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Add RGB matrix & LED Matrix support for IS31FL3742A, IS31FL3743A, IS31FL3745, IS31FL3746A (#14989)
Co-authored-by: Xelus22 <17491233+Xelus22@users.noreply.github.com>
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@ -67,6 +67,109 @@ const is31_led PROGMEM g_is31_leds[DRIVER_LED_TOTAL] = {
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Where `Cx_y` is the location of the LED in the matrix defined by [the datasheet](https://www.issi.com/WW/pdf/31FL3731.pdf) and the header file `drivers/led/issi/is31fl3731-simple.h`. The `driver` is the index of the driver you defined in your `config.h` (`0`, `1`, `2`, or `3` ).
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---
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### IS31FLCOMMON :id=is31flcommon
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There is basic support for addressable LED matrix lighting with a selection of I2C ISSI Lumissil LED controllers through a shared common driver. To enable it, add this to your `rules.mk`:
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```makefile
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LED_MATRIX_ENABLE = yes
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LED_MATRIX_DRIVER = <driver name>
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```
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Where `<driver name>` is the applicable LED driver chip as below
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| Driver Name | Data Sheet | Capability |
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|-------------|------------|------------|
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| `IS31FL3742A` | [datasheet](https://www.lumissil.com/assets/pdf/core/IS31FL3742A_DS.pdf) | 180 LED, 30x6 Matrix |
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| `ISSIFL3743A` | [datasheet](https://www.lumissil.com/assets/pdf/core/IS31FL3743A_DS.pdf) | 198 LED, 18x11 Matrix |
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| `IS31FL3745` | [datasheet](https://www.lumissil.com/assets/pdf/core/IS31FL3745_DS.pdf) | 144 LED, 18x8 Matrix |
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| `IS31FL3746A` | [datasheet](https://www.lumissil.com/assets/pdf/core/IS31FL3746A_DS.pdf) | 72 LED, 18x4 Matrix |
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You can use between 1 and 4 IC's. Do not specify `DRIVER_ADDR_<N>` define for IC's if not present on your keyboard. The `DRIVER_ADDR_1` default assumes that all Address pins on the controller have been connected to GND. Drivers that have SYNC functionality have the default settings to disable if 1 driver. If more than 1 drivers then `DRIVER_ADDR_1` will be set to Master and the remaiing ones set to Slave.
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Configure the hardware via your `config.h`:
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| Variable | Description | Default |
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|----------|-------------|---------|
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| `ISSI_TIMEOUT` | (Optional) How long to wait for i2c messages, in milliseconds | 100 |
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| `ISSI_PERSISTENCE` | (Optional) Retry failed messages this many times | 0 |
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| `DRIVER_COUNT` | (Required) How many LED driver IC's are present | |
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| `DRIVER_LED_TOTAL` | (Required) How many LED lights are present across all drivers | |
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| `DRIVER_ADDR_1` | (Optional) Address for the first LED driver | |
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| `DRIVER_ADDR_<N>` | (Required) Address for the additional LED drivers | |
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| `ISSI_SSR_<N>` | (Optional) Configuration for the Spread Spectrum Register | |
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| `ISSI_CONFIGURATION` | (Optional) Configuration for the Configuration Register | |
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| `ISSI_GLOBALCURRENT` | (Optional) Configuration for the Global Current Register | 0xFF |
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| `ISSI_PULLDOWNUP` | (Optional) Configuration for the Pull Up & Pull Down Register | |
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| `ISSI_TEMP` | (Optional) Configuration for the Tempature Register | |
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| `ISSI_PWM_ENABLE` | (Optional) Configuration for the PWM Enable Register | |
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| `ISSI_PWM_SET` | (Optional) Configuration for the PWM Setting Register | |
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| `ISSI_SCAL_LED ` | (Optional) Configuration for the LEDs Scaling Registers | 0xFF |
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| `ISSI_MANUAL_SCALING` | (Optional) If you wish to configure the Scaling Registers manually | |
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Defaults
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| Variable | IS31FL3742A | IS31FL3743A | IS31FL3745 | IS31FL3746 |
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|----------|-------------|-------------|------------|------------|
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| `DRIVER_ADDR_1` | 0b0110000 | 0b0100000 | 0b0100000 | 0b1100000 |
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| `ISSI_SSR_1` | 0x00 | 0x00 / 0x60 | 0x00 / 0xC0 | 0x00 |
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| `ISSI_SSR_<2-4>` | 0x00 | 0x40 | 0x80 | 0x00 |
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| `ISSI_CONFIGURATION` | 0x31 | 0x01 | 0x31 | 0x01 |
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| `ISSI_PULLDOWNUP` | 0x55 | 0x33 | 0x33 | 0x33 |
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| `ISSI_TEMP` | N/A | 0x00 | 0x00 | 0x00 |
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| `ISSI_PWM_ENABLE` | N/A | N/A | N/A | 0x00 |
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| `ISSI_PWM_SET` | 0x00 | N/A | N/A | 0x00 |
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Here is an example using 2 drivers.
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```c
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#define DRIVER_ADDR_2 0b0100001
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#define DRIVER_COUNT 2
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#define DRIVER_1_LED_TOTAL 66
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#define DRIVER_2_LED_TOTAL 42
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#define DRIVER_LED_TOTAL (DRIVER_1_LED_TOTAL + DRIVER_2_LED_TOTAL)
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```
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!> 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`.
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Currently only 4 drivers are supported, but it would be trivial to support for more. Note that using a combination of different drivers is not supported. All drivers must be of the same model.
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Define these arrays listing all the LEDs in your `<keyboard>.c`:
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```c
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const is31_led __flash g_is31_leds[DRIVER_LED_TOTAL] = {
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/* Refer to IS31 manual for these locations
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* driver
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* | LED address
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* | | */
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{ 0, CS1_SW1 },
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{ 0, CS2_SW1 },
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// ...
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}
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```
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Where `CSx_SWx` is the location of the LED in the matrix defined by the datasheet. The `driver` is the index of the driver you defined in your `config.h` (`0`, `1`, `2`, or `3` for now).
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`ISSI_MANUAL_SCALING` is used to override the Scaling for individual LED's. By default they will be set as per `ISSI_SCAL_LED`. In `config.h` set how many LED's you want to manually set scaling for.
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Eg `#define ISSI_MANUAL_SCALING 3`
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Then Define the array listing all the LEDs you want to override in your `<keyboard>.c`:
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```c
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const is31_led __flash g_is31_scaling[ISSI_MANUAL_SCALING] = {
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* LED Index
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* | Scaling
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* | | */
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{5, 120},
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{9, 120},
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....
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}
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```
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Where LED Index is the position of the LED in the `g_is31_leds` array. The `scaling` value between 0 and 255 to be written to the Scaling Register.
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---
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## Common Configuration :id=common-configuration
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