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5 Commits

Author SHA1 Message Date
soypat 5c305f9b6f ssd1306: fix thumby function arguments 2025-07-02 11:16:40 -03:00
soypat 1e4110b5a2 add thumby case to smoke tests 2025-07-02 11:05:47 -03:00
soypat e286861661 fix smoke tests 2025-07-02 11:05:07 -03:00
soypat 589bf19b01 fix bug 2025-07-02 10:51:29 -03:00
soypat ff4d15cea9 this is what I meant 2025-07-02 10:44:06 -03:00
35 changed files with 304 additions and 341 deletions
+2 -1
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@@ -5,6 +5,7 @@ package apa102 // import "tinygo.org/x/drivers/apa102"
import (
"image/color"
"machine"
"tinygo.org/x/drivers"
)
@@ -36,7 +37,7 @@ func New(b drivers.SPI) *Device {
// NewSoftwareSPI returns a new APA102 driver that will use a software based
// implementation of the SPI protocol.
func NewSoftwareSPI(sckPin, sdoPin drivers.Pin, delay uint32) *Device {
func NewSoftwareSPI(sckPin, sdoPin machine.Pin, delay uint32) *Device {
return New(&bbSPI{SCK: sckPin, SDO: sdoPin, Delay: delay})
}
+6 -7
View File
@@ -1,8 +1,6 @@
package apa102
import (
"tinygo.org/x/drivers"
)
import "machine"
// bbSPI is a dumb bit-bang implementation of SPI protocol that is hardcoded
// to mode 0 and ignores trying to receive data. Just enough for the APA102.
@@ -10,14 +8,15 @@ import (
// most purposes other than the APA102 package. It might be desirable to make
// this more generic and include it in the TinyGo "machine" package instead.
type bbSPI struct {
SCK drivers.Pin
SDO drivers.Pin
SCK machine.Pin
SDO machine.Pin
Delay uint32
}
// Configure sets the SCK and SDO pins to low.
// Note that the SCK and SDO pins must already be configured as outputs.
// Configure sets up the SCK and SDO pins as outputs and sets them low
func (s *bbSPI) Configure() {
s.SCK.Configure(machine.PinConfig{Mode: machine.PinOutput})
s.SDO.Configure(machine.PinConfig{Mode: machine.PinOutput})
s.SCK.Low()
s.SDO.Low()
if s.Delay == 0 {
+7 -4
View File
@@ -1,6 +1,7 @@
package bmi160
import (
"machine"
"time"
"tinygo.org/x/drivers"
@@ -10,7 +11,7 @@ import (
// also an I2C interface, but it is not yet supported.
type DeviceSPI struct {
// Chip select pin
CSB drivers.Pin
CSB machine.Pin
buf [7]byte
@@ -21,16 +22,18 @@ type DeviceSPI struct {
// NewSPI returns a new device driver. The pin and SPI interface are not
// touched, provide a fully configured SPI object and call Configure to start
// using this device.
func NewSPI(csb drivers.Pin, spi drivers.SPI) *DeviceSPI {
func NewSPI(csb machine.Pin, spi drivers.SPI) *DeviceSPI {
return &DeviceSPI{
CSB: csb, // chip select
Bus: spi,
}
}
// Configure configures the BMI160 for use. The CSB pin anf the SPI interface
// should be configured already. This function configures the BMI160 only.
// Configure configures the BMI160 for use. It configures the CSB pin and
// configures the BMI160, but it does not configure the SPI interface (it is
// assumed to be up and running).
func (d *DeviceSPI) Configure() error {
d.CSB.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.CSB.High()
// The datasheet recommends doing a register read from address 0x7F to get
+4 -4
View File
@@ -2,20 +2,20 @@
package buzzer // import "tinygo.org/x/drivers/buzzer"
import (
"time"
"machine"
"tinygo.org/x/drivers"
"time"
)
// Device wraps a GPIO connection to a buzzer.
type Device struct {
pin drivers.Pin
pin machine.Pin
High bool
BPM float64
}
// New returns a new buzzer driver given which pin to use
func New(pin drivers.Pin) Device {
func New(pin machine.Pin) Device {
return Device{
pin: pin,
High: false,
+9 -8
View File
@@ -3,9 +3,8 @@ package easystepper // import "tinygo.org/x/drivers/easystepper"
import (
"errors"
"machine"
"time"
"tinygo.org/x/drivers"
)
// StepMode determines the coil sequence used to perform a single step
@@ -34,7 +33,7 @@ func (sm StepMode) stepCount() uint {
// DeviceConfig contains the configuration data for a single easystepper driver
type DeviceConfig struct {
// Pin1 ... Pin4 determines the pins to configure and use for the device
Pin1, Pin2, Pin3, Pin4 drivers.Pin
Pin1, Pin2, Pin3, Pin4 machine.Pin
// StepCount is the number of steps required to perform a full revolution of the stepper motor
StepCount uint
// RPM determines the speed of the stepper motor in 'Revolutions per Minute'
@@ -47,12 +46,12 @@ type DeviceConfig struct {
type DualDeviceConfig struct {
DeviceConfig
// Pin5 ... Pin8 determines the pins to configure and use for the second device
Pin5, Pin6, Pin7, Pin8 drivers.Pin
Pin5, Pin6, Pin7, Pin8 machine.Pin
}
// Device holds the pins and the delay between steps
type Device struct {
pins [4]drivers.Pin
pins [4]machine.Pin
stepDelay time.Duration
stepNumber uint8
stepMode StepMode
@@ -69,15 +68,17 @@ func New(config DeviceConfig) (*Device, error) {
return nil, errors.New("config.StepCount and config.RPM must be > 0")
}
return &Device{
pins: [4]drivers.Pin{config.Pin1, config.Pin2, config.Pin3, config.Pin4},
pins: [4]machine.Pin{config.Pin1, config.Pin2, config.Pin3, config.Pin4},
stepDelay: time.Second * 60 / time.Duration((config.StepCount * config.RPM)),
stepMode: config.Mode,
}, nil
}
// Configure does nothing, as it assumes that the pins of the Device have already
// been configured by the user as outputs.
