opensteno_qmk/docs/feature_rgb_matrix.md
James Young 1646c0f26c
2021 May 29 Breaking Changes Update (#13034)
* Add Per Key functionality for AutoShift (#11536)

* LED Matrix: Reactive effect buffers & advanced indicators (#12588)

* [Keyboard] kint36: switch to sym_eager_pk debouncing (#12626)

* [Keyboard] kint2pp: reduce input latency by ≈10ms (#12625)

* LED Matrix: Split (#12633)

* [CI] Format code according to conventions (#12650)

* feat: infinite timeout for leader key (#6580)

* feat: implement leader_no_timeout logic

* docs(leader_key): infinite leader timeout docs

* Format code according to conventions (#12680)

* Update ADC driver for STM32F1xx, STM32F3xx, STM32F4xx (#12403)

* Fix default ADC_RESOLUTION for ADCv3 (and ADCv4)

Recent ChibiOS update removed ADC_CFGR1_RES_10BIT from the ADCv3 headers
(that macro should not have been there, because ADCv3 has CFGR instead of
CFGR1).  Fix the default value for ADC_RESOLUTION to use ADC_CFGR_RES_10BITS
if it is defined (that name is used for ADCv3 and ADCv4).

* Update ADC docs to match the actually used resolution

ADC driver for ChibiOS actually uses the 10-bit resolution by default
(probably to match AVR); fix the documentation accordingly.  Also add
both ADC_CFGR_RES_10BITS and ADC_CFGR1_RES_10BIT constants (these names
differ according to the ADC implementation in the particular MCU).

* Fix pinToMux() for B12 and B13 on STM32F3xx

Testing on STM32F303CCT6 revealed that the ADC mux values for B12 and
B13 pins were wrong.

* Add support for all possible analog pins on STM32F1xx

Added ADC mux values for pins A0...A7, B0, B1, C0...C5 on STM32F1xx
(they are the same at least for STM32F103x8 and larger F103 devices, and
also F102, F105, F107 families).  Actually tested on STM32F103C8T6
(therefore pins C0...C5 were not tested).

Pins F6...F10, which are present on STM32F103x[C-G] in 144-pin packages,
cannot be supported at the moment, because those pins are connected only
to ADC3, but the ChibiOS ADC driver for STM32F1xx supports only ADC1.

* Add support for all possible analog pins on STM32F4xx

Added ADC mux values for pins A0...A7, B0, B1, C0...C5 and optionally
F3...F10 (if STM32_ADC_USE_ADC3 is enabled).  These mux values are
apparently the same for all F4xx devices, except some smaller devices may
not have ADC3.

Actually tested on STM32F401CCU6, STM32F401CEU6, STM32F411CEU6 (using
various WeAct “Blackpill” boards); only pins A0...A7, B0, B1 were tested.

Pins F3...F10 are inside `#if STM32_ADC_USE_ADC3` because some devices
which don't have ADC3 also don't have the GPIOF port, therefore the code
which refers to Fx pins does not compile.

* Fix STM32F3xx ADC mux table in documentation

The ADC driver documentation had some errors in the mux table for STM32F3xx.
Fix this table to match the datasheet and the actual code (mux settings for
B12 and B13 were also tested on a real STM32F303CCT6 chip).

* Add STM32F1xx ADC pins to the documentation

* Add STM32F4xx ADC pins to the documentation

* Add initial support for tinyuf2 bootloader (when hosted on F411 blackpill) (#12600)

* Add support for jumping to tinyuf2 bootloader. Adds blackpill UF2 example.

* Update flashing.md

* Update chconf.h

* Update config.h

* Update halconf.h

* Update mcuconf.h

* eeprom driver: Refactor where eeprom driver initialisation (and EEPROM emulation initialisation) occurs to make it non-target-specific. (#12671)

* Add support for MCU = STM32F446 (#12619)

* Add support for MCU = STM32F446

* Update platforms/chibios/GENERIC_STM32_F446XE/configs/config.h

* Restore mcuconf.h to the one used by RT-STM32F446RE-NUCLEO64

* stm32f446: update mcuconf.h and board.h for 16MHz operation, with USB enabled, and other peripherals disabled.

* Format code according to conventions (#12682)

* Format code according to conventions (#12687)

* Add STM32L433 and L443 support (#12063)

* initial L433 commit

* change to XC

* fix L433

* disable all peripherals

* update system and peripheral clocks

* 433 change

* use its own board  files

* revert its own board files

* l433 specific change

* fix stm32l432xx define

* remove duplicate #define

* fix bootloader jump

* move to L443xx and add i2c2, spi2, usart3 to mcuconf.h

* move to L443

* move to L443

* fix sdmmc in mcuconf.h

* include STM32L443

* add L443

* Include L443 in compatible microcontrollers

* Include L443 in compatible microcontrollers

* Update config bootloader jump description

* Update ChibiOS define reasoning

* Update quantum/mcu_selection.mk

* fix git conflict

* Updated Function96 with V2 files and removed chconf.h and halconf.h (#12613)

* Fix bad PR merge for #6580. (#12721)

* Change RGB/LED Matrix to use a simple define for USB suspend (#12697)

* [CI] Format code according to conventions (#12731)

* Fixing transport's led/rgb matrix suspend state logic (#12770)

* [CI] Format code according to conventions (#12772)

* Fix comment parsing (#12750)

* Added OLED fade out support (#12086)

* fix some references to bin/qmk that slipped in (#12832)

* Resolve a number of warnings in `qmk generate-api` (#12833)

* New command: qmk console (#12828)

* stash poc

* stash

* tidy up implementation

* Tidy up slightly for review

* Tidy up slightly for review

* Bodge environment to make tests pass

* Refactor away from asyncio due to windows issues

* Filter devices

* align vid/pid printing

* Add hidapi to the installers

* start preparing for multiple hid_listeners

* udev rules for hid_listen

* refactor to move closer to end state

* very basic implementation of the threaded model

* refactor how vid/pid/index are supplied and parsed

* windows improvements

* read the report directly when usage page isn't available

* add per-device colors, the choice to show names or numbers, and refactor

* add timestamps

* Add support for showing bootloaders

* tweak the color for bootloaders

* Align bootloader disconnect with connect color

* add support for showing all bootloaders

* fix the pyusb check

* tweaks

* fix exception

* hide a stack trace behind -v

* add --no-bootloaders option

* add documentation for qmk console

* Apply suggestions from code review

* pyformat

* clean up and flesh out KNOWN_BOOTLOADERS

* Remove pointless SERIAL_LINK_ENABLE rules (#12846)

* Make Swap Hands use PROGMEM (#12284)

This converts the array that the Swap Hands feature uses to use PROGMEM,
and to read from that array, as such. Since this array never changes at
runtime, there is no reason to keep it in memory. Especially for AVR
boards, as memory is a precious resource.

