mirror of
https://github.com/tinygo-org/drivers.git
synced 2026-07-26 10:38:41 +00:00
mcp23017: implement pin toggling
Also add an example for using multiple devices.
This commit is contained in:
@@ -85,6 +85,8 @@ smoke-test:
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@md5sum ./build/test.hex
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tinygo build -size short -o ./build/test.hex -target=itsybitsy-m0 ./examples/mcp23017/main.go
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@md5sum ./build/test.hex
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tinygo build -size short -o ./build/test.hex -target=itsybitsy-m0 ./examples/mcp23017-multiple/main.go
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@md5sum ./build/test.hex
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tinygo build -size short -o ./build/test.hex -target=itsybitsy-m0 ./examples/mcp3008/main.go
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@md5sum ./build/test.hex
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tinygo build -size short -o ./build/test.hex -target=microbit ./examples/microbitmatrix/main.go
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@@ -0,0 +1,45 @@
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// This example demonstrates putting several mcp23017 devices together into
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// a single virtual I/O array.
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package main
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import (
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"machine"
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"tinygo.org/x/drivers/mcp23017"
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)
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func main() {
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err := machine.I2C0.Configure(machine.I2CConfig{
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Frequency: machine.TWI_FREQ_400KHZ,
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})
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if err != nil {
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panic(err)
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}
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// Assume the devices are at addresses 0x20, 0x21
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dev, err := mcp23017.NewI2CDevices(machine.I2C0, 0x20, 0x21)
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if err != nil {
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panic(err)
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}
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// Configure pin 0 for input and all the others for output.
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if err := dev.SetModes([]mcp23017.PinMode{
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mcp23017.Input | mcp23017.Pullup,
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mcp23017.Output,
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}); err != nil {
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panic(err)
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}
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input := dev.Pin(0)
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// Make a mask that represents all the output pins.
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// Note that this leverages the driver behaviour which replicates the highest bit in
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// the last slice element (1 in this case) to all other pins
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outputMask := mcp23017.PinSlice{^mcp23017.Pins(1 << 0)} // All except pin 0
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inputVal, err := input.Get()
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if err != nil {
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panic(err)
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}
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println("input value: ", inputVal)
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// Set the values of all the output pins.
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err = dev.SetPins(mcp23017.PinSlice{0b1011011_01101110, 0b11111101_11100110}, outputMask)
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if err != nil {
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panic(err)
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}
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}
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@@ -154,6 +154,15 @@ func (d *Device) SetPins(pins, mask Pins) error {
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return nil
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}
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// TogglePins inverts the values on all pins for
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// which mask is high.
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func (d *Device) TogglePins(mask Pins) error {
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if mask == 0 {
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return nil
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}
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return d.SetPins(^d.pins, mask)
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}
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// Pin returns a Pin representing the given pin number (from 0 to 15).
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// Pin numbers from 0 to 7 represent port A pins 0 to 7.
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// Pin numbers from 8 to 15 represent port B pins 0 to 7.
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@@ -295,6 +304,11 @@ func (p Pin) Low() error {
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return p.Set(false)
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}
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// Toggle inverts the value output on the pin.
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func (p Pin) Toggle() error {
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return p.dev.TogglePins(p.mask)
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}
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// Get returns the current value of the given pin.
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func (p Pin) Get() (bool, error) {
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// TODO this reads 2 registers when we could read just one.
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@@ -357,6 +371,11 @@ func (p *Pins) Low(pin int) {
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*p &^= pinMask(pin)
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}
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// Toggle inverts the value of the given pin.
