IS31FL3729 updates (#23109)

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Ryan 2024-02-22 17:51:49 +11:00 committed by GitHub
parent b25d4f62c1
commit c371cb3bc4
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4 changed files with 462 additions and 450 deletions

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@ -18,6 +18,7 @@
#include "is31fl3729-mono.h"
#include "i2c_master.h"
#include "gpio.h"
#include "wait.h"
#define IS31FL3729_PWM_REGISTER_COUNT 143
@ -39,26 +40,43 @@
# define IS31FL3729_GLOBAL_CURRENT 0x40
#endif
#ifndef IS31FL3729_PULLDOWNUP
# define IS31FL3729_PULLDOWNUP 0x33
#ifndef IS31FL3729_SW_PULLDOWN
# define IS31FL3729_SW_PULLDOWN IS31FL3729_SW_PULLDOWN_2K_OHM_SW_OFF
#endif
#ifndef IS31FL3729_CS_PULLUP
# define IS31FL3729_CS_PULLUP IS31FL3729_CS_PULLUP_2K_OHM_CS_OFF
#endif
#ifndef IS31FL3729_SPREAD_SPECTRUM
# define IS31FL3729_SPREAD_SPECTRUM IS31FL3729_SSP_DISABLE
# define IS31FL3729_SPREAD_SPECTRUM IS31FL3729_SPREAD_SPECTRUM_DISABLE
#endif
#ifndef IS31FL3729_SPREAD_SPECTRUM_RANGE
# define IS31FL3729_SPREAD_SPECTRUM_RANGE IS31FL3729_RNG_5_PERCENT
# define IS31FL3729_SPREAD_SPECTRUM_RANGE IS31FL3729_SPREAD_SPECTRUM_RANGE_5_PERCENT
#endif
#ifndef IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME
# define IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME IS31FL3729_CLT_1980_US
# define IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME_1980_US
#endif
#ifndef IS31FL3729_PWM_FREQUENCY
# define IS31FL3729_PWM_FREQUENCY IS31FL3729_PWM_FREQUENCY_32K_HZ
#endif
const uint8_t i2c_addresses[IS31FL3729_DRIVER_COUNT] = {
IS31FL3729_I2C_ADDRESS_1,
#ifdef IS31FL3729_I2C_ADDRESS_2
IS31FL3729_I2C_ADDRESS_2,
# ifdef IS31FL3729_I2C_ADDRESS_3
IS31FL3729_I2C_ADDRESS_3,
# ifdef IS31FL3729_I2C_ADDRESS_4
IS31FL3729_I2C_ADDRESS_4,
# endif
# endif
#endif
};
// These buffers match the PWM & scaling registers.
// Storing them like this is optimal for I2C transfers to the registers.
typedef struct is31fl3729_driver_t {
@ -75,27 +93,27 @@ is31fl3729_driver_t driver_buffers[IS31FL3729_DRIVER_COUNT] = {{
.scaling_buffer_dirty = false,
}};
void is31fl3729_write_register(uint8_t addr, uint8_t reg, uint8_t data) {
void is31fl3729_write_register(uint8_t index, uint8_t reg, uint8_t data) {
#if IS31FL3729_I2C_PERSISTENCE > 0
for (uint8_t i = 0; i < IS31FL3729_I2C_PERSISTENCE; i++) {
if (i2c_write_register(addr << 1, reg, &data, 1, IS31FL3729_I2C_TIMEOUT) == I2C_STATUS_SUCCESS) break;
if (i2c_write_register(i2c_addresses[index] << 1, reg, &data, 1, IS31FL3729_I2C_TIMEOUT) == I2C_STATUS_SUCCESS) break;
}
#else
i2c_write_register(addr << 1, reg, &data, 1, IS31FL3729_I2C_TIMEOUT);
i2c_write_register(i2c_addresses[index] << 1, reg, &data, 1, IS31FL3729_I2C_TIMEOUT);
#endif
}
void is31fl3729_write_pwm_buffer(uint8_t addr, uint8_t index) {
// Transmit PWM registers in 9 transfers of 16 bytes.
void is31fl3729_write_pwm_buffer(uint8_t index) {
// Transmit PWM registers in 11 transfers of 13 bytes.
