2021-05-14 18:12:37 +01:00
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#include "pimoroni_common.hpp"
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#include "pimoroni_i2c.hpp"
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namespace pimoroni {
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void I2C::init() {
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2021-05-21 15:01:11 +01:00
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i2c = pin_to_inst(sda);
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// TODO call pin_to_inst on sda and scl, and verify they are a valid i2c pin pair
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// TODO maybe also fall back to PIO i2c for non-standard pin combinations
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2021-05-14 18:12:37 +01:00
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2021-05-21 15:01:11 +01:00
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// Since it's easy to leave the I2C in a bad state when experimenting in the MicroPython REPL
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// this loop will find any I2C pins relevant to the current instance and reset them.
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for(auto pin = 0u; pin < 30; pin++) {
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if(pin_to_inst(pin) == i2c && gpio_get_function(pin) == GPIO_FUNC_I2C) {
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gpio_disable_pulls(pin);
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gpio_set_function(pin, GPIO_FUNC_NULL);
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}
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}
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2021-05-14 18:12:37 +01:00
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2021-05-21 15:01:11 +01:00
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i2c_init(i2c, baudrate);
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2021-05-14 18:12:37 +01:00
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gpio_set_function(sda, GPIO_FUNC_I2C); gpio_pull_up(sda);
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gpio_set_function(scl, GPIO_FUNC_I2C); gpio_pull_up(scl);
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}
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2021-05-21 15:01:11 +01:00
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i2c_inst_t* I2C::pin_to_inst(uint pin) {
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return ((pin >> 1) & 0b1) ? i2c1 : i2c0;
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}
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2021-05-14 18:12:37 +01:00
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/* Basic wrappers for devices using i2c functions directly */
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int I2C::write_blocking(uint8_t addr, const uint8_t *src, size_t len, bool nostop) {
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return i2c_write_blocking(i2c, addr, src, len, nostop);
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}
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int I2C::read_blocking(uint8_t addr, uint8_t *dst, size_t len, bool nostop) {
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return i2c_read_blocking(i2c, addr, dst, len, nostop);
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}
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/* Convenience functions for various common i2c operations */
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void I2C::reg_write_uint8(uint8_t address, uint8_t reg, uint8_t value) {
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uint8_t buffer[2] = {reg, value};
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i2c_write_blocking(i2c, address, buffer, 2, false);
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}
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uint8_t I2C::reg_read_uint8(uint8_t address, uint8_t reg) {
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uint8_t value;
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i2c_write_blocking(i2c, address, ®, 1, false);
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2021-05-17 11:08:23 +01:00
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i2c_read_blocking(i2c, address, (uint8_t *)&value, sizeof(uint8_t), false);
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return value;
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}
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uint16_t I2C::reg_read_uint16(uint8_t address, uint8_t reg) {
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uint16_t value;
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i2c_write_blocking(i2c, address, ®, 1, true);
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i2c_read_blocking(i2c, address, (uint8_t *)&value, sizeof(uint16_t), false);
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return value;
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}
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uint32_t I2C::reg_read_uint32(uint8_t address, uint8_t reg) {
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uint32_t value;
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i2c_write_blocking(i2c, address, ®, 1, true);
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i2c_read_blocking(i2c, address, (uint8_t *)&value, sizeof(uint32_t), false);
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return value;
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}
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int16_t I2C::reg_read_int16(uint8_t address, uint8_t reg) {
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int16_t value;
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i2c_write_blocking(i2c, address, ®, 1, true);
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i2c_read_blocking(i2c, address, (uint8_t *)&value, sizeof(int16_t), false);
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2021-05-14 18:12:37 +01:00
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return value;
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}
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2022-01-25 17:49:24 +00:00
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int I2C::write_bytes(uint8_t address, uint8_t reg, const uint8_t *buf, int len) {
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2021-05-14 18:12:37 +01:00
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uint8_t buffer[len + 1];
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buffer[0] = reg;
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for(int x = 0; x < len; x++) {
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buffer[x + 1] = buf[x];
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}
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return i2c_write_blocking(i2c, address, buffer, len + 1, false);
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};
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int I2C::read_bytes(uint8_t address, uint8_t reg, uint8_t *buf, int len) {
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i2c_write_blocking(i2c, address, ®, 1, true);
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i2c_read_blocking(i2c, address, buf, len, false);
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return len;
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};
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uint8_t I2C::get_bits(uint8_t address, uint8_t reg, uint8_t shift, uint8_t mask) {
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uint8_t value;
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read_bytes(address, reg, &value, 1);
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return value & (mask << shift);
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}
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void I2C::set_bits(uint8_t address, uint8_t reg, uint8_t shift, uint8_t mask) {
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uint8_t value;
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read_bytes(address, reg, &value, 1);
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value |= mask << shift;
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write_bytes(address, reg, &value, 1);
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}
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void I2C::clear_bits(uint8_t address, uint8_t reg, uint8_t shift, uint8_t mask) {
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uint8_t value;
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read_bytes(address, reg, &value, 1);
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value &= ~(mask << shift);
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write_bytes(address, reg, &value, 1);
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}
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}
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