// Configure configures the pins of the Device
func (d *Device) Configure() {
for _, pin := range d.pins {
pin.Configure(machine.PinConfig{Mode: machine.PinOutput})
}
}
// NewDual returns a new dual easystepper driver given 8 pins, number of steps and rpm
-60
View File
@@ -1,60 +0,0 @@
// This example shows how to use 128x64 display over I2C
// Tested on Seeeduino XIAO Expansion Board https://wiki.seeedstudio.com/Seeeduino-XIAO-Expansion-Board/
//
// According to manual, I2C address of the display is 0x78, but that's 8-bit address.
// TinyGo operates on 7-bit addresses and respective 7-bit address would be 0x3C, which we use below.
//
// To learn more about different types of I2C addresses, please see following page
// https://www.totalphase.com/support/articles/200349176-7-bit-8-bit-and-10-bit-I2C-Slave-Addressing
package main
import (
"machine"
"image/color"
"time"
"tinygo.org/x/drivers/ssd1306"
)
func main() {
machine.I2C0.Configure(machine.I2CConfig{
Frequency: machine.TWI_FREQ_400KHZ,
})
display := ssd1306.NewI2C(machine.I2C0)
display.Configure(ssd1306.Config{
Address: 0x3C,
Width: 128,
Height: 64,
})
display.ClearDisplay()
x := int16(0)
y := int16(0)
deltaX := int16(1)
deltaY := int16(1)
for {
pixel := display.GetPixel(x, y)
c := color.RGBA{255, 255, 255, 255}
if pixel {
c = color.RGBA{0, 0, 0, 255}
}
display.SetPixel(x, y, c)
display.Display()
x += deltaX
y += deltaY
if x == 0 || x == 127 {
deltaX = -deltaX
}
if y == 0 || y == 63 {
deltaY = -deltaY
}
time.Sleep(1 * time.Millisecond)
}
}
@@ -1,8 +1,6 @@
package main
import (
"machine"
"image/color"
"time"
@@ -10,21 +8,21 @@ import (
)
func main() {
machine.I2C0.Configure(machine.I2CConfig{
Frequency: machine.TWI_FREQ_400KHZ,
})
display := ssd1306.NewI2C(machine.I2C0)
display.Configure(ssd1306.Config{
Address: ssd1306.Address_128_32,
Width: 128,
Height: 32,
})
// Thumby will have preset size.
// If not compiling for thumby the width and height will be whatever we suggest
const suggestHeight = 32
const suggestWidth = 128
var display *ssd1306.Device
var err error
display, err = makeSSD1306(suggestWidth, suggestHeight)
if err != nil {
panic(err)
}
display.ClearDisplay()
x := int16(0)
y := int16(0)
width, height := display.Size()
x := int16(width)
y := int16(height)
deltaX := int16(1)
deltaY := int16(1)
for {
@@ -39,11 +37,11 @@ func main() {
x += deltaX
y += deltaY
if x == 0 || x == 127 {
if x == 0 || x == width-1 {
deltaX = -deltaX
}
if y == 0 || y == 31 {
if y == 0 || y == height-1 {
deltaY = -deltaY
}
time.Sleep(1 * time.Millisecond)
+29
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@@ -0,0 +1,29 @@
//go:build !thumby
package main
import (
"machine"
"tinygo.org/x/drivers/ssd1306"
)
func makeSSD1306(width, height int16) (*ssd1306.Device, error) {
err := machine.I2C0.Configure(machine.I2CConfig{
Frequency: 400 * machine.KHz,
})
if err != nil {
return nil, err
}
address := uint16(ssd1306.Address)
if width == 128 && (height == 32 || height == 64) {
address = ssd1306.Address_128_32
}
display := ssd1306.NewI2C(machine.I2C0)
display.Configure(ssd1306.Config{
Address: address,
Width: width,
Height: height,
})
return &display, nil
}
+22
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@@ -0,0 +1,22 @@
//go:build thumby
package main
import (
"machine"
"tinygo.org/x/drivers/ssd1306"
)
func makeSSD1306(_, _ int16) (*ssd1306.Device, error) {
// width and height are known for thumby.