// Iterate over the pwm_buffer contents at 16 byte intervals.
for (uint8_t i = 0; i <= IS31FL3729_PWM_REGISTER_COUNT; i += 16) {
// Iterate over the pwm_buffer contents at 13 byte intervals.
for (uint8_t i = 0; i <= IS31FL3729_PWM_REGISTER_COUNT; i += 13) {
#if IS31FL3729_I2C_PERSISTENCE > 0
for (uint8_t j = 0; j < IS31FL3729_I2C_PERSISTENCE; j++) {
if (i2c_write_register(addr << 1, i, driver_buffers[index].pwm_buffer + i, 16, IS31FL3729_I2C_TIMEOUT) == I2C_STATUS_SUCCESS) break;
if (i2c_write_register(i2c_addresses[index] << 1, IS31FL3729_REG_PWM + i, driver_buffers[index].pwm_buffer + i, 13, IS31FL3729_I2C_TIMEOUT) == I2C_STATUS_SUCCESS) break;
}
#else
i2c_write_register(addr << 1, i, driver_buffers[index].pwm_buffer + i, 16, IS31FL3729_I2C_TIMEOUT);
i2c_write_register(i2c_addresses[index] << 1, IS31FL3729_REG_PWM + i, driver_buffers[index].pwm_buffer + i, 13, IS31FL3729_I2C_TIMEOUT);
#endif
}
}
@ -103,53 +121,35 @@ void is31fl3729_write_pwm_buffer(uint8_t addr, uint8_t index) {
void is31fl3729_init_drivers(void) {
i2c_init();
is31fl3729_init(IS31FL3729_I2C_ADDRESS_1);
#if defined(IS31FL3729_I2C_ADDRESS_2)
is31fl3729_init(IS31FL3729_I2C_ADDRESS_2);
# if defined(IS31FL3729_I2C_ADDRESS_3)
is31fl3729_init(IS31FL3729_I2C_ADDRESS_3);
# if defined(IS31FL3729_I2C_ADDRESS_4)
is31fl3729_init(IS31FL3729_I2C_ADDRESS_4);
# endif
# endif
#if defined(IS31FL3729_SDB_PIN)
gpio_set_pin_output(IS31FL3729_SDB_PIN);
gpio_write_pin_high(IS31FL3729_SDB_PIN);
#endif
for (uint8_t i = 0; i < IS31FL3729_DRIVER_COUNT; i++) {
is31fl3729_init(i);
}
for (int i = 0; i < IS31FL3729_LED_COUNT; i++) {
is31fl3729_set_scaling_register(i, 0xFF);
}
is31fl3729_update_scaling_registers(IS31FL3729_I2C_ADDRESS_1, 0);
#if defined(IS31FL3729_I2C_ADDRESS_2)
is31fl3729_update_scaling_registers(IS31FL3729_I2C_ADDRESS_2, 1);
# if defined(IS31FL3729_I2C_ADDRESS_3)
is31fl3729_update_scaling_registers(IS31FL3729_I2C_ADDRESS_3, 2);
# if defined(IS31FL3729_I2C_ADDRESS_4)
is31fl3729_update_scaling_registers(IS31FL3729_I2C_ADDRESS_4, 3);
# endif
# endif
#endif
for (uint8_t i = 0; i < IS31FL3729_DRIVER_COUNT; i++) {
is31fl3729_update_scaling_registers(i);
}
}
void is31fl3729_init(uint8_t addr) {
void is31fl3729_init(uint8_t index) {
// In order to avoid the LEDs being driven with garbage data
// in the LED driver's PWM registers, shutdown is enabled last.
// Set up the mode and other settings, clear the PWM registers,
// then disable software shutdown.
