mirror of
https://github.com/tinygo-org/drivers.git
synced 2026-07-26 10:38:41 +00:00
remove last traces of legacy I2C calls
This commit is contained in:
+54
-39
@@ -8,17 +8,16 @@ import (
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"time"
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"tinygo.org/x/drivers"
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"tinygo.org/x/drivers/internal/legacy"
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)
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// Device wraps an I2C connection to a APDS-9960 device.
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type Device struct {
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bus drivers.I2C
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_txerr error
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gesture gestureData
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buf [8]byte
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Address uint8
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mode uint8
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gesture gestureData
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buf [32]byte
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_txerr error
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}
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// Configuration for APDS-9960 device.
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@@ -48,17 +47,7 @@ type gestureData struct {
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received bool
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}
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// for enabling various device function
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type enableConfig struct {
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GEN bool
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PIEN bool
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AIEN bool
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WEN bool
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PEN bool
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AEN bool
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PON bool
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}
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// for enabling various device functions.
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type encfg uint8
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// data := []byte{gen<<6 | pien<<5 | aien<<4 | wen<<3 | pen<<2 | aen<<1 | pon}
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@@ -113,7 +102,7 @@ func (d *Device) DisableAll() error {
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return err
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}
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// SetProximityPulse sets proximity pulse length (4, 8, 16, 32) and count (1~64)
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// SetProximityPulse sets proximity pulse length (4, 8, 16, 32) and count (1..64)
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// default: 16, 64
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func (d *Device) SetProximityPulse(length, count uint8) error {
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d.txNew()
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@@ -121,7 +110,7 @@ func (d *Device) SetProximityPulse(length, count uint8) error {
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return d.txErr()
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}
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// SetGesturePulse sets gesture pulse length (4, 8, 16, 32) and count (1~64)
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// SetGesturePulse sets gesture pulse length (4, 8, 16, 32) and count (1..64)
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// default: 16, 64
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func (d *Device) SetGesturePulse(length, count uint8) error {
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d.txNew()
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@@ -129,8 +118,8 @@ func (d *Device) SetGesturePulse(length, count uint8) error {
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return d.txErr()
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}
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// SetADCIntegrationCycles sets ALS/color ADC internal integration cycles (1~256, 1 cycle = 2.78 ms)
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// default: 4 (~10 ms)
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// SetADCIntegrationCycles sets ALS/color ADC internal integration cycles (1..256, 1 cycle = 2.78 ms)
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// default: 4 (approx. 10 ms)
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func (d *Device) SetADCIntegrationCycles(cycles uint16) error {
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if cycles > 256 {
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cycles = 256
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@@ -168,13 +157,13 @@ func (d *Device) LEDBoost(percent uint16) error {
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return d.txErr()
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}
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// Setthreshold sets threshold (0~255) for detecting gestures
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// Setthreshold sets threshold (0..255) for detecting gestures
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// default: 30
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func (d *Device) Setthreshold(t uint8) {
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d.gesture.threshold = t
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}
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// Setsensitivity sets sensivity (0~100) for detecting gestures
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// Setsensitivity sets sensivity (0..100) for detecting gestures
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// default: 20
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func (d *Device) Setsensitivity(s uint8) {
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if s > 100 {
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@@ -198,6 +187,14 @@ func (d *Device) EnableProximity() error {
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return err
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}
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// Err returns the current error state of the device if encountered during I2C communication.
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// After a call to Err the error is cleared.