machine.SPI0.Configure(machine.SPIConfig{})
display := ssd1306.NewSPI(machine.SPI0, machine.THUMBY_DC_PIN, machine.THUMBY_RESET_PIN, machine.THUMBY_CS_PIN)
display.Configure(ssd1306.Config{
Width: 72,
Height: 40,
ResetCol: ssd1306.ResetValue{28, 99},
ResetPage: ssd1306.ResetValue{0, 5},
})
return &display, nil
}
-48
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@@ -1,48 +0,0 @@
package main
import (
"image/color"
"machine"
"time"
"tinygo.org/x/drivers/ssd1306"
)
func main() {
machine.SPI0.Configure(machine.SPIConfig{
Frequency: 8000000,
})
display := ssd1306.NewSPI(machine.SPI0, machine.P8, machine.P7, machine.P9)
display.Configure(ssd1306.Config{
Width: 128,
Height: 64,
})
display.ClearDisplay()
x := int16(64)
y := int16(32)
deltaX := int16(1)
deltaY := int16(1)
for {
pixel := display.GetPixel(x, y)
c := color.RGBA{255, 255, 255, 255}
if pixel {
c = color.RGBA{0, 0, 0, 255}
}
display.SetPixel(x, y, c)
display.Display()
x += deltaX
y += deltaY
if x == 0 || x == 127 {
deltaX = -deltaX
}
if y == 0 || y == 63 {
deltaY = -deltaY
}
time.Sleep(1 * time.Millisecond)
}
}
-50
View File
@@ -1,50 +0,0 @@
// This example using the SSD1306 OLED display over SPI on the Thumby board
// A very tiny 72x40 display.
package main
import (
"image/color"
"machine"
"time"
"tinygo.org/x/drivers/ssd1306"
)
func main() {
machine.SPI0.Configure(machine.SPIConfig{})
display := ssd1306.NewSPI(machine.SPI0, machine.THUMBY_DC_PIN, machine.THUMBY_RESET_PIN, machine.THUMBY_CS_PIN)
display.Configure(ssd1306.Config{
Width: 72,
Height: 40,
ResetCol: ssd1306.ResetValue{28, 99},
ResetPage: ssd1306.ResetValue{0, 5},
})
display.ClearDisplay()
x := int16(36)
y := int16(20)
deltaX := int16(1)
deltaY := int16(1)
for {
pixel := display.GetPixel(x, y)
c := color.RGBA{255, 255, 255, 255}
if pixel {
c = color.RGBA{0, 0, 0, 255}
}
display.SetPixel(x, y, c)
display.Display()
x += deltaX
y += deltaY
if x == 0 || x == 71 {
deltaX = -deltaX
}
if y == 0 || y == 39 {
deltaY = -deltaY
}
time.Sleep(1 * time.Millisecond)
}
}
+6 -4
View File
@@ -5,6 +5,8 @@
package ft6336
import (
"machine"
"tinygo.org/x/drivers"
"tinygo.org/x/drivers/internal/legacy"
"tinygo.org/x/drivers/touch"
@@ -15,11 +17,11 @@ type Device struct {
bus drivers.I2C
buf []byte
Address uint8
intPin drivers.Pin
intPin machine.Pin
}
// New returns FT6336 device for the provided I2C bus using default address.
func New(i2c drivers.I2C, intPin drivers.Pin) *Device {
func New(i2c drivers.I2C, intPin machine.Pin) *Device {
return &Device{
bus: i2c,
buf: make([]byte, 11),
@@ -32,10 +34,10 @@ func New(i2c drivers.I2C, intPin drivers.Pin) *Device {
type Config struct {
}
// Configure the FT6336 device. Note that the interrupt pin must be configured
// separately as an input.
// Configure the FT6336 device.
func (d *Device) Configure(config Config) error {
d.write1Byte(0xA4, 0x00)
d.intPin.Configure(machine.PinConfig{Mode: machine.PinInputPulldown})
return nil
}
+11 -7
View File
@@ -5,6 +5,7 @@ package gc9a01 // import "tinygo.org/x/drivers/gc9a01"
import (
"image/color"
"machine"
"time"
"errors"
@@ -21,10 +22,10 @@ type FrameRate uint8
// Device wraps an SPI connection.
type Device struct {
bus drivers.SPI
dcPin drivers.Pin
resetPin drivers.Pin
csPin drivers.Pin
blPin drivers.Pin
dcPin machine.Pin
resetPin machine.Pin
csPin machine.Pin
blPin machine.Pin
width int16
height int16
columnOffsetCfg int16
@@ -50,9 +51,12 @@ type Config struct {
Height int16
}
// New creates a new ST7789 connection. The SPI wire must already be configured, along with the
// data/command and reset pins as outputs.
func New(bus drivers.SPI, resetPin, dcPin, csPin, blPin drivers.Pin) Device {
// New creates a new ST7789 connection. The SPI wire must already be configured.
func New(bus drivers.SPI, resetPin, dcPin, csPin, blPin machine.Pin) Device {
resetPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
dcPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
csPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
blPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
return Device{
bus: bus,
resetPin: resetPin,
+7 -8
View File
@@ -5,31 +5,30 @@
package hcsr04
import (
"machine"
"time"
"tinygo.org/x/drivers"
)
const TIMEOUT = 23324 // max sensing distance (4m)
// Device holds the pins
type Device struct {
trigger drivers.Pin
echo drivers.Pin
trigger machine.Pin
echo machine.Pin
}
// New returns a new ultrasonic driver given 2 pins
func New(trigger, echo drivers.Pin) Device {
func New(trigger, echo machine.Pin) Device {
return Device{
trigger: trigger,
echo: echo,
}
}
// Configure expects that the pins of the Device have already
// been configured by the user. Trigger pin should be an output
// and echo pin should be an input.
