Files
drivers/seesaw/seesaw.go
2023-12-03 21:39:00 -05:00

128 lines
3.6 KiB
Go

// Package seesaw provides a driver implementation to communicate with Adafruit's seesaw chip.
// There are many Adafruit boards that use a seesaw. Soil moisture sensors, LED keyboards, etc.
//
// - Documentation: https://learn.adafruit.com/adafruit-seesaw-atsamd09-breakout/overview
// - Arduino driver: https://github.com/adafruit/Adafruit_Seesaw
// - Seesaw firmware: https://github.com/adafruit/seesaw
package seesaw
import (
"errors"
"strconv"
"time"
"tinygo.org/x/drivers"
)
// DefaultAddress is the I2C address the chips have by default. Most boards
// built on top of it come with their own respective default addresses.
const DefaultAddress = 0x49
// DefaultReadDelay is an empirically determined delay used when reading from the device,
// the one from the official library seems to be too short (250us)
const DefaultReadDelay = 100 * time.Millisecond
const (
seesawHwIdCodeSAMD09 = 0x55 // HW ID code for SAMD09
seesawHwIdCodeTINY8x7 = 0x87 // HW ID code for ATtiny817
)
type Device struct {
bus drivers.I2C
Address uint16
ReadDelay time.Duration
}
func New(bus drivers.I2C) *Device {
return &Device{
bus: bus,
Address: DefaultAddress,
ReadDelay: DefaultReadDelay,
}
}
// SoftReset triggers a soft-reset of seesaw and waits for it to be ready
func (d *Device) SoftReset() error {
err := d.WriteRegister(ModuleStatusBase, FunctionStatusSwrst, 0xFF)
if err != nil {
return errors.New("failed sending soft-reset command: " + err.Error())
}
return d.waitForReset()
}
func (d *Device) waitForReset() error {
// give the device a little bit of time to reset
time.Sleep(time.Second)
var lastErr error
tries := 0
for ; tries < 20; tries++ {
_, err := d.readHardwareID()
if err == nil {
return nil
}
lastErr = err
time.Sleep(20 * time.Millisecond)
}
return errors.New("failed to wait for device to start: " + lastErr.Error())
}
func (d *Device) readHardwareID() (byte, error) {
hwid, err := d.ReadRegister(ModuleStatusBase, FunctionStatusHwId)
if err != nil {
return 0, err
}
if hwid == seesawHwIdCodeSAMD09 || hwid == seesawHwIdCodeTINY8x7 {
return hwid, nil
}
return 0, errors.New("unknown hardware ID: " + strconv.FormatUint(uint64(hwid), 16))
}
// WriteRegister writes a single seesaw register
func (d *Device) WriteRegister(module ModuleBaseAddress, function FunctionAddress, value byte) error {
var buf [3]byte
buf[0] = byte(module)
buf[1] = byte(function)
buf[2] = value
return d.bus.Tx(d.Address, buf[:], nil)
}
// ReadRegister reads a single register from seesaw
func (d *Device) ReadRegister(module ModuleBaseAddress, function FunctionAddress) (byte, error) {
var buf [1]byte
err := d.Read(module, function, buf[:])
if err != nil {
return 0, err
}
return buf[0], nil
}
// Read reads a number of bytes from the device after sending the read command and waiting 'ReadDelay'. The delays depend
// on the module and function and are documented in the seesaw datasheet
func (d *Device) Read(module ModuleBaseAddress, function FunctionAddress, buf []byte) error {
var cmd [2]byte
cmd[0] = byte(module)
cmd[1] = byte(function)
err := d.bus.Tx(d.Address, cmd[:], nil)
if err != nil {
return err
}
// This is needed for the client seesaw device to flush its RX buffer and process the command.
// See seesaw datasheet for timings for specific modules.
time.Sleep(d.ReadDelay)
return d.bus.Tx(d.Address, nil, buf)
}
// Write writes data into a given module and function
func (d *Device) Write(module ModuleBaseAddress, function FunctionAddress, buf []byte) error {
cmd := []byte{byte(module), byte(function)}
data := append(cmd, buf...)
return d.bus.Tx(d.Address, data, nil)
}