* Fix another bin/qmk reference (#12856)

* [Keymap] Turn OLED off on suspend in soundmonster keymap (#10419)

* Fixup build errors on `develop` branch. (#12723)

* LED Matrix: Effects! (#12651)

* Fix syntax error when compiling for ARM (#12866)

* Remove KEYMAP and LAYOUT_kc (#12160)

* alias KEYMAP to LAYOUT

* remove KEYMAP and LAYOUT_kc

* Add setup, clone, and env to the list of commands we allow even with broken modules (#12868)

* Rename `point_t` -> `led_point_t` (#12864)

* [Keyboard] updated a vendor name / fixed minor keymap issues (#12881)

* Add missing LED Matrix suspend code to suspend.c (#12878)

* LED Matrix: Documentation (#12685)

* Deprecate `send_unicode_hex_string()` (#12602)

* Fix spelling mistake regarding LED Matrix in split_common. (#12888)

* [Keymap] Fix QWERTY/DVORAK status output for kzar keymap (#12895)

* Use milc.subcommand.config instead of qmk.cli.config (#12915)

* Use milc.subcommand.config instead

* pyformat

* remove the config test

* Add function to allow repeated blinking of one layer (#12237)

* Implement function rgblight_blink_layer_repeat to allow repeated blinking of one layer at a time

* Update doc

* Rework rgblight blinking according to requested change

* optimize storage

* Fixup housekeeping from being invoked twice per loop. (#12933)

* matrix: wait for row signal to go HIGH for every row (#12945)

I noticed this discrepancy (last row of the matrix treated differently than the
others) when optimizing the input latency of my keyboard controller, see also
https://michael.stapelberg.ch/posts/2021-05-08-keyboard-input-latency-qmk-kinesis/

Before this commit, when tuning the delays I noticed ghost key presses when
pressing the F2 key, which is on the last row of the keyboard matrix: the
dead_grave key, which is on the first row of the keyboard matrix, would be
incorrectly detected as pressed.

After this commit, all keyboard matrix rows are interpreted correctly.

I suspect that my setup is more susceptible to this nuance than others because I
use GPIO_INPUT_PIN_DELAY=0 and hence don’t have another delay that might mask
the problem.

* ensure we do not conflict with existing keymap aliases (#12976)

* Add support for up to 4 IS31FL3733 drivers (#12342)

* Convert Encoder callbacks to be boolean functions (#12805)

* [Keyboard] Fix Terrazzo build failure (#12977)

* Do not hard set config in CPTC files (#11864)

* [Keyboard] Corne - Remove legacy revision support (#12226)

* [Keymap] Update to Drashna keymap and user code (based on develop) (#12936)

* Add Full-duplex serial driver for ARM boards (#9842)

* Document LED_MATRIX_FRAMEBUFFER_EFFECTS (#12987)

* Backlight: add defines for default level and breathing state (#12560)

* Add dire message about LUFA mass storage bootloader (#13014)

* [Keyboard] Remove redundant legacy and common headers for crkbd (#13023)

Was causing compiler errors on some systems.

* Fix keyboards/keymaps for boolean encoder callback changes (#12985)

* `backlight.c`: include `eeprom.h` (#13024)

* Add changelog for 2021-05-29 Breaking Changes merge (#12939)

* Add ChangeLog for 2021-05-29 Breaking Changes Merge: initial version

* Add recent develop changes

* Sort recent develop changes

* Remove sections for ChibiOS changes per tzarc

No ChibiOS changes this round.

* Add and sort recent develop changes

* add notes about keyboard moves/deletions

* import changelog for PR 12172

Documents the change to BOOTMAGIC_ENABLE.

* update section headings

* re-sort changelog

* add additional note regarding Bootmagic changes

* remove changelog timestamp

* update dates in main Breaking Changes docs

* fix broken section anchors in previous changelogs

* add link to backlight/eeprom patch to changelog

* highlight some more changes

* link PRs from section headers

* Restore standard readme

* run: qmk cformat --core-only
2021-05-29 14:38:50 -07:00

36 KiB

RGB Matrix Lighting :id=rgb-matrix-lighting

This feature allows you to use RGB LED matrices driven by external drivers. It hooks into the RGBLIGHT system so you can use the same keycodes as RGBLIGHT to control it.

If you want to use single color LED's you should use the LED Matrix Subsystem instead.

Driver configuration :id=driver-configuration


IS31FL3731 :id=is31fl3731

There is basic support for addressable RGB matrix lighting with the I2C IS31FL3731 RGB controller. To enable it, add this to your rules.mk:

RGB_MATRIX_ENABLE = yes
RGB_MATRIX_DRIVER = IS31FL3731

You can use between 1 and 4 IS31FL3731 IC's. Do not specify DRIVER_ADDR_<N> defines for IC's that are not present on your keyboard. You can define the following items in config.h:

Variable Description Default
ISSI_TIMEOUT (Optional) How long to wait for i2c messages, in milliseconds 100
ISSI_PERSISTENCE (Optional) Retry failed messages this many times 0
DRIVER_COUNT (Required) How many RGB driver IC's are present
DRIVER_LED_TOTAL (Required) How many RGB lights are present across all drivers
DRIVER_ADDR_1 (Required) Address for the first RGB driver
DRIVER_ADDR_2 (Optional) Address for the second RGB driver
DRIVER_ADDR_3 (Optional) Address for the third RGB driver
DRIVER_ADDR_4 (Optional) Address for the fourth RGB driver

Here is an example using 2 drivers.