// Configure configures the pins of the Device
func (d *Device) Configure() {
d.trigger.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.echo.Configure(machine.PinConfig{Mode: machine.PinInput})
}
// ReadDistance returns the distance of the object in mm
+3 -2
View File
@@ -3,6 +3,7 @@ package max6675
import (
"errors"
"machine"
"tinygo.org/x/drivers"
)
@@ -13,13 +14,13 @@ var ErrThermocoupleOpen = errors.New("thermocouple input open")
type Device struct {
bus drivers.SPI
cs drivers.Pin
cs machine.Pin
}
// Create a new Device to read from a MAX6675 thermocouple.
// Pins must be configured before use. Frequency for SPI
// should be 4.3MHz maximum.
func NewDevice(bus drivers.SPI, cs drivers.Pin) *Device {
func NewDevice(bus drivers.SPI, cs machine.Pin) *Device {
return &Device{
bus: bus,
cs: cs,
+8 -3
View File
@@ -3,26 +3,31 @@
package max72xx
import (
"machine"
"tinygo.org/x/drivers"
)
type Device struct {
bus drivers.SPI
cs drivers.Pin
cs machine.Pin
}
// NewDriver creates a new max7219 connection. The SPI wire must already be configured
// The SPI frequency must not be higher than 10MHz.
// parameter cs: the datasheet also refers to this pin as "load" pin.
func NewDevice(bus drivers.SPI, cs drivers.Pin) *Device {
func NewDevice(bus drivers.SPI, cs machine.Pin) *Device {
return &Device{
bus: bus,
cs: cs,
}
}
// Configure expects that the pin of the Device has already been configured by the user as output.
// Configure setups the pins.
func (driver *Device) Configure() {
outPutConfig := machine.PinConfig{Mode: machine.PinOutput}
driver.cs.Configure(outPutConfig)
}
// SetScanLimit sets the scan limit. Maximum is 8.
+5 -4
View File
@@ -8,6 +8,7 @@ package mcp2515 // import "tinygo.org/x/drivers/mcp2515"
import (
"errors"
"fmt"
"machine"
"time"
"tinygo.org/x/drivers"
@@ -16,7 +17,7 @@ import (
// Device wraps MCP2515 SPI CAN Module.
type Device struct {
spi SPI
cs drivers.Pin
cs machine.Pin
msg *CANMsg
mcpMode byte
}
@@ -35,7 +36,7 @@ const (
)
// New returns a new MCP2515 driver. Pass in a fully configured SPI bus.
func New(b drivers.SPI, csPin drivers.Pin) *Device {
func New(b drivers.SPI, csPin machine.Pin) *Device {
d := &Device{
spi: SPI{
bus: b,
@@ -49,9 +50,9 @@ func New(b drivers.SPI, csPin drivers.Pin) *Device {
return d
}
// Configure sets up the device for communication. It expects the SPI interface to be already
// configured, and the CS configured as output.
// Configure sets up the device for communication.
func (d *Device) Configure() {
d.cs.Configure(machine.PinConfig{Mode: machine.PinOutput})
}
const beginTimeoutValue int = 10
+6 -5
View File
@@ -6,6 +6,7 @@ package pcd8544 // import "tinygo.org/x/drivers/pcd8544"
import (
"errors"
"image/color"
"machine"
"time"
"tinygo.org/x/drivers"
@@ -14,9 +15,9 @@ import (
// Device wraps an SPI connection.
type Device struct {
bus drivers.SPI
dcPin drivers.Pin
rstPin drivers.Pin
scePin drivers.Pin
dcPin machine.Pin
rstPin machine.Pin
scePin machine.Pin
buffer []byte
width int16
height int16
@@ -28,8 +29,8 @@ type Config struct {
Height int16
}
// New creates a new PCD8544 connection. The SPI bus and pins must already be configured.
func New(bus drivers.SPI, dcPin, rstPin, scePin drivers.Pin) *Device {
// New creates a new PCD8544 connection. The SPI bus must already be configured.
func New(bus drivers.SPI, dcPin, rstPin, scePin machine.Pin) *Device {
return &Device{
bus: bus,
dcPin: dcPin,
-10
View File
@@ -1,10 +0,0 @@
package drivers
// Pin is a digital pin interface. It is notably implemented by the
// machine.Pin type.
type Pin interface {
Get() bool
High()
Low()
Set(high bool)
}
+8 -6
View File
@@ -2,7 +2,7 @@
package shiftregister
import (
"tinygo.org/x/drivers"
"machine"
)
type NumberBit int8
@@ -16,20 +16,20 @@ const (
// Device holds pin number
type Device struct {
latch, clock, out drivers.Pin // IC wiring
latch, clock, out machine.Pin // IC wiring
bits NumberBit // Pin number
mask uint32 // keep all pins state
}
// ShiftPin is the implementation of the ShiftPin interface.
