c_smbus_read_block_data(dev, POLYCHROME_V1_REG_ARGB_GRB, temp) == 0x01)
{
if(temp[0] == 1)
{
LOG_DEBUG("[%s] Color order is GRB for the ARGB header", device_name.c_str());
}
else
{
LOG_DEBUG("[%s] Color order is RGB for the ARGB header", device_name.c_str());
}
return temp[0];
}
else
{
return 0;
}
}
RGBColor ASRockPolychromeV1SMBusController::GetZoneColor(uint8_t zone)
{
LOG_TRACE("[%s] Reading color from zone %02d", device_name.c_str(), zone);
return zone_config[zone].color;
}
uint8_t ASRockPolychromeV1SMBusController::GetZoneMode(uint8_t zone)
{
LOG_TRACE("[%s] Retreving mode %02X from zone_modes for zone %02d", device_name.c_str(), zone_config[zone].mode, zone);
return(zone_config[zone].mode);
}
void ASRockPolychromeV1SMBusController::LoadZoneConfig()
{
uint8_t zone[1] = { 0x00 };
uint8_t mode[1] = { 0xFF };
uint8_t color_speed_pkt[4] = { 0, 0, 0, 0 };
LOG_TRACE("[%s] Reading modes from all zones", device_name.c_str());
//Polychrome v1 supports per zone modes so we need to set the zone before we can read the mode.
//Write the zone index.
for(uint8_t zone_idx = 0 ; zone_idx < POLYCHROME_V1_ZONE_COUNT; zone_idx ++)
{
if(zone_led_count[zone_idx] > 0)
{
zone[0] = zone_idx;
bus->i2c_smbus_write_block_data(dev, POLYCHROME_V1_REG_ZONE_SELECT, 1, zone);
//Read the data back.
if(bus->i2c_smbus_read_block_data(dev, POLYCHROME_V1_REG_ZONE_SELECT, zone) == 0x01)
{
//Validate that we changed correctly.
if(zone[0] == zone_idx)
{
//Read the mode for the zone.
if(bus->i2c_smbus_read_block_data(dev, POLYCHROME_V1_REG_MODE, mode) == 0x01)
{
LOG_DEBUG("[%s] Mode 0x%02x for zone %02d", device_name.c_str(), mode[0], zone_idx);
zone_config[zone_idx].mode = mode[0];
bus->i2c_smbus_read_block_data(dev, zone_config[zone_idx].mode, color_speed_pkt);
zone_config[zone_idx].color = color_speed_pkt[0] << 16 | color_speed_pkt[1] << 8 | color_speed_pkt[2];
zone_config[zone_idx].speed = color_speed_pkt [3];
LOG_TRACE("[%s] Mode config: %06X, %02X", device_name.c_str(), zone_config[zone_idx].color, zone_config[zone_idx].speed );
}
}
else
{
LOG_WARNING("[%s] Zone mode register failed to change!", device_name.c_str() );
}
}
}
else
{
zone_config[zone_idx].mode = 0;
zone_config[zone_idx].color = 0;
zone_config[zone_idx].speed = 0;
}
}
}
void ASRockPolychromeV1SMBusController::SetARGBColorOrder(bool value)
{
uint8_t temp[1] = { 0x00 };
LOG_TRACE("[%s] Setting ARGB color order config to the controller", device_name.c_str());
temp[0] = (value) ? 0x01 : 0x00;
bus->i2c_smbus_write_block_data(dev, POLYCHROME_V1_REG_ARGB_GRB, 1, temp);
GetARGBColorOrder();
}
bool ASRockPolychromeV1SMBusController::SetARGBSize(uint8_t new_size)
{
LOG_DEBUG("[%s] Setting ARGB header to %02d.", device_name.c_str(), new_size);
uint8_t asrock_zone_count[6] = { 0x0 };
uint8_t new_asrock_zone_count[6] = { 0x0 };
//memcpy(new_asrock_zone_count, zone_led_count, sizeof(new_asrock_zone_count - 1));
new_asrock_zone_count[POLYCHROME_V1_ZONE_1] = zone_led_count[POLYCHROME_V1_ZONE_1];
new_asrock_zone_count[POLYCHROME_V1_ZONE_2] = zone_led_count[POLYCHROME_V1_ZONE_2];
new_asrock_zone_count[POLYCHROME_V1_ZONE_3] = zone_led_count[POLYCHROME_V1_ZONE_3];
new_asrock_zone_count[POLYCHROME_V1_ZONE_4] = zone_led_count[POLYCHROME_V1_ZONE_4];
new_asrock_zone_count[POLYCHROME_V1_ZONE_5] = zone_led_count[POLYCHROME_V1_ZONE_5];