// This is a 7-bit address, that gets left-shifted and bit 0
// set to 0 for write, 1 for read (as per I2C protocol)
// The address will vary depending on your wiring:
// 0b1110100 AD <-> GND
// 0b1110111 AD <-> VCC
// 0b1110101 AD <-> SCL
// 0b1110110 AD <-> SDA
#define DRIVER_ADDR_1 0b1110100
#define DRIVER_ADDR_2 0b1110110

#define DRIVER_COUNT 2
#define DRIVER_1_LED_TOTAL 25
#define DRIVER_2_LED_TOTAL 24
#define DRIVER_LED_TOTAL (DRIVER_1_LED_TOTAL + DRIVER_2_LED_TOTAL)

!> Note the parentheses, this is so when DRIVER_LED_TOTAL is used in code and expanded, the values are added together before any additional math is applied to them. As an example, rand() % (DRIVER_1_LED_TOTAL + DRIVER_2_LED_TOTAL) will give very different results than rand() % DRIVER_1_LED_TOTAL + DRIVER_2_LED_TOTAL.

Define these arrays listing all the LEDs in your <keyboard>.c:

const is31_led g_is31_leds[DRIVER_LED_TOTAL] = {
/* Refer to IS31 manual for these locations
 *   driver
 *   |  R location
 *   |  |      G location
 *   |  |      |      B location
 *   |  |      |      | */
    {0, C1_3,  C2_3,  C3_3},
    ....
}

Where Cx_y is the location of the LED in the matrix defined by the datasheet and the header file drivers/issi/is31fl3731.h. The driver is the index of the driver you defined in your config.h (0, 1, 2, or 3).


IS31FL3733 :id=is31fl3733

There is basic support for addressable RGB matrix lighting with the I2C IS31FL3733 RGB controller. To enable it, add this to your rules.mk:

RGB_MATRIX_ENABLE = yes
RGB_MATRIX_DRIVER = IS31FL3733

You can use between 1 and 4 IS31FL3733 IC's. Do not specify DRIVER_ADDR_<N> defines for IC's that are not present on your keyboard. You can define the following items in config.h:

Variable Description Default
ISSI_TIMEOUT (Optional) How long to wait for i2c messages, in milliseconds 100
ISSI_PERSISTENCE (Optional) Retry failed messages this many times 0
DRIVER_COUNT (Required) How many RGB driver IC's are present
DRIVER_LED_TOTAL (Required) How many RGB lights are present across all drivers
DRIVER_ADDR_1 (Required) Address for the first RGB driver
DRIVER_ADDR_2 (Optional) Address for the second RGB driver
DRIVER_ADDR_3 (Optional) Address for the third RGB driver
DRIVER_ADDR_4 (Optional) Address for the fourth RGB driver
DRIVER_SYNC_1 (Optional) Sync configuration for the first RGB driver 0
DRIVER_SYNC_2 (Optional) Sync configuration for the second RGB driver 0
DRIVER_SYNC_3 (Optional) Sync configuration for the third RGB driver 0
DRIVER_SYNC_4 (Optional) Sync configuration for the fourth RGB driver 0

Here is an example using 2 drivers.

// This is a 7-bit address, that gets left-shifted and bit 0
// set to 0 for write, 1 for read (as per I2C protocol)
// The address will vary depending on your wiring:
// 00 <-> GND
// 01 <-> SCL
// 10 <-> SDA
// 11 <-> VCC
// ADDR1 represents A1:A0 of the 7-bit address.
// ADDR2 represents A3:A2 of the 7-bit address.
// The result is: 0b101(ADDR2)(ADDR1)
#define DRIVER_ADDR_1 0b1010000
#define DRIVER_ADDR_2 0b1010011

#define DRIVER_COUNT 2
#define DRIVER_1_LED_TOTAL 58
#define DRIVER_2_LED_TOTAL 10
#define DRIVER_LED_TOTAL (DRIVER_1_LED_TOTAL + DRIVER_2_LED_TOTAL)

!> Note the parentheses, this is so when DRIVER_LED_TOTAL is used in code and expanded, the values are added together before any additional math is applied to them. As an example, rand() % (DRIVER_1_LED_TOTAL + DRIVER_2_LED_TOTAL) will give very different results than rand() % DRIVER_1_LED_TOTAL + DRIVER_2_LED_TOTAL.

Currently only 4 drivers are supported, but it would be trivial to support all 8 combinations.

Define these arrays listing all the LEDs in your <keyboard>.c:

const is31_led g_is31_leds[DRIVER_LED_TOTAL] = {
/* Refer to IS31 manual for these locations
 *   driver
 *   |  R location
 *   |  |       G location
 *   |  |       |       B location
 *   |  |       |       | */
    {0, B_1,    A_1,    C_1},
    ....
}

Where X_Y is the location of the LED in the matrix defined by the datasheet and the header file drivers/issi/is31fl3733.h. The driver is the index of the driver you defined in your config.h (0, 1, 2, or 3 for now).


IS31FL3737 :id=is31fl3737

There is basic support for addressable RGB matrix lighting with the I2C IS31FL3737 RGB controller. To enable it, add this to your rules.mk:

RGB_MATRIX_ENABLE = yes
RGB_MATRIX_DRIVER = IS31FL3737

Configure the hardware via your config.h:

// This is a 7-bit address, that gets left-shifted and bit 0
// set to 0 for write, 1 for read (as per I2C protocol)
// The address will vary depending on your wiring:
// 0000 <-> GND
// 0101 <-> SCL
// 1010 <-> SDA
// 1111 <-> VCC
// ADDR represents A3:A0 of the 7-bit address.
// The result is: 0b101(ADDR)
#define DRIVER_ADDR_1 0b1010000
#define DRIVER_ADDR_2 0b1010000 // this is here for compliancy reasons.