// ShiftPin provide an interface like regular drivers.Pin
// ShiftPin provide an interface like regular machine.Pin
type ShiftPin struct {
mask uint32 // Bit representing the pin
d *Device // Reference to the register
}
// New returns a new shift output register device
func New(Bits NumberBit, Latch, Clock, Out drivers.Pin) *Device {
func New(Bits NumberBit, Latch, Clock, Out machine.Pin) *Device {
return &Device{
latch: Latch,
clock: Clock,
@@ -38,9 +38,11 @@ func New(Bits NumberBit, Latch, Clock, Out drivers.Pin) *Device {
}
}
// Configure set hardware configuration. Make sure that the pins are already configured
// as output.
// Configure set hardware configuration
func (d *Device) Configure() {
d.latch.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.clock.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.out.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.latch.High()
}
+2 -2
View File
@@ -65,8 +65,8 @@ tinygo build -size short -o ./build/test.hex -target=pybadge ./examples/shifter/
tinygo build -size short -o ./build/test.hex -target=microbit ./examples/sht3x/main.go
tinygo build -size short -o ./build/test.hex -target=microbit ./examples/sht4x/main.go
tinygo build -size short -o ./build/test.hex -target=microbit ./examples/shtc3/main.go
tinygo build -size short -o ./build/test.hex -target=microbit ./examples/ssd1306/i2c_128x32/main.go
tinygo build -size short -o ./build/test.hex -target=microbit ./examples/ssd1306/spi_128x64/main.go
tinygo build -size short -o ./build/test.hex -target=microbit ./examples/ssd1306/
tinygo build -size short -o ./build/test.hex -target=thumby ./examples/ssd1306/
tinygo build -size short -o ./build/test.hex -target=microbit ./examples/ssd1331/main.go
tinygo build -size short -o ./build/test.hex -target=microbit ./examples/st7735/main.go
tinygo build -size short -o ./build/test.hex -target=microbit ./examples/st7789/main.go
+11 -7
View File
@@ -5,9 +5,8 @@ package ssd1289
import (
"image/color"
"machine"
"time"
"tinygo.org/x/drivers"
)
type Bus interface {
@@ -15,17 +14,17 @@ type Bus interface {
}
type Device struct {
rs drivers.Pin
wr drivers.Pin
cs drivers.Pin
rst drivers.Pin
rs machine.Pin
wr machine.Pin
cs machine.Pin
rst machine.Pin
bus Bus
}
const width = int16(240)
const height = int16(320)
func New(rs drivers.Pin, wr drivers.Pin, cs drivers.Pin, rst drivers.Pin, bus Bus) Device {
func New(rs machine.Pin, wr machine.Pin, cs machine.Pin, rst machine.Pin, bus Bus) Device {
d := Device{
rs: rs,
wr: wr,
@@ -34,6 +33,11 @@ func New(rs drivers.Pin, wr drivers.Pin, cs drivers.Pin, rst drivers.Pin, bus Bu
bus: bus,
}
rs.Configure(machine.PinConfig{Mode: machine.PinOutput})
wr.Configure(machine.PinConfig{Mode: machine.PinOutput})
cs.Configure(machine.PinConfig{Mode: machine.PinOutput})
rst.Configure(machine.PinConfig{Mode: machine.PinOutput})
cs.High()
rst.High()
wr.High()
+9 -5
View File
@@ -6,6 +6,7 @@ package ssd1306 // import "tinygo.org/x/drivers/ssd1306"
import (
"errors"
"image/color"
"machine"
"time"
"tinygo.org/x/drivers"
@@ -57,9 +58,9 @@ type I2CBus struct {
type SPIBus struct {
wire drivers.SPI
dcPin drivers.Pin
resetPin drivers.Pin
csPin drivers.Pin
dcPin machine.Pin
resetPin machine.Pin
csPin machine.Pin
}
type Buser interface {
@@ -80,8 +81,11 @@ func NewI2C(bus drivers.I2C) Device {
}
}
// NewSPI creates a new SSD1306 connection. The SPI wire and pins must already be configured.
func NewSPI(bus drivers.SPI, dcPin, resetPin, csPin drivers.Pin) Device {
// NewSPI creates a new SSD1306 connection. The SPI wire must already be configured.
func NewSPI(bus drivers.SPI, dcPin, resetPin, csPin machine.Pin) Device {
dcPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
resetPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
csPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
return Device{
bus: &SPIBus{
wire: bus,
+9 -5
View File
@@ -5,6 +5,7 @@ package ssd1331 // import "tinygo.org/x/drivers/ssd1331"
import (
"image/color"
"machine"
"errors"
"time"
@@ -18,9 +19,9 @@ type Rotation uint8
// Device wraps an SPI connection.