// Set Pull up & Down for SWx CSy
is31fl3729_write_register(addr, IS31FL3729_REG_PULLDOWNUP, IS31FL3729_PULLDOWNUP);
// Set Spread Spectrum Register if applicable
is31fl3729_write_register(addr, IS31FL3729_REG_SPREAD_SPECTRUM, ((IS31FL3729_SPREAD_SPECTRUM & 0b1) << 4) | ((IS31FL3729_SPREAD_SPECTRUM_RANGE & 0b11) << 2) | (IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME & 0b11));
// Set PWM Frequency Register if applicable
is31fl3729_write_register(addr, IS31FL3729_REG_PWM_FREQUENCY, IS31FL3729_PWM_FREQUENCY);
// Set Golbal Current Control Register
is31fl3729_write_register(addr, IS31FL3729_REG_GLOBAL_CURRENT, IS31FL3729_GLOBAL_CURRENT);
// Set to Normal operation
is31fl3729_write_register(addr, IS31FL3729_REG_CONFIGURATION, IS31FL3729_CONFIGURATION);
is31fl3729_write_register(index, IS31FL3729_REG_PULLDOWNUP, ((IS31FL3729_SW_PULLDOWN & 0b111) << 4) | (IS31FL3729_CS_PULLUP & 0b111));
is31fl3729_write_register(index, IS31FL3729_REG_SPREAD_SPECTRUM, ((IS31FL3729_SPREAD_SPECTRUM & 0b1) << 4) | ((IS31FL3729_SPREAD_SPECTRUM_RANGE & 0b11) << 2) | (IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME & 0b11));
is31fl3729_write_register(index, IS31FL3729_REG_PWM_FREQUENCY, IS31FL3729_PWM_FREQUENCY);
is31fl3729_write_register(index, IS31FL3729_REG_GLOBAL_CURRENT, IS31FL3729_GLOBAL_CURRENT);
is31fl3729_write_register(index, IS31FL3729_REG_CONFIGURATION, IS31FL3729_CONFIGURATION);
// Wait 10ms to ensure the device has woken up.
wait_ms(10);
@ -188,18 +188,18 @@ void is31fl3729_set_scaling_register(uint8_t index, uint8_t value) {
driver_buffers[led.driver].scaling_buffer_dirty = true;
}
void is31fl3729_update_pwm_buffers(uint8_t addr, uint8_t index) {
void is31fl3729_update_pwm_buffers(uint8_t index) {
if (driver_buffers[index].pwm_buffer_dirty) {
is31fl3729_write_pwm_buffer(addr, index);
is31fl3729_write_pwm_buffer(index);
driver_buffers[index].pwm_buffer_dirty = false;
}
}
void is31fl3729_update_scaling_registers(uint8_t addr, uint8_t index) {
void is31fl3729_update_scaling_registers(uint8_t index) {
if (driver_buffers[index].scaling_buffer_dirty) {
for (uint8_t i = 0; i < IS31FL3729_SCALING_REGISTER_COUNT; i++) {
is31fl3729_write_register(addr, IS31FL3729_REG_SCALING + i, driver_buffers[index].scaling_buffer[i]);
is31fl3729_write_register(index, IS31FL3729_REG_SCALING + i, driver_buffers[index].scaling_buffer[i]);
}
driver_buffers[index].scaling_buffer_dirty = false;
@ -207,14 +207,7 @@ void is31fl3729_update_scaling_registers(uint8_t addr, uint8_t index) {
}
void is31fl3729_flush(void) {
is31fl3729_update_pwm_buffers(IS31FL3729_I2C_ADDRESS_1, 0);
#if defined(IS31FL3729_I2C_ADDRESS_2)
is31fl3729_update_pwm_buffers(IS31FL3729_I2C_ADDRESS_2, 1);
# if defined(IS31FL3729_I2C_ADDRESS_3)
is31fl3729_update_pwm_buffers(IS31FL3729_I2C_ADDRESS_3, 2);
# if defined(IS31FL3729_I2C_ADDRESS_4)
is31fl3729_update_pwm_buffers(IS31FL3729_I2C_ADDRESS_4, 3);