#define DRIVER_COUNT 2
#define DRIVER_1_LED_TOTAL 64
#define DRIVER_LED_TOTAL DRIVER_1_LED_TOTAL

Currently only a single drivers is supported, but it would be trivial to support all 4 combinations. For now define DRIVER_ADDR_2 as DRIVER_ADDR_1

Define these arrays listing all the LEDs in your <keyboard>.c:

const is31_led g_is31_leds[DRIVER_LED_TOTAL] = {
/* Refer to IS31 manual for these locations
 *   driver
 *   |  R location
 *   |  |       G location
 *   |  |       |       B location
 *   |  |       |       | */
    {0, B_1,    A_1,    C_1},
    ....
}

Where X_Y is the location of the LED in the matrix defined by the datasheet and the header file drivers/issi/is31fl3737.h. The driver is the index of the driver you defined in your config.h (Only 0 right now).


WS2812 :id=ws2812

There is basic support for addressable RGB matrix lighting with a WS2811/WS2812{a,b,c} addressable LED strand. To enable it, add this to your rules.mk:

RGB_MATRIX_ENABLE = yes
RGB_MATRIX_DRIVER = WS2812

Configure the hardware via your config.h:

// The pin connected to the data pin of the LEDs
#define RGB_DI_PIN D7
// The number of LEDs connected
#define DRIVER_LED_TOTAL 70

APA102 :id=apa102

There is basic support for APA102 based addressable LED strands. To enable it, add this to your rules.mk:

RGB_MATRIX_ENABLE = yes
RGB_MATRIX_DRIVER = APA102

Configure the hardware via your config.h:

// The pin connected to the data pin of the LEDs
#define RGB_DI_PIN D7
// The pin connected to the clock pin of the LEDs
#define RGB_CI_PIN D6
// The number of LEDs connected
#define DRIVER_LED_TOTAL 70

From this point forward the configuration is the same for all the drivers. The led_config_t struct provides a key electrical matrix to led index lookup table, what the physical position of each LED is on the board, and what type of key or usage the LED if the LED represents. Here is a brief example:

led_config_t g_led_config = { {
  // Key Matrix to LED Index
  {   5, NO_LED, NO_LED,   0 },
  { NO_LED, NO_LED, NO_LED, NO_LED },
  {   4, NO_LED, NO_LED,   1 },
  {   3, NO_LED, NO_LED,   2 }
}, {
  // LED Index to Physical Position
  { 188,  16 }, { 187,  48 }, { 149,  64 }, { 112,  64 }, {  37,  48 }, {  38,  16 }
}, {
  // LED Index to Flag
  1, 4, 4, 4, 4, 1
} };

The first part, // Key Matrix to LED Index, tells the system what key this LED represents by using the key's electrical matrix row & col. The second part, // LED Index to Physical Position represents the LED's physical { x, y } position on the keyboard. The default expected range of values for { x, y } is the inclusive range { 0..224, 0..64 }. This default expected range is due to effects that calculate the center of the keyboard for their animations. The easiest way to calculate these positions is imagine your keyboard is a grid, and the top left of the keyboard represents { x, y } coordinate { 0, 0 } and the bottom right of your keyboard represents { 224, 64 }. Using this as a basis, you can use the following formula to calculate the physical position:

x = 224 / (NUMBER_OF_COLS - 1) * COL_POSITION
y =  64 / (NUMBER_OF_ROWS - 1) * ROW_POSITION

Where NUMBER_OF_COLS, NUMBER_OF_ROWS, COL_POSITION, & ROW_POSITION are all based on the physical layout of your keyboard, not the electrical layout.

As mentioned earlier, the center of the keyboard by default is expected to be { 112, 32 }, but this can be changed if you want to more accurately calculate the LED's physical { x, y } positions. Keyboard designers can implement #define RGB_MATRIX_CENTER { 112, 32 } in their config.h file with the new center point of the keyboard, or where they want it to be allowing more possibilities for the { x, y } values. Do note that the maximum value for x or y is 255, and the recommended maximum is 224 as this gives animations runoff room before they reset.

// LED Index to Flag is a bitmask, whether or not a certain LEDs is of a certain type. It is recommended that LEDs are set to only 1 type.

Flags :id=flags

Define Value Description
HAS_FLAGS(bits, flags) n/a Evaluates to true if bits has all flags set
HAS_ANY_FLAGS(bits, flags) n/a Evaluates to true if bits has any flags set
LED_FLAG_NONE 0x00 If this LED has no flags
LED_FLAG_ALL 0xFF If this LED has all flags
LED_FLAG_MODIFIER 0x01 If the LED is on a modifier key
LED_FLAG_UNDERGLOW 0x02 If the LED is for underglow
LED_FLAG_KEYLIGHT 0x04 If the LED is for key backlight
LED_FLAG_INDICATOR 0x08 If the LED is for keyboard state indication

Keycodes :id=keycodes

All RGB keycodes are currently shared with the RGBLIGHT system:

Key Aliases Description
RGB_TOG Toggle RGB lighting on or off
RGB_MODE_FORWARD RGB_MOD Cycle through modes, reverse direction when Shift is held
RGB_MODE_REVERSE RGB_RMOD Cycle through modes in reverse, forward direction when Shift is held
RGB_HUI Increase hue, decrease hue when Shift is held
RGB_HUD Decrease hue, increase hue when Shift is held
RGB_SAI Increase saturation, decrease saturation when Shift is held
RGB_SAD Decrease saturation, increase saturation when Shift is held
RGB_VAI Increase value (brightness), decrease value when Shift is held
RGB_VAD Decrease value (brightness), increase value when Shift is held
RGB_SPI Increase effect speed (does not support eeprom yet), decrease speed when Shift is held
RGB_SPD Decrease effect speed (does not support eeprom yet), increase speed when Shift is held
RGB_MODE_PLAIN RGB_M_P Static (no animation) mode
RGB_MODE_BREATHE RGB_M_B Breathing animation mode
RGB_MODE_RAINBOW RGB_M_R Full gradient scrolling left to right (uses the RGB_MATRIX_CYCLE_LEFT_RIGHT mode)
RGB_MODE_SWIRL RGB_M_SW Full gradient spinning pinwheel around center of keyboard (uses RGB_MATRIX_CYCLE_PINWHEEL mode)
  • RGB_MODE_* keycodes will generally work, but not all of the modes are currently mapped to the correct effects for the RGB Matrix system.