new_asrock_zone_count[POLYCHROME_V1_ZONE_ADDRESSABLE] = new_size;
//Write the new config to the register
bus->i2c_smbus_write_block_data(dev, POLYCHROME_V1_REG_ZONE_SIZE, 6, new_asrock_zone_count);
//Validate the write
if (bus->i2c_smbus_read_block_data(dev, POLYCHROME_V1_REG_ZONE_SIZE, asrock_zone_count) == 0x06)
{
for (uint8_t i = 0; i < 6; i++)
{
if (new_asrock_zone_count[i] != asrock_zone_count[i])
{
LOG_WARNING("[%s] Failed to validate zone %02d size!", device_name.c_str(), i);
return false;
}
}
LOG_DEBUG("[%s] Zone configuration validation completed.", device_name.c_str());
return true;
}
return false;
}
void ASRockPolychromeV1SMBusController::SetColorsAndSpeed(uint8_t zone, uint8_t red, uint8_t green, uint8_t blue)
{
LOG_TRACE("[%s] Updating color and speed for zone %02d: 0x%06X", device_name.c_str(), zone, (red << 16 | green << 8 | blue));
uint8_t color_speed_pkt[4] = { red, green, blue, zone_config[zone].speed };
uint8_t select_zone_pkt[1] = { zone };
/*-----------------------------------------------------*\
| Select Zone |
\*-----------------------------------------------------*/
if(zone_config[zone].mode != POLYCHROME_V1_MODE_OFF)
{
bus->i2c_smbus_write_block_data(dev, POLYCHROME_V1_REG_ZONE_SELECT, 1, select_zone_pkt);
std::this_thread::sleep_for(1ms);
}
switch(zone_config[zone].mode)
{
/*-----------------------------------------------------*\
| These modes take 4 bytes in R/G/B/S order |
\*-----------------------------------------------------*/
case POLYCHROME_V1_MODE_BREATHING:
case POLYCHROME_V1_MODE_STROBE:
case POLYCHROME_V1_MODE_SPECTRUM_CYCLE:
case POLYCHROME_V1_MODE_SPRING:
case POLYCHROME_V1_MODE_METEOR:
case POLYCHROME_V1_MODE_STACK:
case POLYCHROME_V1_MODE_CRAM:
case POLYCHROME_V1_MODE_SCAN:
case POLYCHROME_V1_MODE_NEON:
case POLYCHROME_V1_MODE_WATER:
bus->i2c_smbus_write_block_data(dev, zone_config[zone].mode, 4, color_speed_pkt);
break;
/*-----------------------------------------------------*\
| These modes take 3 bytes in R/G/B order |
\*-----------------------------------------------------*/
default:
case POLYCHROME_V1_MODE_STATIC:
case POLYCHROME_V1_MODE_MUSIC:
bus->i2c_smbus_write_block_data(dev, zone_config[zone].mode, 3, color_speed_pkt);
break;
/*-----------------------------------------------------*\
| These modes take 1 byte - speed |
\*-----------------------------------------------------*/
case POLYCHROME_V1_MODE_RANDOM:
case POLYCHROME_V1_MODE_WAVE:
case POLYCHROME_V1_MODE_RAINBOW:
bus->i2c_smbus_write_block_data(dev, zone_config[zone].mode, 1, &zone_config[zone].speed);
break;
/*-----------------------------------------------------*\
| These modes take no bytes |
\*-----------------------------------------------------*/
case POLYCHROME_V1_MODE_OFF:
break;
}
std::this_thread::sleep_for(1ms);
}
void ASRockPolychromeV1SMBusController::SetMode(uint8_t zone, uint8_t mode, uint8_t speed)
{
LOG_TRACE("[%s] Updating mode for zone %02d, Mode 0x%02X, Speed 0x%02X", device_name.c_str(), zone, mode, speed);
uint8_t led_count_pkt[1] = { 0x00 };
zone_config[zone].mode = mode;
zone_config[zone].speed = speed;
/*-----------------------------------------------------*\
| Make sure set all register is set to 0 |
\*-----------------------------------------------------*/
bus->i2c_smbus_write_block_data(dev, POLYCHROME_V1_REG_SET_ALL, 1, led_count_pkt);
std::this_thread::sleep_for(1ms);