type Device struct {
bus drivers.SPI
dcPin drivers.Pin
resetPin drivers.Pin
csPin drivers.Pin
dcPin machine.Pin
resetPin machine.Pin
csPin machine.Pin
width int16
height int16
batchLength int16
@@ -34,8 +35,11 @@ type Config struct {
Height int16
}
// New creates a new SSD1331 connection. The SPI wire and pins must already be configured.
func New(bus drivers.SPI, resetPin, dcPin, csPin drivers.Pin) Device {
// New creates a new SSD1331 connection. The SPI wire must already be configured.
func New(bus drivers.SPI, resetPin, dcPin, csPin machine.Pin) Device {
dcPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
resetPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
csPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
return Device{
bus: bus,
dcPin: dcPin,
+14 -6
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@@ -6,6 +6,7 @@ package ssd1351 // import "tinygo.org/x/drivers/ssd1351"
import (
"errors"
"image/color"
"machine"
"time"
"tinygo.org/x/drivers"
@@ -19,11 +20,11 @@ var (
// Device wraps an SPI connection.
type Device struct {
bus drivers.SPI
dcPin drivers.Pin
resetPin drivers.Pin
csPin drivers.Pin
enPin drivers.Pin
rwPin drivers.Pin
dcPin machine.Pin
resetPin machine.Pin
csPin machine.Pin
enPin machine.Pin
rwPin machine.Pin
width int16
height int16
rowOffset int16
@@ -40,7 +41,7 @@ type Config struct {
}
// New creates a new SSD1351 connection. The SPI wire must already be configured.
func New(bus drivers.SPI, resetPin, dcPin, csPin, enPin, rwPin drivers.Pin) Device {
func New(bus drivers.SPI, resetPin, dcPin, csPin, enPin, rwPin machine.Pin) Device {
return Device{
bus: bus,
dcPin: dcPin,
@@ -71,6 +72,13 @@ func (d *Device) Configure(cfg Config) {
d.bufferLength = d.height
}
// configure GPIO pins
d.dcPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.resetPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.csPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.enPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.rwPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
// reset the device
d.resetPin.High()
time.Sleep(100 * time.Millisecond)
+12 -7
View File
@@ -5,6 +5,7 @@ package st7735 // import "tinygo.org/x/drivers/st7735"
import (
"image/color"
"machine"
"time"
"errors"
@@ -38,10 +39,10 @@ type Device = DeviceOf[pixel.RGB565BE]
// formats.
type DeviceOf[T Color] struct {
bus drivers.SPI
dcPin drivers.Pin
resetPin drivers.Pin
csPin drivers.Pin
blPin drivers.Pin
dcPin machine.Pin
resetPin machine.Pin
csPin machine.Pin
blPin machine.Pin
width int16
height int16
columnOffset int16
@@ -64,13 +65,17 @@ type Config struct {
}
// New creates a new ST7735 connection. The SPI wire must already be configured.
func New(bus drivers.SPI, resetPin, dcPin, csPin, blPin drivers.Pin) Device {
func New(bus drivers.SPI, resetPin, dcPin, csPin, blPin machine.Pin) Device {
return NewOf[pixel.RGB565BE](bus, resetPin, dcPin, csPin, blPin)
}
// NewOf creates a new ST7735 connection with a particular pixel format. The SPI
// wire and pins must already be configured.
func NewOf[T Color](bus drivers.SPI, resetPin, dcPin, csPin, blPin drivers.Pin) DeviceOf[T] {
// wire must already be configured.
func NewOf[T Color](bus drivers.SPI, resetPin, dcPin, csPin, blPin machine.Pin) DeviceOf[T] {
dcPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
resetPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
csPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
blPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
return DeviceOf[T]{
bus: bus,
dcPin: dcPin,
+11 -7
View File
@@ -46,10 +46,10 @@ type Device = DeviceOf[pixel.RGB565BE]
// formats.
type DeviceOf[T Color] struct {
bus drivers.SPI
dcPin drivers.Pin
resetPin drivers.Pin
csPin drivers.Pin
blPin drivers.Pin
dcPin machine.Pin
resetPin machine.Pin
csPin machine.Pin
blPin machine.Pin
width int16
height int16
columnOffsetCfg int16
@@ -83,13 +83,17 @@ type Config struct {
}
// New creates a new ST7789 connection. The SPI wire must already be configured.
func New(bus drivers.SPI, resetPin, dcPin, csPin, blPin drivers.Pin) Device {
func New(bus drivers.SPI, resetPin, dcPin, csPin, blPin machine.Pin) Device {
return NewOf[pixel.RGB565BE](bus, resetPin, dcPin, csPin, blPin)
}
// NewOf creates a new ST7789 connection with a particular pixel format. The SPI
// wire and pins must already be configured.
func NewOf[T Color](bus drivers.SPI, resetPin, dcPin, csPin, blPin drivers.Pin) DeviceOf[T] {
// wire must already be configured.
func NewOf[T Color](bus drivers.SPI, resetPin, dcPin, csPin, blPin machine.Pin) DeviceOf[T] {
dcPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
resetPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
csPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
blPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
return DeviceOf[T]{
bus: bus,
dcPin: dcPin,
+3 -2
View File
@@ -6,6 +6,7 @@ package sx127x
import (
"errors"
"machine"
"time"
"tinygo.org/x/drivers"
@@ -21,7 +22,7 @@ const (
// Device wraps an SPI connection to a SX127x device.