RGB_MODE_PLAIN, RGB_MODE_BREATHE, RGB_MODE_RAINBOW, and RGB_MATRIX_SWIRL are the only ones that are mapped properly. The rest don't have a direct equivalent, and are not mapped.

!> By default, if you have both the RGB Light and the RGB Matrix feature enabled, these keycodes will work for both features, at the same time. You can disable the keycode functionality by defining the *_DISABLE_KEYCODES option for the specific feature.

RGB Matrix Effects :id=rgb-matrix-effects

All effects have been configured to support current configuration values (Hue, Saturation, Value, & Speed) unless otherwise noted below. These are the effects that are currently available:

enum rgb_matrix_effects {
    RGB_MATRIX_NONE = 0,
    RGB_MATRIX_SOLID_COLOR = 1,     // Static single hue, no speed support
    RGB_MATRIX_ALPHAS_MODS,         // Static dual hue, speed is hue for secondary hue
    RGB_MATRIX_GRADIENT_UP_DOWN,    // Static gradient top to bottom, speed controls how much gradient changes
    RGB_MATRIX_GRADIENT_LEFT_RIGHT,    // Static gradient left to right, speed controls how much gradient changes
    RGB_MATRIX_BREATHING,           // Single hue brightness cycling animation
    RGB_MATRIX_BAND_SAT,        // Single hue band fading saturation scrolling left to right
    RGB_MATRIX_BAND_VAL,        // Single hue band fading brightness scrolling left to right
    RGB_MATRIX_BAND_PINWHEEL_SAT,   // Single hue 3 blade spinning pinwheel fades saturation
    RGB_MATRIX_BAND_PINWHEEL_VAL,   // Single hue 3 blade spinning pinwheel fades brightness
    RGB_MATRIX_BAND_SPIRAL_SAT,     // Single hue spinning spiral fades saturation
    RGB_MATRIX_BAND_SPIRAL_VAL,     // Single hue spinning spiral fades brightness
    RGB_MATRIX_CYCLE_ALL,           // Full keyboard solid hue cycling through full gradient
    RGB_MATRIX_CYCLE_LEFT_RIGHT,    // Full gradient scrolling left to right
    RGB_MATRIX_CYCLE_UP_DOWN,       // Full gradient scrolling top to bottom
    RGB_MATRIX_CYCLE_OUT_IN,        // Full gradient scrolling out to in
    RGB_MATRIX_CYCLE_OUT_IN_DUAL,   // Full dual gradients scrolling out to in
    RGB_MATRIX_RAINBOW_MOVING_CHEVRON,  // Full gradent Chevron shapped scrolling left to right
    RGB_MATRIX_CYCLE_PINWHEEL,      // Full gradient spinning pinwheel around center of keyboard
    RGB_MATRIX_CYCLE_SPIRAL,        // Full gradient spinning spiral around center of keyboard
    RGB_MATRIX_DUAL_BEACON,         // Full gradient spinning around center of keyboard
    RGB_MATRIX_RAINBOW_BEACON,      // Full tighter gradient spinning around center of keyboard
    RGB_MATRIX_RAINBOW_PINWHEELS,   // Full dual gradients spinning two halfs of keyboard
    RGB_MATRIX_RAINDROPS,           // Randomly changes a single key's hue
    RGB_MATRIX_JELLYBEAN_RAINDROPS, // Randomly changes a single key's hue and saturation
    RGB_MATRIX_HUE_BREATHING,       // Hue shifts up a slight ammount at the same time, then shifts back
    RGB_MATRIX_HUE_PENDULUM,        // Hue shifts up a slight ammount in a wave to the right, then back to the left
    RGB_MATRIX_HUE_WAVE,            // Hue shifts up a slight ammount and then back down in a wave to the right 
#if define(RGB_MATRIX_FRAMEBUFFER_EFFECTS)
    RGB_MATRIX_TYPING_HEATMAP,      // How hot is your WPM!
    RGB_MATRIX_DIGITAL_RAIN,        // That famous computer simulation
#endif
#if defined(RGB_MATRIX_KEYPRESSES) || defined(RGB_MATRIX_KEYRELEASES)
    RGB_MATRIX_SOLID_REACTIVE_SIMPLE,   // Pulses keys hit to hue & value then fades value out
    RGB_MATRIX_SOLID_REACTIVE,      // Static single hue, pulses keys hit to shifted hue then fades to current hue
    RGB_MATRIX_SOLID_REACTIVE_WIDE       // Hue & value pulse near a single key hit then fades value out
    RGB_MATRIX_SOLID_REACTIVE_MULTIWIDE  // Hue & value pulse near multiple key hits then fades value out
    RGB_MATRIX_SOLID_REACTIVE_CROSS      // Hue & value pulse the same column and row of a single key hit then fades value out
    RGB_MATRIX_SOLID_REACTIVE_MULTICROSS // Hue & value pulse the same column and row of multiple key hits then fades value out
    RGB_MATRIX_SOLID_REACTIVE_NEXUS      // Hue & value pulse away on the same column and row of a single key hit then fades value out
    RGB_MATRIX_SOLID_REACTIVE_MULTINEXUS // Hue & value pulse away on the same column and row of multiple key hits then fades value out
    RGB_MATRIX_SPLASH,              // Full gradient & value pulse away from a single key hit then fades value out
    RGB_MATRIX_MULTISPLASH,         // Full gradient & value pulse away from multiple key hits then fades value out
    RGB_MATRIX_SOLID_SPLASH,        // Hue & value pulse away from a single key hit then fades value out
    RGB_MATRIX_SOLID_MULTISPLASH,   // Hue & value pulse away from multiple key hits then fades value out
#endif
    RGB_MATRIX_EFFECT_MAX
};

You can disable a single effect by defining DISABLE_[EFFECT_NAME] in your config.h:

Define Description
#define DISABLE_RGB_MATRIX_ALPHAS_MODS Disables RGB_MATRIX_ALPHAS_MODS
#define DISABLE_RGB_MATRIX_GRADIENT_UP_DOWN Disables RGB_MATRIX_GRADIENT_UP_DOWN
#define DISABLE_RGB_MATRIX_GRADIENT_LEFT_RIGHT Disables MATRIX_GRADIENT_LEFT_RIGHT
#define DISABLE_RGB_MATRIX_BREATHING Disables RGB_MATRIX_BREATHING
#define DISABLE_RGB_MATRIX_BAND_SAT Disables RGB_MATRIX_BAND_SAT
#define DISABLE_RGB_MATRIX_BAND_VAL Disables RGB_MATRIX_BAND_VAL
#define DISABLE_RGB_MATRIX_BAND_PINWHEEL_SAT Disables RGB_MATRIX_BAND_PINWHEEL_SAT
#define DISABLE_RGB_MATRIX_BAND_PINWHEEL_VAL Disables RGB_MATRIX_BAND_PINWHEEL_VAL
#define DISABLE_RGB_MATRIX_BAND_SPIRAL_SAT Disables RGB_MATRIX_BAND_SPIRAL_SAT
#define DISABLE_RGB_MATRIX_BAND_SPIRAL_VAL Disables RGB_MATRIX_BAND_SPIRAL_VAL
#define DISABLE_RGB_MATRIX_CYCLE_ALL Disables RGB_MATRIX_CYCLE_ALL
#define DISABLE_RGB_MATRIX_CYCLE_LEFT_RIGHT Disables RGB_MATRIX_CYCLE_LEFT_RIGHT
#define DISABLE_RGB_MATRIX_CYCLE_UP_DOWN Disables RGB_MATRIX_CYCLE_UP_DOWN
#define DISABLE_RGB_MATRIX_RAINBOW_MOVING_CHEVRON Disables RGB_MATRIX_RAINBOW_MOVING_CHEVRON
#define DISABLE_RGB_MATRIX_CYCLE_OUT_IN Disables RGB_MATRIX_CYCLE_OUT_IN
#define DISABLE_RGB_MATRIX_CYCLE_OUT_IN_DUAL Disables RGB_MATRIX_CYCLE_OUT_IN_DUAL
#define DISABLE_RGB_MATRIX_CYCLE_PINWHEEL Disables RGB_MATRIX_CYCLE_PINWHEEL
#define DISABLE_RGB_MATRIX_CYCLE_SPIRAL Disables RGB_MATRIX_CYCLE_SPIRAL
#define DISABLE_RGB_MATRIX_DUAL_BEACON Disables RGB_MATRIX_DUAL_BEACON
#define DISABLE_RGB_MATRIX_RAINBOW_BEACON Disables RGB_MATRIX_RAINBOW_BEACON
#define DISABLE_RGB_MATRIX_RAINBOW_PINWHEELS Disables RGB_MATRIX_RAINBOW_PINWHEELS
#define DISABLE_RGB_MATRIX_RAINDROPS Disables RGB_MATRIX_RAINDROPS
#define DISABLE_RGB_MATRIX_JELLYBEAN_RAINDROPS Disables RGB_MATRIX_JELLYBEAN_RAINDROPS
#define DISABLE_RGB_MATRIX_HUE_BREATHING Disables RGB_MATRIX_HUE_BREATHING
#define DISABLE_RGB_MATRIX_HUE_PENDULUM Disables RGB_MATRIX_HUE_PENDULUM
#define DISABLE_RGB_MATRIX_HUE_WAVE Disables RGB_MATRIX_HUE_WAVE
#define DISABLE_RGB_MATRIX_TYPING_HEATMAP Disables RGB_MATRIX_TYPING_HEATMAP
#define DISABLE_RGB_MATRIX_DIGITAL_RAIN Disables RGB_MATRIX_DIGITAL_RAIN
#define DISABLE_RGB_MATRIX_SOLID_REACTIVE_SIMPLE Disables RGB_MATRIX_SOLID_REACTIVE_SIMPLE
#define DISABLE_RGB_MATRIX_SOLID_REACTIVE Disables RGB_MATRIX_SOLID_REACTIVE
#define DISABLE_RGB_MATRIX_SOLID_REACTIVE_WIDE Disables RGB_MATRIX_SOLID_REACTIVE_WIDE
#define DISABLE_RGB_MATRIX_SOLID_REACTIVE_MULTIWIDE Disables RGB_MATRIX_SOLID_REACTIVE_MULTIWIDE
#define DISABLE_RGB_MATRIX_SOLID_REACTIVE_CROSS Disables RGB_MATRIX_SOLID_REACTIVE_CROSS
#define DISABLE_RGB_MATRIX_SOLID_REACTIVE_MULTICROSS Disables RGB_MATRIX_SOLID_REACTIVE_MULTICROSS
#define DISABLE_RGB_MATRIX_SOLID_REACTIVE_NEXUS Disables RGB_MATRIX_SOLID_REACTIVE_NEXUS
#define DISABLE_RGB_MATRIX_SOLID_REACTIVE_MULTINEXUS Disables RGB_MATRIX_SOLID_REACTIVE_MULTINEXUS
#define DISABLE_RGB_MATRIX_SPLASH Disables RGB_MATRIX_SPLASH
#define DISABLE_RGB_MATRIX_MULTISPLASH Disables RGB_MATRIX_MULTISPLASH
#define DISABLE_RGB_MATRIX_SOLID_SPLASH Disables RGB_MATRIX_SOLID_SPLASH
#define DISABLE_RGB_MATRIX_SOLID_MULTISPLASH Disables RGB_MATRIX_SOLID_MULTISPLASH

RGB Matrix Effect Typing Heatmap :id=rgb-matrix-effect-typing-heatmap

This effect will color the RGB matrix according to a heatmap of recently pressed keys. Whenever a key is pressed its "temperature" increases as well as that of its neighboring keys. The temperature of each key is then decreased automatically every 25 milliseconds by default.

In order to change the delay of temperature decrease define RGB_MATRIX_TYPING_HEATMAP_DECREASE_DELAY_MS:

#define RGB_MATRIX_TYPING_HEATMAP_DECREASE_DELAY_MS 50

Custom RGB Matrix Effects :id=custom-rgb-matrix-effects

By setting RGB_MATRIX_CUSTOM_USER (and/or RGB_MATRIX_CUSTOM_KB) in rules.mk, new effects can be defined directly from userspace, without having to edit any QMK core files.