/*-----------------------------------------------------*\
| Set the zone we are working on |
\*-----------------------------------------------------*/
bus->i2c_smbus_write_block_data(dev, POLYCHROME_V1_REG_ZONE_SELECT, 1, &zone);
std::this_thread::sleep_for(1ms);
/*-----------------------------------------------------*\
| Write the mode |
\*-----------------------------------------------------*/
bus->i2c_smbus_write_block_data(dev, POLYCHROME_V1_REG_MODE, 1, &zone_config[zone].mode);
std::this_thread::sleep_for(1ms);
}
@@ -0,0 +1,160 @@
/*---------------------------------------------------------*\
| ASRockPolychromeV1SMBusController.h |
| |
| Driver for SMBus ASRock Polychrome V1 motherboards |
| |
| Adam Honse (CalcProgrammer1) 13 Dec 2019 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#pragma once
#include <string>
#include "i2c_smbus.h"
#include "RGBController.h"
typedef uint8_t polychrome_dev_id;
#define ASROCK_V1_CONTROLLER_NAME "ASRock Polychrome v1 SMBus Controller"
enum
{
/*------------------------------------------------------------------------------------------*\
| ASRock Polychrome v1 Registers |
\*------------------------------------------------------------------------------------------*/
POLYCHROME_V1_REG_FIRMWARE_VER = 0x00, /* Firmware version Major.Minor */
POLYCHROME_V1_REG_MODE = 0x30, /* Mode selection register */
POLYCHROME_V1_REG_ZONE_SELECT = 0x31, /* Zone selection register */
POLYCHROME_V1_REG_SET_ALL = 0x32, /* Set All register 0x1 = set all */
POLYCHROME_V1_REG_ZONE_SIZE = 0x33, /* Zone size configuration register */
POLYCHROME_V1_REG_ARGB_GRB = 0x35, /* ARGB bitstream reversing register */
};
enum
{
POLYCHROME_V1_ZONE_1 = 0x00, /* RGB LED 1 Header */
POLYCHROME_V1_ZONE_2 = 0x01, /* RGB LED 2 Header */
POLYCHROME_V1_ZONE_3 = 0x02, /* PCH Zone */
POLYCHROME_V1_ZONE_4 = 0x03, /* IO Cover Zone */
POLYCHROME_V1_ZONE_5 = 0x04, /* Audio Zone LEDs */
POLYCHROME_V1_ZONE_ADDRESSABLE = 0x05, /* Addressable LED header */
POLYCHROME_V1_ZONE_COUNT = 0x06, /* Total number of zones */
POLYCHROME_V1_ZONE_ADDRESSABLE_MAX = 0x64, /* Maximum number of ARGB LEDs */
};
/*----------------------------------------------------------------------------------------------*\
| Definitions for Polychrome V1 |
\*----------------------------------------------------------------------------------------------*/
#define POLYCHROME_V1_NUM_MODES 16 /* Number of Polychrome V1 modes */
enum
{
POLYCHROME_V1_MODE_OFF = 0x10, /* OFF mode */
POLYCHROME_V1_MODE_STATIC = 0x11, /* Static color mode */
POLYCHROME_V1_MODE_BREATHING = 0x12, /* Breathing effect mode */
POLYCHROME_V1_MODE_STROBE = 0x13, /* Strobe effect mode */
POLYCHROME_V1_MODE_SPECTRUM_CYCLE = 0x14, /* Spectrum Cycle effect mode */
POLYCHROME_V1_MODE_RANDOM = 0x15, /* Random effect mode */
POLYCHROME_V1_MODE_MUSIC = 0x17, /* Music effect mode */
POLYCHROME_V1_MODE_WAVE = 0x18, /* Wave effect mode */
/*------------------------------------------------------------------------------------------*\
| Modes only available on ARGB headers |
\*------------------------------------------------------------------------------------------*/
POLYCHROME_V1_MODE_SPRING = 0x19, /* Spring effect mode */
POLYCHROME_V1_MODE_METEOR = 0x1A, /* Meteor effect mode */
POLYCHROME_V1_MODE_STACK = 0x1B, /* Stack effect mode */
POLYCHROME_V1_MODE_CRAM = 0x1C, /* Cram effect mode */