# endif
# endif
#endif
for (uint8_t i = 0; i < IS31FL3729_DRIVER_COUNT; i++) {
is31fl3729_update_pwm_buffers(i);
}
}

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@ -18,6 +18,7 @@
#include "is31fl3729.h"
#include "i2c_master.h"
#include "gpio.h"
#include "wait.h"
#define IS31FL3729_PWM_REGISTER_COUNT 143
@ -39,26 +40,43 @@
# define IS31FL3729_GLOBAL_CURRENT 0x40
#endif
#ifndef IS31FL3729_PULLDOWNUP
# define IS31FL3729_PULLDOWNUP 0x33
#ifndef IS31FL3729_SW_PULLDOWN
# define IS31FL3729_SW_PULLDOWN IS31FL3729_SW_PULLDOWN_2K_OHM_SW_OFF
#endif
#ifndef IS31FL3729_CS_PULLUP
# define IS31FL3729_CS_PULLUP IS31FL3729_CS_PULLUP_2K_OHM_CS_OFF
#endif
#ifndef IS31FL3729_SPREAD_SPECTRUM
# define IS31FL3729_SPREAD_SPECTRUM IS31FL3729_SSP_DISABLE
# define IS31FL3729_SPREAD_SPECTRUM IS31FL3729_SPREAD_SPECTRUM_DISABLE
#endif
#ifndef IS31FL3729_SPREAD_SPECTRUM_RANGE
# define IS31FL3729_SPREAD_SPECTRUM_RANGE IS31FL3729_RNG_5_PERCENT
# define IS31FL3729_SPREAD_SPECTRUM_RANGE IS31FL3729_SPREAD_SPECTRUM_RANGE_5_PERCENT
#endif
#ifndef IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME
# define IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME IS31FL3729_CLT_1980_US
# define IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME_1980_US
#endif
#ifndef IS31FL3729_PWM_FREQUENCY
# define IS31FL3729_PWM_FREQUENCY IS31FL3729_PWM_FREQUENCY_32K_HZ
#endif
const uint8_t i2c_addresses[IS31FL3729_DRIVER_COUNT] = {
IS31FL3729_I2C_ADDRESS_1,
#ifdef IS31FL3729_I2C_ADDRESS_2
IS31FL3729_I2C_ADDRESS_2,
# ifdef IS31FL3729_I2C_ADDRESS_3
IS31FL3729_I2C_ADDRESS_3,
# ifdef IS31FL3729_I2C_ADDRESS_4
IS31FL3729_I2C_ADDRESS_4,
# endif
# endif
#endif
};
// These buffers match the PWM & scaling registers.
// Storing them like this is optimal for I2C transfers to the registers.
typedef struct is31fl3729_driver_t {
@ -75,27 +93,27 @@ is31fl3729_driver_t driver_buffers[IS31FL3729_DRIVER_COUNT] = {{
.scaling_buffer_dirty = false,
}};
void is31fl3729_write_register(uint8_t addr, uint8_t reg, uint8_t data) {
void is31fl3729_write_register(uint8_t index, uint8_t reg, uint8_t data) {
#if IS31FL3729_I2C_PERSISTENCE > 0
for (uint8_t i = 0; i < IS31FL3729_I2C_PERSISTENCE; i++) {
if (i2c_write_register(addr << 1, reg, &data, 1, IS31FL3729_I2C_TIMEOUT) == I2C_STATUS_SUCCESS) break;
if (i2c_write_register(i2c_addresses[index] << 1, reg, &data, 1, IS31FL3729_I2C_TIMEOUT) == I2C_STATUS_SUCCESS) break;
}
#else
i2c_write_register(addr << 1, reg, &data, 1, IS31FL3729_I2C_TIMEOUT);
i2c_write_register(i2c_addresses[index] << 1, reg, &data, 1, IS31FL3729_I2C_TIMEOUT);
#endif
}
void is31fl3729_write_pwm_buffer(uint8_t addr, uint8_t index) {
// Transmit PWM registers in 9 transfers of 16 bytes.
void is31fl3729_write_pwm_buffer(uint8_t index) {
// Transmit PWM registers in 11 transfers of 13 bytes.