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func (p *Pins) Toggle(pin int) {
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*p ^= pinMask(pin)
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}
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func pinMask(pin int) Pins {
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return 1 << pin
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}
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@@ -50,6 +50,25 @@ func TestSetPins(t *testing.T) {
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c.Assert(pins, qt.Equals, Pins(0b01010000_00011010))
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}
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func TestTogglePins(t *testing.T) {
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c := qt.New(t)
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bus := newBus(c)
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fdev := bus.addDevice(0x20)
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fdev.Registers[rGPIO] = 0b00001111
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fdev.Registers[rGPIO|portB] = 0b11110000
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dev, err := NewI2C(bus, 0x20)
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c.Assert(err, qt.IsNil)
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pins, err := dev.GetPins()
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c.Assert(err, qt.IsNil)
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c.Assert(pins, qt.Equals, Pins(0b11110000_00001111))
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err = dev.TogglePins(0b10101010_01010101)
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c.Assert(err, qt.IsNil)
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pins, err = dev.GetPins()
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c.Assert(err, qt.IsNil)
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c.Assert(pins, qt.Equals, Pins(0b01011010_01011010))
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}
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func TestSetGetModes(t *testing.T) {
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c := qt.New(t)
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bus := newBus(c)
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@@ -108,6 +127,24 @@ func TestPinSetGet(t *testing.T) {
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c.Assert(fdev.Registers[rGPIO], qt.Equals, uint8(0))
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}
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func TestPinToggle(t *testing.T) {
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c := qt.New(t)
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bus := newBus(c)
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fdev := bus.addDevice(0x20)
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dev, err := NewI2C(bus, 0x20)
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c.Assert(err, qt.IsNil)
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pin := dev.Pin(1)
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v, err := pin.Get()
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c.Assert(err, qt.Equals, nil)
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c.Assert(v, qt.Equals, false)
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err = pin.Toggle()
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c.Assert(err, qt.Equals, nil)
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c.Assert(fdev.Registers[rGPIO], qt.Equals, uint8(0b10))
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err = pin.Toggle()
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c.Assert(err, qt.Equals, nil)
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c.Assert(fdev.Registers[rGPIO], qt.Equals, uint8(0))
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}
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func TestPinMode(t *testing.T) {
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c := qt.New(t)
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bus := newBus(c)
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@@ -117,6 +117,22 @@ func (devs Devices) SetPins(pins, mask PinSlice) error {
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return nil
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}
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// TogglePins inverts the values on all pins for
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// which mask is high.
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func (devs Devices) TogglePins(mask PinSlice) error {
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defaultMask := mask.extra()
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for i, dev := range devs {
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devMask := defaultMask
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if i < len(mask) {
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devMask = mask[i]
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}
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if err := dev.TogglePins(devMask); err != nil {
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return err
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}
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}
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return nil
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}
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// PinSlice represents an arbitrary nunber of pins, each element corresponding
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// to the pins for one device. The value of the highest numbered pin in the
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// slice is extended to all other pins beyond the end of the slice.
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@@ -154,6 +170,11 @@ func (pins PinSlice) Low(pin int) {
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pins[pin/PinCount].Low(pin % PinCount)
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}
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// Toggle inverts the value of the given pin.
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func (pins PinSlice) Toggle(pin int) {
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pins[pin/PinCount].Toggle(pin % PinCount)
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}
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// Ensure checks that pins has enough space to store
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// at least length pins. If it does, it returns pins unchanged.
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// Otherwise, it returns pins with elements appended as needed,
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@@ -102,6 +102,26 @@ func TestDevicesSetPinsMask(t *testing.T) {
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c.Assert(pins, qt.DeepEquals, PinSlice{0b01010011_10101101, 0b01010010_10101100})
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}
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func TestDevicesTogglePins(t *testing.T) {
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c := qt.New(t)
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bus := newBus(c)
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bus.addDevice(0x20)
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bus.addDevice(0x21)
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devs, err := NewI2CDevices(bus, 0x20, 0x21)
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c.Assert(err, qt.IsNil)
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mask := make(PinSlice, 2)
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mask.High(0)
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mask.High(16)
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err = devs.TogglePins(mask)
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c.Assert(err, qt.IsNil)
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pins := make(PinSlice, 2)
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err = devs.GetPins(pins)
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c.Assert(err, qt.IsNil)
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c.Assert(pins, qt.DeepEquals, PinSlice{0b00000000_00000001, 0b00000000_00000001})
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}
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func TestDevicesSetGetModes(t *testing.T) {
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c := qt.New(t)
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bus := newBus(c)
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@@ -163,4 +183,6 @@ func TestPinSlice(t *testing.T) {
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c.Assert(pins.Get(16), qt.Equals, false)
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pins.High(16)
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c.Assert(pins.Get(16), qt.Equals, true)
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pins.Toggle(16)
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c.Assert(pins.Get(16), qt.Equals, false)
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}
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