To declare new effects, create a new rgb_matrix_user/kb.inc that looks something like this:

rgb_matrix_user.inc should go in the root of the keymap directory. rgb_matrix_kb.inc should go in the root of the keyboard directory.

To use custom effects in your code, simply prepend RGB_MATRIX_CUSTOM_ to the effect name specified in RGB_MATRIX_EFFECT(). For example, an effect declared as RGB_MATRIX_EFFECT(my_cool_effect) would be referenced with:

rgb_matrix_mode(RGB_MATRIX_CUSTOM_my_cool_effect);
// !!! DO NOT ADD #pragma once !!! //

// Step 1.
// Declare custom effects using the RGB_MATRIX_EFFECT macro
// (note the lack of semicolon after the macro!)
RGB_MATRIX_EFFECT(my_cool_effect)
RGB_MATRIX_EFFECT(my_cool_effect2)

// Step 2.
// Define effects inside the `RGB_MATRIX_CUSTOM_EFFECT_IMPLS` ifdef block
#ifdef RGB_MATRIX_CUSTOM_EFFECT_IMPLS

// e.g: A simple effect, self-contained within a single method
static bool my_cool_effect(effect_params_t* params) {
  RGB_MATRIX_USE_LIMITS(led_min, led_max);
  for (uint8_t i = led_min; i < led_max; i++) {
    rgb_matrix_set_color(i, 0xff, 0xff, 0x00);
  }
  return led_max < DRIVER_LED_TOTAL;
}

// e.g: A more complex effect, relying on external methods and state, with
// dedicated init and run methods
static uint8_t some_global_state;
static void my_cool_effect2_complex_init(effect_params_t* params) {
  some_global_state = 1;
}
static bool my_cool_effect2_complex_run(effect_params_t* params) {
  RGB_MATRIX_USE_LIMITS(led_min, led_max);
  for (uint8_t i = led_min; i < led_max; i++) {
    rgb_matrix_set_color(i, 0xff, some_global_state++, 0xff);
  }

  return led_max < DRIVER_LED_TOTAL;
}
static bool my_cool_effect2(effect_params_t* params) {
  if (params->init) my_cool_effect2_complex_init(params);
  return my_cool_effect2_complex_run(params);
}

#endif // RGB_MATRIX_CUSTOM_EFFECT_IMPLS

For inspiration and examples, check out the built-in effects under quantum/rgb_matrix_animations/

Colors :id=colors

These are shorthands to popular colors. The RGB ones can be passed to the setrgb functions, while the HSV ones to the sethsv functions.

RGB HSV
RGB_WHITE HSV_WHITE
RGB_RED HSV_RED
RGB_CORAL HSV_CORAL
RGB_ORANGE HSV_ORANGE
RGB_GOLDENROD HSV_GOLDENROD
RGB_GOLD HSV_GOLD
RGB_YELLOW HSV_YELLOW
RGB_CHARTREUSE HSV_CHARTREUSE
RGB_GREEN HSV_GREEN
RGB_SPRINGGREEN HSV_SPRINGGREEN
RGB_TURQUOISE HSV_TURQUOISE
RGB_TEAL HSV_TEAL
RGB_CYAN HSV_CYAN
RGB_AZURE HSV_AZURE
RGB_BLUE HSV_BLUE
RGB_PURPLE HSV_PURPLE
RGB_MAGENTA HSV_MAGENTA
RGB_PINK HSV_PINK

These are defined in rgblight_list.h. Feel free to add to this list!

Additional config.h Options :id=additional-configh-options

#define RGB_MATRIX_KEYPRESSES // reacts to keypresses
#define RGB_MATRIX_KEYRELEASES // reacts to keyreleases (instead of keypresses)
#define RGB_MATRIX_FRAMEBUFFER_EFFECTS // enable framebuffer effects
#define RGB_DISABLE_TIMEOUT 0 // number of milliseconds to wait until rgb automatically turns off
#define RGB_DISABLE_AFTER_TIMEOUT 0 // OBSOLETE: number of ticks to wait until disabling effects
#define RGB_DISABLE_WHEN_USB_SUSPENDED // turn off effects when suspended
#define RGB_MATRIX_LED_PROCESS_LIMIT (DRIVER_LED_TOTAL + 4) / 5 // limits the number of LEDs to process in an animation per task run (increases keyboard responsiveness)
#define RGB_MATRIX_LED_FLUSH_LIMIT 16 // limits in milliseconds how frequently an animation will update the LEDs. 16 (16ms) is equivalent to limiting to 60fps (increases keyboard responsiveness)
#define RGB_MATRIX_MAXIMUM_BRIGHTNESS 200 // limits maximum brightness of LEDs to 200 out of 255. If not defined maximum brightness is set to 255
#define RGB_MATRIX_STARTUP_MODE RGB_MATRIX_CYCLE_LEFT_RIGHT // Sets the default mode, if none has been set
#define RGB_MATRIX_STARTUP_HUE 0 // Sets the default hue value, if none has been set
#define RGB_MATRIX_STARTUP_SAT 255 // Sets the default saturation value, if none has been set
#define RGB_MATRIX_STARTUP_VAL RGB_MATRIX_MAXIMUM_BRIGHTNESS // Sets the default brightness value, if none has been set
#define RGB_MATRIX_STARTUP_SPD 127 // Sets the default animation speed, if none has been set
#define RGB_MATRIX_DISABLE_KEYCODES // disables control of rgb matrix by keycodes (must use code functions to control the feature)
#define RGB_MATRIX_SPLIT { X, Y } 	// (Optional) For split keyboards, the number of LEDs connected on each half. X = left, Y = Right.
                              		// If RGB_MATRIX_KEYPRESSES or RGB_MATRIX_KEYRELEASES is enabled, you also will want to enable SPLIT_TRANSPORT_MIRROR

EEPROM storage :id=eeprom-storage

The EEPROM for it is currently shared with the LED Matrix system (it's generally assumed only one feature would be used at a time), but could be configured to use its own 32bit address with:

#define EECONFIG_RGB_MATRIX (uint32_t *)28

Where 28 is an unused index from eeconfig.h.