type Device struct {
spi drivers.SPI // SPI bus for module communication
rstPin drivers.Pin // GPIO for reset
rstPin machine.Pin // GPIO for reset
radioEventChan chan lora.RadioEvent // Channel for Receiving events
loraConf lora.Config // Current Lora configuration
controller RadioController // to manage interactions with the radio
@@ -42,7 +43,7 @@ func (d *Device) GetRadioEventChan() chan lora.RadioEvent {
}
// New creates a new SX127x connection. The SPI bus must already be configured.
func New(spi drivers.SPI, rstPin drivers.Pin) *Device {
func New(spi drivers.SPI, rstPin machine.Pin) *Device {
k := Device{
spi: spi,
rstPin: rstPin,
+11 -7
View File
@@ -8,6 +8,7 @@ package uc8151 // import "tinygo.org/x/drivers/uc8151"
import (
"errors"
"image/color"
"machine"
"time"
"tinygo.org/x/drivers"
@@ -30,10 +31,10 @@ type Config struct {
type Device struct {
bus drivers.SPI
cs drivers.Pin
dc drivers.Pin
rst drivers.Pin
busy drivers.Pin
cs machine.Pin
dc machine.Pin
rst machine.Pin
busy machine.Pin
width int16
height int16
buffer []uint8
@@ -47,9 +48,12 @@ type Device struct {
type Speed uint8
// New returns a new uc8151 driver. Pass in a fully configured SPI bus and pins.
// busyPin should be set and input, the others as outputs.
func New(bus drivers.SPI, csPin, dcPin, rstPin, busyPin drivers.Pin) Device {
// New returns a new uc8151 driver. Pass in a fully configured SPI bus.
func New(bus drivers.SPI, csPin, dcPin, rstPin, busyPin machine.Pin) Device {
csPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
dcPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
rstPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
busyPin.Configure(machine.PinConfig{Mode: machine.PinInput})
return Device{
bus: bus,
cs: csPin,
+15 -7
View File
@@ -12,8 +12,6 @@ import (
"image/color"
"machine"
"time"
"tinygo.org/x/drivers"
)
type Config struct {
@@ -25,10 +23,10 @@ type Config struct {
type Device struct {
bus *machine.SPI
cs drivers.Pin
dc drivers.Pin
rst drivers.Pin
busy drivers.Pin
cs machine.Pin
dc machine.Pin
rst machine.Pin
busy machine.Pin
buffer []uint8
rotation Rotation
@@ -81,7 +79,7 @@ var partialRefresh = [159]uint8{
}
// New returns a new epd1in54 driver. Pass in a fully configured SPI bus.
func New(bus *machine.SPI, csPin, dcPin, rstPin, busyPin drivers.Pin) Device {
func New(bus *machine.SPI, csPin, dcPin, rstPin, busyPin machine.Pin) Device {
return Device{
buffer: make([]uint8, (uint32(Width)*uint32(Height))/8),
bus: bus,
@@ -93,6 +91,11 @@ func New(bus *machine.SPI, csPin, dcPin, rstPin, busyPin drivers.Pin) Device {
}
func (d *Device) LDirInit(cfg Config) {
d.cs.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.rst.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.dc.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.busy.Configure(machine.PinConfig{Mode: machine.PinInput})
d.bus.Configure(machine.SPIConfig{
Frequency: 2000000,
Mode: 0,
@@ -147,6 +150,11 @@ func (d *Device) LDirInit(cfg Config) {
}
func (d *Device) HDirInit(cfg Config) {
d.cs.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.rst.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.dc.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.busy.Configure(machine.PinConfig{Mode: machine.PinInput})
d.bus.Configure(machine.SPIConfig{
Frequency: 2000000,
Mode: 0,
+11 -7
View File
@@ -6,6 +6,7 @@ package epd2in13 // import "tinygo.org/x/drivers/waveshare-epd/epd2in13"
import (
"errors"
"image/color"
"machine"
"time"
"tinygo.org/x/drivers"
@@ -20,10 +21,10 @@ type Config struct {
type Device struct {
bus drivers.SPI
cs drivers.Pin
dc drivers.Pin
rst drivers.Pin
busy drivers.Pin
cs machine.Pin
dc machine.Pin
rst machine.Pin
busy machine.Pin
logicalWidth int16
width int16
height int16
@@ -51,9 +52,12 @@ var lutPartialUpdate = [30]uint8{
0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
}
// New returns a new epd2in13x driver. Pass in a fully configured SPI bus and pins.