POLYCHROME_V1_MODE_SCAN = 0x1D, /* Scan effect mode */
POLYCHROME_V1_MODE_NEON = 0x1E, /* Neon effect mode */
POLYCHROME_V1_MODE_WATER = 0x1F, /* Water effect mode */
POLYCHROME_V1_MODE_RAINBOW = 0x20, /* Rainbow chase effect mode */
};
enum
{
/*------------------------------------------------------------------------------------------*\
| POLYCHROME_V1_MODE_BREATHING |
\*------------------------------------------------------------------------------------------*/
POLYCHROME_V1_SPEED_MIN_BREATHING = 0x0A, /* Slowest speed */
POLYCHROME_V1_SPEED_DEFAULT_BREATHING = 0x02, /* Default speed */
POLYCHROME_V1_SPEED_MAX_BREATHING = 0x02, /* Fastest speed */
/*------------------------------------------------------------------------------------------*\
| POLYCHROME_V1_MODE_STROBE |
\*------------------------------------------------------------------------------------------*/
POLYCHROME_V1_SPEED_MIN_STROBE = 0xA0, /* Slowest speed */
POLYCHROME_V1_SPEED_DEFAULT_STROBE = 0x14, /* Default speed */
POLYCHROME_V1_SPEED_MAX_STROBE = 0x05, /* Fastest speed */
/*------------------------------------------------------------------------------------------*\
| POLYCHROME_V1_MODE_SPECTRUM_CYCLE |
\*------------------------------------------------------------------------------------------*/
POLYCHROME_V1_SPEED_MIN_CYCLE = 0xA0, /* Slowest speed */
POLYCHROME_V1_SPEED_DEFAULT_CYCLE = 0x14, /* Default speed */
POLYCHROME_V1_SPEED_MAX_CYCLE = 0x0A, /* Fastest speed */
/*------------------------------------------------------------------------------------------*\
| POLYCHROME_V1_MODE_RANDOM |
\*------------------------------------------------------------------------------------------*/
POLYCHROME_V1_SPEED_MIN_RANDOM = 0xA0, /* Slowest speed */
POLYCHROME_V1_SPEED_DEFAULT_RANDOM = 0x28, /* Default speed */
POLYCHROME_V1_SPEED_MAX_RANDOM = 0x05, /* Fastest speed */
/*------------------------------------------------------------------------------------------*\
| POLYCHROME_V1_MODE_WAVE |
\*------------------------------------------------------------------------------------------*/
POLYCHROME_V1_SPEED_MIN_WAVE = 0x06, /* Slowest speed */
POLYCHROME_V1_SPEED_DEFAULT_WAVE = 0x02, /* Default speed */
POLYCHROME_V1_SPEED_MAX_WAVE = 0x01, /* Fastest speed */
POLYCHROME_V1_SPEED_DEFAULT_SPRING = 0x04, /* Default speed */
POLYCHROME_V1_SPEED_DEFAULT_METEOR = 0x0A, /* Default speed */
POLYCHROME_V1_SPEED_DEFAULT_STACK = 0x04, /* Default speed */
POLYCHROME_V1_SPEED_DEFAULT_CRAM = 0x04, /* Default speed */
POLYCHROME_V1_SPEED_DEFAULT_SCAN = 0x0A, /* Default speed */
POLYCHROME_V1_SPEED_DEFAULT_NEON = 0x20, /* Default speed */
POLYCHROME_V1_SPEED_DEFAULT_WATER = 0x0A, /* Default speed */
/*------------------------------------------------------------------------------------------*\
| POLYCHROME_V1_MODE_RAINBOW |
\*------------------------------------------------------------------------------------------*/
POLYCHROME_V1_SPEED_MIN_RAINBOW = 0x12, /* Slowest speed */
POLYCHROME_V1_SPEED_DEFAULT_RAINBOW = 0x0A, /* Default speed */
POLYCHROME_V1_SPEED_MAX_RAINBOW = 0x01, /* Fastest speed */
POLYCHROME_V1_SPEED_MIN_ARGB = 0x20, /* Slowest speed */
POLYCHROME_V1_SPEED_MAX_ARGB = 0x02, /* Fastest speed */
};
struct zone_cfg
{
uint8_t mode;
uint8_t speed;
RGBColor color;
};
class ASRockPolychromeV1SMBusController