Functions :id=functions

Direct Operation :id=direct-operation

Function Description
rgb_matrix_set_color_all(r, g, b) Set all of the LEDs to the given RGB value, where r/g/b are between 0 and 255 (not written to EEPROM)
rgb_matrix_set_color(index, r, g, b) Set a single LED to the given RGB value, where r/g/b are between 0 and 255, and index is between 0 and DRIVER_LED_TOTAL (not written to EEPROM)

Disable/Enable Effects :id=disable-enable-effects

Function Description
rgb_matrix_toggle() Toggle effect range LEDs between on and off
rgb_matrix_toggle_noeeprom() Toggle effect range LEDs between on and off (not written to EEPROM)
rgb_matrix_enable() Turn effect range LEDs on, based on their previous state
rgb_matrix_enable_noeeprom() Turn effect range LEDs on, based on their previous state (not written to EEPROM)
rgb_matrix_disable() Turn effect range LEDs off, based on their previous state
rgb_matrix_disable_noeeprom() Turn effect range LEDs off, based on their previous state (not written to EEPROM)

Change Effect Mode :id=change-effect-mode

Function Description
rgb_matrix_mode(mode) Set the mode, if RGB animations are enabled
rgb_matrix_mode_noeeprom(mode) Set the mode, if RGB animations are enabled (not written to EEPROM)
rgb_matrix_step() Change the mode to the next RGB animation in the list of enabled RGB animations
rgb_matrix_step_noeeprom() Change the mode to the next RGB animation in the list of enabled RGB animations (not written to EEPROM)
rgb_matrix_step_reverse() Change the mode to the previous RGB animation in the list of enabled RGB animations
rgb_matrix_step_reverse_noeeprom() Change the mode to the previous RGB animation in the list of enabled RGB animations (not written to EEPROM)
rgb_matrix_increase_speed() Increase the speed of the animations
rgb_matrix_increase_speed_noeeprom() Increase the speed of the animations (not written to EEPROM)
rgb_matrix_decrease_speed() Decrease the speed of the animations
rgb_matrix_decrease_speed_noeeprom() Decrease the speed of the animations (not written to EEPROM)
rgb_matrix_set_speed(speed) Set the speed of the animations to the given value where speed is between 0 and 255
rgb_matrix_set_speed_noeeprom(speed) Set the speed of the animations to the given value where speed is between 0 and 255 (not written to EEPROM)

Change Color :id=change-color

Function Description
rgb_matrix_increase_hue() Increase the hue for effect range LEDs. This wraps around at maximum hue
rgb_matrix_increase_hue_noeeprom() Increase the hue for effect range LEDs. This wraps around at maximum hue (not written to EEPROM)
rgb_matrix_decrease_hue() Decrease the hue for effect range LEDs. This wraps around at minimum hue
rgb_matrix_decrease_hue_noeeprom() Decrease the hue for effect range LEDs. This wraps around at minimum hue (not written to EEPROM)
rgb_matrix_increase_sat() Increase the saturation for effect range LEDs. This wraps around at maximum saturation
rgb_matrix_increase_sat_noeeprom() Increase the saturation for effect range LEDs. This wraps around at maximum saturation (not written to EEPROM)
rgb_matrix_decrease_sat() Decrease the saturation for effect range LEDs. This wraps around at minimum saturation
rgb_matrix_decrease_sat_noeeprom() Decrease the saturation for effect range LEDs. This wraps around at minimum saturation (not written to EEPROM)
rgb_matrix_increase_val() Increase the value for effect range LEDs. This wraps around at maximum value
rgb_matrix_increase_val_noeeprom() Increase the value for effect range LEDs. This wraps around at maximum value (not written to EEPROM)
rgb_matrix_decrease_val() Decrease the value for effect range LEDs. This wraps around at minimum value
rgb_matrix_decrease_val_noeeprom() Decrease the value for effect range LEDs. This wraps around at minimum value (not written to EEPROM)
rgb_matrix_sethsv(h, s, v) Set LEDs to the given HSV value where h/s/v are between 0 and 255
rgb_matrix_sethsv_noeeprom(h, s, v) Set LEDs to the given HSV value where h/s/v are between 0 and 255 (not written to EEPROM)

Query Current Status :id=query-current-status

Function Description
rgb_matrix_is_enabled() Gets current on/off status
rgb_matrix_get_mode() Gets current mode
rgb_matrix_get_hue() Gets current hue
rgb_matrix_get_sat() Gets current sat
rgb_matrix_get_val() Gets current val
rgb_matrix_get_hsv() Gets hue, sat, and val and returns a HSV structure
rgb_matrix_get_speed() Gets current speed
rgb_matrix_get_suspend_state() Gets current suspend state

Callbacks :id=callbacks

Indicators :id=indicators

If you want to set custom indicators, such as an LED for Caps Lock, or layer indication, you can use the rgb_matrix_indicators_kb or rgb_matrix_indicators_user function for that:

void rgb_matrix_indicators_kb(void) {
    rgb_matrix_set_color(index, red, green, blue);
}

In addition, there are the advanced indicator functions. These are aimed at those with heavily customized displays, where rendering every LED per cycle is expensive. Such as some of the "drashna" layouts. This includes a special macro to help make this easier to use: RGB_MATRIX_INDICATOR_SET_COLOR(i, r, g, b).

void rgb_matrix_indicators_advanced_user(uint8_t led_min, uint8_t led_max) {
    RGB_MATRIX_INDICATOR_SET_COLOR(index, red, green, blue);
}

Suspended state :id=suspended-state

To use the suspend feature, make sure that #define RGB_DISABLE_WHEN_USB_SUSPENDED true is added to the config.h file.

Additionally add this to your <keyboard>.c:

void suspend_power_down_kb(void) {
    rgb_matrix_set_suspend_state(true);
    suspend_power_down_user();
}

void suspend_wakeup_init_kb(void) {
    rgb_matrix_set_suspend_state(false);
    suspend_wakeup_init_user();
}

or add this to your keymap.c:

void suspend_power_down_user(void) {
    rgb_matrix_set_suspend_state(true);
}

void suspend_wakeup_init_user(void) {
    rgb_matrix_set_suspend_state(false);
}