// Busy pin should input, the rest should be output.
func New(bus drivers.SPI, csPin, dcPin, rstPin, busyPin drivers.Pin) Device {
// New returns a new epd2in13x driver. Pass in a fully configured SPI bus.
func New(bus drivers.SPI, csPin, dcPin, rstPin, busyPin machine.Pin) Device {
csPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
dcPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
rstPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
busyPin.Configure(machine.PinConfig{Mode: machine.PinInput})
return Device{
bus: bus,
cs: csPin,
+11 -7
View File
@@ -6,6 +6,7 @@ package epd2in13x // import "tinygo.org/x/drivers/waveshare-epd/epd2in13x"
import (
"errors"
"image/color"
"machine"
"time"
"tinygo.org/x/drivers"
@@ -19,10 +20,10 @@ type Config struct {
type Device struct {
bus drivers.SPI
cs drivers.Pin
dc drivers.Pin
rst drivers.Pin
busy drivers.Pin
cs machine.Pin
dc machine.Pin
rst machine.Pin
busy machine.Pin
width int16
height int16
buffer [][]uint8
@@ -31,9 +32,12 @@ type Device struct {
type Color uint8
// New returns a new epd2in13x driver. Pass in a fully configured SPI bus and pins.
// Busy pin should input, the rest should be output.
func New(bus drivers.SPI, csPin, dcPin, rstPin, busyPin drivers.Pin) Device {
// New returns a new epd2in13x driver. Pass in a fully configured SPI bus.
func New(bus drivers.SPI, csPin, dcPin, rstPin, busyPin machine.Pin) Device {
csPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
dcPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
rstPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
busyPin.Configure(machine.PinConfig{Mode: machine.PinInput})
return Device{
bus: bus,
cs: csPin,
+15 -10
View File
@@ -5,6 +5,7 @@ package epd2in66b
import (
"image/color"
"machine"
"time"
"tinygo.org/x/drivers"
@@ -18,18 +19,18 @@ const (
const Baudrate = 4_000_000 // 4 MHz
type Config struct {
ResetPin drivers.Pin
DataPin drivers.Pin
ChipSelectPin drivers.Pin
BusyPin drivers.Pin
ResetPin machine.Pin
DataPin machine.Pin
ChipSelectPin machine.Pin
BusyPin machine.Pin
}
type Device struct {
bus drivers.SPI
cs drivers.Pin
dc drivers.Pin
rst drivers.Pin
busy drivers.Pin
cs machine.Pin
dc machine.Pin
rst machine.Pin
busy machine.Pin
blackBuffer []byte
redBuffer []byte
@@ -49,14 +50,18 @@ func New(bus drivers.SPI) Device {
}
}
// Configure configures the device. Note that pins should already
// be configured. Busy pin should be input, the rest should be output.
// Configure configures the device and its pins.
func (d *Device) Configure(c Config) error {
d.cs = c.ChipSelectPin
d.dc = c.DataPin
d.rst = c.ResetPin
d.busy = c.BusyPin
d.cs.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.dc.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.rst.Configure(machine.PinConfig{Mode: machine.PinOutput})
d.busy.Configure(machine.PinConfig{Mode: machine.PinInput})
return nil
}
+11 -7
View File
@@ -13,6 +13,7 @@ package epd2in9 // import "tinygo.org/x/drivers/waveshare-epd/epd2in9"
import (
"image/color"
"machine"
"time"
"tinygo.org/x/drivers"
@@ -27,10 +28,10 @@ type Config struct {
type Device struct {
bus drivers.SPI
cs drivers.Pin
dc drivers.Pin
rst drivers.Pin
busy drivers.Pin
cs machine.Pin
dc machine.Pin
rst machine.Pin
busy machine.Pin
logicalWidth int16
width int16
height int16
@@ -59,9 +60,12 @@ var lutPartialUpdate = [30]uint8{
0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
}
// New returns a new epd2in9 driver. Pass in a fully configured SPI bus and pins.
// Busy pin should input, the rest should be output.
func New(bus drivers.SPI, csPin, dcPin, rstPin, busyPin drivers.Pin) Device {
// New returns a new epd2in9 driver. Pass in a fully configured SPI bus.
func New(bus drivers.SPI, csPin, dcPin, rstPin, busyPin machine.Pin) Device {
csPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
dcPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
rstPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
busyPin.Configure(machine.PinConfig{Mode: machine.PinInput})
return Device{
bus: bus,
cs: csPin,
+11 -7
View File
@@ -10,6 +10,7 @@ package epd4in2
import (
"image/color"
"machine"
"time"
"tinygo.org/x/drivers"
@@ -24,10 +25,10 @@ type Config struct {
type Device struct {
bus drivers.SPI
cs drivers.Pin
dc drivers.Pin
rst drivers.Pin
busy drivers.Pin
cs machine.Pin
dc machine.Pin
rst machine.Pin
busy machine.Pin
logicalWidth int16
width int16
height int16
@@ -38,9 +39,12 @@ type Device struct {
type Rotation uint8
// New returns a new epd4in2 driver. Pass in a fully configured SPI bus and pins.
// Busy pin should input, the rest should be output.
func New(bus drivers.SPI, csPin, dcPin, rstPin, busyPin drivers.Pin) Device {
// New returns a new epd4in2 driver. Pass in a fully configured SPI bus.
func New(bus drivers.SPI, csPin, dcPin, rstPin, busyPin machine.Pin) Device {
csPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
dcPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
rstPin.Configure(machine.PinConfig{Mode: machine.PinOutput})
busyPin.Configure(machine.PinConfig{Mode: machine.PinInput})
return Device{
bus: bus,
cs: csPin,