{
public:
ASRockPolychromeV1SMBusController(i2c_smbus_interface* bus, polychrome_dev_id dev);
~ASRockPolychromeV1SMBusController();
std::string GetDeviceLocation();
std::string GetDeviceName();
std::string GetFirmwareVersion();
uint8_t GetARGBColorOrder();
RGBColor GetZoneColor(uint8_t zone);
uint8_t GetZoneMode(uint8_t zone);
void LoadZoneConfig();
void SetARGBColorOrder(bool value);
bool SetARGBSize(uint8_t led_count);
void SetColorsAndSpeed(uint8_t led, uint8_t red, uint8_t green, uint8_t blue);
void SetMode(uint8_t zone, uint8_t mode, uint8_t speed);
uint8_t zone_led_count[6];
zone_cfg zone_config[6];
uint16_t fw_version;
private:
std::string device_name;
i2c_smbus_interface* bus;
polychrome_dev_id dev;
void ReadLEDConfiguration();
};
@@ -0,0 +1,349 @@
/*---------------------------------------------------------*\
| RGBController_ASRockPolychromeV1SMBus.cpp |
| |
| RGBController for SMBus ASRock Polychrome V1 |
| motherboards |
| |
| Adam Honse (CalcProgrammer1) 15 Dec 2019 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#include "LogManager.h"
#include "RGBController_ASRockPolychromeV1SMBus.h"
static const char* polychrome_v1_zone_names[] =
{
"RGB LED 1 Header",
"RGB LED 2 Header",
"PCH",
"IO Cover",
"Audio",
"Addressable Header"
};
/**------------------------------------------------------------------*\
@name ASRock Polychrome v1 SMBus
@category Motherboard
@type SMBus
@save :robot:
@direct :x:
@effects :white_check_mark:
@detectors DetectASRockSMBusControllers
@comment ASRock Polychrome v1 controllers will save with each update.
Per ARGB LED support is not possible with these devices.
ARGB size and color order is set using the `ARGB Header Config mode`
`Right` = GRB mode that is needed for WS2812B ARGB devices and `Left` = RGB used for WS2811 strips
The modes speed slider will set the size of the header
Spectrum Cycles uses the RGB values to set the individual color brightness.
\*-------------------------------------------------------------------*/
RGBController_ASRockPolychromeV1SMBus::RGBController_ASRockPolychromeV1SMBus(ASRockPolychromeV1SMBusController* controller_ptr)
{
controller = controller_ptr;
name = controller->GetDeviceName();
vendor = "ASRock";
version = controller->GetFirmwareVersion();
type = DEVICE_TYPE_MOTHERBOARD;
description = "ASRock Polychrome v1 Device";
location = controller->GetDeviceLocation();
mode Off;
Off.name = "Off";
Off.value = POLYCHROME_V1_MODE_OFF;
Off.flags = MODE_FLAG_AUTOMATIC_SAVE;
Off.color_mode = MODE_COLORS_NONE;
modes.push_back(Off);
mode Static;
Static.name = "Static";
Static.value = POLYCHROME_V1_MODE_STATIC;
Static.flags = MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Static.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Static);
mode Breathing;
Breathing.name = "Breathing";
Breathing.value = POLYCHROME_V1_MODE_BREATHING;
Breathing.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Breathing.speed_min = POLYCHROME_V1_SPEED_MIN_BREATHING;
Breathing.speed_max = POLYCHROME_V1_SPEED_MAX_BREATHING;
Breathing.speed = POLYCHROME_V1_SPEED_DEFAULT_BREATHING;
Breathing.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Breathing);
mode Strobe;
Strobe.name = "Strobe";
Strobe.value = POLYCHROME_V1_MODE_STROBE;
Strobe.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_HAS_PER_LED_COLOR | MODE_FLAG_AUTOMATIC_SAVE;