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func (d *Device) Err() error {
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err := d.txErr()
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d.txNew()
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return err
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}
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// ProximityAvailable reports if proximity data is available
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func (d *Device) ProximityAvailable() bool {
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if d.mode != MODE_PROXIMITY {
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@@ -207,7 +204,7 @@ func (d *Device) ProximityAvailable() bool {
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return err == nil && status.PVALID()
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}
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// ReadProximity reads proximity data (0~255)
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// ReadProximity reads proximity data (0..255)
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func (d *Device) ReadProximity() (proximity int32) {
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if d.mode != MODE_PROXIMITY {
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return 0
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@@ -218,11 +215,14 @@ func (d *Device) ReadProximity() (proximity int32) {
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}
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// EnableColor starts the color engine
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func (d *Device) EnableColor() error {
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func (d *Device) EnableColor() (err error) {
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if d.mode != MODE_NONE {
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d.DisableAll()
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err = d.DisableAll()
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if err != nil {
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return err
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}
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}
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err := d.enable(enPON | enAEN | enWEN)
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err = d.enable(enPON | enAEN | enWEN)
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if err == nil {
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d.mode = MODE_COLOR
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}
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@@ -300,11 +300,14 @@ func (d *Device) GestureAvailable() bool {
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data := d.buf[:]
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// read up, down, left and right proximity data from FIFO
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var dataSets [32][4]uint8
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const numAddrs = APDS9960_GFIFO_R_REG - APDS9960_GFIFO_U_REG + 1
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for i := uint8(0); i < availableDataSets; i++ {
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legacy.ReadRegister(d.bus, d.Address, APDS9960_GFIFO_U_REG, data[:1])
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legacy.ReadRegister(d.bus, d.Address, APDS9960_GFIFO_D_REG, data[1:2])
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legacy.ReadRegister(d.bus, d.Address, APDS9960_GFIFO_L_REG, data[2:3])
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legacy.ReadRegister(d.bus, d.Address, APDS9960_GFIFO_R_REG, data[3:4])
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for j := uint8(0); j < numAddrs; j++ {
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data[j] = d.txRead8(j + APDS9960_GFIFO_U_REG)
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}
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if d.txErr() != nil {
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return false
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}
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for j := uint8(0); j < 4; j++ {
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dataSets[i][j] = data[j]
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}
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@@ -366,9 +369,11 @@ func (d *Device) ReadGesture() (gesture int32) {
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// private functions
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func (d *Device) configureDevice(cfg Configuration) {
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d.DisableAll() // turn off everything
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func (d *Device) configureDevice(cfg Configuration) error {
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err := d.DisableAll() // turn off everything
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if err != nil {
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return err
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}
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// "default" settings
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if cfg.ProximityPulseLength == 0 {
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cfg.ProximityPulseLength = 16
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@@ -401,14 +406,23 @@ func (d *Device) configureDevice(cfg Configuration) {
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d.gesture.sensitivity = 20
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}
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d.SetProximityPulse(cfg.ProximityPulseLength, cfg.ProximityPulseCount)
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d.SetGesturePulse(cfg.GesturePulseLength, cfg.GesturePulseCount)
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d.SetGains(cfg.ProximityGain, cfg.GestureGain, cfg.ColorGain)
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d.SetADCIntegrationCycles(cfg.ADCIntegrationCycles)
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if cfg.LEDBoost > 0 {
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d.LEDBoost(cfg.LEDBoost)
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err = d.SetProximityPulse(cfg.ProximityPulseLength, cfg.ProximityPulseCount)
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if err != nil {
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return err
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}
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err = d.SetGesturePulse(cfg.GesturePulseLength, cfg.GesturePulseCount)
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if err != nil {
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return err
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}
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err = d.SetGains(cfg.ProximityGain, cfg.GestureGain, cfg.ColorGain)
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if err != nil {
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return err
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}
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err = d.SetADCIntegrationCycles(cfg.ADCIntegrationCycles)
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if err == nil && cfg.LEDBoost > 0 {
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err = d.LEDBoost(cfg.LEDBoost)
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}
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return err
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}
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func (d *Device) enable(cfg encfg) error {
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@@ -434,6 +448,7 @@ func (d *Device) txRead8(addr uint8) uint8 {
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d._txerr = d.bus.Tx(uint16(d.Address), d.buf[:1], d.buf[1:2])
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return d.buf[1]
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}
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func (d *Device) txWrite8(addr uint8, val uint8) {
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if d._txerr != nil {
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return
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@@ -8,33 +8,42 @@ import (
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)
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func main() {
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// Sleep to catch any errors through the serial monitor.
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time.Sleep(1000 * time.Millisecond)
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bus := machine.I2C0
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// use Nano 33 BLE Sense's internal I2C bus
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machine.I2C1.Configure(machine.I2CConfig{
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SCL: machine.SCL1_PIN,
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SDA: machine.SDA1_PIN,
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Frequency: machine.TWI_FREQ_400KHZ,
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err := bus.Configure(machine.I2CConfig{
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SCL: machine.GP1,
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SDA: machine.GP0,
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Frequency: 400 * machine.KHz,
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})
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if err != nil {
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panic(err.Error())
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}
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sensor := apds9960.New(machine.I2C1)
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sensor := apds9960.New(bus)
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// use default settings
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sensor.Configure(apds9960.Configuration{})
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if !sensor.Connected() {
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println("APDS-9960 not connected!")
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println("err:", sensor.Err())
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return
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}
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sensor.EnableProximity() // enable proximity engine
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println("APDS connected!")
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err = sensor.EnableProximity() // enable proximity engine
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if err != nil {
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panic(err.Error())
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}
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for {
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if sensor.ProximityAvailable() {
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p := sensor.ReadProximity()
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println("Proximity:", p)
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}
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if err := sensor.Err(); err != nil {
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println(err.Error())
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}
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time.Sleep(time.Millisecond * 100)
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}
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}
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