// Iterate over the pwm_buffer contents at 16 byte intervals.
for (uint8_t i = 0; i <= IS31FL3729_PWM_REGISTER_COUNT; i += 16) {
// Iterate over the pwm_buffer contents at 13 byte intervals.
for (uint8_t i = 0; i <= IS31FL3729_PWM_REGISTER_COUNT; i += 13) {
#if IS31FL3729_I2C_PERSISTENCE > 0
for (uint8_t j = 0; j < IS31FL3729_I2C_PERSISTENCE; j++) {
if (i2c_write_register(addr << 1, i, driver_buffers[index].pwm_buffer + i, 16, IS31FL3729_I2C_TIMEOUT) == I2C_STATUS_SUCCESS) break;
if (i2c_write_register(i2c_addresses[index] << 1, IS31FL3729_REG_PWM + i, driver_buffers[index].pwm_buffer + i, 13, IS31FL3729_I2C_TIMEOUT) == I2C_STATUS_SUCCESS) break;
}
#else
i2c_write_register(addr << 1, i, driver_buffers[index].pwm_buffer + i, 16, IS31FL3729_I2C_TIMEOUT);
i2c_write_register(i2c_addresses[index] << 1, IS31FL3729_REG_PWM + i, driver_buffers[index].pwm_buffer + i, 13, IS31FL3729_I2C_TIMEOUT);
#endif
}
}
@ -103,53 +121,35 @@ void is31fl3729_write_pwm_buffer(uint8_t addr, uint8_t index) {
void is31fl3729_init_drivers(void) {
i2c_init();
is31fl3729_init(IS31FL3729_I2C_ADDRESS_1);
#if defined(IS31FL3729_I2C_ADDRESS_2)
is31fl3729_init(IS31FL3729_I2C_ADDRESS_2);
# if defined(IS31FL3729_I2C_ADDRESS_3)
is31fl3729_init(IS31FL3729_I2C_ADDRESS_3);
# if defined(IS31FL3729_I2C_ADDRESS_4)
is31fl3729_init(IS31FL3729_I2C_ADDRESS_4);
# endif
# endif
#if defined(IS31FL3729_SDB_PIN)
gpio_set_pin_output(IS31FL3729_SDB_PIN);
gpio_write_pin_high(IS31FL3729_SDB_PIN);
#endif
for (uint8_t i = 0; i < IS31FL3729_DRIVER_COUNT; i++) {
is31fl3729_init(i);
}
for (int i = 0; i < IS31FL3729_LED_COUNT; i++) {
is31fl3729_set_scaling_register(i, 0xFF, 0xFF, 0xFF);
}
is31fl3729_update_scaling_registers(IS31FL3729_I2C_ADDRESS_1, 0);
#if defined(IS31FL3729_I2C_ADDRESS_2)
is31fl3729_update_scaling_registers(IS31FL3729_I2C_ADDRESS_2, 1);
# if defined(IS31FL3729_I2C_ADDRESS_3)
is31fl3729_update_scaling_registers(IS31FL3729_I2C_ADDRESS_3, 2);
# if defined(IS31FL3729_I2C_ADDRESS_4)
is31fl3729_update_scaling_registers(IS31FL3729_I2C_ADDRESS_4, 3);
# endif
# endif
#endif
for (uint8_t i = 0; i < IS31FL3729_DRIVER_COUNT; i++) {
is31fl3729_update_scaling_registers(i);
}
}
void is31fl3729_init(uint8_t addr) {
void is31fl3729_init(uint8_t index) {
// In order to avoid the LEDs being driven with garbage data
// in the LED driver's PWM registers, shutdown is enabled last.
// Set up the mode and other settings, clear the PWM registers,
// then disable software shutdown.