Strobe.speed_min = POLYCHROME_V1_SPEED_MIN_STROBE;
Strobe.speed_max = POLYCHROME_V1_SPEED_MAX_STROBE;
Strobe.speed = POLYCHROME_V1_SPEED_DEFAULT_STROBE;
Strobe.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Strobe);
mode SpectrumCycle;
SpectrumCycle.name = "Spectrum Cycle";
SpectrumCycle.value = POLYCHROME_V1_MODE_SPECTRUM_CYCLE;
SpectrumCycle.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
SpectrumCycle.speed_min = POLYCHROME_V1_SPEED_MIN_CYCLE;
SpectrumCycle.speed_max = POLYCHROME_V1_SPEED_MAX_CYCLE;
SpectrumCycle.speed = POLYCHROME_V1_SPEED_DEFAULT_CYCLE;
SpectrumCycle.color_mode = MODE_COLORS_PER_LED;
modes.push_back(SpectrumCycle);
mode Random;
Random.name = "Random";
Random.value = POLYCHROME_V1_MODE_RANDOM;
Random.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
Random.speed_min = POLYCHROME_V1_SPEED_MIN_RANDOM;
Random.speed_max = POLYCHROME_V1_SPEED_MAX_RANDOM;
Random.speed = POLYCHROME_V1_SPEED_DEFAULT_RANDOM;
Random.color_mode = MODE_COLORS_NONE;
modes.push_back(Random);
mode Music;
Music.name = "Music";
Music.value = POLYCHROME_V1_MODE_MUSIC;
Music.flags = MODE_FLAG_AUTOMATIC_SAVE;
Music.color_mode = MODE_COLORS_NONE;
modes.push_back(Music);
mode Wave;
Wave.name = "Wave";
Wave.value = POLYCHROME_V1_MODE_WAVE;
Wave.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
Wave.speed_min = POLYCHROME_V1_SPEED_MIN_WAVE;
Wave.speed_max = POLYCHROME_V1_SPEED_MAX_WAVE;
Wave.speed = POLYCHROME_V1_SPEED_DEFAULT_WAVE;
Wave.color_mode = MODE_COLORS_NONE;
modes.push_back(Wave);
/*---------------------------------------------------------------------*\
| Comment out until per zone modes are working. These are only for ARGB |
\*---------------------------------------------------------------------*/
mode Spring;
Spring.name = "Spring";
Spring.value = POLYCHROME_V1_MODE_SPRING;
Spring.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
Spring.speed_min = POLYCHROME_V1_SPEED_MIN_ARGB;
Spring.speed_max = POLYCHROME_V1_SPEED_MAX_ARGB;
Spring.speed = POLYCHROME_V1_SPEED_DEFAULT_SPRING;
Spring.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Spring);
mode Stack;
Stack.name = "Stack";
Stack.value = POLYCHROME_V1_MODE_STACK;
Stack.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
Stack.speed_min = POLYCHROME_V1_SPEED_MIN_ARGB;
Stack.speed_max = POLYCHROME_V1_SPEED_MAX_ARGB;
Stack.speed = POLYCHROME_V1_SPEED_DEFAULT_STACK;
Stack.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Stack);
mode Cram;
Cram.name = "Cram";
Cram.value = POLYCHROME_V1_MODE_CRAM;
Cram.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
Cram.speed_min = POLYCHROME_V1_SPEED_MIN_ARGB;
Cram.speed_max = POLYCHROME_V1_SPEED_MAX_ARGB;
Cram.speed = POLYCHROME_V1_SPEED_DEFAULT_CRAM;
Cram.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Cram);
mode Scan;
Scan.name = "Scan";
Scan.value = POLYCHROME_V1_MODE_SCAN;
Scan.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
Scan.speed_min = POLYCHROME_V1_SPEED_MIN_ARGB;
Scan.speed_max = POLYCHROME_V1_SPEED_MAX_ARGB;
Scan.speed = POLYCHROME_V1_SPEED_DEFAULT_SCAN;
Scan.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Scan);
mode Neon;
Neon.name = "Neon";
Neon.value = POLYCHROME_V1_MODE_NEON;
Neon.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
Neon.speed_min = POLYCHROME_V1_SPEED_MIN_ARGB;
Neon.speed_max = POLYCHROME_V1_SPEED_MAX_ARGB;
Neon.speed = POLYCHROME_V1_SPEED_DEFAULT_NEON;
Neon.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Neon);
mode Water;
Water.name = "Water";
Water.value = POLYCHROME_V1_MODE_WATER;
Water.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
Water.speed_min = POLYCHROME_V1_SPEED_MIN_ARGB;
Water.speed_max = POLYCHROME_V1_SPEED_MAX_ARGB;
Water.speed = POLYCHROME_V1_SPEED_DEFAULT_WATER;
Water.color_mode = MODE_COLORS_PER_LED;
modes.push_back(Water);
mode Rainbow;
Rainbow.name = "Rainbow";
Rainbow.value = POLYCHROME_V1_MODE_RAINBOW;
Rainbow.flags = MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
Rainbow.speed_min = POLYCHROME_V1_SPEED_MIN_RAINBOW;
Rainbow.speed_max = POLYCHROME_V1_SPEED_MAX_RAINBOW;
Rainbow.speed = POLYCHROME_V1_SPEED_DEFAULT_RAINBOW;
Rainbow.color_mode = MODE_COLORS_NONE;
modes.push_back(Rainbow);
/*---------------------------------------------------------------------*\
| This ARGB_Config section is a hack to allow users to configure the |
| RGB vs GRB mode using the direction of the mode as well as set the |
| size of the devices connected to the header using the brightness |
| value. |
| |
| The mode should be removed onece the device settings are avaiable. |
\*---------------------------------------------------------------------*/
mode ARGB_Config;
ARGB_Config.name = "ARGB Header Config";
ARGB_Config.value = POLYCHROME_V1_REG_ARGB_GRB;
ARGB_Config.flags = MODE_FLAG_HAS_DIRECTION_LR | MODE_FLAG_HAS_SPEED | MODE_FLAG_AUTOMATIC_SAVE;
ARGB_Config.speed = controller->zone_led_count[POLYCHROME_V1_ZONE_ADDRESSABLE];
ARGB_Config.speed_min = 1;
ARGB_Config.speed_max = POLYCHROME_V1_ZONE_ADDRESSABLE_MAX;
ARGB_Config.direction = controller -> GetARGBColorOrder();
ARGB_Config.color_mode = MODE_COLORS_NONE;
modes.push_back(ARGB_Config);
SetupZones();
controller->LoadZoneConfig();
active_mode = getModeIndex(controller->zone_config[0].mode); // Hard coding zone 0 until per zone modes are available.
if(active_mode != POLYCHROME_V1_MODE_OFF)
{
for( uint8_t zone_idx = 0; zone_idx < zoneIndexMap.size(); zone_idx++)
{
zones[zone_idx].colors[0] = controller->GetZoneColor(zoneIndexMap[zone_idx]);
}
}
}
RGBController_ASRockPolychromeV1SMBus::~RGBController_ASRockPolychromeV1SMBus()
{
delete controller;
}
uint8_t RGBController_ASRockPolychromeV1SMBus::getModeIndex(uint8_t mode_value)
{
for(uint8_t mode_index = 0; mode_index < modes.size(); mode_index++)
{
if (modes[mode_index].value == mode_value)
{
return mode_index;
}
}
return 0;
}
void RGBController_ASRockPolychromeV1SMBus::SetupZones()
{
/*---------------------------------------------------------*\
| Polychrome motherboards should set up zones based on LED |
| configuration register read from device |
\*---------------------------------------------------------*/
/*---------------------------------------------------------*\
| Set up zones |
\*---------------------------------------------------------*/
for(uint8_t zone_idx = 0; zone_idx < POLYCHROME_V1_ZONE_COUNT; zone_idx++)
{
if(controller->zone_led_count[zone_idx] > 0)
{
zone* new_zone = new zone();
/*---------------------------------------------------------*\
| Set zone name to channel name |
\*---------------------------------------------------------*/
new_zone->name = polychrome_v1_zone_names[zone_idx];
new_zone->type = ZONE_TYPE_SINGLE;