// Set Pull up & Down for SWx CSy
is31fl3729_write_register(addr, IS31FL3729_REG_PULLDOWNUP, IS31FL3729_PULLDOWNUP);
// Set Spread Spectrum Register if applicable
is31fl3729_write_register(addr, IS31FL3729_REG_SPREAD_SPECTRUM, ((IS31FL3729_SPREAD_SPECTRUM & 0b1) << 4) | ((IS31FL3729_SPREAD_SPECTRUM_RANGE & 0b11) << 2) | (IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME & 0b11));
// Set PWM Frequency Register if applicable
is31fl3729_write_register(addr, IS31FL3729_REG_PWM_FREQUENCY, IS31FL3729_PWM_FREQUENCY);
// Set Golbal Current Control Register
is31fl3729_write_register(addr, IS31FL3729_REG_GLOBAL_CURRENT, IS31FL3729_GLOBAL_CURRENT);
// Set to Normal operation
is31fl3729_write_register(addr, IS31FL3729_REG_CONFIGURATION, IS31FL3729_CONFIGURATION);
is31fl3729_write_register(index, IS31FL3729_REG_PULLDOWNUP, ((IS31FL3729_SW_PULLDOWN & 0b111) << 4) | (IS31FL3729_CS_PULLUP & 0b111));
is31fl3729_write_register(index, IS31FL3729_REG_SPREAD_SPECTRUM, ((IS31FL3729_SPREAD_SPECTRUM & 0b1) << 4) | ((IS31FL3729_SPREAD_SPECTRUM_RANGE & 0b11) << 2) | (IS31FL3729_SPREAD_SPECTRUM_CYCLE_TIME & 0b11));
is31fl3729_write_register(index, IS31FL3729_REG_PWM_FREQUENCY, IS31FL3729_PWM_FREQUENCY);
is31fl3729_write_register(index, IS31FL3729_REG_GLOBAL_CURRENT, IS31FL3729_GLOBAL_CURRENT);
is31fl3729_write_register(index, IS31FL3729_REG_CONFIGURATION, IS31FL3729_CONFIGURATION);
// Wait 10ms to ensure the device has woken up.
wait_ms(10);
@ -194,18 +194,18 @@ void is31fl3729_set_scaling_register(uint8_t index, uint8_t red, uint8_t green,
driver_buffers[led.driver].scaling_buffer_dirty = true;
}
void is31fl3729_update_pwm_buffers(uint8_t addr, uint8_t index) {
void is31fl3729_update_pwm_buffers(uint8_t index) {
if (driver_buffers[index].pwm_buffer_dirty) {
is31fl3729_write_pwm_buffer(addr, index);
is31fl3729_write_pwm_buffer(index);
driver_buffers[index].pwm_buffer_dirty = false;
}
}
void is31fl3729_update_scaling_registers(uint8_t addr, uint8_t index) {
void is31fl3729_update_scaling_registers(uint8_t index) {
if (driver_buffers[index].scaling_buffer_dirty) {
for (uint8_t i = 0; i < IS31FL3729_SCALING_REGISTER_COUNT; i++) {
is31fl3729_write_register(addr, IS31FL3729_REG_SCALING + i, driver_buffers[index].scaling_buffer[i]);
is31fl3729_write_register(index, IS31FL3729_REG_SCALING + i, driver_buffers[index].scaling_buffer[i]);
}
driver_buffers[index].scaling_buffer_dirty = false;
@ -213,14 +213,7 @@ void is31fl3729_update_scaling_registers(uint8_t addr, uint8_t index) {
}
void is31fl3729_flush(void) {
is31fl3729_update_pwm_buffers(IS31FL3729_I2C_ADDRESS_1, 0);
#if defined(IS31FL3729_I2C_ADDRESS_2)
is31fl3729_update_pwm_buffers(IS31FL3729_I2C_ADDRESS_2, 1);
# if defined(IS31FL3729_I2C_ADDRESS_3)
is31fl3729_update_pwm_buffers(IS31FL3729_I2C_ADDRESS_3, 2);
# if defined(IS31FL3729_I2C_ADDRESS_4)
is31fl3729_update_pwm_buffers(IS31FL3729_I2C_ADDRESS_4, 3);
# endif
# endif
#endif
for (uint8_t i = 0; i < IS31FL3729_DRIVER_COUNT; i++) {
is31fl3729_update_pwm_buffers(i);
}
}

File diff suppressed because it is too large Load Diff