new_zone->leds_min = 1;
new_zone->leds_max = 1;
new_zone->leds_count = 1;
new_zone->matrix_map = NULL;
if(zone_idx == POLYCHROME_V1_ZONE_ADDRESSABLE)
{
new_zone->leds_max = POLYCHROME_V1_ZONE_ADDRESSABLE_MAX;
}
/*---------------------------------------------------------*\
| Push new zone to zones vector |
\*---------------------------------------------------------*/
zones.push_back(*new_zone);
/*---------------------------------------------------------*\
| Each zone only has one LED |
\*---------------------------------------------------------*/
led* new_led = new led();
new_led->name = polychrome_v1_zone_names[zone_idx];
new_led->value = zone_idx;
/*---------------------------------------------------------*\
| Push new LED to LEDs vector |
\*---------------------------------------------------------*/
leds.push_back(*new_led);
zoneIndexMap.push_back(zone_idx);
}
}
SetupColors();
}
void RGBController_ASRockPolychromeV1SMBus::ResizeZone(int zone, int new_size)
{
LOG_TRACE("[%s] ResizeZone(%02X, %02X)", name.c_str(), zone, new_size);
controller-> SetARGBSize(new_size & 0xFF);
zones[POLYCHROME_V1_ZONE_ADDRESSABLE].leds_count = 1;
}
void RGBController_ASRockPolychromeV1SMBus::DeviceUpdateLEDs()
{
LOG_TRACE("[%s] DeviceUpdateLEDs()", name.c_str());
for (uint8_t zone_idx = 0; zone_idx < zoneIndexMap.size(); zone_idx++)
{
UpdateSingleLED(zone_idx);
}
}
void RGBController_ASRockPolychromeV1SMBus::UpdateZoneLEDs(int /*zone*/)
{
LOG_TRACE("[%s] UpdateZoneLEDs()", name.c_str());
DeviceUpdateLEDs();
}
void RGBController_ASRockPolychromeV1SMBus::UpdateSingleLED(int zone)
{
LOG_TRACE("[%s] UpdateSingleLED(%02X)", name.c_str(), zone);
uint8_t red = RGBGetRValue(colors[zone]);
uint8_t grn = RGBGetGValue(colors[zone]);
uint8_t blu = RGBGetBValue(colors[zone]);
controller->SetColorsAndSpeed(zoneIndexMap[zone], red, grn, blu);
}
void RGBController_ASRockPolychromeV1SMBus::DeviceUpdateMode()
{
LOG_TRACE("[%s] DeviceUpdateMode()", name.c_str());
if(modes[active_mode].value != POLYCHROME_V1_REG_ARGB_GRB)
{
for(uint8_t zone_idx = 0; zone_idx < zoneIndexMap.size(); zone_idx++)
{
controller->SetMode(zoneIndexMap[zone_idx], modes[active_mode].value, modes[active_mode].speed);
UpdateSingleLED(zone_idx);
}
}
else
{
controller-> SetARGBColorOrder(modes[active_mode].direction);
controller-> SetARGBSize(modes[active_mode].speed);
}
}
@@ -0,0 +1,38 @@
/*---------------------------------------------------------*\
| RGBController_ASRockPolychromeV1SMBus.h |
| |
| RGBController for SMBus ASRock Polychrome V1 |
| motherboards |
| |
| Adam Honse (CalcProgrammer1) 15 Dec 2019 |
| |
| This file is part of the OpenRGB project |
| SPDX-License-Identifier: GPL-2.0-or-later |
\*---------------------------------------------------------*/
#pragma once
#include "RGBController.h"
#include "ASRockPolychromeV1SMBusController.h"
class RGBController_ASRockPolychromeV1SMBus : public RGBController
{
public:
RGBController_ASRockPolychromeV1SMBus(ASRockPolychromeV1SMBusController* controller_ptr);
~RGBController_ASRockPolychromeV1SMBus();
void SetupZones();
void ResizeZone(int zone, int new_size);
void DeviceUpdateLEDs();
void UpdateZoneLEDs(int zone);
void UpdateSingleLED(int led);
void DeviceUpdateMode();
private:
ASRockPolychromeV1SMBusController* controller;
uint8_t getModeIndex(uint8_t mode_value);
std::vector<uint8_t> zoneIndexMap;
};